According to the version of the dbus packages installed, the EulerOS Virtualization installation on the remote host is affected by the following vulnerability :
- An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus-daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients.
(CVE-2020-12049)
Note that Tenable Network Security has extracted the preceding description block directly from the EulerOS security advisory. Tenable has attempted to automatically clean and format it as much as possible without introducing additional issues.
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It is, therefore, affected by multiple vulnerabilities as referenced in the NXSA-AOS-5.17.1.5 advisory.\n\n - An issue was discovered in the Linux kernel before 4.14.11. A double free may be caused by the function allocate_trace_buffer in the file kernel/trace/trace.c. (CVE-2017-18595)\n\n - In the Linux kernel 5.4.0-rc2, there is a use-after-free (read) in the __blk_add_trace function in kernel/trace/blktrace.c (which is used to fill out a blk_io_trace structure and place it in a per-cpu sub- buffer). (CVE-2019-19768)\n\n - A NULL pointer dereference flaw was found in the Linux kernel's SELinux subsystem in versions before 5.7.\n This flaw occurs while importing the Commercial IP Security Option (CIPSO) protocol's category bitmap into the SELinux extensible bitmap via the' ebitmap_netlbl_import' routine. While processing the CIPSO restricted bitmap tag in the 'cipso_v4_parsetag_rbm' routine, it sets the security attribute to indicate that the category bitmap is present, even if it has not been allocated. This issue leads to a NULL pointer dereference issue while importing the same category bitmap into SELinux. This flaw allows a remote network user to crash the system kernel, resulting in a denial of service. (CVE-2020-10711)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows an off-path attacker to block unauthenticated synchronization via a server mode packet with a spoofed source IP address, because transmissions are rescheduled even when a packet lacks a valid origin timestamp. (CVE-2020-11868)\n\n - An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus- daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. (CVE-2020-12049)\n\n - The VFIO PCI driver in the Linux kernel through 5.6.13 mishandles attempts to access disabled memory space. (CVE-2020-12888)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows remote attackers to cause a denial of service (daemon exit or system time change) by predicting transmit timestamps for use in spoofed packets. The victim must be relying on unauthenticated IPv4 time sources. There must be an off-path attacker who can query time from the victim's ntpd instance. (CVE-2020-13817)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14556)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via TLS to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14577)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u261 and 8u251; Java SE Embedded: 8u251. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14578, CVE-2020-14579)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in takeover of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-14583)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: 2D). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in unauthorized creation, deletion or modification access to critical data or all Java SE, Java SE Embedded accessible data. Note:\n This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-14593)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JAXP). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data. 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It is, therefore, affected by multiple\nvulnerabilities as referenced in the NXSA-AOS-5.17.1.5 advisory.\n\n - An issue was discovered in the Linux kernel before 4.14.11. A double free may be caused by the function\n allocate_trace_buffer in the file kernel/trace/trace.c. (CVE-2017-18595)\n\n - In the Linux kernel 5.4.0-rc2, there is a use-after-free (read) in the __blk_add_trace function in\n kernel/trace/blktrace.c (which is used to fill out a blk_io_trace structure and place it in a per-cpu sub-\n buffer). (CVE-2019-19768)\n\n - A NULL pointer dereference flaw was found in the Linux kernel's SELinux subsystem in versions before 5.7.\n This flaw occurs while importing the Commercial IP Security Option (CIPSO) protocol's category bitmap into\n the SELinux extensible bitmap via the' ebitmap_netlbl_import' routine. 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A local\n attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use\n this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus\n clients. (CVE-2020-12049)\n\n - The VFIO PCI driver in the Linux kernel through 5.6.13 mishandles attempts to access disabled memory\n space. (CVE-2020-12888)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows remote attackers to cause a denial of service\n (daemon exit or system time change) by predicting transmit timestamps for use in spoofed packets. The\n victim must be relying on unauthenticated IPv4 time sources. There must be an off-path attacker who can\n query time from the victim's ntpd instance. (CVE-2020-13817)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as\n unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client\n and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-14556)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via TLS to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server\n deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and\n sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component\n without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web\n service. (CVE-2020-14577)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 7u261 and 8u251; Java SE Embedded: 8u251. Difficult to exploit\n vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise\n Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to\n cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and\n server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-14578, CVE-2020-14579)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a\n person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may\n significantly impact additional products. Successful attacks of this vulnerability can result in takeover\n of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients\n running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code\n (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability\n does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code\n installed by an administrator). (CVE-2020-14583)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: 2D). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other\n than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly\n impact additional products. Successful attacks of this vulnerability can result in unauthorized creation,\n deletion or modification access to critical data or all Java SE, Java SE Embedded accessible data. Note:\n This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start\n applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the\n internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java\n deployments, typically in servers, that load and run only trusted code (e.g., code installed by an\n administrator). (CVE-2020-14593)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JAXP). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n update, insert or delete access to some of Java SE, Java SE Embedded accessible data. Note: This\n vulnerability can only be exploited by supplying data to APIs in the specified Component without using\n Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-14621)\n\nNote that Nessus has not tested for these issues but has instead relied only on the application's self-reported version\nnumber.\");\n # https://portal.nutanix.com/page/documents/security-advisories/release-advisories/details?id=NXSA-AOS-5.17.1.5\n script_set_attribute(attribute:\"see_also\", value:\"http://www.nessus.org/u?825a158f\");\n script_set_attribute(attribute:\"solution\", value:\n\"Update the Nutanix AOS software to recommended version.\");\n script_set_cvss_base_vector(\"CVSS2#AV:L/AC:L/Au:N/C:C/I:C/A:C\");\n script_set_cvss_temporal_vector(\"CVSS2#E:U/RL:OF/RC:C\");\n script_set_cvss3_base_vector(\"CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:C/C:H/I:H/A:H\");\n script_set_cvss3_temporal_vector(\"CVSS:3.0/E:U/RL:O/RC:C\");\n script_set_attribute(attribute:\"cvss_score_source\", value:\"CVE-2017-18595\");\n script_set_attribute(attribute:\"cvss3_score_source\", value:\"CVE-2020-14583\");\n\n script_set_attribute(attribute:\"exploitability_ease\", value:\"No known exploits are available\");\n script_set_attribute(attribute:\"exploit_available\", value:\"false\");\n\n script_set_attribute(attribute:\"vuln_publication_date\", value:\"2019/09/04\");\n script_set_attribute(attribute:\"patch_publication_date\", value:\"2022/08/24\");\n script_set_attribute(attribute:\"plugin_publication_date\", value:\"2022/09/01\");\n\n script_set_attribute(attribute:\"plugin_type\", value:\"local\");\n script_set_attribute(attribute:\"cpe\", value:\"cpe:/o:nutanix:aos\");\n script_set_attribute(attribute:\"generated_plugin\", value:\"current\");\n script_end_attributes();\n\n script_category(ACT_GATHER_INFO);\n script_family(english:\"Misc.\");\n\n script_copyright(english:\"This script is Copyright (C) 2022-2023 and is owned by Tenable, Inc. or an Affiliate thereof.\");\n\n script_dependencies(\"nutanix_collect.nasl\");\n script_require_keys(\"Host/Nutanix/Data/lts\", \"Host/Nutanix/Data/Service\", \"Host/Nutanix/Data/Version\", \"Host/Nutanix/Data/arch\");\n\n exit(0);\n}\n\ninclude('vcf.inc');\ninclude('vcf_extras.inc');\n\nvar app_info = vcf::nutanix::get_app_info();\n\nvar constraints = [\n { 'fixed_version' : '5.17.1.5', 'product' : 'AOS', 'fixed_display' : 'Upgrade the AOS install to 5.17.1.5 or higher.', 'lts' : FALSE },\n { 'fixed_version' : '5.17.1.5', 'product' : 'NDFS', 'fixed_display' : 'Upgrade the AOS install to 5.17.1.5 or higher.', 'lts' : FALSE }\n];\n\nvcf::nutanix::check_version_and_report(app_info:app_info, constraints:constraints, severity:SECURITY_HOLE);\n", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2023-09-23T05:08:18", "description": "The remote NewStart CGSL host, running version MAIN 6.02, has dbus packages installed that are affected by multiple vulnerabilities:\n\n - Unspecified vulnerability in the match_rule_equal function in bus/signals.c in D-Bus before 1.0.2 allows local applications to remove match rules for other applications and cause a denial of service (lost process messages). (CVE-2006-6107)\n\n - dbus-daemon in D-Bus before 1.0.3, and 1.1.x before 1.1.20, recognizes send_interface attributes in allow directives in the security policy only for fully qualified method calls, which allows local users to bypass intended access restrictions via a method call with a NULL interface. (CVE-2008-0595)\n\n - The _dbus_validate_signature_with_reason function (dbus-marshal-validate.c) in D-Bus (aka DBus) before 1.2.14 uses incorrect logic to validate a basic type, which allows remote attackers to spoof a signature via a crafted key. NOTE: this is due to an incorrect fix for CVE-2008-3834. (CVE-2009-1189)\n\n - libdbus 1.5.x and earlier, when used in setuid or other privileged programs in X.org and possibly other products, allows local users to gain privileges and execute arbitrary code via the DBUS_SYSTEM_BUS_ADDRESS environment variable. NOTE: libdbus maintainers state that this is a vulnerability in the applications that do not cleanse environment variables, not in libdbus itself: we do not support use of libdbus in setuid binaries that do not sanitize their environment before their first call into libdbus.\n (CVE-2012-3524)\n\n - The _dbus_printf_string_upper_bound function in dbus/dbus-sysdeps-unix.c in D-Bus (aka DBus) 1.4.x before 1.4.26, 1.6.x before 1.6.12, and 1.7.x before 1.7.4 allows local users to cause a denial of service (service crash) via a crafted message. (CVE-2013-2168)\n\n - The dbus-daemon in D-Bus 1.2.x through 1.4.x, 1.6.x before 1.6.20, and 1.8.x before 1.8.4, sends an AccessDenied error to the service instead of a client when the client is prohibited from accessing the service, which allows local users to cause a denial of service (initialization failure and exit) or possibly conduct a side-channel attack via a D-Bus message to an inactive service. (CVE-2014-3477)\n\n - dbus 1.3.0 before 1.6.22 and 1.8.x before 1.8.6 allows local users to cause a denial of service (disconnect) via a certain sequence of crafted messages that cause the dbus-daemon to forward a message containing an invalid file descriptor. (CVE-2014-3533)\n\n - Off-by-one error in D-Bus 1.3.0 through 1.6.x before 1.6.24 and 1.8.x before 1.8.8, when running on a 64-bit system and the max_message_unix_fds limit is set to an odd number, allows local users to cause a denial of service (dbus-daemon crash) or possibly execute arbitrary code by sending one more file descriptor than the limit, which triggers a heap-based buffer overflow or an assertion failure.\n (CVE-2014-3635)\n\n - D-Bus 1.3.0 through 1.6.x before 1.6.24 and 1.8.x before 1.8.8 allows local users to (1) cause a denial of service (prevention of new connections and connection drop) by queuing the maximum number of file descriptors or (2) cause a denial of service (disconnect) via multiple messages that combine to have more than the allowed number of file descriptors for a single sendmsg call. (CVE-2014-3636)\n\n - D-Bus 1.3.0 through 1.6.x before 1.6.24 and 1.8.x before 1.8.8 does not properly close connections for processes that have terminated, which allows local users to cause a denial of service via a D-bus message containing a D-Bus connection file descriptor. (CVE-2014-3637)\n\n - The bus_connections_check_reply function in config-parser.c in D-Bus before 1.6.24 and 1.8.x before 1.8.8 allows local users to cause a denial of service (CPU consumption) via a large number of method calls.\n (CVE-2014-3638)\n\n - The dbus-daemon in D-Bus before 1.6.24 and 1.8.x before 1.8.8 does not properly close old connections, which allows local users to cause a denial of service (incomplete connection consumption and prevention of new connections) via a large number of incomplete connections. (CVE-2014-3639)\n\n - D-Bus 1.3.0 through 1.6.x before 1.6.26, 1.8.x before 1.8.10, and 1.9.x before 1.9.2 allows local users to cause a denial of service (prevention of new connections and connection drop) by queuing the maximum number of file descriptors. NOTE: this vulnerability exists because of an incomplete fix for CVE-2014-3636.1. (CVE-2014-7824)\n\n - D-Bus 1.4.x through 1.6.x before 1.6.30, 1.8.x before 1.8.16, and 1.9.x before 1.9.10 does not validate the source of ActivationFailure signals, which allows local users to cause a denial of service (activation failure error returned) by leveraging a race condition involving sending an ActivationFailure signal before systemd responds. (CVE-2015-0245)\n\n - An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus- daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. (CVE-2020-12049)\n\nNote that Nessus has not tested for these issues but has instead relied only on the application's self-reported version number.", "cvss3": {}, "published": "2022-11-15T00:00:00", "type": "nessus", "title": "NewStart CGSL MAIN 6.02 : dbus Multiple Vulnerabilities (NS-SA-2022-0093)", "bulletinFamily": "scanner", "cvss2": {}, "cvelist": ["CVE-2006-6107", "CVE-2008-0595", "CVE-2008-3834", "CVE-2009-1189", "CVE-2012-3524", "CVE-2013-2168", "CVE-2014-3477", "CVE-2014-3533", "CVE-2014-3635", "CVE-2014-3636", "CVE-2014-3637", "CVE-2014-3638", "CVE-2014-3639", "CVE-2014-7824", "CVE-2015-0245", "CVE-2020-12049"], "modified": "2022-11-16T00:00:00", "cpe": ["p-cpe:/a:zte:cgsl_main:dbus", "p-cpe:/a:zte:cgsl_main:dbus-common", "p-cpe:/a:zte:cgsl_main:dbus-daemon", "p-cpe:/a:zte:cgsl_main:dbus-devel", "p-cpe:/a:zte:cgsl_main:dbus-libs", "p-cpe:/a:zte:cgsl_main:dbus-tools", "p-cpe:/a:zte:cgsl_main:dbus-x11", "cpe:/o:zte:cgsl_main:6"], "id": "NEWSTART_CGSL_NS-SA-2022-0093_DBUS.NASL", "href": "https://www.tenable.com/plugins/nessus/167488", "sourceData": "#%NASL_MIN_LEVEL 80900\n##\n# (C) Tenable, Inc.\n#\n# The descriptive text and package checks in this plugin were\n# extracted from ZTE advisory NS-SA-2022-0093. The text\n# itself is copyright (C) ZTE, Inc.\n##\n\ninclude('compat.inc');\n\nif (description)\n{\n script_id(167488);\n script_version(\"1.3\");\n script_set_attribute(attribute:\"plugin_modification_date\", value:\"2022/11/16\");\n\n script_cve_id(\n \"CVE-2006-6107\",\n \"CVE-2008-0595\",\n \"CVE-2009-1189\",\n \"CVE-2012-3524\",\n \"CVE-2013-2168\",\n \"CVE-2014-3477\",\n \"CVE-2014-3533\",\n \"CVE-2014-3635\",\n \"CVE-2014-3636\",\n \"CVE-2014-3637\",\n \"CVE-2014-3638\",\n \"CVE-2014-3639\",\n \"CVE-2014-7824\",\n \"CVE-2015-0245\",\n \"CVE-2020-12049\"\n );\n\n script_name(english:\"NewStart CGSL MAIN 6.02 : dbus Multiple Vulnerabilities (NS-SA-2022-0093)\");\n\n script_set_attribute(attribute:\"synopsis\", value:\n\"The remote NewStart CGSL host is affected by multiple vulnerabilities.\");\n script_set_attribute(attribute:\"description\", value:\n\"The remote NewStart CGSL host, running version MAIN 6.02, has dbus packages installed that are affected by multiple\nvulnerabilities:\n\n - Unspecified vulnerability in the match_rule_equal function in bus/signals.c in D-Bus before 1.0.2 allows\n local applications to remove match rules for other applications and cause a denial of service (lost\n process messages). 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NOTE: libdbus maintainers state that this is a vulnerability in the applications\n that do not cleanse environment variables, not in libdbus itself: we do not support use of libdbus in\n setuid binaries that do not sanitize their environment before their first call into libdbus.\n (CVE-2012-3524)\n\n - The _dbus_printf_string_upper_bound function in dbus/dbus-sysdeps-unix.c in D-Bus (aka DBus) 1.4.x before\n 1.4.26, 1.6.x before 1.6.12, and 1.7.x before 1.7.4 allows local users to cause a denial of service\n (service crash) via a crafted message. (CVE-2013-2168)\n\n - The dbus-daemon in D-Bus 1.2.x through 1.4.x, 1.6.x before 1.6.20, and 1.8.x before 1.8.4, sends an\n AccessDenied error to the service instead of a client when the client is prohibited from accessing the\n service, which allows local users to cause a denial of service (initialization failure and exit) or\n possibly conduct a side-channel attack via a D-Bus message to an inactive service. 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It is, therefore, affected by multiple vulnerabilities as referenced in the NXSA-AOS-5.17.1.3 advisory.\n\n - An issue was discovered in the Linux kernel before 4.14.11. A double free may be caused by the function allocate_trace_buffer in the file kernel/trace/trace.c. (CVE-2017-18595)\n\n - In the Linux kernel 5.4.0-rc2, there is a use-after-free (read) in the __blk_add_trace function in kernel/trace/blktrace.c (which is used to fill out a blk_io_trace structure and place it in a per-cpu sub- buffer). (CVE-2019-19768)\n\n - A NULL pointer dereference flaw was found in the Linux kernel's SELinux subsystem in versions before 5.7.\n This flaw occurs while importing the Commercial IP Security Option (CIPSO) protocol's category bitmap into the SELinux extensible bitmap via the' ebitmap_netlbl_import' routine. While processing the CIPSO restricted bitmap tag in the 'cipso_v4_parsetag_rbm' routine, it sets the security attribute to indicate that the category bitmap is present, even if it has not been allocated. This issue leads to a NULL pointer dereference issue while importing the same category bitmap into SELinux. This flaw allows a remote network user to crash the system kernel, resulting in a denial of service. (CVE-2020-10711)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows an off-path attacker to block unauthenticated synchronization via a server mode packet with a spoofed source IP address, because transmissions are rescheduled even when a packet lacks a valid origin timestamp. (CVE-2020-11868)\n\n - An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus- daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. (CVE-2020-12049)\n\n - The VFIO PCI driver in the Linux kernel through 5.6.13 mishandles attempts to access disabled memory space. (CVE-2020-12888)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows remote attackers to cause a denial of service (daemon exit or system time change) by predicting transmit timestamps for use in spoofed packets. The victim must be relying on unauthenticated IPv4 time sources. There must be an off-path attacker who can query time from the victim's ntpd instance. (CVE-2020-13817)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14556)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via TLS to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14577)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u261 and 8u251; Java SE Embedded: 8u251. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14578, CVE-2020-14579)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in takeover of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-14583)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: 2D). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in unauthorized creation, deletion or modification access to critical data or all Java SE, Java SE Embedded accessible data. Note:\n This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-14593)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JAXP). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data. Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-14621)\n\n - When responding to new h2c connection requests, Apache Tomcat versions 10.0.0-M1 to 10.0.0, 9.0.0.M1 to 9.0.41 and 8.5.0 to 8.5.61 could duplicate request headers and a limited amount of request body from one request to another meaning user A and user B could both see the results of user A's request.\n (CVE-2021-25122)\n\n - The fix for CVE-2020-9484 was incomplete. When using Apache Tomcat 10.0.0-M1 to 10.0.0, 9.0.0.M1 to 9.0.41, 8.5.0 to 8.5.61 or 7.0.0. to 7.0.107 with a configuration edge case that was highly unlikely to be used, the Tomcat instance was still vulnerable to CVE-2020-9494. Note that both the previously published prerequisites for CVE-2020-9484 and the previously published mitigations for CVE-2020-9484 also apply to this issue. 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Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a\n person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may\n significantly impact additional products. Successful attacks of this vulnerability can result in takeover\n of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients\n running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code\n (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability\n does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code\n installed by an administrator). (CVE-2020-14583)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: 2D). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other\n than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly\n impact additional products. Successful attacks of this vulnerability can result in unauthorized creation,\n deletion or modification access to critical data or all Java SE, Java SE Embedded accessible data. Note:\n This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start\n applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the\n internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java\n deployments, typically in servers, that load and run only trusted code (e.g., code installed by an\n administrator). (CVE-2020-14593)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JAXP). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n update, insert or delete access to some of Java SE, Java SE Embedded accessible data. Note: This\n vulnerability can only be exploited by supplying data to APIs in the specified Component without using\n Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-14621)\n\n - When responding to new h2c connection requests, Apache Tomcat versions 10.0.0-M1 to 10.0.0, 9.0.0.M1 to\n 9.0.41 and 8.5.0 to 8.5.61 could duplicate request headers and a limited amount of request body from one\n request to another meaning user A and user B could both see the results of user A's request.\n (CVE-2021-25122)\n\n - The fix for CVE-2020-9484 was incomplete. When using Apache Tomcat 10.0.0-M1 to 10.0.0, 9.0.0.M1 to\n 9.0.41, 8.5.0 to 8.5.61 or 7.0.0. to 7.0.107 with a configuration edge case that was highly unlikely to be\n used, the Tomcat instance was still vulnerable to CVE-2020-9494. Note that both the previously published\n prerequisites for CVE-2020-9484 and the previously published mitigations for CVE-2020-9484 also apply to\n this issue. (CVE-2021-25329)\n\nNote that Nessus has not tested for these issues but has instead relied only on the application's self-reported version\nnumber.\");\n # https://portal.nutanix.com/page/documents/security-advisories/release-advisories/details?id=NXSA-AOS-5.17.1.3\n script_set_attribute(attribute:\"see_also\", value:\"http://www.nessus.org/u?1109d655\");\n script_set_attribute(attribute:\"solution\", value:\n\"Update the Nutanix AOS software to recommended version.\");\n script_set_cvss_base_vector(\"CVSS2#AV:L/AC:L/Au:N/C:C/I:C/A:C\");\n script_set_cvss_temporal_vector(\"CVSS2#E:U/RL:OF/RC:C\");\n script_set_cvss3_base_vector(\"CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:C/C:H/I:H/A:H\");\n script_set_cvss3_temporal_vector(\"CVSS:3.0/E:U/RL:O/RC:C\");\n script_set_attribute(attribute:\"cvss_score_source\", value:\"CVE-2017-18595\");\n script_set_attribute(attribute:\"cvss3_score_source\", value:\"CVE-2020-14583\");\n\n script_set_attribute(attribute:\"exploitability_ease\", value:\"No known exploits are available\");\n script_set_attribute(attribute:\"exploit_available\", value:\"false\");\n\n script_set_attribute(attribute:\"vuln_publication_date\", value:\"2019/09/04\");\n script_set_attribute(attribute:\"patch_publication_date\", value:\"2022/08/24\");\n script_set_attribute(attribute:\"plugin_publication_date\", value:\"2022/09/01\");\n\n script_set_attribute(attribute:\"plugin_type\", value:\"local\");\n script_set_attribute(attribute:\"cpe\", value:\"cpe:/o:nutanix:aos\");\n script_set_attribute(attribute:\"generated_plugin\", value:\"current\");\n script_end_attributes();\n\n script_category(ACT_GATHER_INFO);\n script_family(english:\"Misc.\");\n\n script_copyright(english:\"This script is Copyright (C) 2022-2023 and is owned by Tenable, Inc. or an Affiliate thereof.\");\n\n script_dependencies(\"nutanix_collect.nasl\");\n script_require_keys(\"Host/Nutanix/Data/lts\", \"Host/Nutanix/Data/Service\", \"Host/Nutanix/Data/Version\", \"Host/Nutanix/Data/arch\");\n\n exit(0);\n}\n\ninclude('vcf.inc');\ninclude('vcf_extras.inc');\n\nvar app_info = vcf::nutanix::get_app_info();\n\nvar constraints = [\n { 'fixed_version' : '5.17.1.3', 'product' : 'AOS', 'fixed_display' : 'Upgrade the AOS install to 5.17.1.3 or higher.', 'lts' : FALSE },\n { 'fixed_version' : '5.17.1.3', 'product' : 'NDFS', 'fixed_display' : 'Upgrade the AOS install to 5.17.1.3 or higher.', 'lts' : FALSE }\n];\n\nvcf::nutanix::check_version_and_report(app_info:app_info, constraints:constraints, severity:SECURITY_HOLE);\n", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2023-09-24T16:01:30", "description": "The version of AOS installed on the remote host is prior to 5.15.3. It is, therefore, affected by multiple vulnerabilities as referenced in the NXSA-AOS-5.15.3 advisory.\n\n - Buffer overflow in the XML parser in Mozilla Firefox before 38.0, Firefox ESR 31.x before 31.7, and Thunderbird before 31.7 allows remote attackers to execute arbitrary code by providing a large amount of compressed XML data, a related issue to CVE-2015-1283. (CVE-2015-2716)\n\n - In the Linux kernel before 4.1.4, a buffer overflow occurs when checking userspace params in drivers/media/dvb-frontends/cx24116.c. The maximum size for a DiSEqC command is 6, according to the userspace API. However, the code allows larger values such as 23. (CVE-2015-9289)\n\n - ImageMagick 7.0.7-12 Q16, a CPU exhaustion vulnerability was found in the function ReadDDSInfo in coders/dds.c, which allows attackers to cause a denial of service. (CVE-2017-1000476)\n\n - The ReadXWDImage function in coders\\xwd.c in ImageMagick 7.0.5-6 has a memory leak vulnerability that can cause memory exhaustion via a crafted length (number of color-map entries) field in the header of an XWD file. (CVE-2017-11166)\n\n - In ImageMagick 7.0.6-6, a memory exhaustion vulnerability was found in the function ReadTIFFImage, which allows attackers to cause a denial of service. (CVE-2017-12805)\n\n - In ImageMagick 7.0.6-6, a memory exhaustion vulnerability was found in the function format8BIM, which allows attackers to cause a denial of service. (CVE-2017-12806)\n\n - In Apache httpd 2.0.23 to 2.0.65, 2.2.0 to 2.2.34, and 2.4.0 to 2.4.29, mod_authnz_ldap, if configured with AuthLDAPCharsetConfig, uses the Accept-Language header value to lookup the right charset encoding when verifying the user's credentials. If the header value is not present in the charset conversion table, a fallback mechanism is used to truncate it to a two characters value to allow a quick retry (for example, 'en-US' is truncated to 'en'). A header value of less than two characters forces an out of bound write of one NUL byte to a memory location that is not part of the string. In the worst case, quite unlikely, the process would crash which could be used as a Denial of Service attack. In the more likely case, this memory is already reserved for future use and the issue has no effect at all. (CVE-2017-15710)\n\n - The KEYS subsystem in the Linux kernel before 4.14.6 omitted an access-control check when adding a key to the current task's default request-key keyring via the request_key() system call, allowing a local user to use a sequence of crafted system calls to add keys to a keyring with only Search permission (not Write permission) to that keyring, related to construct_get_dest_keyring() in security/keys/request_key.c.\n (CVE-2017-17807)\n\n - An issue was discovered in ImageMagick 7.0.7. A memory leak vulnerability was found in the function ReadPCDImage in coders/pcd.c, which allow remote attackers to cause a denial of service via a crafted file. (CVE-2017-18251)\n\n - An issue was discovered in ImageMagick 7.0.7. The MogrifyImageList function in MagickWand/mogrify.c allows attackers to cause a denial of service (assertion failure and application exit in ReplaceImageInList) via a crafted file. (CVE-2017-18252)\n\n - An issue was discovered in ImageMagick 7.0.7. A memory leak vulnerability was found in the function WriteGIFImage in coders/gif.c, which allow remote attackers to cause a denial of service via a crafted file. (CVE-2017-18254)\n\n - In ImageMagick 7.0.7-16 Q16 x86_64 2017-12-22, an infinite loop vulnerability was found in the function ReadMIFFImage in coders/miff.c, which allows attackers to cause a denial of service (CPU exhaustion) via a crafted MIFF image file. (CVE-2017-18271)\n\n - In ImageMagick 7.0.7-16 Q16 x86_64 2017-12-22, an infinite loop vulnerability was found in the function ReadTXTImage in coders/txt.c, which allows attackers to cause a denial of service (CPU exhaustion) via a crafted image file that is mishandled in a GetImageIndexInList call. (CVE-2017-18273)\n\n - An issue was discovered in the Linux kernel before 4.14.11. A double free may be caused by the function allocate_trace_buffer in the file kernel/trace/trace.c. (CVE-2017-18595)\n\n - avahi-daemon in Avahi through 0.6.32 and 0.7 inadvertently responds to IPv6 unicast queries with source addresses that are not on-link, which allows remote attackers to cause a denial of service (traffic amplification) and may cause information leakage by obtaining potentially sensitive information from the responding device via port-5353 UDP packets. NOTE: this may overlap CVE-2015-2809. (CVE-2017-6519)\n\n - In ImageMagick 7.0.7-28, there is an infinite loop in the ReadOneMNGImage function of the coders/png.c file. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted mng file. (CVE-2018-10177)\n\n - The do_core_note function in readelf.c in libmagic.a in file 5.33 allows remote attackers to cause a denial of service (out-of-bounds read and application crash) via a crafted ELF file. (CVE-2018-10360)\n\n - ImageMagick version 7.0.7-28 contains a memory leak in WriteTIFFImage in coders/tiff.c. (CVE-2018-10804)\n\n - ImageMagick version 7.0.7-28 contains a memory leak in ReadYCBCRImage in coders/ycbcr.c. (CVE-2018-10805)\n\n - A flaw was found in polkit before version 0.116. The implementation of the polkit_backend_interactive_authority_check_authorization function in polkitd allows to test for authentication and trigger authentication of unrelated processes owned by other users. This may result in a local DoS and information disclosure. (CVE-2018-1116)\n\n - In ImageMagick 7.0.7-20 Q16 x86_64, a memory leak vulnerability was found in the function ReadDCMImage in coders/dcm.c, which allows attackers to cause a denial of service via a crafted DCM image file.\n (CVE-2018-11656)\n\n - In ImageMagick 7.0.8-3 Q16, ReadBMPImage and WriteBMPImage in coders/bmp.c allow attackers to cause an out of bounds write via a crafted file. (CVE-2018-12599)\n\n - In ImageMagick 7.0.8-3 Q16, ReadDIBImage and WriteDIBImage in coders/dib.c allow attackers to cause an out of bounds write via a crafted file. (CVE-2018-12600)\n\n - A specially crafted request could have crashed the Apache HTTP Server prior to version 2.4.30, due to an out of bound access after a size limit is reached by reading the HTTP header. This vulnerability is considered very hard if not impossible to trigger in non-debug mode (both log and build level), so it is classified as low risk for common server usage. (CVE-2018-1301)\n\n - In ImageMagick 7.0.8-4, there is a memory leak in the XMagickCommand function in MagickCore/animate.c.\n (CVE-2018-13153)\n\n - ImageMagick 7.0.8-4 has a memory leak for a colormap in WriteMPCImage in coders/mpc.c. (CVE-2018-14434)\n\n - ImageMagick 7.0.8-4 has a memory leak in DecodeImage in coders/pcd.c. (CVE-2018-14435)\n\n - ImageMagick 7.0.8-4 has a memory leak in ReadMIFFImage in coders/miff.c. (CVE-2018-14436)\n\n - ImageMagick 7.0.8-4 has a memory leak in parse8BIM in coders/meta.c. (CVE-2018-14437)\n\n - GNOME Evolution through 3.28.2 is prone to OpenPGP signatures being spoofed for arbitrary messages using a specially crafted email that contains a valid signature from the entity to be impersonated as an attachment. (CVE-2018-15587)\n\n - In ImageMagick 7.0.8-11 Q16, a tiny input file 0x50 0x36 0x36 0x36 0x36 0x4c 0x36 0x38 0x36 0x36 0x36 0x36 0x36 0x36 0x1f 0x35 0x50 0x00 can result in a hang of several minutes during which CPU and memory resources are consumed until ultimately an attempted large memory allocation fails. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted file. (CVE-2018-15607)\n\n - In ImageMagick before 7.0.8-8, a NULL pointer dereference exists in the CheckEventLogging function in MagickCore/log.c. (CVE-2018-16328)\n\n - In ImageMagick 7.0.7-29 and earlier, a missing NULL check in ReadOneJNGImage in coders/png.c allows an attacker to cause a denial of service (WriteBlob assertion failure and application exit) via a crafted file. (CVE-2018-16749)\n\n - In ImageMagick 7.0.7-29 and earlier, a memory leak in the formatIPTCfromBuffer function in coders/meta.c was found. (CVE-2018-16750)\n\n - In Apache HTTP Server 2.4 release 2.4.37 and prior, mod_session checks the session expiry time before decoding the session. This causes session expiry time to be ignored for mod_session_cookie sessions since the expiry time is loaded when the session is decoded. (CVE-2018-17199)\n\n - snmp_oid_compare in snmplib/snmp_api.c in Net-SNMP before 5.8 has a NULL Pointer Exception bug that can be used by an unauthenticated attacker to remotely cause the instance to crash via a crafted UDP packet, resulting in Denial of Service. (CVE-2018-18066)\n\n - There is a memory leak in the function WriteMSLImage of coders/msl.c in ImageMagick 7.0.8-13 Q16, and the function ProcessMSLScript of coders/msl.c in GraphicsMagick before 1.3.31. (CVE-2018-18544)\n\n - The function hso_get_config_data in drivers/net/usb/hso.c in the Linux kernel through 4.19.8 reads if_num from the USB device (as a u8) and uses it to index a small array, resulting in an object out-of-bounds (OOB) read that potentially allows arbitrary read in the kernel address space. (CVE-2018-19985)\n\n - An issue was discovered in the Linux kernel before 4.19.9. The USB subsystem mishandles size checks during the reading of an extra descriptor, related to __usb_get_extra_descriptor in drivers/usb/core/usb.c.\n (CVE-2018-20169)\n\n - In coders/bmp.c in ImageMagick before 7.0.8-16, an input file can result in an infinite loop and hang, with high CPU and memory consumption. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted file. (CVE-2018-20467)\n\n - http.cookiejar.DefaultPolicy.domain_return_ok in Lib/http/cookiejar.py in Python before 3.7.3 does not correctly validate the domain: it can be tricked into sending existing cookies to the wrong server. An attacker may abuse this flaw by using a server with a hostname that has another valid hostname as a suffix (e.g., pythonicexample.com to steal cookies for example.com). When a program uses http.cookiejar.DefaultPolicy and tries to do an HTTP connection to an attacker-controlled server, existing cookies can be leaked to the attacker. This affects 2.x through 2.7.16, 3.x before 3.4.10, 3.5.x before 3.5.7, 3.6.x before 3.6.9, and 3.7.x before 3.7.3. (CVE-2018-20852)\n\n - In macOS High Sierra before 10.13.5, an issue existed in CUPS. This issue was addressed with improved access restrictions. (CVE-2018-4180, CVE-2018-4181)\n\n - managed-keys is a feature which allows a BIND resolver to automatically maintain the keys used by trust anchors which operators configure for use in DNSSEC validation. Due to an error in the managed-keys feature it is possible for a BIND server which uses managed-keys to exit due to an assertion failure if, during key rollover, a trust anchor's keys are replaced with keys which use an unsupported algorithm.\n Versions affected: BIND 9.9.0 -> 9.10.8-P1, 9.11.0 -> 9.11.5-P1, 9.12.0 -> 9.12.3-P1, and versions 9.9.3-S1 -> 9.11.5-S3 of BIND 9 Supported Preview Edition. Versions 9.13.0 -> 9.13.6 of the 9.13 development branch are also affected. Versions prior to BIND 9.9.0 have not been evaluated for vulnerability to CVE-2018-5745. (CVE-2018-5745)\n\n - In the tun subsystem in the Linux kernel before 4.13.14, dev_get_valid_name is not called before register_netdevice. This allows local users to cause a denial of service (NULL pointer dereference and panic) via an ioctl(TUNSETIFF) call with a dev name containing a / character. This is similar to CVE-2013-4343. (CVE-2018-7191)\n\n - WriteEPTImage in coders/ept.c in ImageMagick 7.0.7-25 Q16 allows remote attackers to cause a denial of service (MagickCore/memory.c double free and application crash) or possibly have unspecified other impact via a crafted file. (CVE-2018-8804)\n\n - ImageMagick 7.0.7-26 Q16 has excessive iteration in the DecodeLabImage and EncodeLabImage functions (coders/tiff.c), which results in a hang (tens of minutes) with a tiny PoC file. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted tiff file. (CVE-2018-9133)\n\n - An off-by-one read vulnerability was discovered in ImageMagick before version 7.0.7-28 in the formatIPTCfromBuffer function in coders/meta.c. A local attacker may use this flaw to read beyond the end of the buffer or to crash the program. (CVE-2019-10131)\n\n - A flaw was found in the Linux kernel's Bluetooth implementation of UART, all versions kernel 3.x.x before 4.18.0 and kernel 5.x.x. An attacker with local access and write permissions to the Bluetooth hardware could use this flaw to issue a specially crafted ioctl function call and cause the system to crash.\n (CVE-2019-10207)\n\n - In the Linux kernel before 5.1.7, a device can be tracked by an attacker using the IP ID values the kernel produces for connection-less protocols (e.g., UDP and ICMP). When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash collisions (of indices to the counter array) and thereby obtain the hashing key (via enumeration). An attack may be conducted by hosting a crafted web page that uses WebRTC or gQUIC to force UDP traffic to attacker-controlled IP addresses. (CVE-2019-10638)\n\n - The Linux kernel 4.x (starting from 4.1) and 5.x before 5.0.8 allows Information Exposure (partial kernel address disclosure), leading to a KASLR bypass. Specifically, it is possible to extract the KASLR kernel image offset using the IP ID values the kernel produces for connection-less protocols (e.g., UDP and ICMP). When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash collisions (of indices to the counter array) and thereby obtain the hashing key (via enumeration). This key contains enough bits from a kernel address (of a static variable) so when the key is extracted (via enumeration), the offset of the kernel image is exposed. This attack can be carried out remotely, by the attacker forcing the target device to send UDP or ICMP (or certain other) traffic to attacker-controlled IP addresses. Forcing a server to send UDP traffic is trivial if the server is a DNS server. ICMP traffic is trivial if the server answers ICMP Echo requests (ping). For client targets, if the target visits the attacker's web page, then WebRTC or gQUIC can be used to force UDP traffic to attacker-controlled IP addresses. NOTE: this attack against KASLR became viable in 4.1 because IP ID generation was changed to have a dependency on an address associated with a network namespace. (CVE-2019-10639)\n\n - In ImageMagick 7.0.8-36 Q16, there is a heap-based buffer over-read in the function WriteTIFFImage of coders/tiff.c, which allows an attacker to cause a denial of service or information disclosure via a crafted image file. (CVE-2019-10650)\n\n - The Linux kernel before 4.8 allows local users to bypass ASLR on setuid programs (such as /bin/su) because install_exec_creds() is called too late in load_elf_binary() in fs/binfmt_elf.c, and thus the ptrace_may_access() check has a race condition when reading /proc/pid/stat. (CVE-2019-11190)\n\n - The cineon parsing component in ImageMagick 7.0.8-26 Q16 allows attackers to cause a denial-of-service (uncontrolled resource consumption) by crafting a Cineon image with an incorrect claimed image size. This occurs because ReadCINImage in coders/cin.c lacks a check for insufficient image data in a file.\n (CVE-2019-11470)\n\n - ReadXWDImage in coders/xwd.c in the XWD image parsing component of ImageMagick 7.0.8-41 Q16 allows attackers to cause a denial-of-service (divide-by-zero error) by crafting an XWD image file in which the header indicates neither LSB first nor MSB first. (CVE-2019-11472)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer over-read in the function WriteTIFFImage of coders/tiff.c, which allows an attacker to cause a denial of service or possibly information disclosure via a crafted image file. (CVE-2019-11597)\n\n - In ImageMagick 7.0.8-40 Q16, there is a heap-based buffer over-read in the function WritePNMImage of coders/pnm.c, which allows an attacker to cause a denial of service or possibly information disclosure via a crafted image file. This is related to SetGrayscaleImage in MagickCore/quantize.c. (CVE-2019-11598)\n\n - The do_hidp_sock_ioctl function in net/bluetooth/hidp/sock.c in the Linux kernel before 5.0.15 allows a local user to obtain potentially sensitive information from kernel stack memory via a HIDPCONNADD command, because a name field may not end with a '\\0' character. (CVE-2019-11884)\n\n - ** DISPUTED ** An issue was discovered in drm_load_edid_firmware in drivers/gpu/drm/drm_edid_load.c in the Linux kernel through 5.1.5. There is an unchecked kstrdup of fwstr, which might allow an attacker to cause a denial of service (NULL pointer dereference and system crash). NOTE: The vendor disputes this issues as not being a vulnerability because kstrdup() returning NULL is handled sufficiently and there is no chance for a NULL pointer dereference. (CVE-2019-12382)\n\n - A NULL pointer dereference in the function ReadPANGOImage in coders/pango.c and the function ReadVIDImage in coders/vid.c in ImageMagick 7.0.8-34 allows remote attackers to cause a denial of service via a crafted image. (CVE-2019-12974)\n\n - ImageMagick 7.0.8-34 has a memory leak vulnerability in the WriteDPXImage function in coders/dpx.c.\n (CVE-2019-12975)\n\n - ImageMagick 7.0.8-34 has a memory leak in the ReadPCLImage function in coders/pcl.c. (CVE-2019-12976)\n\n - ImageMagick 7.0.8-34 has a use of uninitialized value vulnerability in the ReadPANGOImage function in coders/pango.c. (CVE-2019-12978)\n\n - ImageMagick 7.0.8-34 has a use of uninitialized value vulnerability in the SyncImageSettings function in MagickCore/image.c. This is related to AcquireImage in magick/image.c. (CVE-2019-12979)\n\n - ImageMagick before 7.0.8-50 has a memory leak vulnerability in the function ReadBMPImage in coders/bmp.c.\n (CVE-2019-13133)\n\n - ImageMagick before 7.0.8-50 has a memory leak vulnerability in the function ReadVIFFImage in coders/viff.c. (CVE-2019-13134)\n\n - ImageMagick before 7.0.8-50 has a use of uninitialized value vulnerability in the function ReadCUTImage in coders/cut.c. (CVE-2019-13135)\n\n - Info-ZIP UnZip 6.0 mishandles the overlapping of files inside a ZIP container, leading to denial of service (resource consumption), aka a better zip bomb issue. (CVE-2019-13232)\n\n - In arch/x86/lib/insn-eval.c in the Linux kernel before 5.1.9, there is a use-after-free for access to an LDT entry because of a race condition between modify_ldt() and a #BR exception for an MPX bounds violation. (CVE-2019-13233)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer over-read at MagickCore/threshold.c in AdaptiveThresholdImage because a width of zero is mishandled. (CVE-2019-13295)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer over-read at MagickCore/threshold.c in AdaptiveThresholdImage because a height of zero is mishandled. (CVE-2019-13297)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer overflow at MagickCore/statistic.c in EvaluateImages because of mishandling columns. (CVE-2019-13300)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks in AcquireMagickMemory because of an AnnotateImage error.\n (CVE-2019-13301)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of a misplaced assignment. (CVE-2019-13304)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of a misplaced strncpy and an off-by-one error. (CVE-2019-13305)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of off-by-one errors. (CVE-2019-13306)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer overflow at MagickCore/statistic.c in EvaluateImages because of mishandling rows. (CVE-2019-13307)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of mishandling the NoSuchImage error in CLIListOperatorImages in MagickWand/operation.c. (CVE-2019-13309)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of an error in MagickWand/mogrify.c. (CVE-2019-13310)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of a wand/mogrify.c error.\n (CVE-2019-13311)\n\n - ImageMagick 7.0.8-54 Q16 allows Division by Zero in RemoveDuplicateLayers in MagickCore/layer.c.\n (CVE-2019-13454)\n\n - In the Linux kernel through 5.2.1 on the powerpc platform, when hardware transactional memory is disabled, a local user can cause a denial of service (TM Bad Thing exception and system crash) via a sigreturn() system call that sends a crafted signal frame. This affects arch/powerpc/kernel/signal_32.c and arch/powerpc/kernel/signal_64.c. (CVE-2019-13648)\n\n - In the Linux kernel before 5.2.3, set_geometry in drivers/block/floppy.c does not validate the sect and head fields, as demonstrated by an integer overflow and out-of-bounds read. It can be triggered by an unprivileged local user when a floppy disk has been inserted. NOTE: QEMU creates the floppy device by default. (CVE-2019-14283)\n\n - A vulnerability was found in Linux Kernel, where a Heap Overflow was found in mwifiex_set_wmm_params() function of Marvell Wifi Driver. (CVE-2019-14815)\n\n - In ImageMagick 7.x before 7.0.8-42 and 6.x before 6.9.10-42, there is a use after free vulnerability in the UnmapBlob function that allows an attacker to cause a denial of service by sending a crafted file.\n (CVE-2019-14980)\n\n - In ImageMagick 7.x before 7.0.8-41 and 6.x before 6.9.10-41, there is a divide-by-zero vulnerability in the MeanShiftImage function. It allows an attacker to cause a denial of service by sending a crafted file.\n (CVE-2019-14981)\n\n - An issue was discovered in drivers/scsi/qedi/qedi_dbg.c in the Linux kernel before 5.1.12. In the qedi_dbg_* family of functions, there is an out-of-bounds read. (CVE-2019-15090)\n\n - The XWD image (X Window System window dumping file) parsing component in ImageMagick 7.0.8-41 Q16 allows attackers to cause a denial-of-service (application crash resulting from an out-of-bounds Read) in ReadXWDImage in coders/xwd.c by crafting a corrupted XWD image file, a different vulnerability than CVE-2019-11472. (CVE-2019-15139)\n\n - coders/mat.c in ImageMagick 7.0.8-43 Q16 allows remote attackers to cause a denial of service (use-after- free and application crash) or possibly have unspecified other impact by crafting a Matlab image file that is mishandled in ReadImage in MagickCore/constitute.c. (CVE-2019-15140)\n\n - WriteTIFFImage in coders/tiff.c in ImageMagick 7.0.8-43 Q16 allows attackers to cause a denial-of-service (application crash resulting from a heap-based buffer over-read) via a crafted TIFF image file, related to TIFFRewriteDirectory, TIFFWriteDirectory, TIFFWriteDirectorySec, and TIFFWriteDirectoryTagColormap in tif_dirwrite.c of LibTIFF. NOTE: this occurs because of an incomplete fix for CVE-2019-11597.\n (CVE-2019-15141)\n\n - An issue was discovered in the Linux kernel before 5.1.17. There is a NULL pointer dereference caused by a malicious USB device in the sound/usb/line6/pcm.c driver. (CVE-2019-15221)\n\n - An issue was discovered in the Linux kernel before 5.0.1. There is a memory leak in register_queue_kobjects() in net/core/net-sysfs.c, which will cause denial of service. (CVE-2019-15916)\n\n - An issue was discovered in Python through 2.7.16, 3.x through 3.5.7, 3.6.x through 3.6.9, and 3.7.x through 3.7.4. The email module wrongly parses email addresses that contain multiple @ characters. An application that uses the email module and implements some kind of checks on the From/To headers of a message could be tricked into accepting an email address that should be denied. An attack may be the same as in CVE-2019-11340; however, this CVE applies to Python more generally. (CVE-2019-16056)\n\n - ImageMagick 7.0.8-35 has a memory leak in magick/xwindow.c, related to XCreateImage. (CVE-2019-16708)\n\n - ImageMagick 7.0.8-35 has a memory leak in coders/dps.c, as demonstrated by XCreateImage. (CVE-2019-16709)\n\n - ImageMagick 7.0.8-35 has a memory leak in coders/dot.c, as demonstrated by AcquireMagickMemory in MagickCore/memory.c. (CVE-2019-16710)\n\n - ImageMagick 7.0.8-40 has a memory leak in Huffman2DEncodeImage in coders/ps2.c. (CVE-2019-16711)\n\n - ImageMagick 7.0.8-43 has a memory leak in Huffman2DEncodeImage in coders/ps3.c, as demonstrated by WritePS3Image. (CVE-2019-16712)\n\n - ImageMagick 7.0.8-43 has a memory leak in coders/dot.c, as demonstrated by PingImage in MagickCore/constitute.c. (CVE-2019-16713)\n\n - An issue was discovered in net/wireless/nl80211.c in the Linux kernel through 5.2.17. It does not check the length of variable elements in a beacon head, leading to a buffer overflow. (CVE-2019-16746)\n\n - An issue was discovered in Rsyslog v8.1908.0. contrib/pmaixforwardedfrom/pmaixforwardedfrom.c has a heap overflow in the parser for AIX log messages. The parser tries to locate a log message delimiter (in this case, a space or a colon) but fails to account for strings that do not satisfy this constraint. If the string does not match, then the variable lenMsg will reach the value zero and will skip the sanity check that detects invalid log messages. The message will then be considered valid, and the parser will eat up the nonexistent colon delimiter. In doing so, it will decrement lenMsg, a signed integer, whose value was zero and now becomes minus one. The following step in the parser is to shift left the contents of the message. To do this, it will call memmove with the right pointers to the target and destination strings, but the lenMsg will now be interpreted as a huge value, causing a heap overflow. (CVE-2019-17041)\n\n - An issue was discovered in Rsyslog v8.1908.0. contrib/pmcisconames/pmcisconames.c has a heap overflow in the parser for Cisco log messages. The parser tries to locate a log message delimiter (in this case, a space or a colon), but fails to account for strings that do not satisfy this constraint. If the string does not match, then the variable lenMsg will reach the value zero and will skip the sanity check that detects invalid log messages. The message will then be considered valid, and the parser will eat up the nonexistent colon delimiter. In doing so, it will decrement lenMsg, a signed integer, whose value was zero and now becomes minus one. The following step in the parser is to shift left the contents of the message.\n To do this, it will call memmove with the right pointers to the target and destination strings, but the lenMsg will now be interpreted as a huge value, causing a heap overflow. (CVE-2019-17042)\n\n - ImageMagick before 7.0.8-54 has a heap-based buffer overflow in ReadPSInfo in coders/ps.c.\n (CVE-2019-17540)\n\n - ImageMagick before 7.0.8-55 has a use-after-free in DestroyStringInfo in MagickCore/string.c because the error manager is mishandled in coders/jpeg.c. (CVE-2019-17541)\n\n - The Linux kernel before 5.4.1 on powerpc allows Information Exposure because the Spectre-RSB mitigation is not in place for all applicable CPUs, aka CID-39e72bf96f58. This is related to arch/powerpc/kernel/entry_64.S and arch/powerpc/kernel/security.c. (CVE-2019-18660)\n\n - In the Linux kernel before 5.2.10, there is a use-after-free bug that can be caused by a malicious USB device in the drivers/hid/usbhid/hiddev.c driver, aka CID-9c09b214f30e. (CVE-2019-19527)\n\n - In the Linux kernel 5.4.0-rc2, there is a use-after-free (read) in the __blk_add_trace function in kernel/trace/blktrace.c (which is used to fill out a blk_io_trace structure and place it in a per-cpu sub- buffer). (CVE-2019-19768)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer overflow in the function WriteSGIImage of coders/sgi.c. (CVE-2019-19948)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer over-read in the function WritePNGImage of coders/png.c, related to Magick_png_write_raw_profile and LocaleNCompare. (CVE-2019-19949)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server : Pluggable Auth).\n Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable vulnerability allows high privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2737)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Security: Privileges).\n Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable vulnerability allows high privileged attacker with logon to the infrastructure where MySQL Server executes to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server as well as unauthorized update, insert or delete access to some of MySQL Server accessible data. (CVE-2019-2739)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: XML). Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable vulnerability allows low privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2740)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Parser). Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable vulnerability allows low privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2805)\n\n - It was discovered that the gnome-shell lock screen since version 3.15.91 did not properly restrict all contextual actions. An attacker with physical access to a locked workstation could invoke certain keyboard shortcuts, and potentially other actions. (CVE-2019-3820)\n\n - It was discovered evolution-ews before 3.31.3 does not check the validity of SSL certificates. An attacker could abuse this flaw to get confidential information by tricking the user into connecting to a fake server without the user noticing the difference. (CVE-2019-3890)\n\n - A race condition in perf_event_open() allows local attackers to leak sensitive data from setuid programs.\n As no relevant locks (in particular the cred_guard_mutex) are held during the ptrace_may_access() call, it is possible for the specified target task to perform an execve() syscall with setuid execution before perf_event_alloc() actually attaches to it, allowing an attacker to bypass the ptrace_may_access() check and the perf_event_exit_task(current) call that is performed in install_exec_creds() during privileged execve() calls. This issue affects kernel versions before 4.8. (CVE-2019-3901)\n\n - A heap buffer overflow in the TFTP receiving code allows for DoS or arbitrary code execution in libcurl versions 7.19.4 through 7.64.1. (CVE-2019-5436)\n\n - Controls for zone transfers may not be properly applied to Dynamically Loadable Zones (DLZs) if the zones are writable Versions affected: BIND 9.9.0 -> 9.10.8-P1, 9.11.0 -> 9.11.5-P2, 9.12.0 -> 9.12.3-P2, and versions 9.9.3-S1 -> 9.11.5-S3 of BIND 9 Supported Preview Edition. Versions 9.13.0 -> 9.13.6 of the 9.13 development branch are also affected. Versions prior to BIND 9.9.0 have not been evaluated for vulnerability to CVE-2019-6465. (CVE-2019-6465)\n\n - With pipelining enabled each incoming query on a TCP connection requires a similar resource allocation to a query received via UDP or via TCP without pipelining enabled. A client using a TCP-pipelined connection to a server could consume more resources than the server has been provisioned to handle. When a TCP connection with a large number of pipelined queries is closed, the load on the server releasing these multiple resources can cause it to become unresponsive, even for queries that can be answered authoritatively or from cache. (This is most likely to be perceived as an intermittent server problem).\n (CVE-2019-6477)\n\n - In ImageMagick before 7.0.8-25, some memory leaks exist in DecodeImage in coders/pcd.c. (CVE-2019-7175)\n\n - In ImageMagick before 7.0.8-25 and GraphicsMagick through 1.3.31, several memory leaks exist in WritePDFImage in coders/pdf.c. (CVE-2019-7397)\n\n - In ImageMagick before 7.0.8-25, a memory leak exists in WriteDIBImage in coders/dib.c. (CVE-2019-7398)\n\n - The Broadcom brcmfmac WiFi driver prior to commit a4176ec356c73a46c07c181c6d04039fafa34a9f is vulnerable to a frame validation bypass. If the brcmfmac driver receives a firmware event frame from a remote source, the is_wlc_event_frame function will cause this frame to be discarded and unprocessed. If the driver receives the firmware event frame from the host, the appropriate handler is called. This frame validation can be bypassed if the bus used is USB (for instance by a wifi dongle). This can allow firmware event frames from a remote source to be processed. In the worst case scenario, by sending specially-crafted WiFi packets, a remote, unauthenticated attacker may be able to execute arbitrary code on a vulnerable system.\n More typically, this vulnerability will result in denial-of-service conditions. (CVE-2019-9503)\n\n - rbash in Bash before 4.4-beta2 did not prevent the shell user from modifying BASH_CMDS, thus allowing the user to execute any command with the permissions of the shell. (CVE-2019-9924)\n\n - In ImageMagick 7.0.8-35 Q16, there is a stack-based buffer overflow in the function PopHexPixel of coders/ps.c, which allows an attacker to cause a denial of service or code execution via a crafted image file. (CVE-2019-9956)\n\n - A NULL pointer dereference flaw was found in the Linux kernel's SELinux subsystem in versions before 5.7.\n This flaw occurs while importing the Commercial IP Security Option (CIPSO) protocol's category bitmap into the SELinux extensible bitmap via the' ebitmap_netlbl_import' routine. While processing the CIPSO restricted bitmap tag in the 'cipso_v4_parsetag_rbm' routine, it sets the security attribute to indicate that the category bitmap is present, even if it has not been allocated. This issue leads to a NULL pointer dereference issue while importing the same category bitmap into SELinux. This flaw allows a remote network user to crash the system kernel, resulting in a denial of service. (CVE-2020-10711)\n\n - A flaw was found in the Linux Kernel in versions after 4.5-rc1 in the way mremap handled DAX Huge Pages.\n This flaw allows a local attacker with access to a DAX enabled storage to escalate their privileges on the system. (CVE-2020-10757)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows an off-path attacker to block unauthenticated synchronization via a server mode packet with a spoofed source IP address, because transmissions are rescheduled even when a packet lacks a valid origin timestamp. (CVE-2020-11868)\n\n - An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus- daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. (CVE-2020-12049)\n\n - An issue was found in Linux kernel before 5.5.4. The mwifiex_cmd_append_vsie_tlv() function in drivers/net/wireless/marvell/mwifiex/scan.c allows local users to gain privileges or cause a denial of service because of an incorrect memcpy and buffer overflow, aka CID-b70261a288ea. (CVE-2020-12653)\n\n - An issue was found in Linux kernel before 5.5.4. mwifiex_ret_wmm_get_status() in drivers/net/wireless/marvell/mwifiex/wmm.c allows a remote AP to trigger a heap-based buffer overflow because of an incorrect memcpy, aka CID-3a9b153c5591. (CVE-2020-12654)\n\n - The VFIO PCI driver in the Linux kernel through 5.6.13 mishandles attempts to access disabled memory space. (CVE-2020-12888)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows remote attackers to cause a denial of service (daemon exit or system time change) by predicting transmit timestamps for use in spoofed packets. The victim must be relying on unauthenticated IPv4 time sources. There must be an off-path attacker who can query time from the victim's ntpd instance. (CVE-2020-13817)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14556)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via TLS to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14577)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u261 and 8u251; Java SE Embedded: 8u251. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14578, CVE-2020-14579)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in takeover of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-14583)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: 2D). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in unauthorized creation, deletion or modification access to critical data or all Java SE, Java SE Embedded accessible data. Note:\n This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-14593)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JAXP). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data. Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-14621)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Scripting). Supported versions that are affected are Java SE: 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2754, CVE-2020-2755)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Serialization).\n Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded.\n Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2756, CVE-2020-2757)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 11.0.6 and 14. Difficult to exploit vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE accessible data as well as unauthorized read access to a subset of Java SE accessible data. Note: Applies to client and server deployment of Java.\n This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service.\n (CVE-2020-2767)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Security). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2773)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 11.0.6 and 14. Difficult to exploit vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result in unauthorized read access to a subset of Java SE accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2778)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Easily exploitable vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2781)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Lightweight HTTP Server). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded:\n 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-2800)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in takeover of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-2803, CVE-2020-2805)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 11.0.6 and 14. Easily exploitable vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result in unauthorized creation, deletion or modification access to critical data or all Java SE accessible data.\n Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service. (CVE-2020-2816)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Concurrency).\n Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241.\n Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded.\n Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2830)\n\n - It's been found that multiple functions in ipmitool before 1.8.19 neglect proper checking of the data received from a remote LAN party, which may lead to buffer overflows and potentially to remote code execution on the ipmitool side. This is especially dangerous if ipmitool is run as a privileged user. This problem is fixed in version 1.8.19. (CVE-2020-5208)\n\n - A malicious actor who intentionally exploits this lack of effective limitation on the number of fetches performed when processing referrals can, through the use of specially crafted referrals, cause a recursing server to issue a very large number of fetches in an attempt to process the referral. This has at least two potential effects: The performance of the recursing server can potentially be degraded by the additional work required to perform these fetches, and The attacker can exploit this behavior to use the recursing server as a reflector in a reflection attack with a high amplification factor. (CVE-2020-8616)\n\n - Using a specially-crafted message, an attacker may potentially cause a BIND server to reach an inconsistent state if the attacker knows (or successfully guesses) the name of a TSIG key used by the server. Since BIND, by default, configures a local session key even on servers whose configuration does not otherwise make use of it, almost all current BIND servers are vulnerable. In releases of BIND dating from March 2018 and after, an assertion check in tsig.c detects this inconsistent state and deliberately exits. Prior to the introduction of the check the server would continue operating in an inconsistent state, with potentially harmful results. (CVE-2020-8617)\n\nNote that Nessus has not tested for these issues but has instead relied only on the application's self-reported version number.", "cvss3": {}, "published": "2022-09-01T00:00:00", "type": "nessus", "title": "Nutanix AOS : Multiple Vulnerabilities (NXSA-AOS-5.15.3)", "bulletinFamily": "scanner", "cvss2": {}, "cvelist": ["CVE-2013-4343", "CVE-2015-1283", "CVE-2015-2716", "CVE-2015-2809", "CVE-2015-9289", "CVE-2017-1000476", "CVE-2017-11166", "CVE-2017-12805", "CVE-2017-12806", "CVE-2017-15710", "CVE-2017-17807", "CVE-2017-18251", "CVE-2017-18252", "CVE-2017-18254", "CVE-2017-18271", "CVE-2017-18273", "CVE-2017-18595", "CVE-2017-6519", "CVE-2018-10177", "CVE-2018-10360", "CVE-2018-10804", "CVE-2018-10805", "CVE-2018-1116", "CVE-2018-11656", "CVE-2018-12599", "CVE-2018-12600", "CVE-2018-1301", "CVE-2018-13153", "CVE-2018-14434", "CVE-2018-14435", "CVE-2018-14436", "CVE-2018-14437", "CVE-2018-15587", "CVE-2018-15607", "CVE-2018-16328", "CVE-2018-16749", "CVE-2018-16750", "CVE-2018-17199", "CVE-2018-18066", "CVE-2018-18544", "CVE-2018-19985", "CVE-2018-20169", "CVE-2018-20467", "CVE-2018-20852", "CVE-2018-4180", "CVE-2018-4181", "CVE-2018-4700", "CVE-2018-5745", "CVE-2018-7191", "CVE-2018-8804", "CVE-2018-9133", "CVE-2019-10131", "CVE-2019-10207", "CVE-2019-10638", "CVE-2019-10639", "CVE-2019-10650", "CVE-2019-11190", "CVE-2019-11340", "CVE-2019-11470", "CVE-2019-11472", "CVE-2019-11597", "CVE-2019-11598", "CVE-2019-11884", "CVE-2019-12382", "CVE-2019-12974", "CVE-2019-12975", "CVE-2019-12976", "CVE-2019-12978", "CVE-2019-12979", "CVE-2019-13133", "CVE-2019-13134", "CVE-2019-13135", "CVE-2019-13232", "CVE-2019-13233", "CVE-2019-13295", "CVE-2019-13297", "CVE-2019-13300", "CVE-2019-13301", "CVE-2019-13304", "CVE-2019-13305", "CVE-2019-13306", "CVE-2019-13307", "CVE-2019-13309", "CVE-2019-13310", "CVE-2019-13311", "CVE-2019-13454", "CVE-2019-13648", "CVE-2019-14283", "CVE-2019-14815", "CVE-2019-14980", "CVE-2019-14981", "CVE-2019-15090", "CVE-2019-15139", "CVE-2019-15140", "CVE-2019-15141", "CVE-2019-15221", "CVE-2019-15916", "CVE-2019-16056", "CVE-2019-16708", "CVE-2019-16709", "CVE-2019-16710", "CVE-2019-16711", "CVE-2019-16712", "CVE-2019-16713", "CVE-2019-16746", "CVE-2019-17041", "CVE-2019-17042", "CVE-2019-17540", "CVE-2019-17541", "CVE-2019-18660", "CVE-2019-19527", "CVE-2019-19768", "CVE-2019-19948", "CVE-2019-19949", "CVE-2019-2737", "CVE-2019-2739", "CVE-2019-2740", "CVE-2019-2805", "CVE-2019-3820", "CVE-2019-3890", "CVE-2019-3901", "CVE-2019-5436", "CVE-2019-6465", "CVE-2019-6477", "CVE-2019-7175", "CVE-2019-7397", "CVE-2019-7398", "CVE-2019-9503", "CVE-2019-9924", "CVE-2019-9956", "CVE-2020-10711", "CVE-2020-10757", "CVE-2020-11868", "CVE-2020-12049", "CVE-2020-12653", "CVE-2020-12654", "CVE-2020-12888", "CVE-2020-13817", "CVE-2020-14556", "CVE-2020-14577", "CVE-2020-14578", "CVE-2020-14579", "CVE-2020-14583", "CVE-2020-14593", "CVE-2020-14621", "CVE-2020-2754", "CVE-2020-2755", "CVE-2020-2756", "CVE-2020-2757", "CVE-2020-2767", "CVE-2020-2773", "CVE-2020-2778", "CVE-2020-2781", "CVE-2020-2800", "CVE-2020-2803", "CVE-2020-2805", "CVE-2020-2816", "CVE-2020-2830", "CVE-2020-5208", "CVE-2020-8616", "CVE-2020-8617"], "modified": "2023-09-20T00:00:00", "cpe": ["cpe:/o:nutanix:aos"], "id": "NUTANIX_NXSA-AOS-5_15_3.NASL", "href": "https://www.tenable.com/plugins/nessus/164596", "sourceData": "#%NASL_MIN_LEVEL 80900\n##\n# (C) Tenable, Inc.\n##\n\ninclude('deprecated_nasl_level.inc');\ninclude('compat.inc');\n\nif (description)\n{\n script_id(164596);\n script_version(\"1.63\");\n script_set_attribute(attribute:\"plugin_modification_date\", value:\"2023/09/20\");\n\n script_cve_id(\n \"CVE-2015-2716\",\n \"CVE-2015-9289\",\n \"CVE-2017-1000476\",\n \"CVE-2017-11166\",\n \"CVE-2017-12805\",\n \"CVE-2017-12806\",\n \"CVE-2017-15710\",\n \"CVE-2017-17807\",\n \"CVE-2017-18251\",\n \"CVE-2017-18252\",\n \"CVE-2017-18254\",\n \"CVE-2017-18271\",\n \"CVE-2017-18273\",\n \"CVE-2017-18595\",\n 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It is, therefore, affected by multiple\nvulnerabilities as referenced in the NXSA-AOS-5.15.3 advisory.\n\n - Buffer overflow in the XML parser in Mozilla Firefox before 38.0, Firefox ESR 31.x before 31.7, and\n Thunderbird before 31.7 allows remote attackers to execute arbitrary code by providing a large amount of\n compressed XML data, a related issue to CVE-2015-1283. (CVE-2015-2716)\n\n - In the Linux kernel before 4.1.4, a buffer overflow occurs when checking userspace params in\n drivers/media/dvb-frontends/cx24116.c. The maximum size for a DiSEqC command is 6, according to the\n userspace API. However, the code allows larger values such as 23. (CVE-2015-9289)\n\n - ImageMagick 7.0.7-12 Q16, a CPU exhaustion vulnerability was found in the function ReadDDSInfo in\n coders/dds.c, which allows attackers to cause a denial of service. (CVE-2017-1000476)\n\n - The ReadXWDImage function in coders\\xwd.c in ImageMagick 7.0.5-6 has a memory leak vulnerability that can\n cause memory exhaustion via a crafted length (number of color-map entries) field in the header of an XWD\n file. (CVE-2017-11166)\n\n - In ImageMagick 7.0.6-6, a memory exhaustion vulnerability was found in the function ReadTIFFImage, which\n allows attackers to cause a denial of service. (CVE-2017-12805)\n\n - In ImageMagick 7.0.6-6, a memory exhaustion vulnerability was found in the function format8BIM, which\n allows attackers to cause a denial of service. (CVE-2017-12806)\n\n - In Apache httpd 2.0.23 to 2.0.65, 2.2.0 to 2.2.34, and 2.4.0 to 2.4.29, mod_authnz_ldap, if configured\n with AuthLDAPCharsetConfig, uses the Accept-Language header value to lookup the right charset encoding\n when verifying the user's credentials. If the header value is not present in the charset conversion table,\n a fallback mechanism is used to truncate it to a two characters value to allow a quick retry (for example,\n 'en-US' is truncated to 'en'). A header value of less than two characters forces an out of bound write of\n one NUL byte to a memory location that is not part of the string. In the worst case, quite unlikely, the\n process would crash which could be used as a Denial of Service attack. In the more likely case, this\n memory is already reserved for future use and the issue has no effect at all. (CVE-2017-15710)\n\n - The KEYS subsystem in the Linux kernel before 4.14.6 omitted an access-control check when adding a key to\n the current task's default request-key keyring via the request_key() system call, allowing a local user\n to use a sequence of crafted system calls to add keys to a keyring with only Search permission (not Write\n permission) to that keyring, related to construct_get_dest_keyring() in security/keys/request_key.c.\n (CVE-2017-17807)\n\n - An issue was discovered in ImageMagick 7.0.7. A memory leak vulnerability was found in the function\n ReadPCDImage in coders/pcd.c, which allow remote attackers to cause a denial of service via a crafted\n file. (CVE-2017-18251)\n\n - An issue was discovered in ImageMagick 7.0.7. The MogrifyImageList function in MagickWand/mogrify.c allows\n attackers to cause a denial of service (assertion failure and application exit in ReplaceImageInList) via\n a crafted file. (CVE-2017-18252)\n\n - An issue was discovered in ImageMagick 7.0.7. A memory leak vulnerability was found in the function\n WriteGIFImage in coders/gif.c, which allow remote attackers to cause a denial of service via a crafted\n file. (CVE-2017-18254)\n\n - In ImageMagick 7.0.7-16 Q16 x86_64 2017-12-22, an infinite loop vulnerability was found in the function\n ReadMIFFImage in coders/miff.c, which allows attackers to cause a denial of service (CPU exhaustion) via a\n crafted MIFF image file. (CVE-2017-18271)\n\n - In ImageMagick 7.0.7-16 Q16 x86_64 2017-12-22, an infinite loop vulnerability was found in the function\n ReadTXTImage in coders/txt.c, which allows attackers to cause a denial of service (CPU exhaustion) via a\n crafted image file that is mishandled in a GetImageIndexInList call. (CVE-2017-18273)\n\n - An issue was discovered in the Linux kernel before 4.14.11. A double free may be caused by the function\n allocate_trace_buffer in the file kernel/trace/trace.c. (CVE-2017-18595)\n\n - avahi-daemon in Avahi through 0.6.32 and 0.7 inadvertently responds to IPv6 unicast queries with source\n addresses that are not on-link, which allows remote attackers to cause a denial of service (traffic\n amplification) and may cause information leakage by obtaining potentially sensitive information from the\n responding device via port-5353 UDP packets. NOTE: this may overlap CVE-2015-2809. (CVE-2017-6519)\n\n - In ImageMagick 7.0.7-28, there is an infinite loop in the ReadOneMNGImage function of the coders/png.c\n file. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted mng\n file. (CVE-2018-10177)\n\n - The do_core_note function in readelf.c in libmagic.a in file 5.33 allows remote attackers to cause a\n denial of service (out-of-bounds read and application crash) via a crafted ELF file. (CVE-2018-10360)\n\n - ImageMagick version 7.0.7-28 contains a memory leak in WriteTIFFImage in coders/tiff.c. (CVE-2018-10804)\n\n - ImageMagick version 7.0.7-28 contains a memory leak in ReadYCBCRImage in coders/ycbcr.c. (CVE-2018-10805)\n\n - A flaw was found in polkit before version 0.116. The implementation of the\n polkit_backend_interactive_authority_check_authorization function in polkitd allows to test for\n authentication and trigger authentication of unrelated processes owned by other users. This may result in\n a local DoS and information disclosure. (CVE-2018-1116)\n\n - In ImageMagick 7.0.7-20 Q16 x86_64, a memory leak vulnerability was found in the function ReadDCMImage in\n coders/dcm.c, which allows attackers to cause a denial of service via a crafted DCM image file.\n (CVE-2018-11656)\n\n - In ImageMagick 7.0.8-3 Q16, ReadBMPImage and WriteBMPImage in coders/bmp.c allow attackers to cause an out\n of bounds write via a crafted file. (CVE-2018-12599)\n\n - In ImageMagick 7.0.8-3 Q16, ReadDIBImage and WriteDIBImage in coders/dib.c allow attackers to cause an out\n of bounds write via a crafted file. (CVE-2018-12600)\n\n - A specially crafted request could have crashed the Apache HTTP Server prior to version 2.4.30, due to an\n out of bound access after a size limit is reached by reading the HTTP header. This vulnerability is\n considered very hard if not impossible to trigger in non-debug mode (both log and build level), so it is\n classified as low risk for common server usage. (CVE-2018-1301)\n\n - In ImageMagick 7.0.8-4, there is a memory leak in the XMagickCommand function in MagickCore/animate.c.\n (CVE-2018-13153)\n\n - ImageMagick 7.0.8-4 has a memory leak for a colormap in WriteMPCImage in coders/mpc.c. (CVE-2018-14434)\n\n - ImageMagick 7.0.8-4 has a memory leak in DecodeImage in coders/pcd.c. (CVE-2018-14435)\n\n - ImageMagick 7.0.8-4 has a memory leak in ReadMIFFImage in coders/miff.c. (CVE-2018-14436)\n\n - ImageMagick 7.0.8-4 has a memory leak in parse8BIM in coders/meta.c. (CVE-2018-14437)\n\n - GNOME Evolution through 3.28.2 is prone to OpenPGP signatures being spoofed for arbitrary messages using a\n specially crafted email that contains a valid signature from the entity to be impersonated as an\n attachment. (CVE-2018-15587)\n\n - In ImageMagick 7.0.8-11 Q16, a tiny input file 0x50 0x36 0x36 0x36 0x36 0x4c 0x36 0x38 0x36 0x36 0x36 0x36\n 0x36 0x36 0x1f 0x35 0x50 0x00 can result in a hang of several minutes during which CPU and memory\n resources are consumed until ultimately an attempted large memory allocation fails. Remote attackers could\n leverage this vulnerability to cause a denial of service via a crafted file. (CVE-2018-15607)\n\n - In ImageMagick before 7.0.8-8, a NULL pointer dereference exists in the CheckEventLogging function in\n MagickCore/log.c. (CVE-2018-16328)\n\n - In ImageMagick 7.0.7-29 and earlier, a missing NULL check in ReadOneJNGImage in coders/png.c allows an\n attacker to cause a denial of service (WriteBlob assertion failure and application exit) via a crafted\n file. (CVE-2018-16749)\n\n - In ImageMagick 7.0.7-29 and earlier, a memory leak in the formatIPTCfromBuffer function in coders/meta.c\n was found. (CVE-2018-16750)\n\n - In Apache HTTP Server 2.4 release 2.4.37 and prior, mod_session checks the session expiry time before\n decoding the session. This causes session expiry time to be ignored for mod_session_cookie sessions since\n the expiry time is loaded when the session is decoded. (CVE-2018-17199)\n\n - snmp_oid_compare in snmplib/snmp_api.c in Net-SNMP before 5.8 has a NULL Pointer Exception bug that can be\n used by an unauthenticated attacker to remotely cause the instance to crash via a crafted UDP packet,\n resulting in Denial of Service. (CVE-2018-18066)\n\n - There is a memory leak in the function WriteMSLImage of coders/msl.c in ImageMagick 7.0.8-13 Q16, and the\n function ProcessMSLScript of coders/msl.c in GraphicsMagick before 1.3.31. (CVE-2018-18544)\n\n - The function hso_get_config_data in drivers/net/usb/hso.c in the Linux kernel through 4.19.8 reads if_num\n from the USB device (as a u8) and uses it to index a small array, resulting in an object out-of-bounds\n (OOB) read that potentially allows arbitrary read in the kernel address space. (CVE-2018-19985)\n\n - An issue was discovered in the Linux kernel before 4.19.9. The USB subsystem mishandles size checks during\n the reading of an extra descriptor, related to __usb_get_extra_descriptor in drivers/usb/core/usb.c.\n (CVE-2018-20169)\n\n - In coders/bmp.c in ImageMagick before 7.0.8-16, an input file can result in an infinite loop and hang,\n with high CPU and memory consumption. Remote attackers could leverage this vulnerability to cause a denial\n of service via a crafted file. (CVE-2018-20467)\n\n - http.cookiejar.DefaultPolicy.domain_return_ok in Lib/http/cookiejar.py in Python before 3.7.3 does not\n correctly validate the domain: it can be tricked into sending existing cookies to the wrong server. An\n attacker may abuse this flaw by using a server with a hostname that has another valid hostname as a suffix\n (e.g., pythonicexample.com to steal cookies for example.com). When a program uses\n http.cookiejar.DefaultPolicy and tries to do an HTTP connection to an attacker-controlled server, existing\n cookies can be leaked to the attacker. This affects 2.x through 2.7.16, 3.x before 3.4.10, 3.5.x before\n 3.5.7, 3.6.x before 3.6.9, and 3.7.x before 3.7.3. (CVE-2018-20852)\n\n - In macOS High Sierra before 10.13.5, an issue existed in CUPS. This issue was addressed with improved\n access restrictions. (CVE-2018-4180, CVE-2018-4181)\n\n - managed-keys is a feature which allows a BIND resolver to automatically maintain the keys used by trust\n anchors which operators configure for use in DNSSEC validation. Due to an error in the managed-keys\n feature it is possible for a BIND server which uses managed-keys to exit due to an assertion failure if,\n during key rollover, a trust anchor's keys are replaced with keys which use an unsupported algorithm.\n Versions affected: BIND 9.9.0 -> 9.10.8-P1, 9.11.0 -> 9.11.5-P1, 9.12.0 -> 9.12.3-P1, and versions\n 9.9.3-S1 -> 9.11.5-S3 of BIND 9 Supported Preview Edition. Versions 9.13.0 -> 9.13.6 of the 9.13\n development branch are also affected. Versions prior to BIND 9.9.0 have not been evaluated for\n vulnerability to CVE-2018-5745. (CVE-2018-5745)\n\n - In the tun subsystem in the Linux kernel before 4.13.14, dev_get_valid_name is not called before\n register_netdevice. This allows local users to cause a denial of service (NULL pointer dereference and\n panic) via an ioctl(TUNSETIFF) call with a dev name containing a / character. This is similar to\n CVE-2013-4343. (CVE-2018-7191)\n\n - WriteEPTImage in coders/ept.c in ImageMagick 7.0.7-25 Q16 allows remote attackers to cause a denial of\n service (MagickCore/memory.c double free and application crash) or possibly have unspecified other impact\n via a crafted file. (CVE-2018-8804)\n\n - ImageMagick 7.0.7-26 Q16 has excessive iteration in the DecodeLabImage and EncodeLabImage functions\n (coders/tiff.c), which results in a hang (tens of minutes) with a tiny PoC file. Remote attackers could\n leverage this vulnerability to cause a denial of service via a crafted tiff file. (CVE-2018-9133)\n\n - An off-by-one read vulnerability was discovered in ImageMagick before version 7.0.7-28 in the\n formatIPTCfromBuffer function in coders/meta.c. A local attacker may use this flaw to read beyond the end\n of the buffer or to crash the program. (CVE-2019-10131)\n\n - A flaw was found in the Linux kernel's Bluetooth implementation of UART, all versions kernel 3.x.x before\n 4.18.0 and kernel 5.x.x. An attacker with local access and write permissions to the Bluetooth hardware\n could use this flaw to issue a specially crafted ioctl function call and cause the system to crash.\n (CVE-2019-10207)\n\n - In the Linux kernel before 5.1.7, a device can be tracked by an attacker using the IP ID values the kernel\n produces for connection-less protocols (e.g., UDP and ICMP). When such traffic is sent to multiple\n destination IP addresses, it is possible to obtain hash collisions (of indices to the counter array) and\n thereby obtain the hashing key (via enumeration). An attack may be conducted by hosting a crafted web page\n that uses WebRTC or gQUIC to force UDP traffic to attacker-controlled IP addresses. (CVE-2019-10638)\n\n - The Linux kernel 4.x (starting from 4.1) and 5.x before 5.0.8 allows Information Exposure (partial kernel\n address disclosure), leading to a KASLR bypass. Specifically, it is possible to extract the KASLR kernel\n image offset using the IP ID values the kernel produces for connection-less protocols (e.g., UDP and\n ICMP). When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash\n collisions (of indices to the counter array) and thereby obtain the hashing key (via enumeration). This\n key contains enough bits from a kernel address (of a static variable) so when the key is extracted (via\n enumeration), the offset of the kernel image is exposed. This attack can be carried out remotely, by the\n attacker forcing the target device to send UDP or ICMP (or certain other) traffic to attacker-controlled\n IP addresses. Forcing a server to send UDP traffic is trivial if the server is a DNS server. ICMP traffic\n is trivial if the server answers ICMP Echo requests (ping). For client targets, if the target visits the\n attacker's web page, then WebRTC or gQUIC can be used to force UDP traffic to attacker-controlled IP\n addresses. NOTE: this attack against KASLR became viable in 4.1 because IP ID generation was changed to\n have a dependency on an address associated with a network namespace. (CVE-2019-10639)\n\n - In ImageMagick 7.0.8-36 Q16, there is a heap-based buffer over-read in the function WriteTIFFImage of\n coders/tiff.c, which allows an attacker to cause a denial of service or information disclosure via a\n crafted image file. (CVE-2019-10650)\n\n - The Linux kernel before 4.8 allows local users to bypass ASLR on setuid programs (such as /bin/su) because\n install_exec_creds() is called too late in load_elf_binary() in fs/binfmt_elf.c, and thus the\n ptrace_may_access() check has a race condition when reading /proc/pid/stat. (CVE-2019-11190)\n\n - The cineon parsing component in ImageMagick 7.0.8-26 Q16 allows attackers to cause a denial-of-service\n (uncontrolled resource consumption) by crafting a Cineon image with an incorrect claimed image size. This\n occurs because ReadCINImage in coders/cin.c lacks a check for insufficient image data in a file.\n (CVE-2019-11470)\n\n - ReadXWDImage in coders/xwd.c in the XWD image parsing component of ImageMagick 7.0.8-41 Q16 allows\n attackers to cause a denial-of-service (divide-by-zero error) by crafting an XWD image file in which the\n header indicates neither LSB first nor MSB first. (CVE-2019-11472)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer over-read in the function WriteTIFFImage of\n coders/tiff.c, which allows an attacker to cause a denial of service or possibly information disclosure\n via a crafted image file. (CVE-2019-11597)\n\n - In ImageMagick 7.0.8-40 Q16, there is a heap-based buffer over-read in the function WritePNMImage of\n coders/pnm.c, which allows an attacker to cause a denial of service or possibly information disclosure via\n a crafted image file. This is related to SetGrayscaleImage in MagickCore/quantize.c. (CVE-2019-11598)\n\n - The do_hidp_sock_ioctl function in net/bluetooth/hidp/sock.c in the Linux kernel before 5.0.15 allows a\n local user to obtain potentially sensitive information from kernel stack memory via a HIDPCONNADD command,\n because a name field may not end with a '\\0' character. (CVE-2019-11884)\n\n - ** DISPUTED ** An issue was discovered in drm_load_edid_firmware in drivers/gpu/drm/drm_edid_load.c in the\n Linux kernel through 5.1.5. There is an unchecked kstrdup of fwstr, which might allow an attacker to cause\n a denial of service (NULL pointer dereference and system crash). NOTE: The vendor disputes this issues as\n not being a vulnerability because kstrdup() returning NULL is handled sufficiently and there is no chance\n for a NULL pointer dereference. (CVE-2019-12382)\n\n - A NULL pointer dereference in the function ReadPANGOImage in coders/pango.c and the function ReadVIDImage\n in coders/vid.c in ImageMagick 7.0.8-34 allows remote attackers to cause a denial of service via a crafted\n image. (CVE-2019-12974)\n\n - ImageMagick 7.0.8-34 has a memory leak vulnerability in the WriteDPXImage function in coders/dpx.c.\n (CVE-2019-12975)\n\n - ImageMagick 7.0.8-34 has a memory leak in the ReadPCLImage function in coders/pcl.c. (CVE-2019-12976)\n\n - ImageMagick 7.0.8-34 has a use of uninitialized value vulnerability in the ReadPANGOImage function in\n coders/pango.c. (CVE-2019-12978)\n\n - ImageMagick 7.0.8-34 has a use of uninitialized value vulnerability in the SyncImageSettings function in\n MagickCore/image.c. This is related to AcquireImage in magick/image.c. (CVE-2019-12979)\n\n - ImageMagick before 7.0.8-50 has a memory leak vulnerability in the function ReadBMPImage in coders/bmp.c.\n (CVE-2019-13133)\n\n - ImageMagick before 7.0.8-50 has a memory leak vulnerability in the function ReadVIFFImage in\n coders/viff.c. (CVE-2019-13134)\n\n - ImageMagick before 7.0.8-50 has a use of uninitialized value vulnerability in the function ReadCUTImage\n in coders/cut.c. (CVE-2019-13135)\n\n - Info-ZIP UnZip 6.0 mishandles the overlapping of files inside a ZIP container, leading to denial of\n service (resource consumption), aka a better zip bomb issue. (CVE-2019-13232)\n\n - In arch/x86/lib/insn-eval.c in the Linux kernel before 5.1.9, there is a use-after-free for access to an\n LDT entry because of a race condition between modify_ldt() and a #BR exception for an MPX bounds\n violation. (CVE-2019-13233)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer over-read at MagickCore/threshold.c in\n AdaptiveThresholdImage because a width of zero is mishandled. (CVE-2019-13295)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer over-read at MagickCore/threshold.c in\n AdaptiveThresholdImage because a height of zero is mishandled. (CVE-2019-13297)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer overflow at MagickCore/statistic.c in EvaluateImages\n because of mishandling columns. (CVE-2019-13300)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks in AcquireMagickMemory because of an AnnotateImage error.\n (CVE-2019-13301)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of a\n misplaced assignment. (CVE-2019-13304)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of a\n misplaced strncpy and an off-by-one error. (CVE-2019-13305)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of\n off-by-one errors. (CVE-2019-13306)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer overflow at MagickCore/statistic.c in EvaluateImages\n because of mishandling rows. (CVE-2019-13307)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of mishandling the NoSuchImage\n error in CLIListOperatorImages in MagickWand/operation.c. (CVE-2019-13309)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of an error in\n MagickWand/mogrify.c. (CVE-2019-13310)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of a wand/mogrify.c error.\n (CVE-2019-13311)\n\n - ImageMagick 7.0.8-54 Q16 allows Division by Zero in RemoveDuplicateLayers in MagickCore/layer.c.\n (CVE-2019-13454)\n\n - In the Linux kernel through 5.2.1 on the powerpc platform, when hardware transactional memory is disabled,\n a local user can cause a denial of service (TM Bad Thing exception and system crash) via a sigreturn()\n system call that sends a crafted signal frame. This affects arch/powerpc/kernel/signal_32.c and\n arch/powerpc/kernel/signal_64.c. (CVE-2019-13648)\n\n - In the Linux kernel before 5.2.3, set_geometry in drivers/block/floppy.c does not validate the sect and\n head fields, as demonstrated by an integer overflow and out-of-bounds read. It can be triggered by an\n unprivileged local user when a floppy disk has been inserted. NOTE: QEMU creates the floppy device by\n default. (CVE-2019-14283)\n\n - A vulnerability was found in Linux Kernel, where a Heap Overflow was found in mwifiex_set_wmm_params()\n function of Marvell Wifi Driver. (CVE-2019-14815)\n\n - In ImageMagick 7.x before 7.0.8-42 and 6.x before 6.9.10-42, there is a use after free vulnerability in\n the UnmapBlob function that allows an attacker to cause a denial of service by sending a crafted file.\n (CVE-2019-14980)\n\n - In ImageMagick 7.x before 7.0.8-41 and 6.x before 6.9.10-41, there is a divide-by-zero vulnerability in\n the MeanShiftImage function. It allows an attacker to cause a denial of service by sending a crafted file.\n (CVE-2019-14981)\n\n - An issue was discovered in drivers/scsi/qedi/qedi_dbg.c in the Linux kernel before 5.1.12. In the\n qedi_dbg_* family of functions, there is an out-of-bounds read. (CVE-2019-15090)\n\n - The XWD image (X Window System window dumping file) parsing component in ImageMagick 7.0.8-41 Q16 allows\n attackers to cause a denial-of-service (application crash resulting from an out-of-bounds Read) in\n ReadXWDImage in coders/xwd.c by crafting a corrupted XWD image file, a different vulnerability than\n CVE-2019-11472. (CVE-2019-15139)\n\n - coders/mat.c in ImageMagick 7.0.8-43 Q16 allows remote attackers to cause a denial of service (use-after-\n free and application crash) or possibly have unspecified other impact by crafting a Matlab image file that\n is mishandled in ReadImage in MagickCore/constitute.c. (CVE-2019-15140)\n\n - WriteTIFFImage in coders/tiff.c in ImageMagick 7.0.8-43 Q16 allows attackers to cause a denial-of-service\n (application crash resulting from a heap-based buffer over-read) via a crafted TIFF image file, related to\n TIFFRewriteDirectory, TIFFWriteDirectory, TIFFWriteDirectorySec, and TIFFWriteDirectoryTagColormap in\n tif_dirwrite.c of LibTIFF. NOTE: this occurs because of an incomplete fix for CVE-2019-11597.\n (CVE-2019-15141)\n\n - An issue was discovered in the Linux kernel before 5.1.17. There is a NULL pointer dereference caused by a\n malicious USB device in the sound/usb/line6/pcm.c driver. (CVE-2019-15221)\n\n - An issue was discovered in the Linux kernel before 5.0.1. There is a memory leak in\n register_queue_kobjects() in net/core/net-sysfs.c, which will cause denial of service. (CVE-2019-15916)\n\n - An issue was discovered in Python through 2.7.16, 3.x through 3.5.7, 3.6.x through 3.6.9, and 3.7.x\n through 3.7.4. The email module wrongly parses email addresses that contain multiple @ characters. An\n application that uses the email module and implements some kind of checks on the From/To headers of a\n message could be tricked into accepting an email address that should be denied. An attack may be the same\n as in CVE-2019-11340; however, this CVE applies to Python more generally. (CVE-2019-16056)\n\n - ImageMagick 7.0.8-35 has a memory leak in magick/xwindow.c, related to XCreateImage. (CVE-2019-16708)\n\n - ImageMagick 7.0.8-35 has a memory leak in coders/dps.c, as demonstrated by XCreateImage. (CVE-2019-16709)\n\n - ImageMagick 7.0.8-35 has a memory leak in coders/dot.c, as demonstrated by AcquireMagickMemory in\n MagickCore/memory.c. (CVE-2019-16710)\n\n - ImageMagick 7.0.8-40 has a memory leak in Huffman2DEncodeImage in coders/ps2.c. (CVE-2019-16711)\n\n - ImageMagick 7.0.8-43 has a memory leak in Huffman2DEncodeImage in coders/ps3.c, as demonstrated by\n WritePS3Image. (CVE-2019-16712)\n\n - ImageMagick 7.0.8-43 has a memory leak in coders/dot.c, as demonstrated by PingImage in\n MagickCore/constitute.c. (CVE-2019-16713)\n\n - An issue was discovered in net/wireless/nl80211.c in the Linux kernel through 5.2.17. It does not check\n the length of variable elements in a beacon head, leading to a buffer overflow. (CVE-2019-16746)\n\n - An issue was discovered in Rsyslog v8.1908.0. contrib/pmaixforwardedfrom/pmaixforwardedfrom.c has a heap\n overflow in the parser for AIX log messages. The parser tries to locate a log message delimiter (in this\n case, a space or a colon) but fails to account for strings that do not satisfy this constraint. If the\n string does not match, then the variable lenMsg will reach the value zero and will skip the sanity check\n that detects invalid log messages. The message will then be considered valid, and the parser will eat up\n the nonexistent colon delimiter. In doing so, it will decrement lenMsg, a signed integer, whose value was\n zero and now becomes minus one. The following step in the parser is to shift left the contents of the\n message. To do this, it will call memmove with the right pointers to the target and destination strings,\n but the lenMsg will now be interpreted as a huge value, causing a heap overflow. (CVE-2019-17041)\n\n - An issue was discovered in Rsyslog v8.1908.0. contrib/pmcisconames/pmcisconames.c has a heap overflow in\n the parser for Cisco log messages. The parser tries to locate a log message delimiter (in this case, a\n space or a colon), but fails to account for strings that do not satisfy this constraint. If the string\n does not match, then the variable lenMsg will reach the value zero and will skip the sanity check that\n detects invalid log messages. The message will then be considered valid, and the parser will eat up the\n nonexistent colon delimiter. In doing so, it will decrement lenMsg, a signed integer, whose value was zero\n and now becomes minus one. The following step in the parser is to shift left the contents of the message.\n To do this, it will call memmove with the right pointers to the target and destination strings, but the\n lenMsg will now be interpreted as a huge value, causing a heap overflow. (CVE-2019-17042)\n\n - ImageMagick before 7.0.8-54 has a heap-based buffer overflow in ReadPSInfo in coders/ps.c.\n (CVE-2019-17540)\n\n - ImageMagick before 7.0.8-55 has a use-after-free in DestroyStringInfo in MagickCore/string.c because the\n error manager is mishandled in coders/jpeg.c. (CVE-2019-17541)\n\n - The Linux kernel before 5.4.1 on powerpc allows Information Exposure because the Spectre-RSB mitigation is\n not in place for all applicable CPUs, aka CID-39e72bf96f58. This is related to\n arch/powerpc/kernel/entry_64.S and arch/powerpc/kernel/security.c. (CVE-2019-18660)\n\n - In the Linux kernel before 5.2.10, there is a use-after-free bug that can be caused by a malicious USB\n device in the drivers/hid/usbhid/hiddev.c driver, aka CID-9c09b214f30e. (CVE-2019-19527)\n\n - In the Linux kernel 5.4.0-rc2, there is a use-after-free (read) in the __blk_add_trace function in\n kernel/trace/blktrace.c (which is used to fill out a blk_io_trace structure and place it in a per-cpu sub-\n buffer). (CVE-2019-19768)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer overflow in the function WriteSGIImage of\n coders/sgi.c. (CVE-2019-19948)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer over-read in the function WritePNGImage of\n coders/png.c, related to Magick_png_write_raw_profile and LocaleNCompare. (CVE-2019-19949)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server : Pluggable Auth).\n Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily\n exploitable vulnerability allows high privileged attacker with network access via multiple protocols to\n compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to\n cause a hang or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2737)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Security: Privileges).\n Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily\n exploitable vulnerability allows high privileged attacker with logon to the infrastructure where MySQL\n Server executes to compromise MySQL Server. Successful attacks of this vulnerability can result in\n unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server as well\n as unauthorized update, insert or delete access to some of MySQL Server accessible data. (CVE-2019-2739)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: XML). Supported\n versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable\n vulnerability allows low privileged attacker with network access via multiple protocols to compromise\n MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang\n or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2740)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Parser). Supported\n versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable\n vulnerability allows low privileged attacker with network access via multiple protocols to compromise\n MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang\n or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2805)\n\n - It was discovered that the gnome-shell lock screen since version 3.15.91 did not properly restrict all\n contextual actions. An attacker with physical access to a locked workstation could invoke certain keyboard\n shortcuts, and potentially other actions. (CVE-2019-3820)\n\n - It was discovered evolution-ews before 3.31.3 does not check the validity of SSL certificates. An attacker\n could abuse this flaw to get confidential information by tricking the user into connecting to a fake\n server without the user noticing the difference. (CVE-2019-3890)\n\n - A race condition in perf_event_open() allows local attackers to leak sensitive data from setuid programs.\n As no relevant locks (in particular the cred_guard_mutex) are held during the ptrace_may_access() call, it\n is possible for the specified target task to perform an execve() syscall with setuid execution before\n perf_event_alloc() actually attaches to it, allowing an attacker to bypass the ptrace_may_access() check\n and the perf_event_exit_task(current) call that is performed in install_exec_creds() during privileged\n execve() calls. This issue affects kernel versions before 4.8. (CVE-2019-3901)\n\n - A heap buffer overflow in the TFTP receiving code allows for DoS or arbitrary code execution in libcurl\n versions 7.19.4 through 7.64.1. (CVE-2019-5436)\n\n - Controls for zone transfers may not be properly applied to Dynamically Loadable Zones (DLZs) if the zones\n are writable Versions affected: BIND 9.9.0 -> 9.10.8-P1, 9.11.0 -> 9.11.5-P2, 9.12.0 -> 9.12.3-P2, and\n versions 9.9.3-S1 -> 9.11.5-S3 of BIND 9 Supported Preview Edition. Versions 9.13.0 -> 9.13.6 of the 9.13\n development branch are also affected. Versions prior to BIND 9.9.0 have not been evaluated for\n vulnerability to CVE-2019-6465. (CVE-2019-6465)\n\n - With pipelining enabled each incoming query on a TCP connection requires a similar resource allocation to\n a query received via UDP or via TCP without pipelining enabled. A client using a TCP-pipelined connection\n to a server could consume more resources than the server has been provisioned to handle. When a TCP\n connection with a large number of pipelined queries is closed, the load on the server releasing these\n multiple resources can cause it to become unresponsive, even for queries that can be answered\n authoritatively or from cache. (This is most likely to be perceived as an intermittent server problem).\n (CVE-2019-6477)\n\n - In ImageMagick before 7.0.8-25, some memory leaks exist in DecodeImage in coders/pcd.c. (CVE-2019-7175)\n\n - In ImageMagick before 7.0.8-25 and GraphicsMagick through 1.3.31, several memory leaks exist in\n WritePDFImage in coders/pdf.c. (CVE-2019-7397)\n\n - In ImageMagick before 7.0.8-25, a memory leak exists in WriteDIBImage in coders/dib.c. (CVE-2019-7398)\n\n - The Broadcom brcmfmac WiFi driver prior to commit a4176ec356c73a46c07c181c6d04039fafa34a9f is vulnerable\n to a frame validation bypass. If the brcmfmac driver receives a firmware event frame from a remote source,\n the is_wlc_event_frame function will cause this frame to be discarded and unprocessed. If the driver\n receives the firmware event frame from the host, the appropriate handler is called. This frame validation\n can be bypassed if the bus used is USB (for instance by a wifi dongle). This can allow firmware event\n frames from a remote source to be processed. In the worst case scenario, by sending specially-crafted WiFi\n packets, a remote, unauthenticated attacker may be able to execute arbitrary code on a vulnerable system.\n More typically, this vulnerability will result in denial-of-service conditions. (CVE-2019-9503)\n\n - rbash in Bash before 4.4-beta2 did not prevent the shell user from modifying BASH_CMDS, thus allowing the\n user to execute any command with the permissions of the shell. (CVE-2019-9924)\n\n - In ImageMagick 7.0.8-35 Q16, there is a stack-based buffer overflow in the function PopHexPixel of\n coders/ps.c, which allows an attacker to cause a denial of service or code execution via a crafted image\n file. (CVE-2019-9956)\n\n - A NULL pointer dereference flaw was found in the Linux kernel's SELinux subsystem in versions before 5.7.\n This flaw occurs while importing the Commercial IP Security Option (CIPSO) protocol's category bitmap into\n the SELinux extensible bitmap via the' ebitmap_netlbl_import' routine. While processing the CIPSO\n restricted bitmap tag in the 'cipso_v4_parsetag_rbm' routine, it sets the security attribute to indicate\n that the category bitmap is present, even if it has not been allocated. This issue leads to a NULL pointer\n dereference issue while importing the same category bitmap into SELinux. This flaw allows a remote network\n user to crash the system kernel, resulting in a denial of service. (CVE-2020-10711)\n\n - A flaw was found in the Linux Kernel in versions after 4.5-rc1 in the way mremap handled DAX Huge Pages.\n This flaw allows a local attacker with access to a DAX enabled storage to escalate their privileges on the\n system. (CVE-2020-10757)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows an off-path attacker to block unauthenticated\n synchronization via a server mode packet with a spoofed source IP address, because transmissions are\n rescheduled even when a packet lacks a valid origin timestamp. (CVE-2020-11868)\n\n - An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus-\n daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local\n attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use\n this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus\n clients. (CVE-2020-12049)\n\n - An issue was found in Linux kernel before 5.5.4. The mwifiex_cmd_append_vsie_tlv() function in\n drivers/net/wireless/marvell/mwifiex/scan.c allows local users to gain privileges or cause a denial of\n service because of an incorrect memcpy and buffer overflow, aka CID-b70261a288ea. (CVE-2020-12653)\n\n - An issue was found in Linux kernel before 5.5.4. mwifiex_ret_wmm_get_status() in\n drivers/net/wireless/marvell/mwifiex/wmm.c allows a remote AP to trigger a heap-based buffer overflow\n because of an incorrect memcpy, aka CID-3a9b153c5591. (CVE-2020-12654)\n\n - The VFIO PCI driver in the Linux kernel through 5.6.13 mishandles attempts to access disabled memory\n space. (CVE-2020-12888)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows remote attackers to cause a denial of service\n (daemon exit or system time change) by predicting transmit timestamps for use in spoofed packets. The\n victim must be relying on unauthenticated IPv4 time sources. There must be an off-path attacker who can\n query time from the victim's ntpd instance. (CVE-2020-13817)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as\n unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client\n and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-14556)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via TLS to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server\n deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and\n sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component\n without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web\n service. (CVE-2020-14577)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 7u261 and 8u251; Java SE Embedded: 8u251. Difficult to exploit\n vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise\n Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to\n cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and\n server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-14578, CVE-2020-14579)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a\n person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may\n significantly impact additional products. Successful attacks of this vulnerability can result in takeover\n of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients\n running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code\n (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability\n does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code\n installed by an administrator). (CVE-2020-14583)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: 2D). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other\n than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly\n impact additional products. Successful attacks of this vulnerability can result in unauthorized creation,\n deletion or modification access to critical data or all Java SE, Java SE Embedded accessible data. Note:\n This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start\n applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the\n internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java\n deployments, typically in servers, that load and run only trusted code (e.g., code installed by an\n administrator). (CVE-2020-14593)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JAXP). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n update, insert or delete access to some of Java SE, Java SE Embedded accessible data. Note: This\n vulnerability can only be exploited by supplying data to APIs in the specified Component without using\n Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-14621)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Scripting). Supported\n versions that are affected are Java SE: 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to\n client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-2754, CVE-2020-2755)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Serialization).\n Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in\n unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded.\n Note: Applies to client and server deployment of Java. This vulnerability can be exploited through\n sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying\n data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed\n Java applets, such as through a web service. (CVE-2020-2756, CVE-2020-2757)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are\n affected are Java SE: 11.0.6 and 14. Difficult to exploit vulnerability allows unauthenticated attacker\n with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result\n in unauthorized update, insert or delete access to some of Java SE accessible data as well as unauthorized\n read access to a subset of Java SE accessible data. Note: Applies to client and server deployment of Java.\n This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java\n applets. It can also be exploited by supplying data to APIs in the specified Component without using\n sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service.\n (CVE-2020-2767)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Security). Supported\n versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to\n client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-2773)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are\n affected are Java SE: 11.0.6 and 14. Difficult to exploit vulnerability allows unauthenticated attacker\n with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result\n in unauthorized read access to a subset of Java SE accessible data. Note: Applies to client and server\n deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and\n sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component\n without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web\n service. (CVE-2020-2778)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported\n versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java\n SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause\n a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server\n deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and\n sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component\n without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web\n service. (CVE-2020-2781)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Lightweight HTTP\n Server). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded:\n 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in\n unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well\n as unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: This\n vulnerability can only be exploited by supplying data to APIs in the specified Component without using\n Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-2800)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other\n than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly\n impact additional products. Successful attacks of this vulnerability can result in takeover of Java SE,\n Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients running\n sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g.,\n code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not\n apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed\n by an administrator). (CVE-2020-2803, CVE-2020-2805)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are\n affected are Java SE: 11.0.6 and 14. Easily exploitable vulnerability allows unauthenticated attacker with\n network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result in\n unauthorized creation, deletion or modification access to critical data or all Java SE accessible data.\n Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component\n without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web\n service. (CVE-2020-2816)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Concurrency).\n Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241.\n Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in\n unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded.\n Note: Applies to client and server deployment of Java. This vulnerability can be exploited through\n sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying\n data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed\n Java applets, such as through a web service. (CVE-2020-2830)\n\n - It's been found that multiple functions in ipmitool before 1.8.19 neglect proper checking of the data\n received from a remote LAN party, which may lead to buffer overflows and potentially to remote code\n execution on the ipmitool side. This is especially dangerous if ipmitool is run as a privileged user. This\n problem is fixed in version 1.8.19. (CVE-2020-5208)\n\n - A malicious actor who intentionally exploits this lack of effective limitation on the number of fetches\n performed when processing referrals can, through the use of specially crafted referrals, cause a recursing\n server to issue a very large number of fetches in an attempt to process the referral. This has at least\n two potential effects: The performance of the recursing server can potentially be degraded by the\n additional work required to perform these fetches, and The attacker can exploit this behavior to use the\n recursing server as a reflector in a reflection attack with a high amplification factor. (CVE-2020-8616)\n\n - Using a specially-crafted message, an attacker may potentially cause a BIND server to reach an\n inconsistent state if the attacker knows (or successfully guesses) the name of a TSIG key used by the\n server. Since BIND, by default, configures a local session key even on servers whose configuration does\n not otherwise make use of it, almost all current BIND servers are vulnerable. In releases of BIND dating\n from March 2018 and after, an assertion check in tsig.c detects this inconsistent state and deliberately\n exits. Prior to the introduction of the check the server would continue operating in an inconsistent\n state, with potentially harmful results. (CVE-2020-8617)\n\nNote that Nessus has not tested for these issues but has instead relied only on the application's self-reported version\nnumber.\");\n # https://portal.nutanix.com/page/documents/security-advisories/release-advisories/details?id=NXSA-AOS-5.15.3\n script_set_attribute(attribute:\"see_also\", value:\"http://www.nessus.org/u?6382cc23\");\n script_set_attribute(attribute:\"solution\", value:\n\"Update the Nutanix AOS software to recommended version.\");\n script_set_cvss_base_vector(\"CVSS2#AV:A/AC:M/Au:N/C:C/I:C/A:C\");\n script_set_cvss_temporal_vector(\"CVSS2#E:POC/RL:OF/RC:C\");\n script_set_cvss3_base_vector(\"CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\");\n script_set_cvss3_temporal_vector(\"CVSS:3.0/E:P/RL:O/RC:C\");\n script_set_attribute(attribute:\"cvss_score_source\", value:\"CVE-2019-9503\");\n script_set_attribute(attribute:\"cvss3_score_source\", value:\"CVE-2019-19948\");\n\n script_set_attribute(attribute:\"exploitability_ease\", value:\"Exploits are available\");\n script_set_attribute(attribute:\"exploit_available\", value:\"true\");\n\n script_set_attribute(attribute:\"vuln_publication_date\", value:\"2015/03/03\");\n script_set_attribute(attribute:\"patch_publication_date\", value:\"2022/08/31\");\n script_set_attribute(attribute:\"plugin_publication_date\", value:\"2022/09/01\");\n\n script_set_attribute(attribute:\"plugin_type\", value:\"local\");\n script_set_attribute(attribute:\"cpe\", value:\"cpe:/o:nutanix:aos\");\n script_set_attribute(attribute:\"generated_plugin\", value:\"current\");\n script_end_attributes();\n\n script_category(ACT_GATHER_INFO);\n script_family(english:\"Misc.\");\n\n script_copyright(english:\"This script is Copyright (C) 2022-2023 and is owned by Tenable, Inc. or an Affiliate thereof.\");\n\n script_dependencies(\"nutanix_collect.nasl\");\n script_require_keys(\"Host/Nutanix/Data/lts\", \"Host/Nutanix/Data/Service\", \"Host/Nutanix/Data/Version\", \"Host/Nutanix/Data/arch\");\n\n exit(0);\n}\n\ninclude('vcf.inc');\ninclude('vcf_extras.inc');\n\nvar app_info = vcf::nutanix::get_app_info();\n\nvar constraints = [\n { 'fixed_version' : '5.15.3', 'product' : 'AOS', 'fixed_display' : 'Upgrade the AOS install to 5.15.3 or higher.', 'lts' : TRUE },\n { 'fixed_version' : '5.15.3', 'product' : 'NDFS', 'fixed_display' : 'Upgrade the AOS install to 5.15.3 or higher.', 'lts' : TRUE }\n];\n\nvcf::nutanix::check_version_and_report(app_info:app_info, constraints:constraints, severity:SECURITY_HOLE);\n", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2023-08-16T12:57:46", "description": "The version of AOS installed on the remote host is prior to 5.18. It is, therefore, affected by multiple vulnerabilities as referenced in the NXSA-AOS-5.18 advisory.\n\n - Buffer overflow in the XML parser in Mozilla Firefox before 38.0, Firefox ESR 31.x before 31.7, and Thunderbird before 31.7 allows remote attackers to execute arbitrary code by providing a large amount of compressed XML data, a related issue to CVE-2015-1283. (CVE-2015-2716)\n\n - The xz_decomp function in xzlib.c in libxml2 2.9.1 does not properly detect compression errors, which allows context-dependent attackers to cause a denial of service (process hang) via crafted XML data.\n (CVE-2015-8035)\n\n - In the Linux kernel before 4.1.4, a buffer overflow occurs when checking userspace params in drivers/media/dvb-frontends/cx24116.c. The maximum size for a DiSEqC command is 6, according to the userspace API. However, the code allows larger values such as 23. (CVE-2015-9289)\n\n - Use-after-free vulnerability in libxml2 through 2.9.4, as used in Google Chrome before 52.0.2743.82, allows remote attackers to cause a denial of service or possibly have unspecified other impact via vectors related to the XPointer range-to function. (CVE-2016-5131)\n\n - ImageMagick 7.0.7-12 Q16, a CPU exhaustion vulnerability was found in the function ReadDDSInfo in coders/dds.c, which allows attackers to cause a denial of service. (CVE-2017-1000476)\n\n - The ReadXWDImage function in coders\\xwd.c in ImageMagick 7.0.5-6 has a memory leak vulnerability that can cause memory exhaustion via a crafted length (number of color-map entries) field in the header of an XWD file. (CVE-2017-11166)\n\n - In ImageMagick 7.0.6-6, a memory exhaustion vulnerability was found in the function ReadTIFFImage, which allows attackers to cause a denial of service. (CVE-2017-12805)\n\n - In ImageMagick 7.0.6-6, a memory exhaustion vulnerability was found in the function format8BIM, which allows attackers to cause a denial of service. (CVE-2017-12806)\n\n - Use after free in libxml2 before 2.9.5, as used in Google Chrome prior to 63.0.3239.84 and other products, allowed a remote attacker to potentially exploit heap corruption via a crafted HTML page. (CVE-2017-15412)\n\n - In Apache httpd 2.0.23 to 2.0.65, 2.2.0 to 2.2.34, and 2.4.0 to 2.4.29, mod_authnz_ldap, if configured with AuthLDAPCharsetConfig, uses the Accept-Language header value to lookup the right charset encoding when verifying the user's credentials. If the header value is not present in the charset conversion table, a fallback mechanism is used to truncate it to a two characters value to allow a quick retry (for example, 'en-US' is truncated to 'en'). A header value of less than two characters forces an out of bound write of one NUL byte to a memory location that is not part of the string. In the worst case, quite unlikely, the process would crash which could be used as a Denial of Service attack. In the more likely case, this memory is already reserved for future use and the issue has no effect at all. (CVE-2017-15710)\n\n - The KEYS subsystem in the Linux kernel before 4.14.6 omitted an access-control check when adding a key to the current task's default request-key keyring via the request_key() system call, allowing a local user to use a sequence of crafted system calls to add keys to a keyring with only Search permission (not Write permission) to that keyring, related to construct_get_dest_keyring() in security/keys/request_key.c.\n (CVE-2017-17807)\n\n - An issue was discovered in ImageMagick 7.0.7. A memory leak vulnerability was found in the function ReadPCDImage in coders/pcd.c, which allow remote attackers to cause a denial of service via a crafted file. (CVE-2017-18251)\n\n - An issue was discovered in ImageMagick 7.0.7. The MogrifyImageList function in MagickWand/mogrify.c allows attackers to cause a denial of service (assertion failure and application exit in ReplaceImageInList) via a crafted file. (CVE-2017-18252)\n\n - An issue was discovered in ImageMagick 7.0.7. A memory leak vulnerability was found in the function WriteGIFImage in coders/gif.c, which allow remote attackers to cause a denial of service via a crafted file. (CVE-2017-18254)\n\n - The xz_head function in xzlib.c in libxml2 before 2.9.6 allows remote attackers to cause a denial of service (memory consumption) via a crafted LZMA file, because the decoder functionality does not restrict memory usage to what is required for a legitimate file. (CVE-2017-18258)\n\n - In ImageMagick 7.0.7-16 Q16 x86_64 2017-12-22, an infinite loop vulnerability was found in the function ReadMIFFImage in coders/miff.c, which allows attackers to cause a denial of service (CPU exhaustion) via a crafted MIFF image file. (CVE-2017-18271)\n\n - In ImageMagick 7.0.7-16 Q16 x86_64 2017-12-22, an infinite loop vulnerability was found in the function ReadTXTImage in coders/txt.c, which allows attackers to cause a denial of service (CPU exhaustion) via a crafted image file that is mishandled in a GetImageIndexInList call. (CVE-2017-18273)\n\n - An issue was discovered in the Linux kernel before 4.14.11. A double free may be caused by the function allocate_trace_buffer in the file kernel/trace/trace.c. (CVE-2017-18595)\n\n - avahi-daemon in Avahi through 0.6.32 and 0.7 inadvertently responds to IPv6 unicast queries with source addresses that are not on-link, which allows remote attackers to cause a denial of service (traffic amplification) and may cause information leakage by obtaining potentially sensitive information from the responding device via port-5353 UDP packets. NOTE: this may overlap CVE-2015-2809. (CVE-2017-6519)\n\n - In ImageMagick 7.0.7-28, there is an infinite loop in the ReadOneMNGImage function of the coders/png.c file. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted mng file. (CVE-2018-10177)\n\n - The do_core_note function in readelf.c in libmagic.a in file 5.33 allows remote attackers to cause a denial of service (out-of-bounds read and application crash) via a crafted ELF file. (CVE-2018-10360)\n\n - ImageMagick version 7.0.7-28 contains a memory leak in WriteTIFFImage in coders/tiff.c. (CVE-2018-10804)\n\n - ImageMagick version 7.0.7-28 contains a memory leak in ReadYCBCRImage in coders/ycbcr.c. (CVE-2018-10805)\n\n - A flaw was found in polkit before version 0.116. The implementation of the polkit_backend_interactive_authority_check_authorization function in polkitd allows to test for authentication and trigger authentication of unrelated processes owned by other users. This may result in a local DoS and information disclosure. (CVE-2018-1116)\n\n - In ImageMagick 7.0.7-20 Q16 x86_64, a memory leak vulnerability was found in the function ReadDCMImage in coders/dcm.c, which allows attackers to cause a denial of service via a crafted DCM image file.\n (CVE-2018-11656)\n\n - In ImageMagick 7.0.8-3 Q16, ReadBMPImage and WriteBMPImage in coders/bmp.c allow attackers to cause an out of bounds write via a crafted file. (CVE-2018-12599)\n\n - In ImageMagick 7.0.8-3 Q16, ReadDIBImage and WriteDIBImage in coders/dib.c allow attackers to cause an out of bounds write via a crafted file. (CVE-2018-12600)\n\n - A specially crafted request could have crashed the Apache HTTP Server prior to version 2.4.30, due to an out of bound access after a size limit is reached by reading the HTTP header. This vulnerability is considered very hard if not impossible to trigger in non-debug mode (both log and build level), so it is classified as low risk for common server usage. (CVE-2018-1301)\n\n - In ImageMagick 7.0.8-4, there is a memory leak in the XMagickCommand function in MagickCore/animate.c.\n (CVE-2018-13153)\n\n - A NULL pointer dereference vulnerability exists in the xpath.c:xmlXPathCompOpEval() function of libxml2 through 2.9.8 when parsing an invalid XPath expression in the XPATH_OP_AND or XPATH_OP_OR case.\n Applications processing untrusted XSL format inputs with the use of the libxml2 library may be vulnerable to a denial of service attack due to a crash of the application. (CVE-2018-14404)\n\n - ImageMagick 7.0.8-4 has a memory leak for a colormap in WriteMPCImage in coders/mpc.c. (CVE-2018-14434)\n\n - ImageMagick 7.0.8-4 has a memory leak in DecodeImage in coders/pcd.c. (CVE-2018-14435)\n\n - ImageMagick 7.0.8-4 has a memory leak in ReadMIFFImage in coders/miff.c. (CVE-2018-14436)\n\n - ImageMagick 7.0.8-4 has a memory leak in parse8BIM in coders/meta.c. (CVE-2018-14437)\n\n - libxml2 2.9.8, if --with-lzma is used, allows remote attackers to cause a denial of service (infinite loop) via a crafted XML file that triggers LZMA_MEMLIMIT_ERROR, as demonstrated by xmllint, a different vulnerability than CVE-2015-8035 and CVE-2018-9251. (CVE-2018-14567)\n\n - GNOME Evolution through 3.28.2 is prone to OpenPGP signatures being spoofed for arbitrary messages using a specially crafted email that contains a valid signature from the entity to be impersonated as an attachment. (CVE-2018-15587)\n\n - In ImageMagick 7.0.8-11 Q16, a tiny input file 0x50 0x36 0x36 0x36 0x36 0x4c 0x36 0x38 0x36 0x36 0x36 0x36 0x36 0x36 0x1f 0x35 0x50 0x00 can result in a hang of several minutes during which CPU and memory resources are consumed until ultimately an attempted large memory allocation fails. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted file. (CVE-2018-15607)\n\n - In ImageMagick before 7.0.8-8, a NULL pointer dereference exists in the CheckEventLogging function in MagickCore/log.c. (CVE-2018-16328)\n\n - In ImageMagick 7.0.7-29 and earlier, a missing NULL check in ReadOneJNGImage in coders/png.c allows an attacker to cause a denial of service (WriteBlob assertion failure and application exit) via a crafted file. (CVE-2018-16749)\n\n - In ImageMagick 7.0.7-29 and earlier, a memory leak in the formatIPTCfromBuffer function in coders/meta.c was found. (CVE-2018-16750)\n\n - In Apache HTTP Server 2.4 release 2.4.37 and prior, mod_session checks the session expiry time before decoding the session. This causes session expiry time to be ignored for mod_session_cookie sessions since the expiry time is loaded when the session is decoded. (CVE-2018-17199)\n\n - snmp_oid_compare in snmplib/snmp_api.c in Net-SNMP before 5.8 has a NULL Pointer Exception bug that can be used by an unauthenticated attacker to remotely cause the instance to crash via a crafted UDP packet, resulting in Denial of Service. (CVE-2018-18066)\n\n - The Requests package before 2.20.0 for Python sends an HTTP Authorization header to an http URI upon receiving a same-hostname https-to-http redirect, which makes it easier for remote attackers to discover credentials by sniffing the network. (CVE-2018-18074)\n\n - There is a memory leak in the function WriteMSLImage of coders/msl.c in ImageMagick 7.0.8-13 Q16, and the function ProcessMSLScript of coders/msl.c in GraphicsMagick before 1.3.31. (CVE-2018-18544)\n\n - The function hso_get_config_data in drivers/net/usb/hso.c in the Linux kernel through 4.19.8 reads if_num from the USB device (as a u8) and uses it to index a small array, resulting in an object out-of-bounds (OOB) read that potentially allows arbitrary read in the kernel address space. (CVE-2018-19985)\n\n - urllib3 before version 1.23 does not remove the Authorization HTTP header when following a cross-origin redirect (i.e., a redirect that differs in host, port, or scheme). This can allow for credentials in the Authorization header to be exposed to unintended hosts or transmitted in cleartext. (CVE-2018-20060)\n\n - An issue was discovered in the Linux kernel before 4.19.9. The USB subsystem mishandles size checks during the reading of an extra descriptor, related to __usb_get_extra_descriptor in drivers/usb/core/usb.c.\n (CVE-2018-20169)\n\n - In coders/bmp.c in ImageMagick before 7.0.8-16, an input file can result in an infinite loop and hang, with high CPU and memory consumption. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted file. (CVE-2018-20467)\n\n - http.cookiejar.DefaultPolicy.domain_return_ok in Lib/http/cookiejar.py in Python before 3.7.3 does not correctly validate the domain: it can be tricked into sending existing cookies to the wrong server. An attacker may abuse this flaw by using a server with a hostname that has another valid hostname as a suffix (e.g., pythonicexample.com to steal cookies for example.com). When a program uses http.cookiejar.DefaultPolicy and tries to do an HTTP connection to an attacker-controlled server, existing cookies can be leaked to the attacker. This affects 2.x through 2.7.16, 3.x before 3.4.10, 3.5.x before 3.5.7, 3.6.x before 3.6.9, and 3.7.x before 3.7.3. (CVE-2018-20852)\n\n - In macOS High Sierra before 10.13.5, an issue existed in CUPS. This issue was addressed with improved access restrictions. (CVE-2018-4180, CVE-2018-4181)\n\n - managed-keys is a feature which allows a BIND resolver to automatically maintain the keys used by trust anchors which operators configure for use in DNSSEC validation. Due to an error in the managed-keys feature it is possible for a BIND server which uses managed-keys to exit due to an assertion failure if, during key rollover, a trust anchor's keys are replaced with keys which use an unsupported algorithm.\n Versions affected: BIND 9.9.0 -> 9.10.8-P1, 9.11.0 -> 9.11.5-P1, 9.12.0 -> 9.12.3-P1, and versions 9.9.3-S1 -> 9.11.5-S3 of BIND 9 Supported Preview Edition. Versions 9.13.0 -> 9.13.6 of the 9.13 development branch are also affected. Versions prior to BIND 9.9.0 have not been evaluated for vulnerability to CVE-2018-5745. (CVE-2018-5745)\n\n - In the tun subsystem in the Linux kernel before 4.13.14, dev_get_valid_name is not called before register_netdevice. This allows local users to cause a denial of service (NULL pointer dereference and panic) via an ioctl(TUNSETIFF) call with a dev name containing a / character. This is similar to CVE-2013-4343. (CVE-2018-7191)\n\n - WriteEPTImage in coders/ept.c in ImageMagick 7.0.7-25 Q16 allows remote attackers to cause a denial of service (MagickCore/memory.c double free and application crash) or possibly have unspecified other impact via a crafted file. (CVE-2018-8804)\n\n - ImageMagick 7.0.7-26 Q16 has excessive iteration in the DecodeLabImage and EncodeLabImage functions (coders/tiff.c), which results in a hang (tens of minutes) with a tiny PoC file. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted tiff file. (CVE-2018-9133)\n\n - The HTTP/2 implementation in Apache Tomcat 9.0.0.M1 to 9.0.14 and 8.5.0 to 8.5.37 accepted streams with excessive numbers of SETTINGS frames and also permitted clients to keep streams open without reading/writing request/response data. By keeping streams open for requests that utilised the Servlet API's blocking I/O, clients were able to cause server-side threads to block eventually leading to thread exhaustion and a DoS. (CVE-2019-0199)\n\n - The fix for CVE-2019-0199 was incomplete and did not address HTTP/2 connection window exhaustion on write in Apache Tomcat versions 9.0.0.M1 to 9.0.19 and 8.5.0 to 8.5.40 . By not sending WINDOW_UPDATE messages for the connection window (stream 0) clients were able to cause server-side threads to block eventually leading to thread exhaustion and a DoS. (CVE-2019-10072)\n\n - An off-by-one read vulnerability was discovered in ImageMagick before version 7.0.7-28 in the formatIPTCfromBuffer function in coders/meta.c. A local attacker may use this flaw to read beyond the end of the buffer or to crash the program. (CVE-2019-10131)\n\n - A flaw was found in the Linux kernel's Bluetooth implementation of UART, all versions kernel 3.x.x before 4.18.0 and kernel 5.x.x. An attacker with local access and write permissions to the Bluetooth hardware could use this flaw to issue a specially crafted ioctl function call and cause the system to crash.\n (CVE-2019-10207)\n\n - In the Linux kernel before 5.1.7, a device can be tracked by an attacker using the IP ID values the kernel produces for connection-less protocols (e.g., UDP and ICMP). When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash collisions (of indices to the counter array) and thereby obtain the hashing key (via enumeration). An attack may be conducted by hosting a crafted web page that uses WebRTC or gQUIC to force UDP traffic to attacker-controlled IP addresses. (CVE-2019-10638)\n\n - The Linux kernel 4.x (starting from 4.1) and 5.x before 5.0.8 allows Information Exposure (partial kernel address disclosure), leading to a KASLR bypass. Specifically, it is possible to extract the KASLR kernel image offset using the IP ID values the kernel produces for connection-less protocols (e.g., UDP and ICMP). When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash collisions (of indices to the counter array) and thereby obtain the hashing key (via enumeration). This key contains enough bits from a kernel address (of a static variable) so when the key is extracted (via enumeration), the offset of the kernel image is exposed. This attack can be carried out remotely, by the attacker forcing the target device to send UDP or ICMP (or certain other) traffic to attacker-controlled IP addresses. Forcing a server to send UDP traffic is trivial if the server is a DNS server. ICMP traffic is trivial if the server answers ICMP Echo requests (ping). For client targets, if the target visits the attacker's web page, then WebRTC or gQUIC can be used to force UDP traffic to attacker-controlled IP addresses. NOTE: this attack against KASLR became viable in 4.1 because IP ID generation was changed to have a dependency on an address associated with a network namespace. (CVE-2019-10639)\n\n - In ImageMagick 7.0.8-36 Q16, there is a heap-based buffer over-read in the function WriteTIFFImage of coders/tiff.c, which allows an attacker to cause a denial of service or information disclosure via a crafted image file. (CVE-2019-10650)\n\n - TSX Asynchronous Abort condition on some CPUs utilizing speculative execution may allow an authenticated user to potentially enable information disclosure via a side channel with local access. (CVE-2019-11135)\n\n - The Linux kernel before 4.8 allows local users to bypass ASLR on setuid programs (such as /bin/su) because install_exec_creds() is called too late in load_elf_binary() in fs/binfmt_elf.c, and thus the ptrace_may_access() check has a race condition when reading /proc/pid/stat. (CVE-2019-11190)\n\n - In the urllib3 library through 1.24.1 for Python, CRLF injection is possible if the attacker controls the request parameter. (CVE-2019-11236)\n\n - The urllib3 library before 1.24.2 for Python mishandles certain cases where the desired set of CA certificates is different from the OS store of CA certificates, which results in SSL connections succeeding in situations where a verification failure is the correct outcome. This is related to use of the ssl_context, ca_certs, or ca_certs_dir argument. (CVE-2019-11324)\n\n - The cineon parsing component in ImageMagick 7.0.8-26 Q16 allows attackers to cause a denial-of-service (uncontrolled resource consumption) by crafting a Cineon image with an incorrect claimed image size. This occurs because ReadCINImage in coders/cin.c lacks a check for insufficient image data in a file.\n (CVE-2019-11470)\n\n - ReadXWDImage in coders/xwd.c in the XWD image parsing component of ImageMagick 7.0.8-41 Q16 allows attackers to cause a denial-of-service (divide-by-zero error) by crafting an XWD image file in which the header indicates neither LSB first nor MSB first. (CVE-2019-11472)\n\n - The Linux kernel before 5.1-rc5 allows page->_refcount reference count overflow, with resultant use-after- free issues, if about 140 GiB of RAM exists. This is related to fs/fuse/dev.c, fs/pipe.c, fs/splice.c, include/linux/mm.h, include/linux/pipe_fs_i.h, kernel/trace/trace.c, mm/gup.c, and mm/hugetlb.c. It can occur with FUSE requests. (CVE-2019-11487)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer over-read in the function WriteTIFFImage of coders/tiff.c, which allows an attacker to cause a denial of service or possibly information disclosure via a crafted image file. (CVE-2019-11597)\n\n - In ImageMagick 7.0.8-40 Q16, there is a heap-based buffer over-read in the function WritePNMImage of coders/pnm.c, which allows an attacker to cause a denial of service or possibly information disclosure via a crafted image file. This is related to SetGrayscaleImage in MagickCore/quantize.c. (CVE-2019-11598)\n\n - The do_hidp_sock_ioctl function in net/bluetooth/hidp/sock.c in the Linux kernel before 5.0.15 allows a local user to obtain potentially sensitive information from kernel stack memory via a HIDPCONNADD command, because a name field may not end with a '\\0' character. (CVE-2019-11884)\n\n - ** DISPUTED ** An issue was discovered in drm_load_edid_firmware in drivers/gpu/drm/drm_edid_load.c in the Linux kernel through 5.1.5. There is an unchecked kstrdup of fwstr, which might allow an attacker to cause a denial of service (NULL pointer dereference and system crash). NOTE: The vendor disputes this issues as not being a vulnerability because kstrdup() returning NULL is handled sufficiently and there is no chance for a NULL pointer dereference. (CVE-2019-12382)\n\n - When Apache Tomcat 9.0.0.M1 to 9.0.28, 8.5.0 to 8.5.47, 7.0.0 and 7.0.97 is configured with the JMX Remote Lifecycle Listener, a local attacker without access to the Tomcat process or configuration files is able to manipulate the RMI registry to perform a man-in-the-middle attack to capture user names and passwords used to access the JMX interface. The attacker can then use these credentials to access the JMX interface and gain complete control over the Tomcat instance. (CVE-2019-12418)\n\n - A NULL pointer dereference in the function ReadPANGOImage in coders/pango.c and the function ReadVIDImage in coders/vid.c in ImageMagick 7.0.8-34 allows remote attackers to cause a denial of service via a crafted image. (CVE-2019-12974)\n\n - ImageMagick 7.0.8-34 has a memory leak vulnerability in the WriteDPXImage function in coders/dpx.c.\n (CVE-2019-12975)\n\n - ImageMagick 7.0.8-34 has a memory leak in the ReadPCLImage function in coders/pcl.c. (CVE-2019-12976)\n\n - ImageMagick 7.0.8-34 has a use of uninitialized value vulnerability in the ReadPANGOImage function in coders/pango.c. (CVE-2019-12978)\n\n - ImageMagick 7.0.8-34 has a use of uninitialized value vulnerability in the SyncImageSettings function in MagickCore/image.c. This is related to AcquireImage in magick/image.c. (CVE-2019-12979)\n\n - ImageMagick before 7.0.8-50 has a memory leak vulnerability in the function ReadBMPImage in coders/bmp.c.\n (CVE-2019-13133)\n\n - ImageMagick before 7.0.8-50 has a memory leak vulnerability in the function ReadVIFFImage in coders/viff.c. (CVE-2019-13134)\n\n - ImageMagick before 7.0.8-50 has a use of uninitialized value vulnerability in the function ReadCUTImage in coders/cut.c. (CVE-2019-13135)\n\n - Info-ZIP UnZip 6.0 mishandles the overlapping of files inside a ZIP container, leading to denial of service (resource consumption), aka a better zip bomb issue. (CVE-2019-13232)\n\n - In arch/x86/lib/insn-eval.c in the Linux kernel before 5.1.9, there is a use-after-free for access to an LDT entry because of a race condition between modify_ldt() and a #BR exception for an MPX bounds violation. (CVE-2019-13233)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer over-read at MagickCore/threshold.c in AdaptiveThresholdImage because a width of zero is mishandled. (CVE-2019-13295)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer over-read at MagickCore/threshold.c in AdaptiveThresholdImage because a height of zero is mishandled. (CVE-2019-13297)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer overflow at MagickCore/statistic.c in EvaluateImages because of mishandling columns. (CVE-2019-13300)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks in AcquireMagickMemory because of an AnnotateImage error.\n (CVE-2019-13301)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of a misplaced assignment. (CVE-2019-13304)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of a misplaced strncpy and an off-by-one error. (CVE-2019-13305)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of off-by-one errors. (CVE-2019-13306)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer overflow at MagickCore/statistic.c in EvaluateImages because of mishandling rows. (CVE-2019-13307)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of mishandling the NoSuchImage error in CLIListOperatorImages in MagickWand/operation.c. (CVE-2019-13309)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of an error in MagickWand/mogrify.c. (CVE-2019-13310)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of a wand/mogrify.c error.\n (CVE-2019-13311)\n\n - ImageMagick 7.0.8-54 Q16 allows Division by Zero in RemoveDuplicateLayers in MagickCore/layer.c.\n (CVE-2019-13454)\n\n - In the Linux kernel through 5.2.1 on the powerpc platform, when hardware transactional memory is disabled, a local user can cause a denial of service (TM Bad Thing exception and system crash) via a sigreturn() system call that sends a crafted signal frame. This affects arch/powerpc/kernel/signal_32.c and arch/powerpc/kernel/signal_64.c. (CVE-2019-13648)\n\n - In the Linux kernel before 5.2.3, set_geometry in drivers/block/floppy.c does not validate the sect and head fields, as demonstrated by an integer overflow and out-of-bounds read. It can be triggered by an unprivileged local user when a floppy disk has been inserted. NOTE: QEMU creates the floppy device by default. (CVE-2019-14283)\n\n - A vulnerability was found in Linux Kernel, where a Heap Overflow was found in mwifiex_set_wmm_params() function of Marvell Wifi Driver. (CVE-2019-14815)\n\n - In ImageMagick 7.x before 7.0.8-42 and 6.x before 6.9.10-42, there is a use after free vulnerability in the UnmapBlob function that allows an attacker to cause a denial of service by sending a crafted file.\n (CVE-2019-14980)\n\n - In ImageMagick 7.x before 7.0.8-41 and 6.x before 6.9.10-41, there is a divide-by-zero vulnerability in the MeanShiftImage function. It allows an attacker to cause a denial of service by sending a crafted file.\n (CVE-2019-14981)\n\n - An issue was discovered in drivers/scsi/qedi/qedi_dbg.c in the Linux kernel before 5.1.12. In the qedi_dbg_* family of functions, there is an out-of-bounds read. (CVE-2019-15090)\n\n - The XWD image (X Window System window dumping file) parsing component in ImageMagick 7.0.8-41 Q16 allows attackers to cause a denial-of-service (application crash resulting from an out-of-bounds Read) in ReadXWDImage in coders/xwd.c by crafting a corrupted XWD image file, a different vulnerability than CVE-2019-11472. (CVE-2019-15139)\n\n - coders/mat.c in ImageMagick 7.0.8-43 Q16 allows remote attackers to cause a denial of service (use-after- free and application crash) or possibly have unspecified other impact by crafting a Matlab image file that is mishandled in ReadImage in MagickCore/constitute.c. (CVE-2019-15140)\n\n - WriteTIFFImage in coders/tiff.c in ImageMagick 7.0.8-43 Q16 allows attackers to cause a denial-of-service (application crash resulting from a heap-based buffer over-read) via a crafted TIFF image file, related to TIFFRewriteDirectory, TIFFWriteDirectory, TIFFWriteDirectorySec, and TIFFWriteDirectoryTagColormap in tif_dirwrite.c of LibTIFF. NOTE: this occurs because of an incomplete fix for CVE-2019-11597.\n (CVE-2019-15141)\n\n - An issue was discovered in the Linux kernel before 5.1.17. There is a NULL pointer dereference caused by a malicious USB device in the sound/usb/line6/pcm.c driver. (CVE-2019-15221)\n\n - An issue was discovered in the Linux kernel before 5.0.1. There is a memory leak in register_queue_kobjects() in net/core/net-sysfs.c, which will cause denial of service. (CVE-2019-15916)\n\n - An issue was discovered in Python through 2.7.16, 3.x through 3.5.7, 3.6.x through 3.6.9, and 3.7.x through 3.7.4. The email module wrongly parses email addresses that contain multiple @ characters. An application that uses the email module and implements some kind of checks on the From/To headers of a message could be tricked into accepting an email address that should be denied. An attack may be the same as in CVE-2019-11340; however, this CVE applies to Python more generally. (CVE-2019-16056)\n\n - ImageMagick 7.0.8-35 has a memory leak in magick/xwindow.c, related to XCreateImage. (CVE-2019-16708)\n\n - ImageMagick 7.0.8-35 has a memory leak in coders/dps.c, as demonstrated by XCreateImage. (CVE-2019-16709)\n\n - ImageMagick 7.0.8-35 has a memory leak in coders/dot.c, as demonstrated by AcquireMagickMemory in MagickCore/memory.c. (CVE-2019-16710)\n\n - ImageMagick 7.0.8-40 has a memory leak in Huffman2DEncodeImage in coders/ps2.c. (CVE-2019-16711)\n\n - ImageMagick 7.0.8-43 has a memory leak in Huffman2DEncodeImage in coders/ps3.c, as demonstrated by WritePS3Image. (CVE-2019-16712)\n\n - ImageMagick 7.0.8-43 has a memory leak in coders/dot.c, as demonstrated by PingImage in MagickCore/constitute.c. (CVE-2019-16713)\n\n - An issue was discovered in net/wireless/nl80211.c in the Linux kernel through 5.2.17. It does not check the length of variable elements in a beacon head, leading to a buffer overflow. (CVE-2019-16746)\n\n - An issue was discovered in Rsyslog v8.1908.0. contrib/pmaixforwardedfrom/pmaixforwardedfrom.c has a heap overflow in the parser for AIX log messages. The parser tries to locate a log message delimiter (in this case, a space or a colon) but fails to account for strings that do not satisfy this constraint. If the string does not match, then the variable lenMsg will reach the value zero and will skip the sanity check that detects invalid log messages. The message will then be considered valid, and the parser will eat up the nonexistent colon delimiter. In doing so, it will decrement lenMsg, a signed integer, whose value was zero and now becomes minus one. The following step in the parser is to shift left the contents of the message. To do this, it will call memmove with the right pointers to the target and destination strings, but the lenMsg will now be interpreted as a huge value, causing a heap overflow. (CVE-2019-17041)\n\n - An issue was discovered in Rsyslog v8.1908.0. contrib/pmcisconames/pmcisconames.c has a heap overflow in the parser for Cisco log messages. The parser tries to locate a log message delimiter (in this case, a space or a colon), but fails to account for strings that do not satisfy this constraint. If the string does not match, then the variable lenMsg will reach the value zero and will skip the sanity check that detects invalid log messages. The message will then be considered valid, and the parser will eat up the nonexistent colon delimiter. In doing so, it will decrement lenMsg, a signed integer, whose value was zero and now becomes minus one. The following step in the parser is to shift left the contents of the message.\n To do this, it will call memmove with the right pointers to the target and destination strings, but the lenMsg will now be interpreted as a huge value, causing a heap overflow. (CVE-2019-17042)\n\n - ImageMagick before 7.0.8-54 has a heap-based buffer overflow in ReadPSInfo in coders/ps.c.\n (CVE-2019-17540)\n\n - ImageMagick before 7.0.8-55 has a use-after-free in DestroyStringInfo in MagickCore/string.c because the error manager is mishandled in coders/jpeg.c. (CVE-2019-17541)\n\n - When using FORM authentication with Apache Tomcat 9.0.0.M1 to 9.0.29, 8.5.0 to 8.5.49 and 7.0.0 to 7.0.98 there was a narrow window where an attacker could perform a session fixation attack. The window was considered too narrow for an exploit to be practical but, erring on the side of caution, this issue has been treated as a security vulnerability. (CVE-2019-17563)\n\n - The refactoring present in Apache Tomcat 9.0.28 to 9.0.30, 8.5.48 to 8.5.50 and 7.0.98 to 7.0.99 introduced a regression. The result of the regression was that invalid Transfer-Encoding headers were incorrectly processed leading to a possibility of HTTP Request Smuggling if Tomcat was located behind a reverse proxy that incorrectly handled the invalid Transfer-Encoding header in a particular manner. Such a reverse proxy is considered unlikely. (CVE-2019-17569)\n\n - rtl_p2p_noa_ie in drivers/net/wireless/realtek/rtlwifi/ps.c in the Linux kernel through 5.3.6 lacks a certain upper-bound check, leading to a buffer overflow. (CVE-2019-17666)\n\n - The Linux kernel before 5.4.1 on powerpc allows Information Exposure because the Spectre-RSB mitigation is not in place for all applicable CPUs, aka CID-39e72bf96f58. This is related to arch/powerpc/kernel/entry_64.S and arch/powerpc/kernel/security.c. (CVE-2019-18660)\n\n - A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability.\n (CVE-2019-19338)\n\n - In the Linux kernel 5.4.0-rc2, there is a use-after-free (read) in the __blk_add_trace function in kernel/trace/blktrace.c (which is used to fill out a blk_io_trace structure and place it in a per-cpu sub- buffer). (CVE-2019-19768)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer overflow in the function WriteSGIImage of coders/sgi.c. (CVE-2019-19948)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer over-read in the function WritePNGImage of coders/png.c, related to Magick_png_write_raw_profile and LocaleNCompare. (CVE-2019-19949)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server : Pluggable Auth).\n Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable vulnerability allows high privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2737)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Security: Privileges).\n Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable vulnerability allows high privileged attacker with logon to the infrastructure where MySQL Server executes to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server as well as unauthorized update, insert or delete access to some of MySQL Server accessible data. (CVE-2019-2739)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: XML). Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable vulnerability allows low privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2740)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Parser). Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable vulnerability allows low privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2805)\n\n - It was discovered that the gnome-shell lock screen since version 3.15.91 did not properly restrict all contextual actions. An attacker with physical access to a locked workstation could invoke certain keyboard shortcuts, and potentially other actions. (CVE-2019-3820)\n\n - It was discovered evolution-ews before 3.31.3 does not check the validity of SSL certificates. An attacker could abuse this flaw to get confidential information by tricking the user into connecting to a fake server without the user noticing the difference. (CVE-2019-3890)\n\n - A race condition in perf_event_open() allows local attackers to leak sensitive data from setuid programs.\n As no relevant locks (in particular the cred_guard_mutex) are held during the ptrace_may_access() call, it is possible for the specified target task to perform an execve() syscall with setuid execution before perf_event_alloc() actually attaches to it, allowing an attacker to bypass the ptrace_may_access() check and the perf_event_exit_task(current) call that is performed in install_exec_creds() during privileged execve() calls. This issue affects kernel versions before 4.8. (CVE-2019-3901)\n\n - A heap buffer overflow in the TFTP receiving code allows for DoS or arbitrary code execution in libcurl versions 7.19.4 through 7.64.1. (CVE-2019-5436)\n\n - Controls for zone transfers may not be properly applied to Dynamically Loadable Zones (DLZs) if the zones are writable Versions affected: BIND 9.9.0 -> 9.10.8-P1, 9.11.0 -> 9.11.5-P2, 9.12.0 -> 9.12.3-P2, and versions 9.9.3-S1 -> 9.11.5-S3 of BIND 9 Supported Preview Edition. Versions 9.13.0 -> 9.13.6 of the 9.13 development branch are also affected. Versions prior to BIND 9.9.0 have not been evaluated for vulnerability to CVE-2019-6465. (CVE-2019-6465)\n\n - With pipelining enabled each incoming query on a TCP connection requires a similar resource allocation to a query received via UDP or via TCP without pipelining enabled. A client using a TCP-pipelined connection to a server could consume more resources than the server has been provisioned to handle. When a TCP connection with a large number of pipelined queries is closed, the load on the server releasing these multiple resources can cause it to become unresponsive, even for queries that can be answered authoritatively or from cache. (This is most likely to be perceived as an intermittent server problem).\n (CVE-2019-6477)\n\n - In ImageMagick before 7.0.8-25, some memory leaks exist in DecodeImage in coders/pcd.c. (CVE-2019-7175)\n\n - In ImageMagick before 7.0.8-25 and GraphicsMagick through 1.3.31, several memory leaks exist in WritePDFImage in coders/pdf.c. (CVE-2019-7397)\n\n - In ImageMagick before 7.0.8-25, a memory leak exists in WriteDIBImage in coders/dib.c. (CVE-2019-7398)\n\n - The Broadcom brcmfmac WiFi driver prior to commit a4176ec356c73a46c07c181c6d04039fafa34a9f is vulnerable to a frame validation bypass. If the brcmfmac driver receives a firmware event frame from a remote source, the is_wlc_event_frame function will cause this frame to be discarded and unprocessed. If the driver receives the firmware event frame from the host, the appropriate handler is called. This frame validation can be bypassed if the bus used is USB (for instance by a wifi dongle). This can allow firmware event frames from a remote source to be processed. In the worst case scenario, by sending specially-crafted WiFi packets, a remote, unauthenticated attacker may be able to execute arbitrary code on a vulnerable system.\n More typically, this vulnerability will result in denial-of-service conditions. (CVE-2019-9503)\n\n - rbash in Bash before 4.4-beta2 did not prevent the shell user from modifying BASH_CMDS, thus allowing the user to execute any command with the permissions of the shell. (CVE-2019-9924)\n\n - In ImageMagick 7.0.8-35 Q16, there is a stack-based buffer overflow in the function PopHexPixel of coders/ps.c, which allows an attacker to cause a denial of service or code execution via a crafted image file. (CVE-2019-9956)\n\n - An issue was discovered in International Components for Unicode (ICU) for C/C++ through 66.1. An integer overflow, leading to a heap-based buffer overflow, exists in the UnicodeString::doAppend() function in common/unistr.cpp. (CVE-2020-10531)\n\n - A NULL pointer dereference flaw was found in the Linux kernel's SELinux subsystem in versions before 5.7.\n This flaw occurs while importing the Commercial IP Security Option (CIPSO) protocol's category bitmap into the SELinux extensible bitmap via the' ebitmap_netlbl_import' routine. While processing the CIPSO restricted bitmap tag in the 'cipso_v4_parsetag_rbm' routine, it sets the security attribute to indicate that the category bitmap is present, even if it has not been allocated. This issue leads to a NULL pointer dereference issue while importing the same category bitmap into SELinux. This flaw allows a remote network user to crash the system kernel, resulting in a denial of service. (CVE-2020-10711)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows an off-path attacker to block unauthenticated synchronization via a server mode packet with a spoofed source IP address, because transmissions are rescheduled even when a packet lacks a valid origin timestamp. (CVE-2020-11868)\n\n - A specially crafted sequence of HTTP/2 requests sent to Apache Tomcat 10.0.0-M1 to 10.0.0-M5, 9.0.0.M1 to 9.0.35 and 8.5.0 to 8.5.55 could trigger high CPU usage for several seconds. If a sufficient number of such requests were made on concurrent HTTP/2 connections, the server could become unresponsive.\n (CVE-2020-11996)\n\n - An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus- daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. (CVE-2020-12049)\n\n - The VFIO PCI driver in the Linux kernel through 5.6.13 mishandles attempts to access disabled memory space. (CVE-2020-12888)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows remote attackers to cause a denial of service (daemon exit or system time change) by predicting transmit timestamps for use in spoofed packets. The victim must be relying on unauthenticated IPv4 time sources. There must be an off-path attacker who can query time from the victim's ntpd instance. (CVE-2020-13817)\n\n - An h2c direct connection to Apache Tomcat 10.0.0-M1 to 10.0.0-M6, 9.0.0.M5 to 9.0.36 and 8.5.1 to 8.5.56 did not release the HTTP/1.1 processor after the upgrade to HTTP/2. If a sufficient number of such requests were made, an OutOfMemoryException could occur leading to a denial of service. (CVE-2020-13934)\n\n - The payload length in a WebSocket frame was not correctly validated in Apache Tomcat 10.0.0-M1 to 10.0.0-M6, 9.0.0.M1 to 9.0.36, 8.5.0 to 8.5.56 and 7.0.27 to 7.0.104. Invalid payload lengths could trigger an infinite loop. Multiple requests with invalid payload lengths could lead to a denial of service. (CVE-2020-13935)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14556)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via TLS to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14577)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u261 and 8u251; Java SE Embedded: 8u251. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-14578, CVE-2020-14579)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in takeover of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-14583)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: 2D). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in unauthorized creation, deletion or modification access to critical data or all Java SE, Java SE Embedded accessible data. Note:\n This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-14593)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JAXP). Supported versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data. Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-14621)\n\n - In Apache Tomcat 9.0.0.M1 to 9.0.30, 8.5.0 to 8.5.50 and 7.0.0 to 7.0.99 the HTTP header parsing code used an approach to end-of-line parsing that allowed some invalid HTTP headers to be parsed as valid. This led to a possibility of HTTP Request Smuggling if Tomcat was located behind a reverse proxy that incorrectly handled the invalid Transfer-Encoding header in a particular manner. Such a reverse proxy is considered unlikely. (CVE-2020-1935)\n\n - When using the Apache JServ Protocol (AJP), care must be taken when trusting incoming connections to Apache Tomcat. Tomcat treats AJP connections as having higher trust than, for example, a similar HTTP connection. If such connections are available to an attacker, they can be exploited in ways that may be surprising. In Apache Tomcat 9.0.0.M1 to 9.0.0.30, 8.5.0 to 8.5.50 and 7.0.0 to 7.0.99, Tomcat shipped with an AJP Connector enabled by default that listened on all configured IP addresses. It was expected (and recommended in the security guide) that this Connector would be disabled if not required. This vulnerability report identified a mechanism that allowed: - returning arbitrary files from anywhere in the web application - processing any file in the web application as a JSP Further, if the web application allowed file upload and stored those files within the web application (or the attacker was able to control the content of the web application by some other means) then this, along with the ability to process a file as a JSP, made remote code execution possible. It is important to note that mitigation is only required if an AJP port is accessible to untrusted users. Users wishing to take a defence-in-depth approach and block the vector that permits returning arbitrary files and execution as JSP may upgrade to Apache Tomcat 9.0.31, 8.5.51 or 7.0.100 or later. A number of changes were made to the default AJP Connector configuration in 9.0.31 to harden the default configuration. It is likely that users upgrading to 9.0.31, 8.5.51 or 7.0.100 or later will need to make small changes to their configurations.\n (CVE-2020-1938)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Scripting). Supported versions that are affected are Java SE: 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2754, CVE-2020-2755)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Serialization).\n Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded.\n Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2756, CVE-2020-2757)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 11.0.6 and 14. Difficult to exploit vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE accessible data as well as unauthorized read access to a subset of Java SE accessible data. Note: Applies to client and server deployment of Java.\n This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service.\n (CVE-2020-2767)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Security). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2773)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 11.0.6 and 14. Difficult to exploit vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result in unauthorized read access to a subset of Java SE accessible data. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2778)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Easily exploitable vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2781)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Lightweight HTTP Server). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded:\n 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-2800)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly impact additional products. Successful attacks of this vulnerability can result in takeover of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed by an administrator). (CVE-2020-2803, CVE-2020-2805)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are affected are Java SE: 11.0.6 and 14. Easily exploitable vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result in unauthorized creation, deletion or modification access to critical data or all Java SE accessible data.\n Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service. (CVE-2020-2816)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Concurrency).\n Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241.\n Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded.\n Note: Applies to client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service. (CVE-2020-2830)\n\n - It's been found that multiple functions in ipmitool before 1.8.19 neglect proper checking of the data received from a remote LAN party, which may lead to buffer overflows and potentially to remote code execution on the ipmitool side. This is especially dangerous if ipmitool is run as a privileged user. This problem is fixed in version 1.8.19. (CVE-2020-5208)\n\n - A malicious actor who intentionally exploits this lack of effective limitation on the number of fetches performed when processing referrals can, through the use of specially crafted referrals, cause a recursing server to issue a very large number of fetches in an attempt to process the referral. This has at least two potential effects: The performance of the recursing server can potentially be degraded by the additional work required to perform these fetches, and The attacker can exploit this behavior to use the recursing server as a reflector in a reflection attack with a high amplification factor. (CVE-2020-8616)\n\n - Using a specially-crafted message, an attacker may potentially cause a BIND server to reach an inconsistent state if the attacker knows (or successfully guesses) the name of a TSIG key used by the server. Since BIND, by default, configures a local session key even on servers whose configuration does not otherwise make use of it, almost all current BIND servers are vulnerable. In releases of BIND dating from March 2018 and after, an assertion check in tsig.c detects this inconsistent state and deliberately exits. Prior to the introduction of the check the server would continue operating in an inconsistent state, with potentially harmful results. (CVE-2020-8617)\n\n - When using Apache Tomcat versions 10.0.0-M1 to 10.0.0-M4, 9.0.0.M1 to 9.0.34, 8.5.0 to 8.5.54 and 7.0.0 to 7.0.103 if a) an attacker is able to control the contents and name of a file on the server; and b) the server is configured to use the PersistenceManager with a FileStore; and c) the PersistenceManager is configured with sessionAttributeValueClassNameFilter=null (the default unless a SecurityManager is used) or a sufficiently lax filter to allow the attacker provided object to be deserialized; and d) the attacker knows the relative file path from the storage location used by FileStore to the file the attacker has control over; then, using a specifically crafted request, the attacker will be able to trigger remote code execution via deserialization of the file under their control. Note that all of conditions a) to d) must be true for the attack to succeed. (CVE-2020-9484)\n\nNote that Nessus has not tested for these issues but has instead relied only on the application's self-reported version number.", "cvss3": {}, "published": "2022-09-01T00:00:00", "type": "nessus", "title": "Nutanix AOS : Multiple Vulnerabilities (NXSA-AOS-5.18)", "bulletinFamily": "scanner", "cvss2": {}, "cvelist": ["CVE-2013-4343", "CVE-2015-1283", "CVE-2015-2716", "CVE-2015-2809", "CVE-2015-8035", "CVE-2015-9289", "CVE-2016-5131", "CVE-2017-1000476", "CVE-2017-11166", "CVE-2017-12805", "CVE-2017-12806", "CVE-2017-15412", "CVE-2017-15710", "CVE-2017-17807", "CVE-2017-18251", "CVE-2017-18252", "CVE-2017-18254", "CVE-2017-18258", "CVE-2017-18271", "CVE-2017-18273", "CVE-2017-18595", "CVE-2017-6519", "CVE-2018-10177", "CVE-2018-10360", "CVE-2018-10804", "CVE-2018-10805", "CVE-2018-1116", "CVE-2018-11656", "CVE-2018-12599", "CVE-2018-12600", "CVE-2018-1301", "CVE-2018-13153", "CVE-2018-14404", "CVE-2018-14434", "CVE-2018-14435", "CVE-2018-14436", "CVE-2018-14437", "CVE-2018-14567", "CVE-2018-15587", "CVE-2018-15607", "CVE-2018-16328", "CVE-2018-16749", "CVE-2018-16750", "CVE-2018-17199", "CVE-2018-18066", "CVE-2018-18074", "CVE-2018-18544", "CVE-2018-19985", "CVE-2018-20060", "CVE-2018-20169", "CVE-2018-20467", "CVE-2018-20852", "CVE-2018-4180", "CVE-2018-4181", "CVE-2018-4700", "CVE-2018-5745", "CVE-2018-7191", "CVE-2018-8804", "CVE-2018-9133", "CVE-2018-9251", "CVE-2019-0199", "CVE-2019-10072", "CVE-2019-10131", "CVE-2019-10207", "CVE-2019-10638", "CVE-2019-10639", "CVE-2019-10650", "CVE-2019-11135", "CVE-2019-11190", "CVE-2019-11236", "CVE-2019-11324", "CVE-2019-11340", "CVE-2019-11470", "CVE-2019-11472", "CVE-2019-11487", "CVE-2019-11597", "CVE-2019-11598", "CVE-2019-11884", "CVE-2019-12382", "CVE-2019-12418", "CVE-2019-12974", "CVE-2019-12975", "CVE-2019-12976", "CVE-2019-12978", "CVE-2019-12979", "CVE-2019-13133", "CVE-2019-13134", "CVE-2019-13135", "CVE-2019-13232", "CVE-2019-13233", "CVE-2019-13295", "CVE-2019-13297", "CVE-2019-13300", "CVE-2019-13301", "CVE-2019-13304", "CVE-2019-13305", "CVE-2019-13306", "CVE-2019-13307", "CVE-2019-13309", "CVE-2019-13310", "CVE-2019-13311", "CVE-2019-13454", "CVE-2019-13648", "CVE-2019-14283", "CVE-2019-14815", "CVE-2019-14980", "CVE-2019-14981", "CVE-2019-15090", "CVE-2019-15139", "CVE-2019-15140", "CVE-2019-15141", "CVE-2019-15221", "CVE-2019-15916", "CVE-2019-16056", "CVE-2019-16708", "CVE-2019-16709", "CVE-2019-16710", "CVE-2019-16711", "CVE-2019-16712", "CVE-2019-16713", "CVE-2019-16746", "CVE-2019-17041", "CVE-2019-17042", "CVE-2019-17540", "CVE-2019-17541", "CVE-2019-17563", "CVE-2019-17569", "CVE-2019-17666", "CVE-2019-18660", "CVE-2019-19338", "CVE-2019-19768", "CVE-2019-19948", "CVE-2019-19949", "CVE-2019-2737", "CVE-2019-2739", "CVE-2019-2740", "CVE-2019-2805", "CVE-2019-3820", "CVE-2019-3890", "CVE-2019-3901", "CVE-2019-5436", "CVE-2019-6465", "CVE-2019-6477", "CVE-2019-7175", "CVE-2019-7397", "CVE-2019-7398", "CVE-2019-9503", "CVE-2019-9924", "CVE-2019-9956", 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It is, therefore, affected by multiple vulnerabilities\nas referenced in the NXSA-AOS-5.18 advisory.\n\n - Buffer overflow in the XML parser in Mozilla Firefox before 38.0, Firefox ESR 31.x before 31.7, and\n Thunderbird before 31.7 allows remote attackers to execute arbitrary code by providing a large amount of\n compressed XML data, a related issue to CVE-2015-1283. (CVE-2015-2716)\n\n - The xz_decomp function in xzlib.c in libxml2 2.9.1 does not properly detect compression errors, which\n allows context-dependent attackers to cause a denial of service (process hang) via crafted XML data.\n (CVE-2015-8035)\n\n - In the Linux kernel before 4.1.4, a buffer overflow occurs when checking userspace params in\n drivers/media/dvb-frontends/cx24116.c. The maximum size for a DiSEqC command is 6, according to the\n userspace API. However, the code allows larger values such as 23. (CVE-2015-9289)\n\n - Use-after-free vulnerability in libxml2 through 2.9.4, as used in Google Chrome before 52.0.2743.82,\n allows remote attackers to cause a denial of service or possibly have unspecified other impact via vectors\n related to the XPointer range-to function. (CVE-2016-5131)\n\n - ImageMagick 7.0.7-12 Q16, a CPU exhaustion vulnerability was found in the function ReadDDSInfo in\n coders/dds.c, which allows attackers to cause a denial of service. (CVE-2017-1000476)\n\n - The ReadXWDImage function in coders\\xwd.c in ImageMagick 7.0.5-6 has a memory leak vulnerability that can\n cause memory exhaustion via a crafted length (number of color-map entries) field in the header of an XWD\n file. (CVE-2017-11166)\n\n - In ImageMagick 7.0.6-6, a memory exhaustion vulnerability was found in the function ReadTIFFImage, which\n allows attackers to cause a denial of service. (CVE-2017-12805)\n\n - In ImageMagick 7.0.6-6, a memory exhaustion vulnerability was found in the function format8BIM, which\n allows attackers to cause a denial of service. (CVE-2017-12806)\n\n - Use after free in libxml2 before 2.9.5, as used in Google Chrome prior to 63.0.3239.84 and other products,\n allowed a remote attacker to potentially exploit heap corruption via a crafted HTML page. (CVE-2017-15412)\n\n - In Apache httpd 2.0.23 to 2.0.65, 2.2.0 to 2.2.34, and 2.4.0 to 2.4.29, mod_authnz_ldap, if configured\n with AuthLDAPCharsetConfig, uses the Accept-Language header value to lookup the right charset encoding\n when verifying the user's credentials. If the header value is not present in the charset conversion table,\n a fallback mechanism is used to truncate it to a two characters value to allow a quick retry (for example,\n 'en-US' is truncated to 'en'). A header value of less than two characters forces an out of bound write of\n one NUL byte to a memory location that is not part of the string. In the worst case, quite unlikely, the\n process would crash which could be used as a Denial of Service attack. In the more likely case, this\n memory is already reserved for future use and the issue has no effect at all. (CVE-2017-15710)\n\n - The KEYS subsystem in the Linux kernel before 4.14.6 omitted an access-control check when adding a key to\n the current task's default request-key keyring via the request_key() system call, allowing a local user\n to use a sequence of crafted system calls to add keys to a keyring with only Search permission (not Write\n permission) to that keyring, related to construct_get_dest_keyring() in security/keys/request_key.c.\n (CVE-2017-17807)\n\n - An issue was discovered in ImageMagick 7.0.7. A memory leak vulnerability was found in the function\n ReadPCDImage in coders/pcd.c, which allow remote attackers to cause a denial of service via a crafted\n file. (CVE-2017-18251)\n\n - An issue was discovered in ImageMagick 7.0.7. The MogrifyImageList function in MagickWand/mogrify.c allows\n attackers to cause a denial of service (assertion failure and application exit in ReplaceImageInList) via\n a crafted file. (CVE-2017-18252)\n\n - An issue was discovered in ImageMagick 7.0.7. A memory leak vulnerability was found in the function\n WriteGIFImage in coders/gif.c, which allow remote attackers to cause a denial of service via a crafted\n file. (CVE-2017-18254)\n\n - The xz_head function in xzlib.c in libxml2 before 2.9.6 allows remote attackers to cause a denial of\n service (memory consumption) via a crafted LZMA file, because the decoder functionality does not restrict\n memory usage to what is required for a legitimate file. (CVE-2017-18258)\n\n - In ImageMagick 7.0.7-16 Q16 x86_64 2017-12-22, an infinite loop vulnerability was found in the function\n ReadMIFFImage in coders/miff.c, which allows attackers to cause a denial of service (CPU exhaustion) via a\n crafted MIFF image file. (CVE-2017-18271)\n\n - In ImageMagick 7.0.7-16 Q16 x86_64 2017-12-22, an infinite loop vulnerability was found in the function\n ReadTXTImage in coders/txt.c, which allows attackers to cause a denial of service (CPU exhaustion) via a\n crafted image file that is mishandled in a GetImageIndexInList call. (CVE-2017-18273)\n\n - An issue was discovered in the Linux kernel before 4.14.11. A double free may be caused by the function\n allocate_trace_buffer in the file kernel/trace/trace.c. (CVE-2017-18595)\n\n - avahi-daemon in Avahi through 0.6.32 and 0.7 inadvertently responds to IPv6 unicast queries with source\n addresses that are not on-link, which allows remote attackers to cause a denial of service (traffic\n amplification) and may cause information leakage by obtaining potentially sensitive information from the\n responding device via port-5353 UDP packets. NOTE: this may overlap CVE-2015-2809. (CVE-2017-6519)\n\n - In ImageMagick 7.0.7-28, there is an infinite loop in the ReadOneMNGImage function of the coders/png.c\n file. Remote attackers could leverage this vulnerability to cause a denial of service via a crafted mng\n file. (CVE-2018-10177)\n\n - The do_core_note function in readelf.c in libmagic.a in file 5.33 allows remote attackers to cause a\n denial of service (out-of-bounds read and application crash) via a crafted ELF file. (CVE-2018-10360)\n\n - ImageMagick version 7.0.7-28 contains a memory leak in WriteTIFFImage in coders/tiff.c. (CVE-2018-10804)\n\n - ImageMagick version 7.0.7-28 contains a memory leak in ReadYCBCRImage in coders/ycbcr.c. (CVE-2018-10805)\n\n - A flaw was found in polkit before version 0.116. The implementation of the\n polkit_backend_interactive_authority_check_authorization function in polkitd allows to test for\n authentication and trigger authentication of unrelated processes owned by other users. This may result in\n a local DoS and information disclosure. (CVE-2018-1116)\n\n - In ImageMagick 7.0.7-20 Q16 x86_64, a memory leak vulnerability was found in the function ReadDCMImage in\n coders/dcm.c, which allows attackers to cause a denial of service via a crafted DCM image file.\n (CVE-2018-11656)\n\n - In ImageMagick 7.0.8-3 Q16, ReadBMPImage and WriteBMPImage in coders/bmp.c allow attackers to cause an out\n of bounds write via a crafted file. (CVE-2018-12599)\n\n - In ImageMagick 7.0.8-3 Q16, ReadDIBImage and WriteDIBImage in coders/dib.c allow attackers to cause an out\n of bounds write via a crafted file. (CVE-2018-12600)\n\n - A specially crafted request could have crashed the Apache HTTP Server prior to version 2.4.30, due to an\n out of bound access after a size limit is reached by reading the HTTP header. This vulnerability is\n considered very hard if not impossible to trigger in non-debug mode (both log and build level), so it is\n classified as low risk for common server usage. (CVE-2018-1301)\n\n - In ImageMagick 7.0.8-4, there is a memory leak in the XMagickCommand function in MagickCore/animate.c.\n (CVE-2018-13153)\n\n - A NULL pointer dereference vulnerability exists in the xpath.c:xmlXPathCompOpEval() function of libxml2\n through 2.9.8 when parsing an invalid XPath expression in the XPATH_OP_AND or XPATH_OP_OR case.\n Applications processing untrusted XSL format inputs with the use of the libxml2 library may be vulnerable\n to a denial of service attack due to a crash of the application. (CVE-2018-14404)\n\n - ImageMagick 7.0.8-4 has a memory leak for a colormap in WriteMPCImage in coders/mpc.c. (CVE-2018-14434)\n\n - ImageMagick 7.0.8-4 has a memory leak in DecodeImage in coders/pcd.c. (CVE-2018-14435)\n\n - ImageMagick 7.0.8-4 has a memory leak in ReadMIFFImage in coders/miff.c. (CVE-2018-14436)\n\n - ImageMagick 7.0.8-4 has a memory leak in parse8BIM in coders/meta.c. (CVE-2018-14437)\n\n - libxml2 2.9.8, if --with-lzma is used, allows remote attackers to cause a denial of service (infinite\n loop) via a crafted XML file that triggers LZMA_MEMLIMIT_ERROR, as demonstrated by xmllint, a different\n vulnerability than CVE-2015-8035 and CVE-2018-9251. (CVE-2018-14567)\n\n - GNOME Evolution through 3.28.2 is prone to OpenPGP signatures being spoofed for arbitrary messages using a\n specially crafted email that contains a valid signature from the entity to be impersonated as an\n attachment. (CVE-2018-15587)\n\n - In ImageMagick 7.0.8-11 Q16, a tiny input file 0x50 0x36 0x36 0x36 0x36 0x4c 0x36 0x38 0x36 0x36 0x36 0x36\n 0x36 0x36 0x1f 0x35 0x50 0x00 can result in a hang of several minutes during which CPU and memory\n resources are consumed until ultimately an attempted large memory allocation fails. Remote attackers could\n leverage this vulnerability to cause a denial of service via a crafted file. (CVE-2018-15607)\n\n - In ImageMagick before 7.0.8-8, a NULL pointer dereference exists in the CheckEventLogging function in\n MagickCore/log.c. (CVE-2018-16328)\n\n - In ImageMagick 7.0.7-29 and earlier, a missing NULL check in ReadOneJNGImage in coders/png.c allows an\n attacker to cause a denial of service (WriteBlob assertion failure and application exit) via a crafted\n file. (CVE-2018-16749)\n\n - In ImageMagick 7.0.7-29 and earlier, a memory leak in the formatIPTCfromBuffer function in coders/meta.c\n was found. (CVE-2018-16750)\n\n - In Apache HTTP Server 2.4 release 2.4.37 and prior, mod_session checks the session expiry time before\n decoding the session. This causes session expiry time to be ignored for mod_session_cookie sessions since\n the expiry time is loaded when the session is decoded. (CVE-2018-17199)\n\n - snmp_oid_compare in snmplib/snmp_api.c in Net-SNMP before 5.8 has a NULL Pointer Exception bug that can be\n used by an unauthenticated attacker to remotely cause the instance to crash via a crafted UDP packet,\n resulting in Denial of Service. (CVE-2018-18066)\n\n - The Requests package before 2.20.0 for Python sends an HTTP Authorization header to an http URI upon\n receiving a same-hostname https-to-http redirect, which makes it easier for remote attackers to discover\n credentials by sniffing the network. (CVE-2018-18074)\n\n - There is a memory leak in the function WriteMSLImage of coders/msl.c in ImageMagick 7.0.8-13 Q16, and the\n function ProcessMSLScript of coders/msl.c in GraphicsMagick before 1.3.31. (CVE-2018-18544)\n\n - The function hso_get_config_data in drivers/net/usb/hso.c in the Linux kernel through 4.19.8 reads if_num\n from the USB device (as a u8) and uses it to index a small array, resulting in an object out-of-bounds\n (OOB) read that potentially allows arbitrary read in the kernel address space. (CVE-2018-19985)\n\n - urllib3 before version 1.23 does not remove the Authorization HTTP header when following a cross-origin\n redirect (i.e., a redirect that differs in host, port, or scheme). This can allow for credentials in the\n Authorization header to be exposed to unintended hosts or transmitted in cleartext. (CVE-2018-20060)\n\n - An issue was discovered in the Linux kernel before 4.19.9. The USB subsystem mishandles size checks during\n the reading of an extra descriptor, related to __usb_get_extra_descriptor in drivers/usb/core/usb.c.\n (CVE-2018-20169)\n\n - In coders/bmp.c in ImageMagick before 7.0.8-16, an input file can result in an infinite loop and hang,\n with high CPU and memory consumption. Remote attackers could leverage this vulnerability to cause a denial\n of service via a crafted file. (CVE-2018-20467)\n\n - http.cookiejar.DefaultPolicy.domain_return_ok in Lib/http/cookiejar.py in Python before 3.7.3 does not\n correctly validate the domain: it can be tricked into sending existing cookies to the wrong server. An\n attacker may abuse this flaw by using a server with a hostname that has another valid hostname as a suffix\n (e.g., pythonicexample.com to steal cookies for example.com). When a program uses\n http.cookiejar.DefaultPolicy and tries to do an HTTP connection to an attacker-controlled server, existing\n cookies can be leaked to the attacker. This affects 2.x through 2.7.16, 3.x before 3.4.10, 3.5.x before\n 3.5.7, 3.6.x before 3.6.9, and 3.7.x before 3.7.3. (CVE-2018-20852)\n\n - In macOS High Sierra before 10.13.5, an issue existed in CUPS. This issue was addressed with improved\n access restrictions. (CVE-2018-4180, CVE-2018-4181)\n\n - managed-keys is a feature which allows a BIND resolver to automatically maintain the keys used by trust\n anchors which operators configure for use in DNSSEC validation. Due to an error in the managed-keys\n feature it is possible for a BIND server which uses managed-keys to exit due to an assertion failure if,\n during key rollover, a trust anchor's keys are replaced with keys which use an unsupported algorithm.\n Versions affected: BIND 9.9.0 -> 9.10.8-P1, 9.11.0 -> 9.11.5-P1, 9.12.0 -> 9.12.3-P1, and versions\n 9.9.3-S1 -> 9.11.5-S3 of BIND 9 Supported Preview Edition. Versions 9.13.0 -> 9.13.6 of the 9.13\n development branch are also affected. Versions prior to BIND 9.9.0 have not been evaluated for\n vulnerability to CVE-2018-5745. (CVE-2018-5745)\n\n - In the tun subsystem in the Linux kernel before 4.13.14, dev_get_valid_name is not called before\n register_netdevice. This allows local users to cause a denial of service (NULL pointer dereference and\n panic) via an ioctl(TUNSETIFF) call with a dev name containing a / character. This is similar to\n CVE-2013-4343. (CVE-2018-7191)\n\n - WriteEPTImage in coders/ept.c in ImageMagick 7.0.7-25 Q16 allows remote attackers to cause a denial of\n service (MagickCore/memory.c double free and application crash) or possibly have unspecified other impact\n via a crafted file. (CVE-2018-8804)\n\n - ImageMagick 7.0.7-26 Q16 has excessive iteration in the DecodeLabImage and EncodeLabImage functions\n (coders/tiff.c), which results in a hang (tens of minutes) with a tiny PoC file. Remote attackers could\n leverage this vulnerability to cause a denial of service via a crafted tiff file. (CVE-2018-9133)\n\n - The HTTP/2 implementation in Apache Tomcat 9.0.0.M1 to 9.0.14 and 8.5.0 to 8.5.37 accepted streams with\n excessive numbers of SETTINGS frames and also permitted clients to keep streams open without\n reading/writing request/response data. By keeping streams open for requests that utilised the Servlet\n API's blocking I/O, clients were able to cause server-side threads to block eventually leading to thread\n exhaustion and a DoS. (CVE-2019-0199)\n\n - The fix for CVE-2019-0199 was incomplete and did not address HTTP/2 connection window exhaustion on write\n in Apache Tomcat versions 9.0.0.M1 to 9.0.19 and 8.5.0 to 8.5.40 . By not sending WINDOW_UPDATE messages\n for the connection window (stream 0) clients were able to cause server-side threads to block eventually\n leading to thread exhaustion and a DoS. (CVE-2019-10072)\n\n - An off-by-one read vulnerability was discovered in ImageMagick before version 7.0.7-28 in the\n formatIPTCfromBuffer function in coders/meta.c. A local attacker may use this flaw to read beyond the end\n of the buffer or to crash the program. (CVE-2019-10131)\n\n - A flaw was found in the Linux kernel's Bluetooth implementation of UART, all versions kernel 3.x.x before\n 4.18.0 and kernel 5.x.x. An attacker with local access and write permissions to the Bluetooth hardware\n could use this flaw to issue a specially crafted ioctl function call and cause the system to crash.\n (CVE-2019-10207)\n\n - In the Linux kernel before 5.1.7, a device can be tracked by an attacker using the IP ID values the kernel\n produces for connection-less protocols (e.g., UDP and ICMP). When such traffic is sent to multiple\n destination IP addresses, it is possible to obtain hash collisions (of indices to the counter array) and\n thereby obtain the hashing key (via enumeration). An attack may be conducted by hosting a crafted web page\n that uses WebRTC or gQUIC to force UDP traffic to attacker-controlled IP addresses. (CVE-2019-10638)\n\n - The Linux kernel 4.x (starting from 4.1) and 5.x before 5.0.8 allows Information Exposure (partial kernel\n address disclosure), leading to a KASLR bypass. Specifically, it is possible to extract the KASLR kernel\n image offset using the IP ID values the kernel produces for connection-less protocols (e.g., UDP and\n ICMP). When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash\n collisions (of indices to the counter array) and thereby obtain the hashing key (via enumeration). This\n key contains enough bits from a kernel address (of a static variable) so when the key is extracted (via\n enumeration), the offset of the kernel image is exposed. This attack can be carried out remotely, by the\n attacker forcing the target device to send UDP or ICMP (or certain other) traffic to attacker-controlled\n IP addresses. Forcing a server to send UDP traffic is trivial if the server is a DNS server. ICMP traffic\n is trivial if the server answers ICMP Echo requests (ping). For client targets, if the target visits the\n attacker's web page, then WebRTC or gQUIC can be used to force UDP traffic to attacker-controlled IP\n addresses. NOTE: this attack against KASLR became viable in 4.1 because IP ID generation was changed to\n have a dependency on an address associated with a network namespace. (CVE-2019-10639)\n\n - In ImageMagick 7.0.8-36 Q16, there is a heap-based buffer over-read in the function WriteTIFFImage of\n coders/tiff.c, which allows an attacker to cause a denial of service or information disclosure via a\n crafted image file. (CVE-2019-10650)\n\n - TSX Asynchronous Abort condition on some CPUs utilizing speculative execution may allow an authenticated\n user to potentially enable information disclosure via a side channel with local access. (CVE-2019-11135)\n\n - The Linux kernel before 4.8 allows local users to bypass ASLR on setuid programs (such as /bin/su) because\n install_exec_creds() is called too late in load_elf_binary() in fs/binfmt_elf.c, and thus the\n ptrace_may_access() check has a race condition when reading /proc/pid/stat. (CVE-2019-11190)\n\n - In the urllib3 library through 1.24.1 for Python, CRLF injection is possible if the attacker controls the\n request parameter. (CVE-2019-11236)\n\n - The urllib3 library before 1.24.2 for Python mishandles certain cases where the desired set of CA\n certificates is different from the OS store of CA certificates, which results in SSL connections\n succeeding in situations where a verification failure is the correct outcome. This is related to use of\n the ssl_context, ca_certs, or ca_certs_dir argument. (CVE-2019-11324)\n\n - The cineon parsing component in ImageMagick 7.0.8-26 Q16 allows attackers to cause a denial-of-service\n (uncontrolled resource consumption) by crafting a Cineon image with an incorrect claimed image size. This\n occurs because ReadCINImage in coders/cin.c lacks a check for insufficient image data in a file.\n (CVE-2019-11470)\n\n - ReadXWDImage in coders/xwd.c in the XWD image parsing component of ImageMagick 7.0.8-41 Q16 allows\n attackers to cause a denial-of-service (divide-by-zero error) by crafting an XWD image file in which the\n header indicates neither LSB first nor MSB first. (CVE-2019-11472)\n\n - The Linux kernel before 5.1-rc5 allows page->_refcount reference count overflow, with resultant use-after-\n free issues, if about 140 GiB of RAM exists. This is related to fs/fuse/dev.c, fs/pipe.c, fs/splice.c,\n include/linux/mm.h, include/linux/pipe_fs_i.h, kernel/trace/trace.c, mm/gup.c, and mm/hugetlb.c. It can\n occur with FUSE requests. (CVE-2019-11487)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer over-read in the function WriteTIFFImage of\n coders/tiff.c, which allows an attacker to cause a denial of service or possibly information disclosure\n via a crafted image file. (CVE-2019-11597)\n\n - In ImageMagick 7.0.8-40 Q16, there is a heap-based buffer over-read in the function WritePNMImage of\n coders/pnm.c, which allows an attacker to cause a denial of service or possibly information disclosure via\n a crafted image file. This is related to SetGrayscaleImage in MagickCore/quantize.c. (CVE-2019-11598)\n\n - The do_hidp_sock_ioctl function in net/bluetooth/hidp/sock.c in the Linux kernel before 5.0.15 allows a\n local user to obtain potentially sensitive information from kernel stack memory via a HIDPCONNADD command,\n because a name field may not end with a '\\0' character. (CVE-2019-11884)\n\n - ** DISPUTED ** An issue was discovered in drm_load_edid_firmware in drivers/gpu/drm/drm_edid_load.c in the\n Linux kernel through 5.1.5. There is an unchecked kstrdup of fwstr, which might allow an attacker to cause\n a denial of service (NULL pointer dereference and system crash). NOTE: The vendor disputes this issues as\n not being a vulnerability because kstrdup() returning NULL is handled sufficiently and there is no chance\n for a NULL pointer dereference. (CVE-2019-12382)\n\n - When Apache Tomcat 9.0.0.M1 to 9.0.28, 8.5.0 to 8.5.47, 7.0.0 and 7.0.97 is configured with the JMX Remote\n Lifecycle Listener, a local attacker without access to the Tomcat process or configuration files is able\n to manipulate the RMI registry to perform a man-in-the-middle attack to capture user names and passwords\n used to access the JMX interface. The attacker can then use these credentials to access the JMX interface\n and gain complete control over the Tomcat instance. (CVE-2019-12418)\n\n - A NULL pointer dereference in the function ReadPANGOImage in coders/pango.c and the function ReadVIDImage\n in coders/vid.c in ImageMagick 7.0.8-34 allows remote attackers to cause a denial of service via a crafted\n image. (CVE-2019-12974)\n\n - ImageMagick 7.0.8-34 has a memory leak vulnerability in the WriteDPXImage function in coders/dpx.c.\n (CVE-2019-12975)\n\n - ImageMagick 7.0.8-34 has a memory leak in the ReadPCLImage function in coders/pcl.c. (CVE-2019-12976)\n\n - ImageMagick 7.0.8-34 has a use of uninitialized value vulnerability in the ReadPANGOImage function in\n coders/pango.c. (CVE-2019-12978)\n\n - ImageMagick 7.0.8-34 has a use of uninitialized value vulnerability in the SyncImageSettings function in\n MagickCore/image.c. This is related to AcquireImage in magick/image.c. (CVE-2019-12979)\n\n - ImageMagick before 7.0.8-50 has a memory leak vulnerability in the function ReadBMPImage in coders/bmp.c.\n (CVE-2019-13133)\n\n - ImageMagick before 7.0.8-50 has a memory leak vulnerability in the function ReadVIFFImage in\n coders/viff.c. (CVE-2019-13134)\n\n - ImageMagick before 7.0.8-50 has a use of uninitialized value vulnerability in the function ReadCUTImage\n in coders/cut.c. (CVE-2019-13135)\n\n - Info-ZIP UnZip 6.0 mishandles the overlapping of files inside a ZIP container, leading to denial of\n service (resource consumption), aka a better zip bomb issue. (CVE-2019-13232)\n\n - In arch/x86/lib/insn-eval.c in the Linux kernel before 5.1.9, there is a use-after-free for access to an\n LDT entry because of a race condition between modify_ldt() and a #BR exception for an MPX bounds\n violation. (CVE-2019-13233)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer over-read at MagickCore/threshold.c in\n AdaptiveThresholdImage because a width of zero is mishandled. (CVE-2019-13295)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer over-read at MagickCore/threshold.c in\n AdaptiveThresholdImage because a height of zero is mishandled. (CVE-2019-13297)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer overflow at MagickCore/statistic.c in EvaluateImages\n because of mishandling columns. (CVE-2019-13300)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks in AcquireMagickMemory because of an AnnotateImage error.\n (CVE-2019-13301)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of a\n misplaced assignment. (CVE-2019-13304)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of a\n misplaced strncpy and an off-by-one error. (CVE-2019-13305)\n\n - ImageMagick 7.0.8-50 Q16 has a stack-based buffer overflow at coders/pnm.c in WritePNMImage because of\n off-by-one errors. (CVE-2019-13306)\n\n - ImageMagick 7.0.8-50 Q16 has a heap-based buffer overflow at MagickCore/statistic.c in EvaluateImages\n because of mishandling rows. (CVE-2019-13307)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of mishandling the NoSuchImage\n error in CLIListOperatorImages in MagickWand/operation.c. (CVE-2019-13309)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of an error in\n MagickWand/mogrify.c. (CVE-2019-13310)\n\n - ImageMagick 7.0.8-50 Q16 has memory leaks at AcquireMagickMemory because of a wand/mogrify.c error.\n (CVE-2019-13311)\n\n - ImageMagick 7.0.8-54 Q16 allows Division by Zero in RemoveDuplicateLayers in MagickCore/layer.c.\n (CVE-2019-13454)\n\n - In the Linux kernel through 5.2.1 on the powerpc platform, when hardware transactional memory is disabled,\n a local user can cause a denial of service (TM Bad Thing exception and system crash) via a sigreturn()\n system call that sends a crafted signal frame. This affects arch/powerpc/kernel/signal_32.c and\n arch/powerpc/kernel/signal_64.c. (CVE-2019-13648)\n\n - In the Linux kernel before 5.2.3, set_geometry in drivers/block/floppy.c does not validate the sect and\n head fields, as demonstrated by an integer overflow and out-of-bounds read. It can be triggered by an\n unprivileged local user when a floppy disk has been inserted. NOTE: QEMU creates the floppy device by\n default. (CVE-2019-14283)\n\n - A vulnerability was found in Linux Kernel, where a Heap Overflow was found in mwifiex_set_wmm_params()\n function of Marvell Wifi Driver. (CVE-2019-14815)\n\n - In ImageMagick 7.x before 7.0.8-42 and 6.x before 6.9.10-42, there is a use after free vulnerability in\n the UnmapBlob function that allows an attacker to cause a denial of service by sending a crafted file.\n (CVE-2019-14980)\n\n - In ImageMagick 7.x before 7.0.8-41 and 6.x before 6.9.10-41, there is a divide-by-zero vulnerability in\n the MeanShiftImage function. It allows an attacker to cause a denial of service by sending a crafted file.\n (CVE-2019-14981)\n\n - An issue was discovered in drivers/scsi/qedi/qedi_dbg.c in the Linux kernel before 5.1.12. In the\n qedi_dbg_* family of functions, there is an out-of-bounds read. (CVE-2019-15090)\n\n - The XWD image (X Window System window dumping file) parsing component in ImageMagick 7.0.8-41 Q16 allows\n attackers to cause a denial-of-service (application crash resulting from an out-of-bounds Read) in\n ReadXWDImage in coders/xwd.c by crafting a corrupted XWD image file, a different vulnerability than\n CVE-2019-11472. (CVE-2019-15139)\n\n - coders/mat.c in ImageMagick 7.0.8-43 Q16 allows remote attackers to cause a denial of service (use-after-\n free and application crash) or possibly have unspecified other impact by crafting a Matlab image file that\n is mishandled in ReadImage in MagickCore/constitute.c. (CVE-2019-15140)\n\n - WriteTIFFImage in coders/tiff.c in ImageMagick 7.0.8-43 Q16 allows attackers to cause a denial-of-service\n (application crash resulting from a heap-based buffer over-read) via a crafted TIFF image file, related to\n TIFFRewriteDirectory, TIFFWriteDirectory, TIFFWriteDirectorySec, and TIFFWriteDirectoryTagColormap in\n tif_dirwrite.c of LibTIFF. NOTE: this occurs because of an incomplete fix for CVE-2019-11597.\n (CVE-2019-15141)\n\n - An issue was discovered in the Linux kernel before 5.1.17. There is a NULL pointer dereference caused by a\n malicious USB device in the sound/usb/line6/pcm.c driver. (CVE-2019-15221)\n\n - An issue was discovered in the Linux kernel before 5.0.1. There is a memory leak in\n register_queue_kobjects() in net/core/net-sysfs.c, which will cause denial of service. (CVE-2019-15916)\n\n - An issue was discovered in Python through 2.7.16, 3.x through 3.5.7, 3.6.x through 3.6.9, and 3.7.x\n through 3.7.4. The email module wrongly parses email addresses that contain multiple @ characters. An\n application that uses the email module and implements some kind of checks on the From/To headers of a\n message could be tricked into accepting an email address that should be denied. An attack may be the same\n as in CVE-2019-11340; however, this CVE applies to Python more generally. (CVE-2019-16056)\n\n - ImageMagick 7.0.8-35 has a memory leak in magick/xwindow.c, related to XCreateImage. (CVE-2019-16708)\n\n - ImageMagick 7.0.8-35 has a memory leak in coders/dps.c, as demonstrated by XCreateImage. (CVE-2019-16709)\n\n - ImageMagick 7.0.8-35 has a memory leak in coders/dot.c, as demonstrated by AcquireMagickMemory in\n MagickCore/memory.c. (CVE-2019-16710)\n\n - ImageMagick 7.0.8-40 has a memory leak in Huffman2DEncodeImage in coders/ps2.c. (CVE-2019-16711)\n\n - ImageMagick 7.0.8-43 has a memory leak in Huffman2DEncodeImage in coders/ps3.c, as demonstrated by\n WritePS3Image. (CVE-2019-16712)\n\n - ImageMagick 7.0.8-43 has a memory leak in coders/dot.c, as demonstrated by PingImage in\n MagickCore/constitute.c. (CVE-2019-16713)\n\n - An issue was discovered in net/wireless/nl80211.c in the Linux kernel through 5.2.17. It does not check\n the length of variable elements in a beacon head, leading to a buffer overflow. (CVE-2019-16746)\n\n - An issue was discovered in Rsyslog v8.1908.0. contrib/pmaixforwardedfrom/pmaixforwardedfrom.c has a heap\n overflow in the parser for AIX log messages. The parser tries to locate a log message delimiter (in this\n case, a space or a colon) but fails to account for strings that do not satisfy this constraint. If the\n string does not match, then the variable lenMsg will reach the value zero and will skip the sanity check\n that detects invalid log messages. The message will then be considered valid, and the parser will eat up\n the nonexistent colon delimiter. In doing so, it will decrement lenMsg, a signed integer, whose value was\n zero and now becomes minus one. The following step in the parser is to shift left the contents of the\n message. To do this, it will call memmove with the right pointers to the target and destination strings,\n but the lenMsg will now be interpreted as a huge value, causing a heap overflow. (CVE-2019-17041)\n\n - An issue was discovered in Rsyslog v8.1908.0. contrib/pmcisconames/pmcisconames.c has a heap overflow in\n the parser for Cisco log messages. The parser tries to locate a log message delimiter (in this case, a\n space or a colon), but fails to account for strings that do not satisfy this constraint. If the string\n does not match, then the variable lenMsg will reach the value zero and will skip the sanity check that\n detects invalid log messages. The message will then be considered valid, and the parser will eat up the\n nonexistent colon delimiter. In doing so, it will decrement lenMsg, a signed integer, whose value was zero\n and now becomes minus one. The following step in the parser is to shift left the contents of the message.\n To do this, it will call memmove with the right pointers to the target and destination strings, but the\n lenMsg will now be interpreted as a huge value, causing a heap overflow. (CVE-2019-17042)\n\n - ImageMagick before 7.0.8-54 has a heap-based buffer overflow in ReadPSInfo in coders/ps.c.\n (CVE-2019-17540)\n\n - ImageMagick before 7.0.8-55 has a use-after-free in DestroyStringInfo in MagickCore/string.c because the\n error manager is mishandled in coders/jpeg.c. (CVE-2019-17541)\n\n - When using FORM authentication with Apache Tomcat 9.0.0.M1 to 9.0.29, 8.5.0 to 8.5.49 and 7.0.0 to 7.0.98\n there was a narrow window where an attacker could perform a session fixation attack. The window was\n considered too narrow for an exploit to be practical but, erring on the side of caution, this issue has\n been treated as a security vulnerability. (CVE-2019-17563)\n\n - The refactoring present in Apache Tomcat 9.0.28 to 9.0.30, 8.5.48 to 8.5.50 and 7.0.98 to 7.0.99\n introduced a regression. The result of the regression was that invalid Transfer-Encoding headers were\n incorrectly processed leading to a possibility of HTTP Request Smuggling if Tomcat was located behind a\n reverse proxy that incorrectly handled the invalid Transfer-Encoding header in a particular manner. Such a\n reverse proxy is considered unlikely. (CVE-2019-17569)\n\n - rtl_p2p_noa_ie in drivers/net/wireless/realtek/rtlwifi/ps.c in the Linux kernel through 5.3.6 lacks a\n certain upper-bound check, leading to a buffer overflow. (CVE-2019-17666)\n\n - The Linux kernel before 5.4.1 on powerpc allows Information Exposure because the Spectre-RSB mitigation is\n not in place for all applicable CPUs, aka CID-39e72bf96f58. This is related to\n arch/powerpc/kernel/entry_64.S and arch/powerpc/kernel/security.c. (CVE-2019-18660)\n\n - A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where,\n the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error\n occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by\n the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction\n mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism\n to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that\n host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability.\n (CVE-2019-19338)\n\n - In the Linux kernel 5.4.0-rc2, there is a use-after-free (read) in the __blk_add_trace function in\n kernel/trace/blktrace.c (which is used to fill out a blk_io_trace structure and place it in a per-cpu sub-\n buffer). (CVE-2019-19768)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer overflow in the function WriteSGIImage of\n coders/sgi.c. (CVE-2019-19948)\n\n - In ImageMagick 7.0.8-43 Q16, there is a heap-based buffer over-read in the function WritePNGImage of\n coders/png.c, related to Magick_png_write_raw_profile and LocaleNCompare. (CVE-2019-19949)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server : Pluggable Auth).\n Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily\n exploitable vulnerability allows high privileged attacker with network access via multiple protocols to\n compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to\n cause a hang or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2737)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Security: Privileges).\n Supported versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily\n exploitable vulnerability allows high privileged attacker with logon to the infrastructure where MySQL\n Server executes to compromise MySQL Server. Successful attacks of this vulnerability can result in\n unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server as well\n as unauthorized update, insert or delete access to some of MySQL Server accessible data. (CVE-2019-2739)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: XML). Supported\n versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable\n vulnerability allows low privileged attacker with network access via multiple protocols to compromise\n MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang\n or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2740)\n\n - Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Parser). Supported\n versions that are affected are 5.6.44 and prior, 5.7.26 and prior and 8.0.16 and prior. Easily exploitable\n vulnerability allows low privileged attacker with network access via multiple protocols to compromise\n MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang\n or frequently repeatable crash (complete DOS) of MySQL Server. (CVE-2019-2805)\n\n - It was discovered that the gnome-shell lock screen since version 3.15.91 did not properly restrict all\n contextual actions. An attacker with physical access to a locked workstation could invoke certain keyboard\n shortcuts, and potentially other actions. (CVE-2019-3820)\n\n - It was discovered evolution-ews before 3.31.3 does not check the validity of SSL certificates. An attacker\n could abuse this flaw to get confidential information by tricking the user into connecting to a fake\n server without the user noticing the difference. (CVE-2019-3890)\n\n - A race condition in perf_event_open() allows local attackers to leak sensitive data from setuid programs.\n As no relevant locks (in particular the cred_guard_mutex) are held during the ptrace_may_access() call, it\n is possible for the specified target task to perform an execve() syscall with setuid execution before\n perf_event_alloc() actually attaches to it, allowing an attacker to bypass the ptrace_may_access() check\n and the perf_event_exit_task(current) call that is performed in install_exec_creds() during privileged\n execve() calls. This issue affects kernel versions before 4.8. (CVE-2019-3901)\n\n - A heap buffer overflow in the TFTP receiving code allows for DoS or arbitrary code execution in libcurl\n versions 7.19.4 through 7.64.1. (CVE-2019-5436)\n\n - Controls for zone transfers may not be properly applied to Dynamically Loadable Zones (DLZs) if the zones\n are writable Versions affected: BIND 9.9.0 -> 9.10.8-P1, 9.11.0 -> 9.11.5-P2, 9.12.0 -> 9.12.3-P2, and\n versions 9.9.3-S1 -> 9.11.5-S3 of BIND 9 Supported Preview Edition. Versions 9.13.0 -> 9.13.6 of the 9.13\n development branch are also affected. Versions prior to BIND 9.9.0 have not been evaluated for\n vulnerability to CVE-2019-6465. (CVE-2019-6465)\n\n - With pipelining enabled each incoming query on a TCP connection requires a similar resource allocation to\n a query received via UDP or via TCP without pipelining enabled. A client using a TCP-pipelined connection\n to a server could consume more resources than the server has been provisioned to handle. When a TCP\n connection with a large number of pipelined queries is closed, the load on the server releasing these\n multiple resources can cause it to become unresponsive, even for queries that can be answered\n authoritatively or from cache. (This is most likely to be perceived as an intermittent server problem).\n (CVE-2019-6477)\n\n - In ImageMagick before 7.0.8-25, some memory leaks exist in DecodeImage in coders/pcd.c. (CVE-2019-7175)\n\n - In ImageMagick before 7.0.8-25 and GraphicsMagick through 1.3.31, several memory leaks exist in\n WritePDFImage in coders/pdf.c. (CVE-2019-7397)\n\n - In ImageMagick before 7.0.8-25, a memory leak exists in WriteDIBImage in coders/dib.c. (CVE-2019-7398)\n\n - The Broadcom brcmfmac WiFi driver prior to commit a4176ec356c73a46c07c181c6d04039fafa34a9f is vulnerable\n to a frame validation bypass. If the brcmfmac driver receives a firmware event frame from a remote source,\n the is_wlc_event_frame function will cause this frame to be discarded and unprocessed. If the driver\n receives the firmware event frame from the host, the appropriate handler is called. This frame validation\n can be bypassed if the bus used is USB (for instance by a wifi dongle). This can allow firmware event\n frames from a remote source to be processed. In the worst case scenario, by sending specially-crafted WiFi\n packets, a remote, unauthenticated attacker may be able to execute arbitrary code on a vulnerable system.\n More typically, this vulnerability will result in denial-of-service conditions. (CVE-2019-9503)\n\n - rbash in Bash before 4.4-beta2 did not prevent the shell user from modifying BASH_CMDS, thus allowing the\n user to execute any command with the permissions of the shell. (CVE-2019-9924)\n\n - In ImageMagick 7.0.8-35 Q16, there is a stack-based buffer overflow in the function PopHexPixel of\n coders/ps.c, which allows an attacker to cause a denial of service or code execution via a crafted image\n file. (CVE-2019-9956)\n\n - An issue was discovered in International Components for Unicode (ICU) for C/C++ through 66.1. An integer\n overflow, leading to a heap-based buffer overflow, exists in the UnicodeString::doAppend() function in\n common/unistr.cpp. (CVE-2020-10531)\n\n - A NULL pointer dereference flaw was found in the Linux kernel's SELinux subsystem in versions before 5.7.\n This flaw occurs while importing the Commercial IP Security Option (CIPSO) protocol's category bitmap into\n the SELinux extensible bitmap via the' ebitmap_netlbl_import' routine. While processing the CIPSO\n restricted bitmap tag in the 'cipso_v4_parsetag_rbm' routine, it sets the security attribute to indicate\n that the category bitmap is present, even if it has not been allocated. This issue leads to a NULL pointer\n dereference issue while importing the same category bitmap into SELinux. This flaw allows a remote network\n user to crash the system kernel, resulting in a denial of service. (CVE-2020-10711)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows an off-path attacker to block unauthenticated\n synchronization via a server mode packet with a spoofed source IP address, because transmissions are\n rescheduled even when a packet lacks a valid origin timestamp. (CVE-2020-11868)\n\n - A specially crafted sequence of HTTP/2 requests sent to Apache Tomcat 10.0.0-M1 to 10.0.0-M5, 9.0.0.M1 to\n 9.0.35 and 8.5.0 to 8.5.55 could trigger high CPU usage for several seconds. If a sufficient number of\n such requests were made on concurrent HTTP/2 connections, the server could become unresponsive.\n (CVE-2020-11996)\n\n - An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus-\n daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local\n attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use\n this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus\n clients. (CVE-2020-12049)\n\n - The VFIO PCI driver in the Linux kernel through 5.6.13 mishandles attempts to access disabled memory\n space. (CVE-2020-12888)\n\n - ntpd in ntp before 4.2.8p14 and 4.3.x before 4.3.100 allows remote attackers to cause a denial of service\n (daemon exit or system time change) by predicting transmit timestamps for use in spoofed packets. The\n victim must be relying on unauthenticated IPv4 time sources. There must be an off-path attacker who can\n query time from the victim's ntpd instance. (CVE-2020-13817)\n\n - An h2c direct connection to Apache Tomcat 10.0.0-M1 to 10.0.0-M6, 9.0.0.M5 to 9.0.36 and 8.5.1 to 8.5.56\n did not release the HTTP/1.1 processor after the upgrade to HTTP/2. If a sufficient number of such\n requests were made, an OutOfMemoryException could occur leading to a denial of service. (CVE-2020-13934)\n\n - The payload length in a WebSocket frame was not correctly validated in Apache Tomcat 10.0.0-M1 to\n 10.0.0-M6, 9.0.0.M1 to 9.0.36, 8.5.0 to 8.5.56 and 7.0.27 to 7.0.104. Invalid payload lengths could\n trigger an infinite loop. Multiple requests with invalid payload lengths could lead to a denial of\n service. (CVE-2020-13935)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well as\n unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client\n and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-14556)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via TLS to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n read access to a subset of Java SE, Java SE Embedded accessible data. Note: Applies to client and server\n deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and\n sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component\n without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web\n service. (CVE-2020-14577)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 7u261 and 8u251; Java SE Embedded: 8u251. Difficult to exploit\n vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise\n Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to\n cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and\n server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-14578, CVE-2020-14579)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a\n person other than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may\n significantly impact additional products. Successful attacks of this vulnerability can result in takeover\n of Java SE, Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients\n running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code\n (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability\n does not apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code\n installed by an administrator). (CVE-2020-14583)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: 2D). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other\n than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly\n impact additional products. Successful attacks of this vulnerability can result in unauthorized creation,\n deletion or modification access to critical data or all Java SE, Java SE Embedded accessible data. Note:\n This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start\n applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the\n internet) and rely on the Java sandbox for security. This vulnerability does not apply to Java\n deployments, typically in servers, that load and run only trusted code (e.g., code installed by an\n administrator). (CVE-2020-14593)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JAXP). Supported\n versions that are affected are Java SE: 7u261, 8u251, 11.0.7 and 14.0.1; Java SE Embedded: 8u251. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n update, insert or delete access to some of Java SE, Java SE Embedded accessible data. Note: This\n vulnerability can only be exploited by supplying data to APIs in the specified Component without using\n Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-14621)\n\n - In Apache Tomcat 9.0.0.M1 to 9.0.30, 8.5.0 to 8.5.50 and 7.0.0 to 7.0.99 the HTTP header parsing code used\n an approach to end-of-line parsing that allowed some invalid HTTP headers to be parsed as valid. This led\n to a possibility of HTTP Request Smuggling if Tomcat was located behind a reverse proxy that incorrectly\n handled the invalid Transfer-Encoding header in a particular manner. Such a reverse proxy is considered\n unlikely. (CVE-2020-1935)\n\n - When using the Apache JServ Protocol (AJP), care must be taken when trusting incoming connections to\n Apache Tomcat. Tomcat treats AJP connections as having higher trust than, for example, a similar HTTP\n connection. If such connections are available to an attacker, they can be exploited in ways that may be\n surprising. In Apache Tomcat 9.0.0.M1 to 9.0.0.30, 8.5.0 to 8.5.50 and 7.0.0 to 7.0.99, Tomcat shipped\n with an AJP Connector enabled by default that listened on all configured IP addresses. It was expected\n (and recommended in the security guide) that this Connector would be disabled if not required. This\n vulnerability report identified a mechanism that allowed: - returning arbitrary files from anywhere in the\n web application - processing any file in the web application as a JSP Further, if the web application\n allowed file upload and stored those files within the web application (or the attacker was able to control\n the content of the web application by some other means) then this, along with the ability to process a\n file as a JSP, made remote code execution possible. It is important to note that mitigation is only\n required if an AJP port is accessible to untrusted users. Users wishing to take a defence-in-depth\n approach and block the vector that permits returning arbitrary files and execution as JSP may upgrade to\n Apache Tomcat 9.0.31, 8.5.51 or 7.0.100 or later. A number of changes were made to the default AJP\n Connector configuration in 9.0.31 to harden the default configuration. It is likely that users upgrading\n to 9.0.31, 8.5.51 or 7.0.100 or later will need to make small changes to their configurations.\n (CVE-2020-1938)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Scripting). Supported\n versions that are affected are Java SE: 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to\n client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-2754, CVE-2020-2755)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Serialization).\n Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241.\n Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in\n unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded.\n Note: Applies to client and server deployment of Java. This vulnerability can be exploited through\n sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying\n data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed\n Java applets, such as through a web service. (CVE-2020-2756, CVE-2020-2757)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are\n affected are Java SE: 11.0.6 and 14. Difficult to exploit vulnerability allows unauthenticated attacker\n with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result\n in unauthorized update, insert or delete access to some of Java SE accessible data as well as unauthorized\n read access to a subset of Java SE accessible data. Note: Applies to client and server deployment of Java.\n This vulnerability can be exploited through sandboxed Java Web Start applications and sandboxed Java\n applets. It can also be exploited by supplying data to APIs in the specified Component without using\n sandboxed Java Web Start applications or sandboxed Java applets, such as through a web service.\n (CVE-2020-2767)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Security). Supported\n versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized\n ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to\n client and server deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start\n applications and sandboxed Java applets. It can also be exploited by supplying data to APIs in the\n specified Component without using sandboxed Java Web Start applications or sandboxed Java applets, such as\n through a web service. (CVE-2020-2773)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are\n affected are Java SE: 11.0.6 and 14. Difficult to exploit vulnerability allows unauthenticated attacker\n with network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result\n in unauthorized read access to a subset of Java SE accessible data. Note: Applies to client and server\n deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and\n sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component\n without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web\n service. (CVE-2020-2778)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: JSSE). Supported\n versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Easily\n exploitable vulnerability allows unauthenticated attacker with network access via HTTPS to compromise Java\n SE, Java SE Embedded. Successful attacks of this vulnerability can result in unauthorized ability to cause\n a partial denial of service (partial DOS) of Java SE, Java SE Embedded. Note: Applies to client and server\n deployment of Java. This vulnerability can be exploited through sandboxed Java Web Start applications and\n sandboxed Java applets. It can also be exploited by supplying data to APIs in the specified Component\n without using sandboxed Java Web Start applications or sandboxed Java applets, such as through a web\n service. (CVE-2020-2781)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Lightweight HTTP\n Server). Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded:\n 8u241. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in\n unauthorized update, insert or delete access to some of Java SE, Java SE Embedded accessible data as well\n as unauthorized read access to a subset of Java SE, Java SE Embedded accessible data. Note: This\n vulnerability can only be exploited by supplying data to APIs in the specified Component without using\n Untrusted Java Web Start applications or Untrusted Java applets, such as through a web service.\n (CVE-2020-2800)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Libraries). Supported\n versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241. Difficult to\n exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to\n compromise Java SE, Java SE Embedded. Successful attacks require human interaction from a person other\n than the attacker and while the vulnerability is in Java SE, Java SE Embedded, attacks may significantly\n impact additional products. Successful attacks of this vulnerability can result in takeover of Java SE,\n Java SE Embedded. Note: This vulnerability applies to Java deployments, typically in clients running\n sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g.,\n code that comes from the internet) and rely on the Java sandbox for security. This vulnerability does not\n apply to Java deployments, typically in servers, that load and run only trusted code (e.g., code installed\n by an administrator). (CVE-2020-2803, CVE-2020-2805)\n\n - Vulnerability in the Java SE product of Oracle Java SE (component: JSSE). Supported versions that are\n affected are Java SE: 11.0.6 and 14. Easily exploitable vulnerability allows unauthenticated attacker with\n network access via HTTPS to compromise Java SE. Successful attacks of this vulnerability can result in\n unauthorized creation, deletion or modification access to critical data or all Java SE accessible data.\n Note: This vulnerability can only be exploited by supplying data to APIs in the specified Component\n without using Untrusted Java Web Start applications or Untrusted Java applets, such as through a web\n service. (CVE-2020-2816)\n\n - Vulnerability in the Java SE, Java SE Embedded product of Oracle Java SE (component: Concurrency).\n Supported versions that are affected are Java SE: 7u251, 8u241, 11.0.6 and 14; Java SE Embedded: 8u241.\n Easily exploitable vulnerability allows unauthenticated attacker with network access via multiple\n protocols to compromise Java SE, Java SE Embedded. Successful attacks of this vulnerability can result in\n unauthorized ability to cause a partial denial of service (partial DOS) of Java SE, Java SE Embedded.\n Note: Applies to client and server deployment of Java. This vulnerability can be exploited through\n sandboxed Java Web Start applications and sandboxed Java applets. It can also be exploited by supplying\n data to APIs in the specified Component without using sandboxed Java Web Start applications or sandboxed\n Java applets, such as through a web service. (CVE-2020-2830)\n\n - It's been found that multiple functions in ipmitool before 1.8.19 neglect proper checking of the data\n received from a remote LAN party, which may lead to buffer overflows and potentially to remote code\n execution on the ipmitool side. This is especially dangerous if ipmitool is run as a privileged user. This\n problem is fixed in version 1.8.19. (CVE-2020-5208)\n\n - A malicious actor who intentionally exploits this lack of effective limitation on the number of fetches\n performed when processing referrals can, through the use of specially crafted referrals, cause a recursing\n server to issue a very large number of fetches in an attempt to process the referral. This has at least\n two potential effects: The performance of the recursing server can potentially be degraded by the\n additional work required to perform these fetches, and The attacker can exploit this behavior to use the\n recursing server as a reflector in a reflection attack with a high amplification factor. (CVE-2020-8616)\n\n - Using a specially-crafted message, an attacker may potentially cause a BIND server to reach an\n inconsistent state if the attacker knows (or successfully guesses) the name of a TSIG key used by the\n server. Since BIND, by default, configures a local session key even on servers whose configuration does\n not otherwise make use of it, almost all current BIND servers are vulnerable. In releases of BIND dating\n from March 2018 and after, an assertion check in tsig.c detects this inconsistent state and deliberately\n exits. Prior to the introduction of the check the server would continue operating in an inconsistent\n state, with potentially harmful results. (CVE-2020-8617)\n\n - When using Apache Tomcat versions 10.0.0-M1 to 10.0.0-M4, 9.0.0.M1 to 9.0.34, 8.5.0 to 8.5.54 and 7.0.0 to\n 7.0.103 if a) an attacker is able to control the contents and name of a file on the server; and b) the\n server is configured to use the PersistenceManager with a FileStore; and c) the PersistenceManager is\n configured with sessionAttributeValueClassNameFilter=null (the default unless a SecurityManager is used)\n or a sufficiently lax filter to allow the attacker provided object to be deserialized; and d) the attacker\n knows the relative file path from the storage location used by FileStore to the file the attacker has\n control over; then, using a specifically crafted request, the attacker will be able to trigger remote code\n execution via deserialization of the file under their control. Note that all of conditions a) to d) must\n be true for the attack to succeed. 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This update provides \nthe corresponding update for Ubuntu 12.04 ESM and Ubuntu 14.04 ESM.\n\nOriginal advisory details:\n\nKevin Backhouse discovered that DBus incorrectly handled file descriptors. \nA local attacker could possibly use this issue to cause DBus to crash, \nresulting in a denial of service.\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-06-16T00:00:00", "type": "ubuntu", "title": "DBus vulnerability", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-06-16T00:00:00", "id": "USN-4398-2", "href": "https://ubuntu.com/security/notices/USN-4398-2", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "freebsd": [{"lastseen": "2023-06-19T15:37:28", "description": "\n\nGitHub Security Lab reports:\n\nD-Bus has a file descriptor leak, which can lead to denial of service when the dbus-daemon runs out of file descriptors.\n\tAn unprivileged local attacker can use this to attack the system dbus-daemon, leading to denial of service for all users of the machine.\n\n\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-04-09T00:00:00", "type": "freebsd", "title": "dbus file descriptor leak", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-04-09T00:00:00", "id": "27616957-B084-11EA-937B-B42E99A1B9C3", "href": "https://vuxml.freebsd.org/freebsd/27616957-b084-11ea-937b-b42e99a1b9c3.html", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "redhatcve": [{"lastseen": "2023-09-06T08:38:42", "description": "An uncontrolled resource consumption vulnerability was discovered in D-Bus. The DBusServer leaks file descriptors when a message exceeds the per-message file descriptor limit. This flaw allows a local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket, to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. As a result, the system may become unusable for other users, and some services may stop working. The highest threat from this vulnerability is to system availability.\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-06-19T15:56:02", "type": "redhatcve", "title": "CVE-2020-12049", "bulletinFamily": "info", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", 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This flaw allows an attacker to gain privileges or access confidential information for any services listening on localhost ports that are not protected by authentication. (CVE-2020-8558)\n\nFor more details about the security issue(s), including the impact, a CVSS score, acknowledgments, and other related information, refer to the CVE page(s) listed in the References section.", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "ADJACENT_NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:A/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2020-08-05T10:20:40", "type": "redhat", "title": "(RHSA-2020:3184) Moderate: OpenShift Container Platform 4.3.31 openshift-enterprise-hyperkube-container security update", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 6.5, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 5.8, "vectorString": "AV:A/AC:L/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "ADJACENT_NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049", "CVE-2020-8558"], "modified": "2020-08-05T10:21:57", "id": "RHSA-2020:3184", "href": "https://access.redhat.com/errata/RHSA-2020:3184", "cvss": {"score": 5.8, "vector": "AV:A/AC:L/Au:N/C:P/I:P/A:P"}}, {"lastseen": "2023-08-04T12:27:59", "description": "Quay 3.3.1 release, including:\n\nSecurity Fix(es):\n\n* quay: build triggers can disclose robot account names and existence of private repos within namespaces (CVE-2020-14313)\n\nFor more details about the security issue(s), including the impact, a CVSS score, acknowledgments, and other related information, refer to the CVE page(s) listed in the References section.\n\nBug Fix(es):\n\n* Quay 3.3.1 release (BZ#1844197)", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 7.5, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-08-19T19:46:00", "type": "redhat", "title": "(RHSA-2020:3525) Moderate: Red Hat Quay v3.3.1 security update", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "NONE", "integrityImpact": "PARTIAL", "baseScore": 5.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:N", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-11080", "CVE-2020-12049", "CVE-2020-13777", "CVE-2020-14313"], "modified": "2020-08-19T19:47:07", "id": "RHSA-2020:3525", "href": "https://access.redhat.com/errata/RHSA-2020:3525", "cvss": {"score": 5.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:N"}}, {"lastseen": "2023-08-04T12:27:59", "description": "OpenShift Virtualization is Red Hat's virtualization solution designed for Red Hat OpenShift Container Platform.\n\nSecurity Fix(es):\n\n* kubevirt: VMIs can be used to access host files (CVE-2020-14316)\n\n* containernetworking/plugins: IPv6 router advertisements allow for MitM attacks on IPv4 clusters (CVE-2020-10749)\n\nFor more details about the security issue(s), including the impact, a CVSS score, acknowledgments, and other related information, refer to the CVE page(s) listed in the References section.\n\nAdditional Changes:\n\nThis update also fixes several bugs and adds various enhancements.\n\nThis advisory contains the following OpenShift Virtualization 2.4.0 images:\n\nRHEL-7-CNV-2.4\n==============\nkubevirt-ssp-operator-container-v2.4.0-71\n\nRHEL-8-CNV-2.4\n==============\nvirt-cdi-controller-container-v2.4.0-29\nvirt-cdi-uploadproxy-container-v2.4.0-29\nhostpath-provisioner-container-v2.4.0-25\nvirt-cdi-operator-container-v2.4.0-29\nkubevirt-metrics-collector-container-v2.4.0-18\ncnv-containernetworking-plugins-container-v2.4.0-36\nkubevirt-kvm-info-nfd-plugin-container-v2.4.0-18\nhostpath-provisioner-operator-container-v2.4.0-31\nvirt-cdi-uploadserver-container-v2.4.0-29\nvirt-cdi-apiserver-container-v2.4.0-29\nvirt-controller-container-v2.4.0-58\nvirt-cdi-cloner-container-v2.4.0-29\nkubevirt-template-validator-container-v2.4.0-21\nvm-import-operator-container-v2.4.0-21\nkubernetes-nmstate-handler-container-v2.4.0-37\nnode-maintenance-operator-container-v2.4.0-27\nvirt-operator-container-v2.4.0-58\nkubevirt-v2v-conversion-container-v2.4.0-23\ncnv-must-gather-container-v2.4.0-73\nvirtio-win-container-v2.4.0-15\nkubevirt-cpu-node-labeller-container-v2.4.0-19\novs-cni-plugin-container-v2.4.0-37\nkubevirt-vmware-container-v2.4.0-21\nhyperconverged-cluster-operator-container-v2.4.0-70\nvirt-handler-container-v2.4.0-58\nvirt-cdi-importer-container-v2.4.0-29\nvirt-launcher-container-v2.4.0-58\nkubevirt-cpu-model-nfd-plugin-container-v2.4.0-17\nvirt-api-container-v2.4.0-58\novs-cni-marker-container-v2.4.0-38\nkubemacpool-container-v2.4.0-39\ncluster-network-addons-operator-container-v2.4.0-38\nbridge-marker-container-v2.4.0-39\nvm-import-controller-container-v2.4.0-21\nhco-bundle-registry-container-v2.3.0-497", "cvss3": {"exploitabilityScore": 3.1, "cvssV3": {"baseSeverity": "CRITICAL", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "CHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 9.9, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:C/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 6.0}, "published": "2020-07-28T18:02:45", "type": "redhat", "title": "(RHSA-2020:3194) Important: Container-native Virtualization security, bug fix, and enhancement update", "bulletinFamily": "unix", "cvss2": {"severity": "HIGH", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 7.5, "vectorString": "AV:N/AC:L/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2018-14404", "CVE-2018-18074", "CVE-2018-19519", "CVE-2018-20060", "CVE-2018-20337", "CVE-2018-20852", "CVE-2018-7263", "CVE-2018-9251", "CVE-2019-1010180", "CVE-2019-1010204", "CVE-2019-11236", "CVE-2019-11324", "CVE-2019-12447", "CVE-2019-12448", "CVE-2019-12449", "CVE-2019-13232", "CVE-2019-13752", "CVE-2019-13753", "CVE-2019-14563", "CVE-2019-14822", "CVE-2019-1547", "CVE-2019-1549", "CVE-2019-1563", "CVE-2019-15847", "CVE-2019-16056", "CVE-2019-17451", "CVE-2019-19126", "CVE-2019-19232", "CVE-2019-19807", "CVE-2019-19923", "CVE-2019-19924", "CVE-2019-19925", "CVE-2019-19959", "CVE-2019-3016", "CVE-2019-3825", "CVE-2019-5094", "CVE-2019-5436", "CVE-2019-5481", "CVE-2019-5482", "CVE-2019-8457", "CVE-2020-10749", "CVE-2020-10754", "CVE-2020-10757", "CVE-2020-10766", "CVE-2020-10767", "CVE-2020-10768", "CVE-2020-11008", "CVE-2020-11080", "CVE-2020-12049", "CVE-2020-12653", "CVE-2020-12654", "CVE-2020-12662", "CVE-2020-12663", "CVE-2020-12888", "CVE-2020-13777", "CVE-2020-14316", "CVE-2020-8616", "CVE-2020-8617"], "modified": "2020-07-28T18:06:05", "id": "RHSA-2020:3194", "href": "https://access.redhat.com/errata/RHSA-2020:3194", "cvss": {"score": 7.5, "vector": "AV:N/AC:L/Au:N/C:P/I:P/A:P"}}, {"lastseen": "2023-09-12T04:36:27", "description": "Red Hat OpenShift Container Platform is Red Hat's cloud computing\nKubernetes application platform solution designed for on-premise or private\ncloud deployments.\n\nSecurity Fix(es):\n\n* golang.org/x/crypto: Processing of crafted ssh-ed25519 public keys allows for panic (CVE-2020-9283)\n\n* SSL/TLS: CBC padding timing attack (lucky-13) (CVE-2013-0169)\n\n* grafana: XSS vulnerability via a column style on the \"Dashboard > Table Panel\" screen (CVE-2018-18624)\n\n* js-jquery: prototype pollution in object's prototype leading to denial of service or remote code execution or property injection (CVE-2019-11358)\n\n* npm-serialize-javascript: XSS via unsafe characters in serialized regular expressions (CVE-2019-16769)\n\n* kibana: Prototype pollution in TSVB could result in arbitrary code execution (ESA-2020-06) (CVE-2020-7013)\n\n* nodejs-minimist: prototype pollution allows adding or modifying properties of Object.prototype using a constructor or __proto__ payload (CVE-2020-7598)\n\n* npmjs-websocket-extensions: ReDoS vulnerability in Sec-WebSocket-Extensions parser (CVE-2020-7662)\n\n* nodejs-lodash: prototype pollution in zipObjectDeep function (CVE-2020-8203)\n\n* jquery: Cross-site scripting due to improper injQuery.htmlPrefilter method (CVE-2020-11022)\n\n* jQuery: passing HTML containing <option> elements to manipulation methods could result in untrusted code execution (CVE-2020-11023)\n\n* grafana: stored XSS (CVE-2020-11110)\n\n* grafana: XSS annotation popup vulnerability (CVE-2020-12052)\n\n* grafana: XSS via column.title or cellLinkTooltip (CVE-2020-12245)\n\n* nodejs-elliptic: improper encoding checks allows a certain degree of signature malleability in ECDSA signatures (CVE-2020-13822)\n\n* golang.org/x/text: possibility to trigger an infinite loop in encoding/unicode could lead to crash (CVE-2020-14040)\n\n* nodejs-ajv: prototype pollution via crafted JSON schema in ajv.validate function (CVE-2020-15366)\n\n* openshift/console: text injection on error page via crafted url (CVE-2020-10715)\n\n* kibana: X-Frame-Option not set by default might lead to clickjacking (CVE-2020-10743)\n\n* openshift: restricted SCC allows pods to craft custom network packets (CVE-2020-14336)\n\nFor more details about the security issue(s), including the impact, a CVSS score, acknowledgments, and other related information, refer to the CVE page(s) listed in the References section.", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "CRITICAL", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 9.8, "vectorString": "CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H", "version": "3.0", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2020-10-27T14:57:54", "type": "redhat", "title": "(RHSA-2020:4298) Moderate: OpenShift Container Platform 4.6.1 image security update", "bulletinFamily": "unix", "cvss2": {"severity": "HIGH", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": true, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 9.3, "vectorString": "AV:N/AC:M/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 10.0, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2013-0169", "CVE-2016-10739", "CVE-2018-14404", "CVE-2018-14498", "CVE-2018-16890", "CVE-2018-18074", "CVE-2018-18624", "CVE-2018-18751", "CVE-2018-19519", "CVE-2018-20060", "CVE-2018-20337", "CVE-2018-20483", "CVE-2018-20657", "CVE-2018-20852", "CVE-2018-9251", "CVE-2019-1010180", "CVE-2019-1010204", "CVE-2019-11070", "CVE-2019-11236", "CVE-2019-11324", "CVE-2019-11358", "CVE-2019-11459", "CVE-2019-12447", "CVE-2019-12448", "CVE-2019-12449", "CVE-2019-12450", "CVE-2019-12795", "CVE-2019-13232", "CVE-2019-13636", "CVE-2019-13752", "CVE-2019-13753", "CVE-2019-14822", "CVE-2019-14973", "CVE-2019-1547", "CVE-2019-1549", "CVE-2019-1563", "CVE-2019-15718", "CVE-2019-15847", "CVE-2019-16056", "CVE-2019-16769", "CVE-2019-17451", "CVE-2019-18408", "CVE-2019-19126", "CVE-2019-19923", "CVE-2019-19924", "CVE-2019-19925", "CVE-2019-19959", "CVE-2019-3822", "CVE-2019-3823", "CVE-2019-3825", "CVE-2019-3843", "CVE-2019-3844", "CVE-2019-5094", "CVE-2019-5436", "CVE-2019-5481", "CVE-2019-5482", "CVE-2019-5953", "CVE-2019-6237", "CVE-2019-6251", "CVE-2019-6454", "CVE-2019-6706", "CVE-2019-7146", "CVE-2019-7149", "CVE-2019-7150", "CVE-2019-7664", "CVE-2019-7665", "CVE-2019-8457", "CVE-2019-8506", "CVE-2019-8518", "CVE-2019-8523", "CVE-2019-8524", "CVE-2019-8535", "CVE-2019-8536", "CVE-2019-8544", "CVE-2019-8558", "CVE-2019-8559", "CVE-2019-8563", "CVE-2019-8571", "CVE-2019-8583", "CVE-2019-8584", "CVE-2019-8586", "CVE-2019-8587", "CVE-2019-8594", "CVE-2019-8595", "CVE-2019-8596", "CVE-2019-8597", "CVE-2019-8601", "CVE-2019-8607", "CVE-2019-8608", "CVE-2019-8609", "CVE-2019-8610", "CVE-2019-8611", "CVE-2019-8615", "CVE-2019-8619", "CVE-2019-8622", "CVE-2019-8623", "CVE-2019-8666", "CVE-2019-8671", "CVE-2019-8672", "CVE-2019-8673", "CVE-2019-8675", "CVE-2019-8676", "CVE-2019-8677", "CVE-2019-8679", "CVE-2019-8681", "CVE-2019-8686", "CVE-2019-8687", "CVE-2019-8689", "CVE-2019-8690", "CVE-2019-8696", "CVE-2019-8726", "CVE-2019-8735", "CVE-2019-8768", "CVE-2020-10531", "CVE-2020-10715", "CVE-2020-10743", "CVE-2020-11008", "CVE-2020-11022", "CVE-2020-11023", "CVE-2020-11110", "CVE-2020-12049", "CVE-2020-12052", "CVE-2020-12245", "CVE-2020-13822", "CVE-2020-14040", "CVE-2020-14336", "CVE-2020-15366", "CVE-2020-15719", "CVE-2020-1712", "CVE-2020-7013", "CVE-2020-7598", "CVE-2020-7662", "CVE-2020-8203", "CVE-2020-8559", "CVE-2020-9283"], "modified": "2020-10-28T00:36:30", "id": "RHSA-2020:4298", "href": "https://access.redhat.com/errata/RHSA-2020:4298", "cvss": {"score": 9.3, "vector": "AV:N/AC:M/Au:N/C:C/I:C/A:C"}}], "suse": [{"lastseen": "2022-11-10T08:10:10", "description": "An update that fixes one vulnerability is now available.\n\nDescription:\n\n This update for dbus-1 fixes the following issues:\n\n - CVE-2020-12049: truncated messages lead to resource exhaustion.\n (bsc#1172505)\n\n This update was imported from the SUSE:SLE-15-SP1:Update update project.\n\n\nSpecial Instructions and Notes:\n\n Please reboot the system after installing this update.\n\nPatch Instructions:\n\n To install this openSUSE Security Update use the SUSE recommended installation methods\n like YaST online_update or \"zypper patch\".\n\n Alternatively you can run the command listed for your product:\n\n - openSUSE Leap 15.2:\n\n zypper in -t patch openSUSE-2021-1204=1", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2021-08-27T00:00:00", "type": "suse", "title": "Security update for dbus-1 (moderate)", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2021-08-27T00:00:00", "id": "OPENSUSE-SU-2021:1204-1", "href": "https://lists.opensuse.org/archives/list/security-announce@lists.opensuse.org/thread/LPUICUYAOLJREPLAWO5JOKCXD4HSH4KT/", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}, {"lastseen": "2022-04-18T12:40:10", "description": "An update that fixes one vulnerability is now available.\n\nDescription:\n\n This update for dbus-1 fixes the following issues:\n\n - CVE-2020-12049: truncated messages lead to resource exhaustion.\n (bsc#1172505)\n\n\nSpecial Instructions and Notes:\n\n Please reboot the system after installing this update.\n\nPatch Instructions:\n\n To install this openSUSE Security Update use the SUSE recommended installation methods\n like YaST online_update or \"zypper patch\".\n\n Alternatively you can run the command listed for your product:\n\n - openSUSE Leap 15.3:\n\n zypper in -t patch openSUSE-SLE-15.3-2021-2810=1", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2021-08-23T00:00:00", "type": "suse", "title": "Security update for dbus-1 (moderate)", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2021-08-23T00:00:00", "id": "OPENSUSE-SU-2021:2810-1", "href": "https://lists.opensuse.org/archives/list/security-announce@lists.opensuse.org/thread/ILND7MBTQAFIRZBI5CMERWHRUVEAKAOD/", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "cloudfoundry": [{"lastseen": "2023-06-19T15:17:29", "description": "# \n\n## Severity\n\nMedium\n\n## Vendor\n\nCanonical Ubuntu\n\n## Versions Affected\n\n * Canonical Ubuntu 16.04\n * Canonical Ubuntu 18.04\n\n## Description\n\nKevin Backhouse discovered that DBus incorrectly handled file descriptors. A local attacker could possibly use this issue to cause DBus to crash, resulting in a denial of service.\n\nCVEs contained in this USN include: CVE-2020-12049.\n\n## Affected Cloud Foundry Products and Versions\n\n_Severity is medium unless otherwise noted._\n\n * cflinuxfs3 \n * All versions prior to 0.195.0\n * Xenial Stemcells \n * 170.x versions prior to 170.222\n * 250.x versions prior to 250.201\n * 315.x versions prior to 315.188\n * 456.x versions prior to 456.115\n * 621.x versions prior to 621.77\n * All other stemcells not listed.\n * CF Deployment \n * All versions prior to v13.5.0\n\n## Mitigation\n\nUsers of affected products are strongly encouraged to follow the mitigations below. The Cloud Foundry project recommends upgrading the following releases:\n\n * cflinuxfs3 \n * Upgrade All versions to 0.195.0 or greater\n * Xenial Stemcells \n * Upgrade 170.x versions to 170.222 or greater\n * Upgrade 250.x versions to 250.201 or greater\n * Upgrade 315.x versions to 315.188 or greater\n * Upgrade 456.x versions to 456.115 or greater\n * Upgrade 621.x versions to 621.77 or greater\n * All other stemcells should be upgraded to the latest version available on [bosh.io](<https://bosh.io/stemcells>).\n * CF Deployment \n * Upgrade All versions to v13.5.0 or greater\n\n## References\n\n * [USN Notice](<https://usn.ubuntu.com/4398-1/>)\n * [CVE-2020-12049](<https://people.canonical.com/~ubuntu-security/cve/CVE-2020-12049>)\n\n## History\n\n2020-06-16: Initial vulnerability report published.\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-07-22T00:00:00", "type": "cloudfoundry", "title": "USN-4398-1: DBus vulnerability | Cloud Foundry", "bulletinFamily": "software", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-07-22T00:00:00", "id": "CFOUNDRY:B330EBE21A27BBE81910D9A1135630D4", "href": "https://www.cloudfoundry.org/blog/usn-4398-1/", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "f5": [{"lastseen": "2023-06-19T15:48:53", "description": "An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus-daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. ([CVE-2020-12049](<https://vulners.com/cve/CVE-2020-12049>))\n\nImpact\n\nA local attacker may cause a denial-of-service (DoS) attack or threaten the availability of the system.\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2021-04-12T18:20:00", "type": "f5", "title": "D-Bus vulnerability CVE-2020-12049", "bulletinFamily": "software", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2021-11-18T03:29:00", "id": "F5:K16729408", "href": "https://support.f5.com/csp/article/K16729408", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "osv": [{"lastseen": "2023-06-20T05:56:54", "description": "An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus-daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients.", "cvss3": {}, "published": "2020-06-08T17:15:00", "type": "osv", "title": "CVE-2020-12049", "bulletinFamily": "software", "cvss2": {}, "cvelist": ["CVE-2020-12049"], "modified": "2023-06-20T05:56:35", "id": "OSV:CVE-2020-12049", "href": "https://osv.dev/vulnerability/CVE-2020-12049", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2022-07-21T08:17:02", "description": "\nIt was discovered that there was a file descriptor leak in the D-Bus message\nbus.\n\n\nAn unprivileged local attacker could use this to attack the system DBus\ndaemon, leading to denial of service for all users of the machine.\n\n\n* [CVE-2020-12049](https://security-tracker.debian.org/tracker/CVE-2020-12049)\nFile descriptor leak in \\_dbus\\_read\\_socket\\_with\\_unix\\_fds\n\n\nFor Debian 8 Jessie, these problems have been fixed in version\n1.8.22-0+deb8u3.\n\n\nWe recommend that you upgrade your dbus packages.\n\n\nFurther information about Debian LTS security advisories, how to apply\nthese updates to your system and frequently asked questions can be\nfound at: <https://wiki.debian.org/LTS>\n\n\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "baseScore": 5.5, "privilegesRequired": "LOW", "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "userInteraction": "NONE", "version": "3.1"}, "impactScore": 3.6}, "published": "2020-06-05T00:00:00", "type": "osv", "title": "dbus - security update", "bulletinFamily": "software", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "acInsufInfo": false, "impactScore": 6.9, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2022-07-21T05:53:12", "id": "OSV:DLA-2235-1", "href": "https://osv.dev/vulnerability/DLA-2235-1", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "debian": [{"lastseen": "2021-10-22T11:24:00", "description": "Package : dbus\nVersion : 1.8.22-0+deb8u3\nCVE ID : CVE-2020-12049\n\nIt was discovered that there was a file descriptor leak in the D-Bus\nmessage bus.\n\nAn unprivileged local attacker could use this to attack the system\nDBus daemon, leading to denial of service for all users of the\nmachine.\n\nFor Debian 8 "Jessie", this issue has been fixed in dbus version\n1.8.22-0+deb8u3.\n\nWe recommend that you upgrade your dbus packages.\n\nFurther information about Debian LTS security advisories, how to apply\nthese updates to your system and frequently asked questions can be\nfound at: https://wiki.debian.org/LTS\n\n\nRegards,\n\n- -- \n ,''`.\n : :' : Chris Lamb\n `. `'` lamby@debian.org / chris-lamb.co.uk\n `-", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "baseScore": 5.5, "privilegesRequired": "LOW", "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "userInteraction": "NONE", "version": "3.1"}, "impactScore": 3.6}, "published": "2020-06-05T15:33:53", "type": "debian", "title": "[SECURITY] [DLA 2235-1] dbus security update", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "acInsufInfo": false, "impactScore": 6.9, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-06-05T15:33:53", "id": "DEBIAN:DLA-2235-1:7932F", "href": "https://lists.debian.org/debian-lts-announce/2020/06/msg00003.html", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "archlinux": [{"lastseen": "2023-06-19T15:02:37", "description": "Arch Linux Security Advisory ASA-202006-9\n=========================================\n\nSeverity: Low\nDate : 2020-06-13\nCVE-ID : CVE-2020-12049\nPackage : dbus\nType : denial of service\nRemote : No\nLink : https://security.archlinux.org/AVG-1183\n\nSummary\n=======\n\nThe package dbus before version 1.12.18-1 is vulnerable to denial of\nservice.\n\nResolution\n==========\n\nUpgrade to 1.12.18-1.\n\n# pacman -Syu \"dbus>=1.12.18-1\"\n\nThe problem has been fixed upstream in version 1.12.18.\n\nWorkaround\n==========\n\nNone.\n\nDescription\n===========\n\nAn issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer\nin libdbus, as used in dbus-daemon, leaks file descriptors when a\nmessage exceeds the per-message file descriptor limit. A local attacker\nwith access to the D-Bus system bus or another system service's private\nAF_UNIX socket could use this to make the system service reach its file\ndescriptor limit, denying service to subsequent D-Bus clients.\n\nImpact\n======\n\nA local attacker might be able to cause a denial of service via crafted\nDBUS messages.\n\nReferences\n==========\n\nhttps://www.openwall.com/lists/oss-security/2020/06/04/3\nhttps://gitlab.freedesktop.org/dbus/dbus/-/issues/294\nhttps://gitlab.freedesktop.org/dbus/dbus/-/commit/872b085f12f56da25a2dbd9bd0b2dff31d5aea63\nhttps://security.archlinux.org/CVE-2020-12049", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-06-13T00:00:00", "type": "archlinux", "title": "[ASA-202006-9] dbus: denial of service", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-06-13T00:00:00", "id": "ASA-202006-9", "href": "https://security.archlinux.org/ASA-202006-9", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "centos": [{"lastseen": "2023-09-07T14:43:24", "description": "**CentOS Errata and Security Advisory** CESA-2020:2894\n\n\nD-Bus is a system for sending messages between applications. It is used both for the system-wide message bus service, and as a per-user-login-session messaging facility.\n\nSecurity Fix(es):\n\n* dbus: denial of service via file descriptor leak (CVE-2020-12049)\n\nFor more details about the security issue(s), including the impact, a CVSS score, acknowledgments, and other related information, refer to the CVE page(s) listed in the References section.\n\n**Merged security bulletin from advisories:**\nhttps://lists.centos.org/pipermail/centos-announce/2020-July/085901.html\n\n**Affected packages:**\ndbus\ndbus-devel\ndbus-doc\ndbus-libs\ndbus-tests\ndbus-x11\n\n**Upstream details at:**\nhttps://access.redhat.com/errata/RHSA-2020:2894", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-07-14T22:54:19", "type": "centos", "title": "dbus security update", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-07-14T22:54:19", "id": "CESA-2020:2894", "href": "https://lists.centos.org/pipermail/centos-announce/2020-July/085901.html", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "veracode": [{"lastseen": "2022-07-27T10:30:16", "description": "dbus is vulnerable to denial of service (DoS). The vulnerability exists as through the file descriptor leak.\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-07-14T02:45:33", "type": "veracode", "title": "Denial Of Service (DoS)", "bulletinFamily": "software", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2021-03-05T00:02:28", "id": "VERACODE:25878", "href": "https://sca.analysiscenter.veracode.com/vulnerability-database/security/1/1/sid-25878/summary", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "cve": [{"lastseen": "2023-06-19T14:51:40", "description": "An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus-daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients.", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-06-08T17:15:00", "type": "cve", "title": "CVE-2020-12049", "cwe": ["CWE-404"], "bulletinFamily": "NVD", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2023-06-12T07:15:00", "cpe": ["cpe:/o:canonical:ubuntu_linux:14.04", "cpe:/o:canonical:ubuntu_linux:12.04", "cpe:/o:canonical:ubuntu_linux:18.04", "cpe:/o:canonical:ubuntu_linux:19.10", "cpe:/o:canonical:ubuntu_linux:16.04", "cpe:/o:canonical:ubuntu_linux:20.04"], "id": "CVE-2020-12049", "href": "https://web.nvd.nist.gov/view/vuln/detail?vulnId=CVE-2020-12049", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}, "cpe23": ["cpe:2.3:o:canonical:ubuntu_linux:14.04:*:*:*:esm:*:*:*", "cpe:2.3:o:canonical:ubuntu_linux:19.10:*:*:*:*:*:*:*", "cpe:2.3:o:canonical:ubuntu_linux:16.04:*:*:*:lts:*:*:*", "cpe:2.3:o:canonical:ubuntu_linux:12.04:*:*:*:*:*:*:*", "cpe:2.3:o:canonical:ubuntu_linux:20.04:*:*:*:lts:*:*:*", "cpe:2.3:o:canonical:ubuntu_linux:18.04:*:*:*:lts:*:*:*"]}], "mageia": [{"lastseen": "2023-06-19T16:34:56", "description": "The updated packages fix a security vulnerability: An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus-daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. (CVE-2020-12049) \n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-06-15T07:54:40", "type": "mageia", "title": "Updated dbus packages fix security vulnerability\n", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-06-15T07:54:40", "id": "MGASA-2020-0262", "href": "https://advisories.mageia.org/MGASA-2020-0262.html", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "gentoo": [{"lastseen": "2023-06-19T15:33:21", "description": "### Background\n\nD-Bus is a message bus system which processes can use to talk to each other. \n\n### Description\n\nD-Bus does not correctly dispose of old connections meaning that it is possible for D-Bus to hit a connection limit. \n\n### Impact\n\nAn attacker could cause a possible Denial of Service condition.\n\n### Workaround\n\nThere is no known workaround at this time.\n\n### Resolution\n\nAll D-Bus users should upgrade to the latest version:\n \n \n # emerge --sync\n # emerge --ask --oneshot --verbose \">=sys-apps/dbus-1.12.18\"", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-07-27T00:00:00", "type": "gentoo", "title": "D-Bus: Denial of service", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-07-27T00:00:00", "id": "GLSA-202007-46", "href": "https://security.gentoo.org/glsa/202007-46", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "ubuntucve": [{"lastseen": "2023-08-09T17:42:05", "description": "An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in\nlibdbus, as used in dbus-daemon, leaks file descriptors when a message\nexceeds the per-message file descriptor limit. A local attacker with access\nto the D-Bus system bus or another system service's private AF_UNIX socket\ncould use this to make the system service reach its file descriptor limit,\ndenying service to subsequent D-Bus clients.\n\n#### Bugs\n\n * <https://gitlab.freedesktop.org/dbus/dbus/-/issues/294>\n * <https://gitlab.freedesktop.org/dbus/dbus/-/issues/304>\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-06-08T00:00:00", "type": "ubuntucve", "title": "CVE-2020-12049", "bulletinFamily": "info", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-06-08T00:00:00", "id": "UB:CVE-2020-12049", "href": "https://ubuntu.com/security/CVE-2020-12049", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "debiancve": [{"lastseen": "2023-06-19T15:19:32", "description": "An issue was discovered in dbus >= 1.3.0 before 1.12.18. The DBusServer in libdbus, as used in dbus-daemon, leaks file descriptors when a message exceeds the per-message file descriptor limit. A local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket could use this to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients.", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "NONE", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 5.5, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 3.6}, "published": "2020-06-08T17:15:00", "type": "debiancve", "title": "CVE-2020-12049", "bulletinFamily": "info", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-12049"], "modified": "2020-06-08T17:15:00", "id": "DEBIANCVE:CVE-2020-12049", "href": "https://security-tracker.debian.org/tracker/CVE-2020-12049", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "amazon": [{"lastseen": "2023-06-19T15:56:20", "description": "**Issue Overview:**\n\nA flaw was found in dbus. The implementation of DBUS_COOKIE_SHA1 is susceptible to a symbolic link attack. A malicious client with write access to its own home directory could manipulate a ~/.dbus-keyrings symlink to cause the DBusServer to read and write in unintended locations resulting in an authentication bypass. The highest threat from this vulnerability is to data confidentiality and integrity as well as system availability. (CVE-2019-12749)\n\nAn uncontrolled resource consumption vulnerability was discovered in D-Bus. The DBusServer leaks file descriptors when a message exceeds the per-message file descriptor limit. This flaw allows a local attacker with access to the D-Bus system bus or another system service's private AF_UNIX socket, to make the system service reach its file descriptor limit, denying service to subsequent D-Bus clients. As a result, the system may become unusable for other users, and some services may stop working. The highest threat from this vulnerability is to system availability. (CVE-2020-12049)\n\n \n**Affected Packages:** \n\n\ndbus\n\n \n**Issue Correction:** \nRun _yum update dbus_ to update your system. \n\n\n \n\n\n**New Packages:**\n \n \n aarch64: \n \u00a0\u00a0\u00a0 dbus-1.10.24-7.amzn2.0.2.aarch64 \n \u00a0\u00a0\u00a0 dbus-libs-1.10.24-7.amzn2.0.2.aarch64 \n \u00a0\u00a0\u00a0 dbus-devel-1.10.24-7.amzn2.0.2.aarch64 \n \u00a0\u00a0\u00a0 dbus-tests-1.10.24-7.amzn2.0.2.aarch64 \n \u00a0\u00a0\u00a0 dbus-x11-1.10.24-7.amzn2.0.2.aarch64 \n \u00a0\u00a0\u00a0 dbus-debuginfo-1.10.24-7.amzn2.0.2.aarch64 \n \n i686: \n \u00a0\u00a0\u00a0 dbus-1.10.24-7.amzn2.0.2.i686 \n \u00a0\u00a0\u00a0 dbus-libs-1.10.24-7.amzn2.0.2.i686 \n \u00a0\u00a0\u00a0 dbus-devel-1.10.24-7.amzn2.0.2.i686 \n \u00a0\u00a0\u00a0 dbus-tests-1.10.24-7.amzn2.0.2.i686 \n \u00a0\u00a0\u00a0 dbus-x11-1.10.24-7.amzn2.0.2.i686 \n \u00a0\u00a0\u00a0 dbus-debuginfo-1.10.24-7.amzn2.0.2.i686 \n \n noarch: \n \u00a0\u00a0\u00a0 dbus-doc-1.10.24-7.amzn2.0.2.noarch \n \n src: \n \u00a0\u00a0\u00a0 dbus-1.10.24-7.amzn2.0.2.src \n \n x86_64: \n \u00a0\u00a0\u00a0 dbus-1.10.24-7.amzn2.0.2.x86_64 \n \u00a0\u00a0\u00a0 dbus-libs-1.10.24-7.amzn2.0.2.x86_64 \n \u00a0\u00a0\u00a0 dbus-devel-1.10.24-7.amzn2.0.2.x86_64 \n \u00a0\u00a0\u00a0 dbus-tests-1.10.24-7.amzn2.0.2.x86_64 \n \u00a0\u00a0\u00a0 dbus-x11-1.10.24-7.amzn2.0.2.x86_64 \n \u00a0\u00a0\u00a0 dbus-debuginfo-1.10.24-7.amzn2.0.2.x86_64 \n \n \n\n### Additional References\n\nRed Hat: [CVE-2019-12749](<https://access.redhat.com/security/cve/CVE-2019-12749>), [CVE-2020-12049](<https://access.redhat.com/security/cve/CVE-2020-12049>)\n\nMitre: [CVE-2019-12749](<https://vulners.com/cve/CVE-2019-12749>), [CVE-2020-12049](<https://vulners.com/cve/CVE-2020-12049>)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "NONE", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.1, "vectorString": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:N", "version": "3.0", "userInteraction": "NONE"}, "impactScore": 5.2}, "published": "2022-10-31T19:40:00", "type": "amazon", "title": "Important: dbus", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2019-12749", "CVE-2020-12049"], "modified": "2022-11-08T22:20:00", "id": "ALAS2-2022-1870", "href": "https://alas.aws.amazon.com/AL2/ALAS-2022-1870.html", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}], "photon": [{"lastseen": "2023-06-19T15:59:25", "description": "Updates of ['dbus', 'python-Twisted'] packages of Photon OS have been released.\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "CRITICAL", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 9.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2020-07-03T00:00:00", "type": "photon", "title": "Critical Photon OS Security Update - PHSA-2020-0259", "bulletinFamily": "unix", "cvss2": {"severity": "HIGH", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 7.5, "vectorString": "AV:N/AC:L/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-10108", "CVE-2020-10109", "CVE-2020-12049"], "modified": "2020-07-03T00:00:00", "id": "PHSA-2020-0259", "href": "https://github.com/vmware/photon/wiki/Security-Update-2.0-259", "cvss": {"score": 7.5, "vector": "AV:N/AC:L/Au:N/C:P/I:P/A:P"}}, {"lastseen": "2021-11-03T20:58:22", "description": "An update of {'python-Twisted', 'dbus'} packages of Photon OS has been released.\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "CRITICAL", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "baseScore": 9.8, "privilegesRequired": "NONE", "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H", "userInteraction": "NONE", "version": "3.1"}, "impactScore": 5.9}, "published": "2020-07-03T00:00:00", "type": "photon", "title": "Home\nDownload Photon OS\nUser Documentation\nFAQ\nSecurity Advisories\nRelated Information\n\nLightwave - PHSA-2020-2.0-0259", "bulletinFamily": "unix", "cvss2": {"severity": "HIGH", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 7.5, "vectorString": "AV:N/AC:L/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "acInsufInfo": false, "impactScore": 6.4, "obtainUserPrivilege": false}, "cvelist": ["CVE-2020-10108", "CVE-2020-10109", "CVE-2020-12049"], "modified": "2020-07-03T00:00:00", "id": "PHSA-2020-2.0-0259", "href": "https://github.com/vmware/photon/wiki/Security-Updates-2-259", "cvss": {"score": 7.5, "vector": "AV:N/AC:L/Au:N/C:P/I:P/A:P"}}], "ibm": [{"lastseen": "2023-02-27T21:49:20", "description": "## Summary\n\nThe product includes vulnerable components (e.g., framework libraries) that may be identified and exploited with automated tools.\n\n## Vulnerability Details\n\n** CVEID: **[CVE-2020-11868](<https://vulners.com/cve/CVE-2020-11868>) \n** DESCRIPTION: **NTP is vulnerable to a denial of service, caused by a flaw in ntpd. By sending a server mode packet with a spoofed source IP address, a remote attacker could exploit this vulnerability to block unauthenticated synchronization resulting in a denial of service condition. \nCVSS Base score: 5.9 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/180011](<https://exchange.xforce.ibmcloud.com/vulnerabilities/180011>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-13817](<https://vulners.com/cve/CVE-2020-13817>) \n** DESCRIPTION: **NTP is vulnerable to a denial of service, caused by an issue when relying on unauthenticated IPv4 time sources in ntpd. By predicting transmit timestamps for use in spoofed packets, a remote attacker could exploit this vulnerability to cause the daemon to crash or system time change. \nCVSS Base score: 7.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/183494](<https://exchange.xforce.ibmcloud.com/vulnerabilities/183494>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:H/A:H) \n \n** CVEID: **[CVE-2020-12049](<https://vulners.com/cve/CVE-2020-12049>) \n** DESCRIPTION: **D-Bus is vulnerable to a denial of service, caused by an error in _dbus_read_socket_with_unix_fds. By sending specially crafted messages, a local attacker could exploit this vulnerability to cause the system dbus-daemon (dbus-daemon --system) to leak file descriptors. \nCVSS Base score: 4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/182955](<https://exchange.xforce.ibmcloud.com/vulnerabilities/182955>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2020-8177](<https://vulners.com/cve/CVE-2020-8177>) \n** DESCRIPTION: **cURL could allow a remote attacker to overwrite arbitrary files on the system, caused by the improper handling of certain parameters when using -J (--remote-header-name) and -I (--include) in the same command line. An attacker could exploit this vulnerability to overwrite a local file. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/183931](<https://exchange.xforce.ibmcloud.com/vulnerabilities/183931>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2019-19527](<https://vulners.com/cve/CVE-2019-19527>) \n** DESCRIPTION: **Linux Kernel is vulnerable to a denial of service, caused by a use-after-free condition in drivers/hid/usbhid/hiddev.c. By connecting a specially-crafted USB device, an attacker could exploit this vulnerability to cause a kernel panic. \nCVSS Base score: 4.2 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/172524](<https://exchange.xforce.ibmcloud.com/vulnerabilities/172524>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:P/AC:H/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-10757](<https://vulners.com/cve/CVE-2020-10757>) \n** DESCRIPTION: **Linux Kernel is vulnerable to a denial of service, caused by a flaw when mremap a mmaped DAX nvdimm to a mmaped anonymous memory region. By executing a specially-crafted program, a local attacker could exploit this vulnerability to cause corrupted page table resulting in a denial of service condition. \nCVSS Base score: 6.2 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/182919](<https://exchange.xforce.ibmcloud.com/vulnerabilities/182919>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-12653](<https://vulners.com/cve/CVE-2020-12653>) \n** DESCRIPTION: **Linux Kernel could allow a local attacker to gain elevated privileges on the system, caused by an incorrect memcpy and buffer overflow in the mwifiex_cmd_append_vsie_tlv function in drivers/net/wireless/marvell/mwifiex/scan.c. By sending a specially-crafted request, an authenticated attacker could exploit this vulnerability to gain elevated privileges or cause a denial of service condition. \nCVSS Base score: 8.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/181449](<https://exchange.xforce.ibmcloud.com/vulnerabilities/181449>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-12654](<https://vulners.com/cve/CVE-2020-12654>) \n** DESCRIPTION: **Linux Kernel is vulnerable to a heap-based buffer overflow, caused by improper bounds checking by the mwifiex_ret_wmm_get_status function in drivers/net/wireless/marvell/mwifiex/wmm.c. By sending a specially-crafted request, a local attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 8.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/181450](<https://exchange.xforce.ibmcloud.com/vulnerabilities/181450>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-10713](<https://vulners.com/cve/CVE-2020-10713>) \n** DESCRIPTION: **GNU GRUB2 could allow a local authenticated attacker to execute arbitrary code on the system. By injecting a malicious payload, an attacker could exploit this vulnerability to bypass Secure Boot protections and execute arbitrary code within GRUB. Note: This vulnerability is also known as BootHole. \nCVSS Base score: 8.2 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186056](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186056>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:H/UI:N/S:C/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-14308](<https://vulners.com/cve/CVE-2020-14308>) \n** DESCRIPTION: **GNU GRUB2 is vulnerable to a heap-based buffer overflow, caused by improper bounds checking by the grub_malloc function. By sending a specially-crafted request, a local authenticated attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 6.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186057](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186057>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-14309](<https://vulners.com/cve/CVE-2020-14309>) \n** DESCRIPTION: **GNU GRUB2 is vulnerable to a heap-based buffer overflow, caused by an integer overflow in grub_squash_read_symlink. By sending a specially-crafted request, a local authenticated attacker could overflow a buffer and execute arbitrary code or cause a denial of service condition. \nCVSS Base score: 5.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186058](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186058>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:U/C:N/I:H/A:H) \n \n** CVEID: **[CVE-2020-14310](<https://vulners.com/cve/CVE-2020-14310>) \n** DESCRIPTION: **GNU GRUB2 is vulnerable to a heap-based buffer overflow, caused by an integer overflow in read_section_from_string. By sending a specially-crafted request, a local authenticated attacker could overflow a buffer and execute arbitrary code or cause a denial of service condition. \nCVSS Base score: 5.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186059](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186059>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:U/C:N/I:H/A:H) \n \n** CVEID: **[CVE-2020-14311](<https://vulners.com/cve/CVE-2020-14311>) \n** DESCRIPTION: **GNU GRUB2 is vulnerable to a heap-based buffer overflow, caused by an integer overflow in grub_ext2_read_link. By sending a specially-crafted request, a local authenticated attacker could overflow a buffer and execute arbitrary code or cause a denial of service condition. \nCVSS Base score: 5.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186060](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186060>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:U/C:N/I:H/A:H) \n \n** CVEID: **[CVE-2020-15705](<https://vulners.com/cve/CVE-2020-15705>) \n** DESCRIPTION: **GNU GRUB2 could allow a local authenticated attacker to bypass security restrictions, caused by improper validation of kernel signature when booted directly without shim. By sending a specially-crafted request, an attacker could exploit this vulnerability to bypass secure boot to perform arbitrary actions. \nCVSS Base score: 6.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186061](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186061>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-15706](<https://vulners.com/cve/CVE-2020-15706>) \n** DESCRIPTION: **GNU GRUB2 could allow a local authenticated attacker to execute arbitrary code on the system, caused by a use-after-free in the grub_script_function_create function when redefining a function during execution. By sending a specially-crafted request, an attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 6.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186062](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186062>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-15707](<https://vulners.com/cve/CVE-2020-15707>) \n** DESCRIPTION: **GNU GRUB2 is vulnerable to a heap-based buffer overflow, caused by an integer overflow in grub_cmd_initrd and grub_initrd_init. By sending a specially-crafted request, a local authenticated attacker could overflow a buffer and execute arbitrary code or cause a denial of service condition. \nCVSS Base score: 5.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186063](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186063>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:U/C:N/I:H/A:H)\n\n## Affected Products and Versions\n\nIBM QRadar Network Packet Capture 7.3.0 - 7.3.3 Patch 3\n\nIBM QRadar Network Packet Capture 7.4.0 - 7.4.1 GA\n\n \n\n\n## Remediation/Fixes\n\n[IBM QRadar Network Packet Capture 7.3.3 Patch 4](<https://www.ibm.com/support/fixcentral/swg/downloadFixes?parent=IBM%20Security&product=ibm/Other+software/IBM+QRadar+Network+Packet+Capture+Appliance&release=All&platform=All&function=fixId&fixids=7.3.3-QRadar-NETPCAP-Upgrade-13&includeRequisites=1&includeSupersedes=0&downloadMethod=http> \"IBM QRadar Network Packet Capture 7.3.3 Patch 4\" )\n\n[IBM QRadar Network Packet Capture 7.4.1 Patch 1](<https://www.ibm.com/support/fixcentral/swg/downloadFixes?parent=IBM%20Security&product=ibm/Other+software/IBM+QRadar+Network+Packet+Capture+Appliance&release=All&platform=All&function=fixId&fixids=7.4.1-QRADAR-NETPCAPFULL-1110&includeRequisites=1&includeSupersedes=0&downloadMethod=http> \"IBM QRadar Network Packet Capture 7.4.1 Patch 1\" )\n\n## Workarounds and Mitigations\n\nNone\n\n## ", "cvss3": {"exploitabilityScore": 1.5, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "CHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "HIGH", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:H/UI:N/S:C/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 6.0}, "published": "2020-10-30T16:18:45", "type": "ibm", "title": "Security Bulletin: IBM QRadar Network Packet Capture is vulnerable to Using Components with Known Vulnerabilities", "bulletinFamily": "software", "cvss2": {"severity": "HIGH", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 7.2, "vectorString": "AV:L/AC:L/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 10.0, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2019-19527", "CVE-2020-10713", "CVE-2020-10757", "CVE-2020-11868", "CVE-2020-12049", "CVE-2020-12653", "CVE-2020-12654", "CVE-2020-13817", "CVE-2020-14308", "CVE-2020-14309", "CVE-2020-14310", "CVE-2020-14311", "CVE-2020-15705", "CVE-2020-15706", "CVE-2020-15707", "CVE-2020-8177"], "modified": "2020-10-30T16:18:45", "id": "D860B85F49895E0D8CF0AC6A066F6902558B044E03F0320678E24399C41C6135", "href": "https://www.ibm.com/support/pages/node/6357567", "cvss": {"score": 7.2, "vector": "AV:L/AC:L/Au:N/C:C/I:C/A:C"}}, {"lastseen": "2023-06-24T06:06:55", "description": "## Summary\n\nIBM Security Guardium has fixed these vulnerabilities \n\n## Vulnerability Details\n\n** CVEID: **[CVE-2019-12528](<https://vulners.com/cve/CVE-2019-12528>) \n** DESCRIPTION: **Squid could allow a remote attacker to obtain sensitive information, caused by incorrect data management when translating FTP server listings into HTTP responses. By sending a specially-crafted request, an attacker could exploit this vulnerability to obtain user sessions or non-Squid processes information, and use this information to launch further attacks against the affected system. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/175917](<https://exchange.xforce.ibmcloud.com/vulnerabilities/175917>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:N) \n \n** CVEID: **[CVE-2020-8449](<https://vulners.com/cve/CVE-2020-8449>) \n** DESCRIPTION: **Squid could allow a remote attacker to obtain sensitive information, caused by improper input validation. By sending a specially-crafted HTTP request, an attacker could exploit this vulnerability to obtain server resources information, and use this information to launch further attacks against the affected system. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/175719](<https://exchange.xforce.ibmcloud.com/vulnerabilities/175719>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2020-8450](<https://vulners.com/cve/CVE-2020-8450>) \n** DESCRIPTION: **Squid is vulnerable to a buffer overflow, caused by improper bounds checking. By sending a specially-crafted request, a remote attacker could overflow a buffer and execute arbitrary code or cause a denial of service condition on the system. \nCVSS Base score: 9.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/175720](<https://exchange.xforce.ibmcloud.com/vulnerabilities/175720>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-15049](<https://vulners.com/cve/CVE-2020-15049>) \n** DESCRIPTION: **Squid-Cache Squid is vulnerable to HTTP request smuggling, caused by improper input validation. By sending specially crafted HTTP(S) request messages, an attacker could exploit this vulnerability to poison the web cache, bypass web application firewall protection, and conduct XSS attacks. \nCVSS Base score: 9.9 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/184302](<https://exchange.xforce.ibmcloud.com/vulnerabilities/184302>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:C/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-15810](<https://vulners.com/cve/CVE-2020-15810>) \n** DESCRIPTION: **Squid-Cache Squid is vulnerable to HTTP request smuggling, caused by improper input validation. By sending specially crafted HTTP(S) request messages, an attacker could exploit this vulnerability to poison the web cache, bypass web application firewall protection, and conduct XSS attacks. \nCVSS Base score: 9.6 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187451](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187451>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:C/C:H/I:H/A:N) \n \n** CVEID: **[CVE-2020-15811](<https://vulners.com/cve/CVE-2020-15811>) \n** DESCRIPTION: **Squid-Cache Squid is vulnerable to HTTP request splitting attacks, caused by improper input validation in HTTP message processing. A remote attacker could exploit this vulnerability to inject arbitrary HTTP request and cause the browser to send 2 HTTP requests, once the URL is clicked. This would allow the attacker to perform further attacks, such as Web cache poisoning or cross-site scripting. \nCVSS Base score: 6.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187546](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187546>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2020-24606](<https://vulners.com/cve/CVE-2020-24606>) \n** DESCRIPTION: **Squid is vulnerable to a denial of service, caused by the mishandling of EOF in the peerDigestHandleReply function in peer_digest.cc. By sending a specially-crafted Cache Digest response message, a remote attacker could exploit this vulnerability to consume all available CPU cycles. \nCVSS Base score: 8.6 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187152](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187152>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:C/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-20426](<https://vulners.com/cve/CVE-2021-20426>) \n** DESCRIPTION: **IBM Security Guardium 11.2 contains hard-coded credentials, such as a password or cryptographic key, which it uses for its own inbound authentication, outbound communication to external components, or encryption of internal data. IBM X-Force ID: 196313. \nCVSS Base score: 5.9 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196313](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196313>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2019-19956](<https://vulners.com/cve/CVE-2019-19956>) \n** DESCRIPTION: **libxml2 is vulnerable to a denial of service, caused by a memory leak in xmlParseBalancedChunkMemoryRecover in parser.c. By persuading a victim to open a specially crafted file, a remote attacker could exploit this vulnerability to cause the application to crash. \nCVSS Base score: 3.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/173518](<https://exchange.xforce.ibmcloud.com/vulnerabilities/173518>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2019-20388](<https://vulners.com/cve/CVE-2019-20388>) \n** DESCRIPTION: **GNOME libxml2 could allow a remote attacker to obtain sensitive information, caused by a xmlSchemaValidateStream memory leak in xmlSchemaPreRun in xmlschemas.c. By persuading a victim to open a specially crafted file, an attacker could exploit this vulnerability to obtain sensitive information. \nCVSS Base score: 3.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/175539](<https://exchange.xforce.ibmcloud.com/vulnerabilities/175539>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:L/I:N/A:N) \n \n** CVEID: **[CVE-2020-7595](<https://vulners.com/cve/CVE-2020-7595>) \n** DESCRIPTION: **GNOME libxml2 is vulnerable to a denial of service, caused by an error in xmlStringLenDecodeEntities in parser.c. An attacker could exploit this vulnerability to cause the application to enter into an infinite loop. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/175333](<https://exchange.xforce.ibmcloud.com/vulnerabilities/175333>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-20419](<https://vulners.com/cve/CVE-2021-20419>) \n** DESCRIPTION: **IBM Security Guardium 11.2 uses weaker than expected cryptographic algorithms that could allow an attacker to decrypt highly sensitive information. IBM X-Force ID: 196280. \nCVSS Base score: 6.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196280](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196280>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:C/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2021-20385](<https://vulners.com/cve/CVE-2021-20385>) \n** DESCRIPTION: **IBM Security Guardium 11.2 could allow a remote authenticated attacker to execute arbitrary commands on the system. By sending a specially-crafted request, an attacker could exploit this vulnerability to execute arbitrary commands on the system. IBM X-Force ID: 195766. \nCVSS Base score: 8.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/195766](<https://exchange.xforce.ibmcloud.com/vulnerabilities/195766>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:H/UI:R/S:C/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-5259](<https://vulners.com/cve/CVE-2020-5259>) \n** DESCRIPTION: **Dojo dojox could allow a remote attacker to inject arbitrary code on the system, caused by a prototype pollution flaw. By injecting other values, an attacker could exploit this vulnerability to overwrite, or pollute, a JavaScript application object prototype of the base object. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/177752](<https://exchange.xforce.ibmcloud.com/vulnerabilities/177752>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N) \n \n** CVEID: **[CVE-2020-5258](<https://vulners.com/cve/CVE-2020-5258>) \n** DESCRIPTION: **Dojo dojo could allow a remote attacker to inject arbitrary code on the system, caused by a prototype pollution flaw. By injecting other values, an attacker could exploit this vulnerability to overwrite, or pollute, a JavaScript application object prototype of the base object. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/177751](<https://exchange.xforce.ibmcloud.com/vulnerabilities/177751>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N) \n \n** CVEID: **[CVE-2019-10785](<https://vulners.com/cve/CVE-2019-10785>) \n** DESCRIPTION: **Dojox is vulnerable to cross-site scripting, caused by improper validation of user-supplied input by the dojox.xmpp.util.xmlEncode. A remote attacker could exploit this vulnerability to execute script in a victim's Web browser within the security context of the hosting Web site. An attacker could use this vulnerability to steal the victim's cookie-based authentication credentials. \nCVSS Base score: 6.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/176460](<https://exchange.xforce.ibmcloud.com/vulnerabilities/176460>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2019-14866](<https://vulners.com/cve/CVE-2019-14866>) \n** DESCRIPTION: **GNU cpio could allow a local authenticated attacker to gain elevated privileges on the system, caused by the failure to properly validate input files when generating TAR archives. An attacker could exploit this vulnerability to inject any tar content and compromise the system. \nCVSS Base score: 6.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/171509](<https://exchange.xforce.ibmcloud.com/vulnerabilities/171509>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:L/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2019-12450](<https://vulners.com/cve/CVE-2019-12450>) \n** DESCRIPTION: **GNOME GLib could allow a remote attacker to bypass security restrictions, caused by improper permission control in the file_copy_fallback in gio/gfile.c. An attacker could exploit this vulnerability to bypass access restrictions. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/161792](<https://exchange.xforce.ibmcloud.com/vulnerabilities/161792>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2019-14822](<https://vulners.com/cve/CVE-2019-14822>) \n** DESCRIPTION: **IBus could allow a local authenticated attacker to bypass security restrictions, caused by improper authorization validation. By sending a specially-crafted request, an attacker could exploit this vulnerability to monitor and send method calls to the ibus bus of another user. \nCVSS Base score: 5.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/167063](<https://exchange.xforce.ibmcloud.com/vulnerabilities/167063>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N) \n \n** CVEID: **[CVE-2020-13401](<https://vulners.com/cve/CVE-2020-13401>) \n** DESCRIPTION: **Docker Docker CE is vulnerable to a man-in-the-middle attack, caused by improper validation of router advertisements. By sending rogue router advertisements, an attacker could exploit this vulnerability using man-in-the-middle techniques to gain access to the communication channel between endpoints to obtain sensitive information or further compromise the system. \nCVSS Base score: 6 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/182750](<https://exchange.xforce.ibmcloud.com/vulnerabilities/182750>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:L/UI:N/S:C/C:L/I:L/A:L) \n \n** CVEID: **[CVE-2020-12049](<https://vulners.com/cve/CVE-2020-12049>) \n** DESCRIPTION: **D-Bus is vulnerable to a denial of service, caused by an error in _dbus_read_socket_with_unix_fds. By sending specially crafted messages, a local attacker could exploit this vulnerability to cause the system dbus-daemon (dbus-daemon --system) to leak file descriptors. \nCVSS Base score: 4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/182955](<https://exchange.xforce.ibmcloud.com/vulnerabilities/182955>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2019-12749](<https://vulners.com/cve/CVE-2019-12749>) \n** DESCRIPTION: **D-Bus could allow a remote attacker to bypass security restrictions, caused by symlink mishandling in the reference implementation of DBUS_COOKIE_SHA1 in the libdbus library. By manipulating a ~/.dbus-keyrings symlink, an attacker could exploit this vulnerability to bypass DBUS_COOKIE_SHA1 authentication to allow a DBusServer with a different uid to read and write in arbitrary locations. \nCVSS Base score: 9.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/162386](<https://exchange.xforce.ibmcloud.com/vulnerabilities/162386>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:N) \n \n** CVEID: **[CVE-2019-5482](<https://vulners.com/cve/CVE-2019-5482>) \n** DESCRIPTION: **cURL libcurl is vulnerable to a heap-based buffer overflow, caused by improper bounds checking by the tftp_receive_packet function. By sending specially-crafted request containing an OACK without the BLKSIZE option, a remote attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 6.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/166942](<https://exchange.xforce.ibmcloud.com/vulnerabilities/166942>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:A/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:L) \n \n** CVEID: **[CVE-2020-8177](<https://vulners.com/cve/CVE-2020-8177>) \n** DESCRIPTION: **cURL could allow a remote attacker to overwrite arbitrary files on the system, caused by the improper handling of certain parameters when using -J (--remote-header-name) and -I (--include) in the same command line. An attacker could exploit this vulnerability to overwrite a local file. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/183931](<https://exchange.xforce.ibmcloud.com/vulnerabilities/183931>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2021-20386](<https://vulners.com/cve/CVE-2021-20386>) \n** DESCRIPTION: **IBM Security Guardium 11.2 is vulnerable to cross-site scripting. This vulnerability allows users to embed arbitrary JavaScript code in the Web UI thus altering the intended functionality potentially leading to credentials disclosure within a trusted session. IBM X-Force ID: 195767. \nCVSS Base score: 6.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/195767](<https://exchange.xforce.ibmcloud.com/vulnerabilities/195767>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2019-5094](<https://vulners.com/cve/CVE-2019-5094>) \n** DESCRIPTION: **E2fsprogs could allow a remote authenticated attacker to execute arbitrary code on the system, caused by an out-of-bounds write in the quota file functionality. By persuading a victim to open a specially-crafted file, an attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/167547](<https://exchange.xforce.ibmcloud.com/vulnerabilities/167547>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:C/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2019-5188](<https://vulners.com/cve/CVE-2019-5188>) \n** DESCRIPTION: **E2fsprogs could allow a local authenticated attacker to execute arbitrary code on the system, caused by an out-of-bounds write in the directory rehashing function. By using a specially-crafted ext4 directory, an attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/174075](<https://exchange.xforce.ibmcloud.com/vulnerabilities/174075>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:H/UI:N/S:C/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2019-11719](<https://vulners.com/cve/CVE-2019-11719>) \n** DESCRIPTION: **Mozilla Firefox could allow a remote attacker to obtain sensitive information, caused by an out-of-bounds read when importing a curve25519 private key in PKCS#8format. By persuading a victim to visit a specially-crafted Web site, a remote attacker could exploit this vulnerability using unknown attack vectors to obtain sensitive information. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/163512](<https://exchange.xforce.ibmcloud.com/vulnerabilities/163512>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2021-20389](<https://vulners.com/cve/CVE-2021-20389>) \n** DESCRIPTION: **IBM Security Guardium 11.2 stores user credentials in plain clear text which can be read by a local user. IBM X-Force ID: 195770. \nCVSS Base score: 5.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/195770](<https://exchange.xforce.ibmcloud.com/vulnerabilities/195770>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:N/UI:N/S:U/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2020-12825](<https://vulners.com/cve/CVE-2020-12825>) \n** DESCRIPTION: **Libcroco is vulnerable to a denial of service, caused by excessive recursion in cr_parser_parse_any_core in cr-parser.c. By persuading a victim to open a specially-crafted CSS file, a remote attacker could exploit this vulnerability to cause stack consumption. \nCVSS Base score: 3.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/181959](<https://exchange.xforce.ibmcloud.com/vulnerabilities/181959>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2021-21284](<https://vulners.com/cve/CVE-2021-21284>) \n** DESCRIPTION: **Docker could allow a remote authenticated attacker to gain elevated privileges on the system, caused by a flaw when using the --userns-remap option. By sending a specially-crafted request, an authenticated attacker could exploit this vulnerability to gain elevated privileges as root on the system. \nCVSS Base score: 8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196047](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196047>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:A/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-21285](<https://vulners.com/cve/CVE-2021-21285>) \n** DESCRIPTION: **Docker is vulnerable to a denial of service, caused by improper input validation. By persuading a victim to pull a specially-crafted Docker image, a remote attacker could exploit this vulnerability to cause the dockerd daemon to crash, and results in a denial of service condition. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196049](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196049>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-10754](<https://vulners.com/cve/CVE-2020-10754>) \n** DESCRIPTION: **NetworkManager could allow a remote authenticated attacker to bypass security restrictions, caused by improper configuration in the nmcli. By connecting to a network, an attacker could exploit this vulnerability to bypass authentication. \nCVSS Base score: 4.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/184636](<https://exchange.xforce.ibmcloud.com/vulnerabilities/184636>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2021-20428](<https://vulners.com/cve/CVE-2021-20428>) \n** DESCRIPTION: **IBM Security Guardium 11.2 could allow a remote attacker to obtain sensitive information when a detailed technical error message is returned in the browser. This information could be used in further attacks against the system. IBM X-Force ID: 196315. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196315](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196315>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:N) \n \n** CVEID: **[CVE-2021-3156](<https://vulners.com/cve/CVE-2021-3156>) \n** DESCRIPTION: **Sudo is vulnerable to a heap-based buffer overflow, caused by improper bounds checking when parsing command line arguments. By sending an \"sudoedit -s\" and a command-line argument that ends with a single backslash character, a local attacker could overflow a buffer and execute arbitrary code on the system with root privileges. This vulnerability is also known as Baron Samedit. \nCVSS Base score: 8.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/195658](<https://exchange.xforce.ibmcloud.com/vulnerabilities/195658>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H)\n\n## Affected Products and Versions\n\nAffected Product(s)| Version(s) \n---|--- \nIBM Security Guardium| 10.5 \nIBM Security Guardium| 10.6 \nIBM Security Guardium| 11.0 \nIBM Security Guardium| 11.1 \nIBM Security Guardium| 11.2 \nIBM Security Guardium| 11.3 \n \n## Remediation/Fixes\n\nProduct| Versions| Fix \n---|---|--- \nIBM Security Guardium| 10.5| \n\n[http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=10.0&platform=Linux&function=fixId&fixids=SqlGuard_10.0p545_Bundle_Oct-19-2021&includeSupersedes=0&source=fc](<http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=10.0&platform=Linux&function=fixId&fixids=SqlGuard_10.0p545_Bundle_Oct-19-2021&includeSupersedes=0&source=fc>) \n \nIBM Security Guardium| 10.6| [http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=10.0&platform=Linux&function=fixId&fixids=SqlGuard_10.0p675_Bundle_Aug-11-2021&includeSupersedes=0&source=fc](<http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=10.0&platform=Linux&function=fixId&fixids=SqlGuard_10.0p675_Bundle_Aug-11-2021&includeSupersedes=0&source=fc>) \nIBM Security Guardium| 11.0| \n\n[http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=11.0&platform=Linux&function=fixId&fixids=SqlGuard_11.0p40_Bundle_Oct-04-2021&includeSupersedes=0&source=fc](<http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=11.0&platform=Linux&function=fixId&fixids=SqlGuard_11.0p40_Bundle_Oct-04-2021&includeSupersedes=0&source=fc>) \n \nIBM Security Guardium| 11.1| \n\n[http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=11.0&platform=Linux&function=fixId&fixids=SqlGuard_11.0p150_Bundle_Oct-26-2021&includeSupersedes=0&source=fc](<http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=11.0&platform=Linux&function=fixId&fixids=SqlGuard_11.0p150_Bundle_Oct-26-2021&includeSupersedes=0&source=fc>) \n \nIBM Security Guardium| 11.2| \n\n[http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=11.0&platform=Linux&function=fixId&fixids=SqlGuard_11.0p250_Bundle_Jul-14-2021&includeSupersedes=0&source=fc](<http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=11.0&platform=Linux&function=fixId&fixids=SqlGuard_11.0p250_Bundle_Jul-14-2021&includeSupersedes=0&source=fc>) \n \nIBM Security Guardium| 11.3| \n\n[http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=11.0&platform=Linux&function=fixId&fixids=SqlGuard_11.0p330_Bundle_Oct-06-2021&includeSupersedes=0&source=fc](<http://www.ibm.com/support/fixcentral/swg/quickorder?parent=IBM%20Security&product=ibm/Information+Management/InfoSphere+Guardium&release=11.0&platform=Linux&function=fixId&fixids=SqlGuard_11.0p330_Bundle_Oct-06-2021&includeSupersedes=0&source=fc>) \n \n## Workarounds and Mitigations\n\nNone\n\n## ", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "CRITICAL", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 9.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-04-15T21:36:47", "type": "ibm", "title": "Security Bulletin: IBM Security Guardium is affected by multiple vulnerabilities", "bulletinFamily": "software", "cvss2": {"severity": "HIGH", "exploitabilityScore": 8.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 9.0, "vectorString": "AV:N/AC:L/Au:S/C:C/I:C/A:C", "version": "2.0", "accessVector": "NETWORK", "authentication": "SINGLE"}, "impactScore": 10.0, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2019-10785", "CVE-2019-11719", "CVE-2019-12450", "CVE-2019-12528", "CVE-2019-12749", "CVE-2019-14822", "CVE-2019-14866", "CVE-2019-19956", "CVE-2019-20388", "CVE-2019-5094", "CVE-2019-5188", "CVE-2019-5482", "CVE-2020-10754", "CVE-2020-12049", "CVE-2020-12825", "CVE-2020-13401", "CVE-2020-15049", "CVE-2020-15810", "CVE-2020-15811", "CVE-2020-24606", "CVE-2020-5258", "CVE-2020-5259", "CVE-2020-7595", "CVE-2020-8177", "CVE-2020-8449", "CVE-2020-8450", "CVE-2021-20385", "CVE-2021-20386", "CVE-2021-20389", "CVE-2021-20419", "CVE-2021-20426", "CVE-2021-20428", "CVE-2021-21284", "CVE-2021-21285", "CVE-2021-3156"], "modified": "2022-04-15T21:36:47", "id": "0A425AE154320282FF38ABB3C8BA8D3AD10793B88A3CFCA031B295F986453B12", "href": "https://www.ibm.com/support/pages/node/6455281", "cvss": {"score": 9.0, "vector": "AV:N/AC:L/Au:S/C:C/I:C/A:C"}}, {"lastseen": "2023-06-24T06:14:14", "description": "## Summary\n\nCloud Pak for Security (CP4S) v1.7.2.0 and earlier uses packages that are vulnerable to several CVEs. These issues have been addressed in an update. See the Fixes section below for instructions. \n\n## Vulnerability Details\n\n** CVEID: **[CVE-2020-24332](<https://vulners.com/cve/CVE-2020-24332>) \n** DESCRIPTION: **TrouSerS could allow a remote authenticated attacker to gain elevated privileges on the system, caused by a flaw in the tscd Daemon. By using symlink attacks, an attacker could exploit this vulnerability to create or corrupt existing files. \nCVSS Base score: 7.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186821](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186821>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:H) \n \n** CVEID: **[CVE-2021-22543](<https://vulners.com/cve/CVE-2021-22543>) \n** DESCRIPTION: **Linux Kernel could allow a local authenticated attacker to gain elevated privileges on the system, caused by improper handling of VM_IO|VM_PFNMAP vmas in KVM. By sending a specially-crafted request, an authenticated attacker could exploit this vulnerability to gain elevated privileges to start and control a VM to read/write random pages of memory. \nCVSS Base score: 7.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/202561](<https://exchange.xforce.ibmcloud.com/vulnerabilities/202561>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:N) \n \n** CVEID: **[CVE-2019-9169](<https://vulners.com/cve/CVE-2019-9169>) \n** DESCRIPTION: **GNU glibc is vulnerable to a heap-based buffer overflow, caused by a buffer over-read flaw in the proceed_next_node function in posix/regexec.c. By sending a specially-crafted argument using a case-insensitive regular-expression match, a remote attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 7.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/157800](<https://exchange.xforce.ibmcloud.com/vulnerabilities/157800>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:L) \n \n** CVEID: **[CVE-2021-3450](<https://vulners.com/cve/CVE-2021-3450>) \n** DESCRIPTION: **OpenSSL could allow a remote attacker to bypass security restrictions, caused by a a missing check in the validation logic of X.509 certificate chains by the X509_V_FLAG_X509_STRICT flag. By using any valid certificate or certificate chain to sign a specially crafted certificate, an attacker could bypass the check that non-CA certificates must not be able to issue other certificates and override the default purpose. \nCVSS Base score: 7.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/198754](<https://exchange.xforce.ibmcloud.com/vulnerabilities/198754>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:H/A:H) \n \n** CVEID: **[CVE-2019-25013](<https://vulners.com/cve/CVE-2019-25013>) \n** DESCRIPTION: **GNU glibc is vulnerable to a denial of service, caused by a buffer over-read in iconv feature. By sending a specially-crafted request, a remote attacker could exploit this vulnerability to cause a SIGSEGV. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/194579](<https://exchange.xforce.ibmcloud.com/vulnerabilities/194579>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-13434](<https://vulners.com/cve/CVE-2020-13434>) \n** DESCRIPTION: **SQLite is vulnerable to a denial of service, caused by an integer overflow in the sqlite3_str_vappendf function. By sending a specially-crafted request, a remote attacker could overflow a buffer and cause a denial of service. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/182405](<https://exchange.xforce.ibmcloud.com/vulnerabilities/182405>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-25648](<https://vulners.com/cve/CVE-2020-25648>) \n** DESCRIPTION: **Mozilla Network Security Services (NSS), as used in Mozilla Firefox is vulnerable to a denial of service, caused by improper handling of CCS (ChangeCipherSpec) messages in TLS. By sending specially-crafted CCS messages, a remote attacker could exploit this vulnerability to cause the system to crash. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/190416](<https://exchange.xforce.ibmcloud.com/vulnerabilities/190416>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-25692](<https://vulners.com/cve/CVE-2020-25692>) \n** DESCRIPTION: **OpenLDAP is vulnerable to a denial of service, caused by a NULL pointer dereference. By sending a specially crafted TCP packet, a remote attacker could exploit this vulnerability to cause slapd to crash. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/191968](<https://exchange.xforce.ibmcloud.com/vulnerabilities/191968>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-28196](<https://vulners.com/cve/CVE-2020-28196>) \n** DESCRIPTION: **MIT Kerberos 5 (aka krb5) is vulnerable to a denial of service, caused by an unbounded recursion flaw in lib/krb5/asn.1/asn1_encode.c. By sending a specially-crafted ASN.1-encoded Kerberos message, a remote attacker could exploit this vulnerability to cause a denial of service condition. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/191321](<https://exchange.xforce.ibmcloud.com/vulnerabilities/191321>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-29361](<https://vulners.com/cve/CVE-2020-29361>) \n** DESCRIPTION: **p11-glue p11-kit are vulnerable to a denial of service, caused by multiple integer overflows when allocating memory for arrays of attributes and object identifiers. By sending a specially-crafted request using realloc or calloc function, an attacker could exploit this vulnerability to cause a denial of service or possibly execute arbitrary code on the system. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/193532](<https://exchange.xforce.ibmcloud.com/vulnerabilities/193532>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-29362](<https://vulners.com/cve/CVE-2020-29362>) \n** DESCRIPTION: **p11-glue p11-kit could allow a remote attacker to obtain sensitive information, caused by a heap-based buffer over-read flaw in the RPC protocol. By sending a specially-crafted request, an attacker could exploit this vulnerability to obtain up to 4 bytes of memory past the heap allocation, and use this information to launch further attacks against the affected system. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/193533](<https://exchange.xforce.ibmcloud.com/vulnerabilities/193533>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:N) \n \n** CVEID: **[CVE-2020-29363](<https://vulners.com/cve/CVE-2020-29363>) \n** DESCRIPTION: **p11-glue p11-kit is vulnerable to a denial of service, caused by a heap-based buffer overflow in the RPC protocol. By sending a serialized byte array in a CK_ATTRIBUTE, a remote attacker could overflow a buffer and cause a denial of service. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/193534](<https://exchange.xforce.ibmcloud.com/vulnerabilities/193534>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-8285](<https://vulners.com/cve/CVE-2020-8285>) \n** DESCRIPTION: **cURL libcurl is vulnerable to a denial of service, caused by a stack-based buffer overflow in the wildcard matching function. By sending a specially-crafted request, a remote attacker could exploit this vulnerability to cause the application to crash. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192855](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192855>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-8286](<https://vulners.com/cve/CVE-2020-8286>) \n** DESCRIPTION: **cURL libcurl could allow a remote attacker to bypass security restrictions, caused by improper OCSP response verification. By sending a specially-crafted request, an attacker could exploit this vulnerability to breach a TLS server. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192856](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192856>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N) \n \n** CVEID: **[CVE-2020-8625](<https://vulners.com/cve/CVE-2020-8625>) \n** DESCRIPTION: **ISC BIND is vulnerable to a buffer overflow, caused by improper bounds checking by the SPNEGO implementation. By setting valid values for the tkey-gssapi-keytab or tkey-gssapi-credentialconfiguration options, a remote attacker could overflow a buffer and execute arbitrary code on the system or cause the named process to crash. \nCVSS Base score: 8.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196959](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196959>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-23362](<https://vulners.com/cve/CVE-2021-23362>) \n** DESCRIPTION: **Node.js hosted-git-info module is vulnerable to a denial of service, caused by a regular expression denial of service (ReDoS) flaw in the fromUrl function in index.js. By sending a specially-crafted regex input, a remote attacker could exploit this vulnerability to cause a denial of service condition. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/198792](<https://exchange.xforce.ibmcloud.com/vulnerabilities/198792>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-2388](<https://vulners.com/cve/CVE-2021-2388>) \n** DESCRIPTION: **An unspecified vulnerability in Java SE related to the VM component could allow an unauthenticated attacker to take control of the system. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/205815](<https://exchange.xforce.ibmcloud.com/vulnerabilities/205815>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-25215](<https://vulners.com/cve/CVE-2021-25215>) \n** DESCRIPTION: **ISC BIND is vulnerable to a denial of service, caused by an assertion failure while answering queries for DNAME records. By sending a query for DNAME records, an attacker could exploit this vulnerability to trigger a failed assertion check and terminate the named process. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200960](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200960>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-27219](<https://vulners.com/cve/CVE-2021-27219>) \n** DESCRIPTION: **GNOME GLib could allow a remote attacker to cause a denial of service, caused by an integer overflow in the g_bytes_new function. An attacker could exploit this vulnerability to corrupt memory and cause a denial of service. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196782](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196782>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-27290](<https://vulners.com/cve/CVE-2021-27290>) \n** DESCRIPTION: **Node.js ssri module is vulnerable to a denial of service, caused by a regular expression denial of service (ReDoS) flaw by the SRIs. By sending a specially-crafted regex string, a remote attacker could exploit this vulnerability to cause a denial of service condition. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/198144](<https://exchange.xforce.ibmcloud.com/vulnerabilities/198144>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-3326](<https://vulners.com/cve/CVE-2021-3326>) \n** DESCRIPTION: **GNU C Library (aka glibc or libc6) is vulnerable to a denial of service, caused by an assertion failure when processing invalid input sequences in the ISO-2022-JP-3 encoding in the iconv function. By sending specially-crafted input, a remote attacker could exploit this vulnerability to cause the application to crash. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/195732](<https://exchange.xforce.ibmcloud.com/vulnerabilities/195732>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-3449](<https://vulners.com/cve/CVE-2021-3449>) \n** DESCRIPTION: **OpenSSL is vulnerable to a denial of service, caused by a NULL pointer dereference in signature_algorithms processing. By sending a specially crafted renegotiation ClientHello message from a client, a remote attacker could exploit this vulnerability to cause the TLS server to crash. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/198752](<https://exchange.xforce.ibmcloud.com/vulnerabilities/198752>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-3537](<https://vulners.com/cve/CVE-2021-3537>) \n** DESCRIPTION: **GNOME libxml2 is vulnerable to a denial of service, caused by a NULL pointer dereference flaw when parsing XML mixed content in recovery mode and post-validated. A remote attacker could exploit this vulnerability to cause the application to crash. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/203084](<https://exchange.xforce.ibmcloud.com/vulnerabilities/203084>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2017-14502](<https://vulners.com/cve/CVE-2017-14502>) \n** DESCRIPTION: **libarchive is vulnerable to a buffer overflow, caused by improper bounds checking by the read_header function in archive_read_support_format_rar.c. By persuading a victim to open a specially-crafted RAR file, a remote attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 7.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/132123](<https://exchange.xforce.ibmcloud.com/vulnerabilities/132123>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-24330](<https://vulners.com/cve/CVE-2020-24330>) \n** DESCRIPTION: **TrouSerS could allow a local authenticated attacker to gain elevated privileges on the system, caused by a flaw when the tcsd daemon is started with root privileges instead of by the tss user. An attacker could exploit this vulnerability to gain root privileges on the system. \nCVSS Base score: 7.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186762](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186762>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-24331](<https://vulners.com/cve/CVE-2020-24331>) \n** DESCRIPTION: **TrouSerS could allow a local authenticated attacker to gain elevated privileges on the system, caused by a flaw when the tcsd daemon is started with root privileges. An attacker could exploit this vulnerability to gain read and write privileges on the system. \nCVSS Base score: 7.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186763](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186763>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-24977](<https://vulners.com/cve/CVE-2020-24977>) \n** DESCRIPTION: **GNOME libxml2 is vulnerable to a buffer overflow, caused by improper bounds checking by the xmlEncodeEntitiesInternal function in libxml2/entities.c. By persuading a victim to open a specially-crafted file, a remote attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 7.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187847](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187847>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-22555](<https://vulners.com/cve/CVE-2021-22555>) \n** DESCRIPTION: **Linux Kernel could allow a local authenticated attacker to gain elevated privileges on the system, caused by a heap out-of-bounds write flaw in net/netfilter/x_tables.c. By sending a specially-crafted request through user name space, an authenticated attacker could exploit this vulnerability to gain elevated privileges or cause a denial of service condition. \nCVSS Base score: 7.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/204997](<https://exchange.xforce.ibmcloud.com/vulnerabilities/204997>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-3516](<https://vulners.com/cve/CVE-2021-3516>) \n** DESCRIPTION: **libxml2 could allow a remote attacker to execute arbitrary code on the system, caused by a use-after-free in xmlEncodeEntitiesInternal() in entities.c. By persuading a victim to open a specially crafted file, an attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 7.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/202838](<https://exchange.xforce.ibmcloud.com/vulnerabilities/202838>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-3609](<https://vulners.com/cve/CVE-2021-3609>) \n** DESCRIPTION: **Linux Kernel could allow a local authenticated attacker to gain elevated privileges on the system, caused by a race condition in net/can/bcm.c. By sending a specially-crafted request, an authenticated attacker could exploit this vulnerability to gain elevated privileges as root. \nCVSS Base score: 7.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/204088](<https://exchange.xforce.ibmcloud.com/vulnerabilities/204088>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-20305](<https://vulners.com/cve/CVE-2021-20305>) \n** DESCRIPTION: **Nettle could allow a remote attacker to bypass security restrictions, caused by a flaw related to several signature verification functions result in the Elliptic Curve Cryptography point (ECC) multiply function being invoked with out-of-range scalers. An attacker could exploit this vulnerability to force an invalid signature, causing an assertion failure or possible validation. \nCVSS Base score: 8.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/199653](<https://exchange.xforce.ibmcloud.com/vulnerabilities/199653>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-3517](<https://vulners.com/cve/CVE-2021-3517>) \n** DESCRIPTION: **GNOME libxml2 is vulnerable to a heap-based buffer overflow, caused by improper bounds checking by xmlEncodeEntitiesInternal() in entities.c. By sending a specially crafted file, a remote attacker could trigger an out-of-bounds read and execute arbitrary code on the system or cause a denial of service. \nCVSS Base score: 8.6 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/202526](<https://exchange.xforce.ibmcloud.com/vulnerabilities/202526>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:H) \n \n** CVEID: **[CVE-2021-3518](<https://vulners.com/cve/CVE-2021-3518>) \n** DESCRIPTION: **GNOME libxml2 could allow a remote attacker to execute arbitrary code on the system, caused by a use-after-free flaw in the xmlXIncludeDoProcess() function in xinclude.c. By sending a specially-crafted file, an attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 8.6 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/203144](<https://exchange.xforce.ibmcloud.com/vulnerabilities/203144>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:H) \n \n** CVEID: **[CVE-2021-3520](<https://vulners.com/cve/CVE-2021-3520>) \n** DESCRIPTION: **lz4 could allow a remote attacker to execute arbitrary code on the system, caused by an integer overflow. By sending a specially crafted file, an attacker could invoke memmove() on a negative size argument leading to memory corruption and trigger an out-of-bounds write or cause the library to crash. \nCVSS Base score: 8.6 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/202592](<https://exchange.xforce.ibmcloud.com/vulnerabilities/202592>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:H) \n \n** CVEID: **[CVE-2019-18276](<https://vulners.com/cve/CVE-2019-18276>) \n** DESCRIPTION: **GNU Bash could allow a remote authenticated attacker to gain elevated privileges on the system, caused by a flaw in the disable_priv_mode in shell.c. By sending a specially-crafted command, an attacker could exploit this vulnerability to escalate privileges. \nCVSS Base score: 8.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/172331](<https://exchange.xforce.ibmcloud.com/vulnerabilities/172331>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-13543](<https://vulners.com/cve/CVE-2020-13543>) \n** DESCRIPTION: **Webkit WebKitGTK could allow a remote attacker to execute arbitrary code on the system, caused by a use-after-free in the WebSocket functionality. By persuading a victim to visit a specially crafted Web site, an attacker could exploit this vulnerability to execute arbitrary code or cause the application to crash. \nCVSS Base score: 8.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192461](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192461>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-13584](<https://vulners.com/cve/CVE-2020-13584>) \n** DESCRIPTION: **Webkit WebKitGTK could allow a remote attacker to execute arbitrary code on the system, caused by a use-after-free in the ImageDecoderGStreamer functionality. By persuading a victim to visit a specially crafted Web site, an attacker could exploit this vulnerability to execute arbitrary code or cause the application to crash. \nCVSS Base score: 8.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192463](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192463>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-14360](<https://vulners.com/cve/CVE-2020-14360>) \n** DESCRIPTION: **X.Org xserver could allow a remote authenticated attacker to gain elevated privileges on the system, caused by insufficient checks on the lengths of the XkbSetMap request. By sending a specially-crafted request, an attacker could exploit this vulnerability to gain out-of-bounds memory access in the X server and escalate privileges. \nCVSS Base score: 8.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192532](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192532>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-9951](<https://vulners.com/cve/CVE-2020-9951>) \n** DESCRIPTION: **Apple Safari could allow a remote attacker to execute arbitrary code on the system, caused by a use-after-free in the WebKit component. By persuading a victim to visit a specially-crafted Web site, a remote attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 8.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/188409](<https://exchange.xforce.ibmcloud.com/vulnerabilities/188409>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-1817](<https://vulners.com/cve/CVE-2021-1817>) \n** DESCRIPTION: **Apple iOS and iPadOS could allow a remote attacker to execute arbitrary code on the system, caused by a memory corruption issue in the WebKit component. By persuading a victim to visit a specially crafted Web site, an attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 8.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200746](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200746>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-30661](<https://vulners.com/cve/CVE-2021-30661>) \n** DESCRIPTION: **Apple iOS and iPadOS could allow a remote attacker to execute arbitrary code on the system, caused by a use-after-free in the WebKit component. By persuading a victim to visit a specially crafted Web site, an attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 8.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200749](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200749>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-23337](<https://vulners.com/cve/CVE-2021-23337>) \n** DESCRIPTION: **Node.js lodash module could allow a remote authenticated attacker to execute arbitrary commands on the system, caused by a command injection flaw in the template. By sending a specially-crafted request, an attacker could exploit this vulnerability to execute arbitrary commands on the system. \nCVSS Base score: 7.2 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196797](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196797>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:H/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-2432](<https://vulners.com/cve/CVE-2021-2432>) \n** DESCRIPTION: **An unspecified vulnerability in Java SE related to the JNDI component could allow an unauthenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors. \nCVSS Base score: 3.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/205856](<https://exchange.xforce.ibmcloud.com/vulnerabilities/205856>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2021-2341](<https://vulners.com/cve/CVE-2021-2341>) \n** DESCRIPTION: **An unspecified vulnerability in Java SE related to the Networking component could allow an unauthenticated attacker to obtain sensitive information resulting in a low confidentiality impact using unknown attack vectors. \nCVSS Base score: 3.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/205768](<https://exchange.xforce.ibmcloud.com/vulnerabilities/205768>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:L/I:N/A:N) \n \n** CVEID: **[CVE-2019-13012](<https://vulners.com/cve/CVE-2019-13012>) \n** DESCRIPTION: **GNOME GLib could allow a local attacker to bypass security restrictions, caused by improper permission control in the keyfile settings backend. An attacker could exploit this vulnerability to bypass access restrictions. \nCVSS Base score: 3.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/166666](<https://exchange.xforce.ibmcloud.com/vulnerabilities/166666>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2019-2708](<https://vulners.com/cve/CVE-2019-2708>) \n** DESCRIPTION: **An unspecified vulnerability in Oracle Berkeley DB related to the Data Store component could allow an authenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors. \nCVSS Base score: 3.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/159800](<https://exchange.xforce.ibmcloud.com/vulnerabilities/159800>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2020-14363](<https://vulners.com/cve/CVE-2020-14363>) \n** DESCRIPTION: **X.Org libX11 is vulnerable to a denial of service, caused by a double free in the way LibX11 handles locales. By persuading a victim to open a specially crafted file, a remote attacker could exploit this vulnerability to cause the application to crash. \nCVSS Base score: 3.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187359](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187359>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2020-1971](<https://vulners.com/cve/CVE-2020-1971>) \n** DESCRIPTION: **OpenSSL is vulnerable to a denial of service, caused by a NULL pointer dereference. If the GENERAL_NAME_cmp function contain an EDIPARTYNAME, an attacker could exploit this vulnerability to cause the application to crash. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192748](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192748>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-12049](<https://vulners.com/cve/CVE-2020-12049>) \n** DESCRIPTION: **D-Bus is vulnerable to a denial of service, caused by an error in _dbus_read_socket_with_unix_fds. By sending specially crafted messages, a local attacker could exploit this vulnerability to cause the system dbus-daemon (dbus-daemon --system) to leak file descriptors. \nCVSS Base score: 4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/182955](<https://exchange.xforce.ibmcloud.com/vulnerabilities/182955>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2020-10029](<https://vulners.com/cve/CVE-2020-10029>) \n** DESCRIPTION: **GNU C Library (aka glibc or libc6) is vulnerable to a denial of service, caused by a stack-based overflow during range reduction. A local attacker could exploit this vulnerability to cause a stack corruption, leading to a denial of service condition. \nCVSS Base score: 4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/177225](<https://exchange.xforce.ibmcloud.com/vulnerabilities/177225>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2020-29573](<https://vulners.com/cve/CVE-2020-29573>) \n** DESCRIPTION: **GNU C Library is vulnerable to a stack-based buffer overflow, caused by not handling non-normal x86 long double numbers gracefully for printf family functions. By sending a specially crafted value to the functions, a local attacker could overflow a buffer and execute arbitrary code on the system or cause the application to crash. \nCVSS Base score: 5.9 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192722](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192722>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:L) \n \n** CVEID: **[CVE-2020-8624](<https://vulners.com/cve/CVE-2020-8624>) \n** DESCRIPTION: **ISC BIND could allow a remote authenticated attacker to bypass security restrictions, caused by the failure to properly enforce the update-policy rules of type \"subdomain\". By sending a specially-crafted request, an attacker could exploit this vulnerability to update other contents of the zone. \nCVSS Base score: 4.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187062](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187062>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2020-8617](<https://vulners.com/cve/CVE-2020-8617>) \n** DESCRIPTION: **ISC BIND is vulnerable to a denial of service, caused by a logic error in code which checks TSIG validity. A remote attacker could exploit this vulnerability to trigger an assertion failure in tsig.c. \nCVSS Base score: 7.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/182127](<https://exchange.xforce.ibmcloud.com/vulnerabilities/182127>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-8622](<https://vulners.com/cve/CVE-2020-8622>) \n** DESCRIPTION: **ISC BIND is vulnerable to a denial of service, caused by an assertion failure when attempting to verify a truncated response to a TSIG-signed request. By sending a specially-crafted request, a remote authenticated attacker could exploit this vulnerability to cause the server to exit. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187060](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187060>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-8177](<https://vulners.com/cve/CVE-2020-8177>) \n** DESCRIPTION: **cURL could allow a remote attacker to overwrite arbitrary files on the system, caused by the improper handling of certain parameters when using -J (--remote-header-name) and -I (--include) in the same command line. An attacker could exploit this vulnerability to overwrite a local file. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/183931](<https://exchange.xforce.ibmcloud.com/vulnerabilities/183931>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2021-20578](<https://vulners.com/cve/CVE-2021-20578>) \n** DESCRIPTION: **IBM Cloud Pak for Security (CP4S) could allow an attacker to perform unauthorized actions due to improper or missing authentication controls. \nCVSS Base score: 5.4 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/199282](<https://exchange.xforce.ibmcloud.com/vulnerabilities/199282>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:A/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2021-23364](<https://vulners.com/cve/CVE-2021-23364>) \n** DESCRIPTION: **Browserslist is vulnerable to a denial of service, caused by a regular expression denial of service (ReDoS) during parsing of queries. By sending a specially-crafted request, a remote attacker could exploit this vulnerability to cause a denial of service. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200951](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200951>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2020-28469](<https://vulners.com/cve/CVE-2020-28469>) \n** DESCRIPTION: **Node.js glob-parent module is vulnerable to a denial of service. By sending a specially-crafted request, a remote attacker could exploit this vulnerability to cause a regular expression denial of service. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196451](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196451>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2021-2369](<https://vulners.com/cve/CVE-2021-2369>) \n** DESCRIPTION: **An unspecified vulnerability in Java SE related to the Library component could allow an unauthenticated attacker to cause no confidentiality impact, low integrity impact, and no availability impact. \nCVSS Base score: 4.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/205796](<https://exchange.xforce.ibmcloud.com/vulnerabilities/205796>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2021-3177](<https://vulners.com/cve/CVE-2021-3177>) \n** DESCRIPTION: **Python is vulnerable to a buffer overflow, caused by improper bounds checking by the PyCArg_repr function in _ctypes/callproc.c. By sending specially-crafted arguments to c_double.from_param, a remote attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 9.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/195244](<https://exchange.xforce.ibmcloud.com/vulnerabilities/195244>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-36329](<https://vulners.com/cve/CVE-2020-36329>) \n** DESCRIPTION: **Libwebp could allow a remote attacker to execute arbitrary code on the system, caused by a use-after-free in EmitFancyRGB() in dec/io_dec.c. A remote attacker could exploit this vulnerability to execute arbitrary code on the system, obtain sensitive information or cause a denial of service. \nCVSS Base score: 9.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/202253](<https://exchange.xforce.ibmcloud.com/vulnerabilities/202253>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2018-25011](<https://vulners.com/cve/CVE-2018-25011>) \n** DESCRIPTION: **Libwebp is vulnerable to a heap-based buffer overflow, caused by improper bounds checking in function PutLE16(). By sending an overly long argument, a remote attacker could overflow a buffer and execute arbitrary code on the system or cause the application to crash. \nCVSS Base score: 9.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/202259](<https://exchange.xforce.ibmcloud.com/vulnerabilities/202259>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-36328](<https://vulners.com/cve/CVE-2020-36328>) \n** DESCRIPTION: **Libwebp is vulnerable to a heap-based buffer overflow, caused by improper bounds checking in function WebPDecodeRGBInto. By sending an overly long argument, a remote attacker could overflow a buffer and execute arbitrary code on the system or cause the application to crash. \nCVSS Base score: 9.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/202254](<https://exchange.xforce.ibmcloud.com/vulnerabilities/202254>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-25712](<https://vulners.com/cve/CVE-2020-25712>) \n** DESCRIPTION: **X.Org xserver is vulnerable to a heap-based buffer overflow, caused by insufficient checks on input of the XkbSetDeviceInfo request. By sending a specially-crafted request, a remote attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 9.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192533](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192533>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-10878](<https://vulners.com/cve/CVE-2020-10878>) \n** DESCRIPTION: **Perl could allow a remote attacker to execute arbitrary code on the system, caused by an integer overflow related to the mishandling of a PL_regkind[OP(n)] == NOTHING situation. By using a specially-crafted regular expression, an attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 9.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/183204](<https://exchange.xforce.ibmcloud.com/vulnerabilities/183204>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-10543](<https://vulners.com/cve/CVE-2020-10543>) \n** DESCRIPTION: **Perl is vulnerable to a heap-based buffer overflow, caused by an integer overflow in the nested regular expression quantifiers. By sending a specially-crafted request, a remote attacker could overflow a buffer and execute arbitrary code on the system. \nCVSS Base score: 9.8 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/183203](<https://exchange.xforce.ibmcloud.com/vulnerabilities/183203>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2021-29894](<https://vulners.com/cve/CVE-2021-29894>) \n** DESCRIPTION: **IBM Cloud Pak for Security (CP4S) uses weaker than expected cryptographic algorithms that could allow an attacker to decrypt highly sensitive information. \nCVSS Base score: 5.9 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/207320](<https://exchange.xforce.ibmcloud.com/vulnerabilities/207320>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2019-3842](<https://vulners.com/cve/CVE-2019-3842>) \n** DESCRIPTION: **systemd could allow a local authenticated attacker to gain elevated privileges on the system, caused by the failure to properly sanitize the environment before using the XDG_SEAT variable by pam_systemd. By spoofing an active session to PolicyKit, an authenticated attacker could exploit this vulnerability to gain additional PolicyKit privileges. \nCVSS Base score: 4.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/159257](<https://exchange.xforce.ibmcloud.com/vulnerabilities/159257>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:U/C:L/I:L/A:L) \n \n** CVEID: **[CVE-2016-10228](<https://vulners.com/cve/CVE-2016-10228>) \n** DESCRIPTION: **GNU C Library (glibc) is vulnerable to a denial of service, caused by an error in the iconv program. By processing invalid multi-byte input sequences, a remote attacker could exploit this vulnerability to cause the application to enter into an infinite loop. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/124078](<https://exchange.xforce.ibmcloud.com/vulnerabilities/124078>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L) \n \n** CVEID: **[CVE-2020-27619](<https://vulners.com/cve/CVE-2020-27619>) \n** DESCRIPTION: **An unspecified error with CJK codec tests call eval() on content retrieved throug HTTP in multibytecodec_support.py in Python has an unknown impact and attack vector. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/190408](<https://exchange.xforce.ibmcloud.com/vulnerabilities/190408>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2020-8231](<https://vulners.com/cve/CVE-2020-8231>) \n** DESCRIPTION: **cURL libcurl could allow a remote attacker to obtain sensitive information, caused by the improper handling of the CURLOPT_CONNECT_ONLY option. The raw data is sent over that connection to the wrong destination. An attacker could exploit this vulnerability to obtain sensitive information. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186954](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186954>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:N) \n \n** CVEID: **[CVE-2020-8927](<https://vulners.com/cve/CVE-2020-8927>) \n** DESCRIPTION: **Brotli is vulnerable to buffer overflow. By controlling the input length of a \"one-shot\" decompression request to a script, a remote attacker could overflow a buffer and execute arbitrary code on the system or cause the application to crash. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/188304](<https://exchange.xforce.ibmcloud.com/vulnerabilities/188304>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N) \n \n** CVEID: **[CVE-2021-2163](<https://vulners.com/cve/CVE-2021-2163>) \n** DESCRIPTION: **An unspecified vulnerability in Java SE related to the Libraries component could allow an unauthenticated attacker to cause no confidentiality impact, high integrity impact, and no availability impact. \nCVSS Base score: 5.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200292](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200292>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:H/A:N) \n \n** CVEID: **[CVE-2020-14347](<https://vulners.com/cve/CVE-2020-14347>) \n** DESCRIPTION: **X.Org Xserver could allow a local authenticated attacker to obtain sensitive information, caused by the failure to initialize the memory in xserverr pixmap data by the allocation for pixmap data in AllocatePixmap() function. By sending a specially-crafted request, an attacker could exploit this vulnerability to obtain sensitive information from heap memory, and use this information to launch further attacks against the affected system. \nCVSS Base score: 5.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186165](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186165>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2020-15358](<https://vulners.com/cve/CVE-2020-15358>) \n** DESCRIPTION: **SQLite is vulnerable to a denial of service, caused by a heap-based buffer overflow in the mishandling of query-flattener optimization in select.c. By sending a specially-crafted query, a local authenticated attacker could overflow a buffer and cause the application to crash. \nCVSS Base score: 5.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/184103](<https://exchange.xforce.ibmcloud.com/vulnerabilities/184103>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-27618](<https://vulners.com/cve/CVE-2020-27618>) \n** DESCRIPTION: **GNU C Library (aka glibc or libc6) is vulnerable to a denial of service, caused by an error when processing some invalid inputs from several IBM character sets in the iconv function. By sending invalid multi-byte input sequences in IBM1364, IBM1371, IBM1388, IBM1390, IBM1399 encodings, a local authenticated attacker could exploit this vulnerability to cause the application to enter into an infinite loop. \nCVSS Base score: 5.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196446](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196446>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-23336](<https://vulners.com/cve/CVE-2021-23336>) \n** DESCRIPTION: **Python CPython could allow a remote attacker to bypass security restrictions, caused by a web cache poisoning flaw via urllib.parse.parse_qsl and urllib.parse.parse_qs. By sending a specially-crafted request parameter cloaking, an attacker could exploit this vulnerability to cause a difference in the interpretation of the request between the proxy and the server. \nCVSS Base score: 5.9 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196808](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196808>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:L/A:H) \n \n** CVEID: **[CVE-2020-26137](<https://vulners.com/cve/CVE-2020-26137>) \n** DESCRIPTION: **urllib3 is vulnerable to CRLF injection. By inserting CR and LF control characters in the first argument of putrequest(), a remote attacker could exploit this vulnerability to conduct various attacks against the vulnerable system, including cross-site scripting, cache poisoning or session hijacking. \nCVSS Base score: 6.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/189426](<https://exchange.xforce.ibmcloud.com/vulnerabilities/189426>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2020-27783](<https://vulners.com/cve/CVE-2020-27783>) \n** DESCRIPTION: **Python LXML is vulnerable to cross-site scripting, caused by improper validation of user-supplied input by the clean module. A remote attacker could exploit this vulnerability using a specially-crafted URL to execute script in a victim's Web browser within the security context of the hosting Web site, once the URL is clicked. An attacker could use this vulnerability to steal the victim's cookie-based authentication credentials. \nCVSS Base score: 6.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192644](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192644>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2021-1826](<https://vulners.com/cve/CVE-2021-1826>) \n** DESCRIPTION: **Apple iOS and iPadOS are vulnerable to universal cross-site scripting, caused by a logic issue in the WebIt component. A remote attacker could exploit this vulnerability using a specially-crafted URL to execute script in a victim's Web browser within the security context of the hosting Web site, once the URL is clicked. An attacker could use this vulnerability to steal the victim's cookie-based authentication credentials. \nCVSS Base score: 6.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200747](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200747>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2021-3421](<https://vulners.com/cve/CVE-2021-3421>) \n** DESCRIPTION: **RPM Project RPM could allow a remote attacker to bypass security restrictions, caused by a flaw in the read function. By persuading a victim to install a seemingly verifiable package or compromise an RPM repository, an attacker could exploit this vulnerability to cause a corruption to the RPM database. \nCVSS Base score: 6.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/203124](<https://exchange.xforce.ibmcloud.com/vulnerabilities/203124>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:N/I:H/A:L) \n \n** CVEID: **[CVE-2021-27218](<https://vulners.com/cve/CVE-2021-27218>) \n** DESCRIPTION: **GNOME GLib is vulnerable to a denial of service, caused by an error when invoking g_byte_array_new_take() with a buffer of 4GB or more on a 64-bit platform. An attacker could exploit this vulnerability to cause unintended length truncation. \nCVSS Base score: 6.2 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/196784](<https://exchange.xforce.ibmcloud.com/vulnerabilities/196784>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-33910](<https://vulners.com/cve/CVE-2021-33910>) \n** DESCRIPTION: **Systemd is vulnerable to a denial of service, caused by a memory allocation with an excessive size value in basic/unit-name.c. By sending a specially-crafted request, a local attacker could exploit this vulnerability to cause the system to crash. \nCVSS Base score: 6.2 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/205907](<https://exchange.xforce.ibmcloud.com/vulnerabilities/205907>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-9948](<https://vulners.com/cve/CVE-2020-9948>) \n** DESCRIPTION: **Apple Safari could allow a remote attacker to execute arbitrary code on the system, caused by a type confusion in the WebKit component. By persuading a victim to visit a specially-crafted Web site, a remote attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 6.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/188410](<https://exchange.xforce.ibmcloud.com/vulnerabilities/188410>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:L/I:L/A:L) \n \n** CVEID: **[CVE-2020-9983](<https://vulners.com/cve/CVE-2020-9983>) \n** DESCRIPTION: **Apple Safari could allow a remote attacker to execute arbitrary code on the system, caused by an out-of-bounds write in the WebKit component. By persuading a victim to visit a specially-crafted Web site, a remote attacker could exploit this vulnerability to execute arbitrary code on the system. \nCVSS Base score: 6.3 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/188412](<https://exchange.xforce.ibmcloud.com/vulnerabilities/188412>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:L/I:L/A:L) \n \n** CVEID: **[CVE-2020-26116](<https://vulners.com/cve/CVE-2020-26116>) \n** DESCRIPTION: **Python is vulnerable to CRLF injection, caused by improper validation of user-supplied input in http.client. By inserting CR and LF control characters in the first argument of HTTPConnection.request, a remote attacker could exploit this vulnerability to conduct various attacks against the vulnerable system, including cross-site scripting, cache poisoning or session hijacking. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/189404](<https://exchange.xforce.ibmcloud.com/vulnerabilities/189404>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2020-8284](<https://vulners.com/cve/CVE-2020-8284>) \n** DESCRIPTION: **cURL libcurl could allow a remote attacker to obtain sensitive information, caused by improper validation of FTP PASV responses. By persuading a victim to connect a specially-crafted server, an attacker could exploit this vulnerability to obtain sensitive information about services, and use this information to launch further attacks against the affected system. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/192854](<https://exchange.xforce.ibmcloud.com/vulnerabilities/192854>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2021-1820](<https://vulners.com/cve/CVE-2021-1820>) \n** DESCRIPTION: **Apple iOS and iPadOS could allow a remote attacker to obtain sensitive information, caused by a memory initialization issue in the WebKit component. By persuading a victim to visit a specially crafted Web site, an attacker could exploit this vulnerability to disclose process memory. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200748](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200748>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:N/A:N) \n \n** CVEID: **[CVE-2021-1825](<https://vulners.com/cve/CVE-2021-1825>) \n** DESCRIPTION: **Apple iOS and iPadOS are vulnerable to cross-site scripting, caused by improper validation of user-supplied input by the WebKit component. A remote attacker could exploit this vulnerability using a specially-crafted URL to execute script in a victim's Web browser within the security context of the hosting Web site, once the URL is clicked. An attacker could use this vulnerability to steal the victim's cookie-based authentication credentials. \nCVSS Base score: 6.1 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200745](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200745>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N) \n \n** CVEID: **[CVE-2021-22918](<https://vulners.com/cve/CVE-2021-22918>) \n** DESCRIPTION: **Node.js is vulnerable to a denial of service, caused by an out-of-bounds read in the libuv's uv__idna_toascii() function. By invoking the function using dns module's lookup() function, a remote attacker could exploit this vulnerability to obtain sensitive information or cause a denial of service. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/204784](<https://exchange.xforce.ibmcloud.com/vulnerabilities/204784>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:L) \n \n** CVEID: **[CVE-2021-25214](<https://vulners.com/cve/CVE-2021-25214>) \n** DESCRIPTION: **ISC BIND is vulnerable to a denial of service, caused by a broken inbound incremental zone update (IXFR). By sending a specially crafted IXFR, an attacker could exploit this vulnerability to trigger a failed assertion check and terminate the named process. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/200961](<https://exchange.xforce.ibmcloud.com/vulnerabilities/200961>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2021-3541](<https://vulners.com/cve/CVE-2021-3541>) \n** DESCRIPTION: **GNOME libxml2 is vulnerable to a denial of service, caused by an exponential entity expansion attack which bypasses all existing protection mechanisms. A remote authenticated attacker could exploit this vulnerability to consume all available resources. \nCVSS Base score: 6.5 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/204818](<https://exchange.xforce.ibmcloud.com/vulnerabilities/204818>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H) \n \n** CVEID: **[CVE-2020-13776](<https://vulners.com/cve/CVE-2020-13776>) \n** DESCRIPTION: **systemd could allow a local authenticated attacker to gain elevated privileges on the system, caused by the mishandling of numerical usernames. By sending a specially-crafted request, an attacker could exploit this vulnerability to gain elevated privileges as root. \nCVSS Base score: 6.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/184600](<https://exchange.xforce.ibmcloud.com/vulnerabilities/184600>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:H/PR:L/UI:R/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-14344](<https://vulners.com/cve/CVE-2020-14344>) \n** DESCRIPTION: **X.Org libX11 could allow a local attacker to execute arbitrary code on the system, caused by an integer overflow and signed/unsigned comparison flaws in the X Input Method (XIM) client implementation. By sending specially-crafted messages, a local attacker could exploit this vulnerability to cause a heap corruption and execute arbitrary code on the system. \nCVSS Base score: 6.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/186164](<https://exchange.xforce.ibmcloud.com/vulnerabilities/186164>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:H/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-14345](<https://vulners.com/cve/CVE-2020-14345>) \n** DESCRIPTION: **X.Org server could allow a local authenticated attacker to gain elevated privileges on the system, caused by an out-of-bounds access flaw in XkbSetNames. By sending a specially-crafted request, an authenticated attacker could exploit this vulnerability to gain elevated privileges. \nCVSS Base score: 6.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187208](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187208>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:H/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-14346](<https://vulners.com/cve/CVE-2020-14346>) \n** DESCRIPTION: **X.Org server could allow a local authenticated attacker to gain elevated privileges on the system, caused by an integer underflow in XIChangeHierarchy. By sending a specially-crafted request, an authenticated attacker could exploit this vulnerability to gain elevated privileges. \nCVSS Base score: 6.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187209](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187209>) for the current score. \nCVSS Vector: (CVSS:3.0/AV:L/AC:L/PR:H/UI:N/S:U/C:H/I:H/A:H) \n \n** CVEID: **[CVE-2020-14361](<https://vulners.com/cve/CVE-2020-14361>) \n** DESCRIPTION: **X.Org server could allow a local authenticated attacker to gain elevated privileges on the system, caused by an integer underflow in XkbSelectEvents. By sending a specially-crafted request, an authenticated attacker could exploit this vulnerability to gain elevated privileges. \nCVSS Base score: 6.7 \nCVSS Temporal Score: See: [ https://exchange.xforce.ibmcloud.com/vulnerabilities/187210](<https://exchange.xforce.ibmcloud.com/vulnerabilities/187210>) for the current score. \nCV