The remote Oracle Linux 6 host has packages installed that are affected by multiple vulnerabilities as referenced in the ELSA-2017-3535 advisory.
- The bpf_int_jit_compile function in arch/x86/net/bpf_jit_comp.c in the Linux kernel before 4.0.6 allows local users to cause a denial of service (system crash) by creating a packet filter and then loading crafted BPF instructions that trigger late convergence by the JIT compiler. (CVE-2015-4700)
- The sg implementation in the Linux kernel through 4.9 does not properly restrict write operations in situations where the KERNEL_DS option is set, which allows local users to read or write to arbitrary kernel memory locations or cause a denial of service (use-after-free) by leveraging access to a /dev/sg device, related to block/bsg.c and drivers/scsi/sg.c. NOTE: this vulnerability exists because of an incomplete fix for CVE-2016-9576. (CVE-2016-10088)
- An elevation of privilege vulnerability in the kernel networking subsystem could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as Moderate because it first requires compromising a privileged process and current compiler optimizations restrict access to the vulnerable code. Product: Android. Versions: Kernel-3.10, Kernel-3.18. Android ID:
A-31349935. (CVE-2016-8399)
- An issue was discovered in the IPv6 protocol specification, related to ICMP Packet Too Big (PTB) messages.
(The scope of this CVE is all affected IPv6 implementations from all vendors.) The security implications of IP fragmentation have been discussed at length in [RFC6274] and [RFC7739]. An attacker can leverage the generation of IPv6 atomic fragments to trigger the use of fragmentation in an arbitrary IPv6 flow (in scenarios in which actual fragmentation of packets is not needed) and can subsequently perform any type of fragmentation-based attack against legacy IPv6 nodes that do not implement [RFC6946]. That is, employing fragmentation where not actually needed allows for fragmentation-based attack vectors to be employed, unnecessarily. We note that, unfortunately, even nodes that already implement [RFC6946] can be subject to DoS attacks as a result of the generation of IPv6 atomic fragments. Let us assume that Host A is communicating with Host B and that, as a result of the widespread dropping of IPv6 packets that contain extension headers (including fragmentation) [RFC7872], some intermediate node filters fragments between Host B and Host A. If an attacker sends a forged ICMPv6 PTB error message to Host B, reporting an MTU smaller than 1280, this will trigger the generation of IPv6 atomic fragments from that moment on (as required by [RFC2460]). When Host B starts sending IPv6 atomic fragments (in response to the received ICMPv6 PTB error message), these packets will be dropped, since we previously noted that IPv6 packets with extension headers were being dropped between Host B and Host A. Thus, this situation will result in a DoS scenario. Another possible scenario is that in which two BGP peers are employing IPv6 transport and they implement Access Control Lists (ACLs) to drop IPv6 fragments (to avoid control-plane attacks). If the aforementioned BGP peers drop IPv6 fragments but still honor received ICMPv6 PTB error messages, an attacker could easily attack the corresponding peering session by simply sending an ICMPv6 PTB message with a reported MTU smaller than 1280 bytes. Once the attack packet has been sent, the aforementioned routers will themselves be the ones dropping their own traffic. (CVE-2016-10142)
- The sg_ioctl function in drivers/scsi/sg.c in the Linux kernel through 4.10.4 allows local users to cause a denial of service (stack-based buffer overflow) or possibly have unspecified other impact via a large command size in an SG_NEXT_CMD_LEN ioctl call, leading to out-of-bounds write access in the sg_write function. (CVE-2017-7187)
- Race condition in drivers/tty/n_hdlc.c in the Linux kernel through 4.10.1 allows local users to gain privileges or cause a denial of service (double free) by setting the HDLC line discipline. (CVE-2017-2636)
- The arcmsr_iop_message_xfer function in drivers/scsi/arcmsr/arcmsr_hba.c in the Linux kernel through 4.8.2 does not restrict a certain length field, which allows local users to gain privileges or cause a denial of service (heap-based buffer overflow) via an ARCMSR_MESSAGE_WRITE_WQBUFFER control code. (CVE-2016-7425)
- The x25_negotiate_facilities function in net/x25/x25_facilities.c in the Linux kernel before 4.5.5 does not properly initialize a certain data structure, which allows attackers to obtain sensitive information from kernel stack memory via an X.25 Call Request. (CVE-2016-4580)
- drivers/firewire/net.c in the Linux kernel before 4.8.7, in certain unusual hardware configurations, allows remote attackers to execute arbitrary code via crafted fragmented packets. (CVE-2016-8633)
- The arch_pick_mmap_layout function in arch/x86/mm/mmap.c in the Linux kernel through 4.5.2 does not properly randomize the legacy base address, which makes it easier for local users to defeat the intended restrictions on the ADDR_NO_RANDOMIZE flag, and bypass the ASLR protection mechanism for a setuid or setgid program, by disabling stack-consumption resource limits. (CVE-2016-3672)
- The TCP stack in the Linux kernel before 4.8.10 mishandles skb truncation, which allows local users to cause a denial of service (system crash) via a crafted application that makes sendto system calls, related to net/ipv4/tcp_ipv4.c and net/ipv6/tcp_ipv6.c. (CVE-2016-8645)
- The digi_port_init function in drivers/usb/serial/digi_acceleport.c in the Linux kernel before 4.5.1 allows physically proximate attackers to cause a denial of service (NULL pointer dereference and system crash) via a crafted endpoints value in a USB device descriptor. (CVE-2016-3140)
- The LLC subsystem in the Linux kernel before 4.9.13 does not ensure that a certain destructor exists in required circumstances, which allows local users to cause a denial of service (BUG_ON) or possibly have unspecified other impact via crafted system calls. (CVE-2017-6345)
- Integer overflow in the sg_start_req function in drivers/scsi/sg.c in the Linux kernel 2.6.x through 4.x before 4.1 allows local users to cause a denial of service or possibly have unspecified other impact via a large iov_count value in a write request. (CVE-2015-5707)
Note that Nessus has not tested for this issue but has instead relied only on the application's self-reported version number.
{"id": "ORACLELINUX_ELSA-2017-3535.NASL", "vendorId": null, "type": "nessus", "bulletinFamily": "scanner", "title": "Oracle Linux 6 : Unbreakable Enterprise kernel (ELSA-2017-3535)", "description": "The remote Oracle Linux 6 host has packages installed that are affected by multiple vulnerabilities as referenced in the ELSA-2017-3535 advisory.\n\n - The bpf_int_jit_compile function in arch/x86/net/bpf_jit_comp.c in the Linux kernel before 4.0.6 allows local users to cause a denial of service (system crash) by creating a packet filter and then loading crafted BPF instructions that trigger late convergence by the JIT compiler. (CVE-2015-4700)\n\n - The sg implementation in the Linux kernel through 4.9 does not properly restrict write operations in situations where the KERNEL_DS option is set, which allows local users to read or write to arbitrary kernel memory locations or cause a denial of service (use-after-free) by leveraging access to a /dev/sg device, related to block/bsg.c and drivers/scsi/sg.c. NOTE: this vulnerability exists because of an incomplete fix for CVE-2016-9576. (CVE-2016-10088)\n\n - An elevation of privilege vulnerability in the kernel networking subsystem could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as Moderate because it first requires compromising a privileged process and current compiler optimizations restrict access to the vulnerable code. Product: Android. Versions: Kernel-3.10, Kernel-3.18. Android ID:\n A-31349935. (CVE-2016-8399)\n\n - An issue was discovered in the IPv6 protocol specification, related to ICMP Packet Too Big (PTB) messages.\n (The scope of this CVE is all affected IPv6 implementations from all vendors.) The security implications of IP fragmentation have been discussed at length in [RFC6274] and [RFC7739]. An attacker can leverage the generation of IPv6 atomic fragments to trigger the use of fragmentation in an arbitrary IPv6 flow (in scenarios in which actual fragmentation of packets is not needed) and can subsequently perform any type of fragmentation-based attack against legacy IPv6 nodes that do not implement [RFC6946]. That is, employing fragmentation where not actually needed allows for fragmentation-based attack vectors to be employed, unnecessarily. We note that, unfortunately, even nodes that already implement [RFC6946] can be subject to DoS attacks as a result of the generation of IPv6 atomic fragments. Let us assume that Host A is communicating with Host B and that, as a result of the widespread dropping of IPv6 packets that contain extension headers (including fragmentation) [RFC7872], some intermediate node filters fragments between Host B and Host A. If an attacker sends a forged ICMPv6 PTB error message to Host B, reporting an MTU smaller than 1280, this will trigger the generation of IPv6 atomic fragments from that moment on (as required by [RFC2460]). When Host B starts sending IPv6 atomic fragments (in response to the received ICMPv6 PTB error message), these packets will be dropped, since we previously noted that IPv6 packets with extension headers were being dropped between Host B and Host A. Thus, this situation will result in a DoS scenario. Another possible scenario is that in which two BGP peers are employing IPv6 transport and they implement Access Control Lists (ACLs) to drop IPv6 fragments (to avoid control-plane attacks). If the aforementioned BGP peers drop IPv6 fragments but still honor received ICMPv6 PTB error messages, an attacker could easily attack the corresponding peering session by simply sending an ICMPv6 PTB message with a reported MTU smaller than 1280 bytes. Once the attack packet has been sent, the aforementioned routers will themselves be the ones dropping their own traffic. (CVE-2016-10142)\n\n - The sg_ioctl function in drivers/scsi/sg.c in the Linux kernel through 4.10.4 allows local users to cause a denial of service (stack-based buffer overflow) or possibly have unspecified other impact via a large command size in an SG_NEXT_CMD_LEN ioctl call, leading to out-of-bounds write access in the sg_write function. (CVE-2017-7187)\n\n - Race condition in drivers/tty/n_hdlc.c in the Linux kernel through 4.10.1 allows local users to gain privileges or cause a denial of service (double free) by setting the HDLC line discipline. (CVE-2017-2636)\n\n - The arcmsr_iop_message_xfer function in drivers/scsi/arcmsr/arcmsr_hba.c in the Linux kernel through 4.8.2 does not restrict a certain length field, which allows local users to gain privileges or cause a denial of service (heap-based buffer overflow) via an ARCMSR_MESSAGE_WRITE_WQBUFFER control code. (CVE-2016-7425)\n\n - The x25_negotiate_facilities function in net/x25/x25_facilities.c in the Linux kernel before 4.5.5 does not properly initialize a certain data structure, which allows attackers to obtain sensitive information from kernel stack memory via an X.25 Call Request. (CVE-2016-4580)\n\n - drivers/firewire/net.c in the Linux kernel before 4.8.7, in certain unusual hardware configurations, allows remote attackers to execute arbitrary code via crafted fragmented packets. (CVE-2016-8633)\n\n - The arch_pick_mmap_layout function in arch/x86/mm/mmap.c in the Linux kernel through 4.5.2 does not properly randomize the legacy base address, which makes it easier for local users to defeat the intended restrictions on the ADDR_NO_RANDOMIZE flag, and bypass the ASLR protection mechanism for a setuid or setgid program, by disabling stack-consumption resource limits. (CVE-2016-3672)\n\n - The TCP stack in the Linux kernel before 4.8.10 mishandles skb truncation, which allows local users to cause a denial of service (system crash) via a crafted application that makes sendto system calls, related to net/ipv4/tcp_ipv4.c and net/ipv6/tcp_ipv6.c. (CVE-2016-8645)\n\n - The digi_port_init function in drivers/usb/serial/digi_acceleport.c in the Linux kernel before 4.5.1 allows physically proximate attackers to cause a denial of service (NULL pointer dereference and system crash) via a crafted endpoints value in a USB device descriptor. (CVE-2016-3140)\n\n - The LLC subsystem in the Linux kernel before 4.9.13 does not ensure that a certain destructor exists in required circumstances, which allows local users to cause a denial of service (BUG_ON) or possibly have unspecified other impact via crafted system calls. (CVE-2017-6345)\n\n - Integer overflow in the sg_start_req function in drivers/scsi/sg.c in the Linux kernel 2.6.x through 4.x before 4.1 allows local users to cause a denial of service or possibly have unspecified other impact via a large iov_count value in a write request. (CVE-2015-5707)\n\nNote that Nessus has not tested for this issue but has instead relied only on the application's self-reported version number.", "published": "2017-04-03T00:00:00", "modified": "2021-09-08T00:00:00", "cvss": {"score": 7.6, "vector": "AV:N/AC:H/Au:N/C:C/I:C/A:C"}, "cvss2": {"cvssV2": {"version": "2.0", "vectorString": "AV:N/AC:H/Au:N/C:C/I:C/A:C", "accessVector": "NETWORK", "accessComplexity": "HIGH", "authentication": "NONE", "confidentialityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "baseScore": 7.6}, "severity": "HIGH", "exploitabilityScore": 4.9, "impactScore": 10.0, "obtainAllPrivilege": false, "obtainUserPrivilege": false, "obtainOtherPrivilege": false, "userInteractionRequired": true}, "cvss3": {"cvssV3": {"version": "3.0", "vectorString": "CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:C/C:N/I:N/A:H", "attackVector": "NETWORK", "attackComplexity": "LOW", "privilegesRequired": "NONE", "userInteraction": "NONE", "scope": "CHANGED", "confidentialityImpact": "NONE", "integrityImpact": "NONE", "availabilityImpact": "HIGH", "baseScore": 8.6, "baseSeverity": "HIGH"}, "exploitabilityScore": 3.9, "impactScore": 4.0}, "href": "https://www.tenable.com/plugins/nessus/99161", "reporter": "This script is Copyright (C) 2017-2021 and is owned by Tenable, Inc. or an Affiliate thereof.", "references": ["http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-3672", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-8399", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-4580", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4700", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-10142", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-8633", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2017-7187", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2017-2636", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-5707", "https://linux.oracle.com/errata/ELSA-2017-3535.html", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-8645", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-3140", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-7425", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2017-6345", "http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-10088"], "cvelist": ["CVE-2015-4700", "CVE-2015-5707", "CVE-2016-10088", "CVE-2016-10142", "CVE-2016-3140", "CVE-2016-3672", "CVE-2016-4580", "CVE-2016-7425", "CVE-2016-8399", "CVE-2016-8633", "CVE-2016-8645", "CVE-2016-9576", "CVE-2017-2636", "CVE-2017-6345", "CVE-2017-7187"], "immutableFields": [], "lastseen": "2023-02-17T15:23:48", "viewCount": 76, "enchantments": {"dependencies": {"references": [{"type": "amazon", "idList": ["ALAS-2016-694", "ALAS-2016-772", "ALAS-2017-782", "ALAS-2017-786", "ALAS-2017-828"]}, {"type": "androidsecurity", "idList": ["ANDROID:2016-08-01", "ANDROID:2016-12-01", "ANDROID:2017-07-01", "ANDROID:2017-10-01"]}, {"type": "archlinux", "idList": 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{"nessus": [{"lastseen": "2023-02-17T15:23:26", "description": "The remote OracleVM system is missing necessary patches to address critical security updates :\n\n - RHEL: complement upstream workaround for CVE-2016-10142.\n (Quentin Casasnovas) [Orabug: 25765786] (CVE-2016-10142) (CVE-2016-10142)\n\n - net: ping: check minimum size on ICMP header length (Kees Cook) [Orabug: 25766914] (CVE-2016-8399)\n\n - ipv6: stop sending PTB packets for MTU < 1280 (Hagen Paul Pfeifer) [Orabug: 25765786] (CVE-2016-10142)\n\n - sg_write/bsg_write is not fit to be called under KERNEL_DS (Al Viro) [Orabug: 25765448] (CVE-2016-10088)\n\n - scsi: sg: check length passed to SG_NEXT_CMD_LEN (peter chang) [Orabug: 25752011] (CVE-2017-7187)\n\n - tty: n_hdlc: get rid of racy n_hdlc.tbuf (Alexander Popov) [Orabug: 25696689] (CVE-2017-2636)\n\n - TTY: n_hdlc, fix lockdep false positive (Jiri Slaby) [Orabug: 25696689] (CVE-2017-2636)\n\n - drivers/tty/n_hdlc.c: replace kmalloc/memset by kzalloc (Fabian Frederick) [Orabug: 25696689] (CVE-2017-2636)\n\n - list: introduce list_first_entry_or_null (Jiri Pirko) [Orabug: 25696689] (CVE-2017-2636)\n\n - firewire: net: guard against rx buffer overflows (Stefan Richter) [Orabug: 25451538] (CVE-2016-8633)\n\n - x86/mm/32: Enable full randomization on i386 and X86_32 (Hector Marco-Gisbert) [Orabug: 25463929] (CVE-2016-3672)\n\n - x86 get_unmapped_area: Access mmap_legacy_base through mm_struct member (Radu Caragea) [Orabug: 25463929] (CVE-2016-3672)\n\n - sg_start_req: make sure that there's not too many elements in iovec (Al Viro) [Orabug: 25490377] (CVE-2015-5707)\n\n - tcp: take care of truncations done by sk_filter (Eric Dumazet) [Orabug: 25507232] (CVE-2016-8645)\n\n - rose: limit sk_filter trim to payload (Willem de Bruijn) [Orabug: 25507232] (CVE-2016-8645)\n\n - scsi: arcmsr: Buffer overflow in arcmsr_iop_message_xfer (Dan Carpenter) [Orabug: 25507330] (CVE-2016-7425)\n\n - x86: bpf_jit: fix compilation of large bpf programs (Alexei Starovoitov) [Orabug: 25507375] (CVE-2015-4700)\n\n - net: fix a kernel infoleak in x25 module (Kangjie Lu) [Orabug: 25512417] (CVE-2016-4580)\n\n - 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The bpf_int_jit_compile function in arch/x86/net/bpf_jit_comp.c in the Linux kernel before 4.0.6 allows local users to cause a denial of service (system crash) by creating a packet filter and then loading crafted BPF instructions that trigger late convergence by the JIT compiler. (CVE-2015-4700)\n\n - The sg implementation in the Linux kernel through 4.9 does not properly restrict write operations in situations where the KERNEL_DS option is set, which allows local users to read or write to arbitrary kernel memory locations or cause a denial of service (use-after-free) by leveraging access to a /dev/sg device, related to block/bsg.c and drivers/scsi/sg.c. NOTE: this vulnerability exists because of an incomplete fix for CVE-2016-9576. (CVE-2016-10088)\n\n - An elevation of privilege vulnerability in the kernel networking subsystem could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as Moderate because it first requires compromising a privileged process and current compiler optimizations restrict access to the vulnerable code. Product: Android. Versions: Kernel-3.10, Kernel-3.18. Android ID:\n A-31349935. (CVE-2016-8399)\n\n - An issue was discovered in the IPv6 protocol specification, related to ICMP Packet Too Big (PTB) messages.\n (The scope of this CVE is all affected IPv6 implementations from all vendors.) The security implications of IP fragmentation have been discussed at length in [RFC6274] and [RFC7739]. An attacker can leverage the generation of IPv6 atomic fragments to trigger the use of fragmentation in an arbitrary IPv6 flow (in scenarios in which actual fragmentation of packets is not needed) and can subsequently perform any type of fragmentation-based attack against legacy IPv6 nodes that do not implement [RFC6946]. That is, employing fragmentation where not actually needed allows for fragmentation-based attack vectors to be employed, unnecessarily. We note that, unfortunately, even nodes that already implement [RFC6946] can be subject to DoS attacks as a result of the generation of IPv6 atomic fragments. Let us assume that Host A is communicating with Host B and that, as a result of the widespread dropping of IPv6 packets that contain extension headers (including fragmentation) [RFC7872], some intermediate node filters fragments between Host B and Host A. If an attacker sends a forged ICMPv6 PTB error message to Host B, reporting an MTU smaller than 1280, this will trigger the generation of IPv6 atomic fragments from that moment on (as required by [RFC2460]). When Host B starts sending IPv6 atomic fragments (in response to the received ICMPv6 PTB error message), these packets will be dropped, since we previously noted that IPv6 packets with extension headers were being dropped between Host B and Host A. Thus, this situation will result in a DoS scenario. Another possible scenario is that in which two BGP peers are employing IPv6 transport and they implement Access Control Lists (ACLs) to drop IPv6 fragments (to avoid control-plane attacks). If the aforementioned BGP peers drop IPv6 fragments but still honor received ICMPv6 PTB error messages, an attacker could easily attack the corresponding peering session by simply sending an ICMPv6 PTB message with a reported MTU smaller than 1280 bytes. Once the attack packet has been sent, the aforementioned routers will themselves be the ones dropping their own traffic. (CVE-2016-10142)\n\n - The sg_ioctl function in drivers/scsi/sg.c in the Linux kernel through 4.10.4 allows local users to cause a denial of service (stack-based buffer overflow) or possibly have unspecified other impact via a large command size in an SG_NEXT_CMD_LEN ioctl call, leading to out-of-bounds write access in the sg_write function. (CVE-2017-7187)\n\n - Race condition in drivers/tty/n_hdlc.c in the Linux kernel through 4.10.1 allows local users to gain privileges or cause a denial of service (double free) by setting the HDLC line discipline. (CVE-2017-2636)\n\n - arch/x86/kvm/vmx.c in the Linux kernel through 4.9 mismanages the #BP and #OF exceptions, which allows guest OS users to cause a denial of service (guest OS crash) by declining to handle an exception thrown by an L2 guest. (CVE-2016-9588)\n\n - The arcmsr_iop_message_xfer function in drivers/scsi/arcmsr/arcmsr_hba.c in the Linux kernel through 4.8.2 does not restrict a certain length field, which allows local users to gain privileges or cause a denial of service (heap-based buffer overflow) via an ARCMSR_MESSAGE_WRITE_WQBUFFER control code. (CVE-2016-7425)\n\n - The (1) pptp_bind and (2) pptp_connect functions in drivers/net/ppp/pptp.c in the Linux kernel through 4.3.3 do not verify an address length, which allows local users to obtain sensitive information from kernel memory and bypass the KASLR protection mechanism via a crafted application. (CVE-2015-8569)\n\n - The x25_negotiate_facilities function in net/x25/x25_facilities.c in the Linux kernel before 4.5.5 does not properly initialize a certain data structure, which allows attackers to obtain sensitive information from kernel stack memory via an X.25 Call Request. (CVE-2016-4580)\n\n - drivers/firewire/net.c in the Linux kernel before 4.8.7, in certain unusual hardware configurations, allows remote attackers to execute arbitrary code via crafted fragmented packets. (CVE-2016-8633)\n\n - The arch_pick_mmap_layout function in arch/x86/mm/mmap.c in the Linux kernel through 4.5.2 does not properly randomize the legacy base address, which makes it easier for local users to defeat the intended restrictions on the ADDR_NO_RANDOMIZE flag, and bypass the ASLR protection mechanism for a setuid or setgid program, by disabling stack-consumption resource limits. (CVE-2016-3672)\n\n - The TCP stack in the Linux kernel before 4.8.10 mishandles skb truncation, which allows local users to cause a denial of service (system crash) via a crafted application that makes sendto system calls, related to net/ipv4/tcp_ipv4.c and net/ipv6/tcp_ipv6.c. (CVE-2016-8645)\n\n - The __get_user_asm_ex macro in arch/x86/include/asm/uaccess.h in the Linux kernel before 4.7.5 does not initialize a certain integer variable, which allows local users to obtain sensitive information from kernel stack memory by triggering failure of a get_user_ex call. (CVE-2016-9178)\n\n - The digi_port_init function in drivers/usb/serial/digi_acceleport.c in the Linux kernel before 4.5.1 allows physically proximate attackers to cause a denial of service (NULL pointer dereference and system crash) via a crafted endpoints value in a USB device descriptor. (CVE-2016-3140)\n\n - The LLC subsystem in the Linux kernel before 4.9.13 does not ensure that a certain destructor exists in required circumstances, which allows local users to cause a denial of service (BUG_ON) or possibly have unspecified other impact via crafted system calls. (CVE-2017-6345)\n\n - The ipv4_pktinfo_prepare function in net/ipv4/ip_sockglue.c in the Linux kernel through 4.9.9 allows attackers to cause a denial of service (system crash) via (1) an application that makes crafted system calls or possibly (2) IPv4 traffic with invalid IP options. (CVE-2017-5970)\n\n - Integer overflow in the sg_start_req function in drivers/scsi/sg.c in the Linux kernel 2.6.x through 4.x before 4.1 allows local users to cause a denial of service or possibly have unspecified other impact via a large iov_count value in a write request. 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(CVE-2017-2636)\n\n - arch/x86/kvm/vmx.c in the Linux kernel through 4.9 mismanages the #BP and #OF exceptions, which allows\n guest OS users to cause a denial of service (guest OS crash) by declining to handle an exception thrown by\n an L2 guest. (CVE-2016-9588)\n\n - The arcmsr_iop_message_xfer function in drivers/scsi/arcmsr/arcmsr_hba.c in the Linux kernel through 4.8.2\n does not restrict a certain length field, which allows local users to gain privileges or cause a denial of\n service (heap-based buffer overflow) via an ARCMSR_MESSAGE_WRITE_WQBUFFER control code. (CVE-2016-7425)\n\n - The (1) pptp_bind and (2) pptp_connect functions in drivers/net/ppp/pptp.c in the Linux kernel through\n 4.3.3 do not verify an address length, which allows local users to obtain sensitive information from\n kernel memory and bypass the KASLR protection mechanism via a crafted application. (CVE-2015-8569)\n\n - The x25_negotiate_facilities function in net/x25/x25_facilities.c in the Linux kernel before 4.5.5 does\n not properly initialize a certain data structure, which allows attackers to obtain sensitive information\n from kernel stack memory via an X.25 Call Request. (CVE-2016-4580)\n\n - drivers/firewire/net.c in the Linux kernel before 4.8.7, in certain unusual hardware configurations,\n allows remote attackers to execute arbitrary code via crafted fragmented packets. (CVE-2016-8633)\n\n - The arch_pick_mmap_layout function in arch/x86/mm/mmap.c in the Linux kernel through 4.5.2 does not\n properly randomize the legacy base address, which makes it easier for local users to defeat the intended\n restrictions on the ADDR_NO_RANDOMIZE flag, and bypass the ASLR protection mechanism for a setuid or\n setgid program, by disabling stack-consumption resource limits. (CVE-2016-3672)\n\n - The TCP stack in the Linux kernel before 4.8.10 mishandles skb truncation, which allows local users to\n cause a denial of service (system crash) via a crafted application that makes sendto system calls, related\n to net/ipv4/tcp_ipv4.c and net/ipv6/tcp_ipv6.c. (CVE-2016-8645)\n\n - The __get_user_asm_ex macro in arch/x86/include/asm/uaccess.h in the Linux kernel before 4.7.5 does not\n initialize a certain integer variable, which allows local users to obtain sensitive information from\n kernel stack memory by triggering failure of a get_user_ex call. (CVE-2016-9178)\n\n - The digi_port_init function in drivers/usb/serial/digi_acceleport.c in the Linux kernel before 4.5.1\n allows physically proximate attackers to cause a denial of service (NULL pointer dereference and system\n crash) via a crafted endpoints value in a USB device descriptor. (CVE-2016-3140)\n\n - The LLC subsystem in the Linux kernel before 4.9.13 does not ensure that a certain destructor exists in\n required circumstances, which allows local users to cause a denial of service (BUG_ON) or possibly have\n unspecified other impact via crafted system calls. (CVE-2017-6345)\n\n - The ipv4_pktinfo_prepare function in net/ipv4/ip_sockglue.c in the Linux kernel through 4.9.9 allows\n attackers to cause a denial of service (system crash) via (1) an application that makes crafted system\n calls or possibly (2) IPv4 traffic with invalid IP options. (CVE-2017-5970)\n\n - Integer overflow in the sg_start_req function in drivers/scsi/sg.c in the Linux kernel 2.6.x through 4.x\n before 4.1 allows local users to cause a denial of service or possibly have unspecified other impact via a\n large iov_count value in a write request. 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expected_kernel_major_minor)\n audit(AUDIT_OS_NOT, 'running kernel level ' + expected_kernel_major_minor + ', it is running kernel level ' + kernel_major_minor);\n\nvar pkgs = [\n {'reference':'dtrace-modules-3.8.13-118.17.4.el6uek-0.4.5-3.el6', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE},\n {'reference':'kernel-uek-3.8.13-118.17.4.el6uek', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-3.8.13'},\n {'reference':'kernel-uek-debug-3.8.13-118.17.4.el6uek', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-debug-3.8.13'},\n {'reference':'kernel-uek-debug-devel-3.8.13-118.17.4.el6uek', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-debug-devel-3.8.13'},\n {'reference':'kernel-uek-devel-3.8.13-118.17.4.el6uek', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-devel-3.8.13'},\n {'reference':'kernel-uek-doc-3.8.13-118.17.4.el6uek', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-doc-3.8.13'},\n {'reference':'kernel-uek-firmware-3.8.13-118.17.4.el6uek', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-firmware-3.8.13'},\n {'reference':'dtrace-modules-3.8.13-118.17.4.el7uek-0.4.5-3.el7', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE},\n {'reference':'kernel-uek-3.8.13-118.17.4.el7uek', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-3.8.13'},\n {'reference':'kernel-uek-debug-3.8.13-118.17.4.el7uek', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-debug-3.8.13'},\n {'reference':'kernel-uek-debug-devel-3.8.13-118.17.4.el7uek', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-debug-devel-3.8.13'},\n {'reference':'kernel-uek-devel-3.8.13-118.17.4.el7uek', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-devel-3.8.13'},\n 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if (tested) audit(AUDIT_PACKAGE_NOT_AFFECTED, tested);\n else audit(AUDIT_PACKAGE_NOT_INSTALLED, 'dtrace-modules-3.8.13-118.17.4.el6uek / dtrace-modules-3.8.13-118.17.4.el7uek / kernel-uek / etc');\n}\n", "cvss": {"score": 9.3, "vector": "AV:N/AC:M/Au:N/C:C/I:C/A:C"}}, {"lastseen": "2023-02-16T14:58:32", "description": "The remote Oracle Linux 6 / 7 host has packages installed that are affected by multiple vulnerabilities as referenced in the ELSA-2017-3533 advisory.\n\n - The sg implementation in the Linux kernel through 4.9 does not properly restrict write operations in situations where the KERNEL_DS option is set, which allows local users to read or write to arbitrary kernel memory locations or cause a denial of service (use-after-free) by leveraging access to a /dev/sg device, related to block/bsg.c and drivers/scsi/sg.c. NOTE: this vulnerability exists because of an incomplete fix for CVE-2016-9576. (CVE-2016-10088)\n\n - The filesystem implementation in the Linux kernel through 4.8.2 preserves the setgid bit during a setxattr call, which allows local users to gain group privileges by leveraging the existence of a setgid program with restrictions on execute permissions. (CVE-2016-7097)\n\n - An elevation of privilege vulnerability in the kernel networking subsystem could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as Moderate because it first requires compromising a privileged process and current compiler optimizations restrict access to the vulnerable code. Product: Android. Versions: Kernel-3.10, Kernel-3.18. Android ID:\n A-31349935. (CVE-2016-8399)\n\n - The sg_ioctl function in drivers/scsi/sg.c in the Linux kernel through 4.10.4 allows local users to cause a denial of service (stack-based buffer overflow) or possibly have unspecified other impact via a large command size in an SG_NEXT_CMD_LEN ioctl call, leading to out-of-bounds write access in the sg_write function. (CVE-2017-7187)\n\n - Race condition in drivers/tty/n_hdlc.c in the Linux kernel through 4.10.1 allows local users to gain privileges or cause a denial of service (double free) by setting the HDLC line discipline. (CVE-2017-2636)\n\n - crypto/mcryptd.c in the Linux kernel before 4.8.15 allows local users to cause a denial of service (NULL pointer dereference and system crash) by using an AF_ALG socket with an incompatible algorithm, as demonstrated by mcryptd(md5). (CVE-2016-10147)\n\n - arch/x86/kvm/vmx.c in the Linux kernel through 4.9 mismanages the #BP and #OF exceptions, which allows guest OS users to cause a denial of service (guest OS crash) by declining to handle an exception thrown by an L2 guest. (CVE-2016-9588)\n\n - The arcmsr_iop_message_xfer function in drivers/scsi/arcmsr/arcmsr_hba.c in the Linux kernel through 4.8.2 does not restrict a certain length field, which allows local users to gain privileges or cause a denial of service (heap-based buffer overflow) via an ARCMSR_MESSAGE_WRITE_WQBUFFER control code. (CVE-2016-7425)\n\n - drivers/firewire/net.c in the Linux kernel before 4.8.7, in certain unusual hardware configurations, allows remote attackers to execute arbitrary code via crafted fragmented packets. (CVE-2016-8633)\n\n - Double free vulnerability in drivers/net/usb/cdc_ncm.c in the Linux kernel before 4.5 allows physically proximate attackers to cause a denial of service (system crash) or possibly have unspecified other impact by inserting a USB device with an invalid USB descriptor. (CVE-2016-3951)\n\n - The arch_pick_mmap_layout function in arch/x86/mm/mmap.c in the Linux kernel through 4.5.2 does not properly randomize the legacy base address, which makes it easier for local users to defeat the intended restrictions on the ADDR_NO_RANDOMIZE flag, and bypass the ASLR protection mechanism for a setuid or setgid program, by disabling stack-consumption resource limits. (CVE-2016-3672)\n\n - The nested_vmx_check_vmptr function in arch/x86/kvm/vmx.c in the Linux kernel through 4.9.8 improperly emulates the VMXON instruction, which allows KVM L1 guest OS users to cause a denial of service (host OS memory consumption) by leveraging the mishandling of page references. (CVE-2017-2596)\n\n - arch/x86/kvm/emulate.c in the Linux kernel before 4.8.12 does not properly initialize Code Segment (CS) in certain error cases, which allows local users to obtain sensitive information from kernel stack memory via a crafted application. (CVE-2016-9756)\n\n - The TCP stack in the Linux kernel before 4.8.10 mishandles skb truncation, which allows local users to cause a denial of service (system crash) via a crafted application that makes sendto system calls, related to net/ipv4/tcp_ipv4.c and net/ipv6/tcp_ipv6.c. (CVE-2016-8645)\n\n - The tipc_msg_build function in net/tipc/msg.c in the Linux kernel through 4.8.11 does not validate the relationship between the minimum fragment length and the maximum packet size, which allows local users to gain privileges or cause a denial of service (heap-based buffer overflow) by leveraging the CAP_NET_ADMIN capability. (CVE-2016-8632)\n\n - The __get_user_asm_ex macro in arch/x86/include/asm/uaccess.h in the Linux kernel before 4.7.5 does not initialize a certain integer variable, which allows local users to obtain sensitive information from kernel stack memory by triggering failure of a get_user_ex call. (CVE-2016-9178)\n\n - The mbcache feature in the ext2 and ext4 filesystem implementations in the Linux kernel before 4.6 mishandles xattr block caching, which allows local users to cause a denial of service (soft lockup) via filesystem operations in environments that use many attributes, as demonstrated by Ceph and Samba.\n (CVE-2015-8952)\n\n - The digi_port_init function in drivers/usb/serial/digi_acceleport.c in the Linux kernel before 4.5.1 allows physically proximate attackers to cause a denial of service (NULL pointer dereference and system crash) via a crafted endpoints value in a USB device descriptor. (CVE-2016-3140)\n\n - The LLC subsystem in the Linux kernel before 4.9.13 does not ensure that a certain destructor exists in required circumstances, which allows local users to cause a denial of service (BUG_ON) or possibly have unspecified other impact via crafted system calls. (CVE-2017-6345)\n\n - The ipv4_pktinfo_prepare function in net/ipv4/ip_sockglue.c in the Linux kernel through 4.9.9 allows attackers to cause a denial of service (system crash) via (1) an application that makes crafted system calls or possibly (2) IPv4 traffic with invalid IP options. (CVE-2017-5970)\n\n - Race condition in kernel/events/core.c in the Linux kernel before 4.9.7 allows local users to gain privileges via a crafted application that makes concurrent perf_event_open system calls for moving a software group into a hardware context. NOTE: this vulnerability exists because of an incomplete fix for CVE-2016-6786. (CVE-2017-6001)\n\n - The ip6gre_err function in net/ipv6/ip6_gre.c in the Linux kernel allows remote attackers to have unspecified impact via vectors involving GRE flags in an IPv6 packet, which trigger an out-of-bounds access. 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'exists_check':'kernel-uek-firmware-4.1.12'},\n {'reference':'dtrace-modules-4.1.12-61.1.33.el7uek-0.5.3-2.el7', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE},\n {'reference':'kernel-uek-4.1.12-61.1.33.el7uek', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-4.1.12'},\n {'reference':'kernel-uek-debug-4.1.12-61.1.33.el7uek', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-debug-4.1.12'},\n {'reference':'kernel-uek-debug-devel-4.1.12-61.1.33.el7uek', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-debug-devel-4.1.12'},\n {'reference':'kernel-uek-devel-4.1.12-61.1.33.el7uek', 'cpu':'x86_64', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-devel-4.1.12'},\n {'reference':'kernel-uek-doc-4.1.12-61.1.33.el7uek', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-doc-4.1.12'},\n {'reference':'kernel-uek-firmware-4.1.12-61.1.33.el7uek', 'release':'7', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-uek-firmware-4.1.12'}\n];\n\nvar flag = 0;\nforeach var package_array ( pkgs ) {\n var reference = NULL;\n var release = NULL;\n var sp = NULL;\n var cpu = NULL;\n var el_string = NULL;\n var rpm_spec_vers_cmp = NULL;\n var epoch = NULL;\n var allowmaj = NULL;\n var exists_check = NULL;\n if (!empty_or_null(package_array['reference'])) reference = package_array['reference'];\n if (!empty_or_null(package_array['release'])) release = 'EL' + package_array['release'];\n if (!empty_or_null(package_array['sp'])) sp = package_array['sp'];\n if (!empty_or_null(package_array['cpu'])) cpu = package_array['cpu'];\n if (!empty_or_null(package_array['el_string'])) el_string = package_array['el_string'];\n if (!empty_or_null(package_array['rpm_spec_vers_cmp'])) rpm_spec_vers_cmp = package_array['rpm_spec_vers_cmp'];\n if (!empty_or_null(package_array['epoch'])) epoch = package_array['epoch'];\n if (!empty_or_null(package_array['allowmaj'])) allowmaj = package_array['allowmaj'];\n if (!empty_or_null(package_array['exists_check'])) exists_check = package_array['exists_check'];\n if (reference && release) {\n if (exists_check) {\n if (rpm_exists(release:release, rpm:exists_check) && rpm_check(release:release, sp:sp, cpu:cpu, reference:reference, epoch:epoch, el_string:el_string, rpm_spec_vers_cmp:rpm_spec_vers_cmp, allowmaj:allowmaj)) flag++;\n } else {\n if (rpm_check(release:release, sp:sp, cpu:cpu, reference:reference, epoch:epoch, el_string:el_string, rpm_spec_vers_cmp:rpm_spec_vers_cmp, allowmaj:allowmaj)) flag++;\n }\n }\n}\n\nif (flag)\n{\n security_report_v4(\n port : 0,\n severity : SECURITY_HOLE,\n extra : rpm_report_get()\n );\n exit(0);\n}\nelse\n{\n var tested = pkg_tests_get();\n if (tested) audit(AUDIT_PACKAGE_NOT_AFFECTED, tested);\n else audit(AUDIT_PACKAGE_NOT_INSTALLED, 'dtrace-modules-4.1.12-61.1.33.el6uek / dtrace-modules-4.1.12-61.1.33.el7uek / kernel-uek / etc');\n}\n", "cvss": {"score": 9.3, "vector": "AV:N/AC:M/Au:N/C:C/I:C/A:C"}}, {"lastseen": "2023-02-16T14:59:40", "description": "The remote OracleVM system is missing necessary patches to address critical security updates :\n\n - nfsd: stricter decoding of write-like NFSv2/v3 ops (J.\n Bruce Fields) [Orabug: 25986995] (CVE-2017-7895)\n\n - ocfs2/o2net: o2net_listen_data_ready should do nothing if socket state is not TCP_LISTEN (Tariq Saeed) [Orabug:\n 25510857]\n\n - IB/CORE: sync the resouce access in fmr_pool (Wengang Wang) [Orabug: 23750748]\n\n - ipv6: Skip XFRM lookup if dst_entry in socket cache is valid (Jakub Sitnicki) [Orabug: 25534688]\n\n - uek-rpm: enable CONFIG_KSPLICE. (Jamie Iles) [Orabug:\n 25549845]\n\n - ksplice: add sysctls for determining Ksplice features.\n (Jamie Iles) \n\n - signal: protect SIGNAL_UNKILLABLE from unintentional clearing. (Jamie Iles) [Orabug: 25549845]\n\n - KVM: x86: fix emulation of 'MOV SS, null selector' (Paolo Bonzini) [Orabug: 25719676] (CVE-2017-2583) (CVE-2017-2583)\n\n - sctp: avoid BUG_ON on sctp_wait_for_sndbuf (Marcelo Ricardo Leitner) [Orabug: 25719811] (CVE-2017-5986)\n\n - tcp: avoid infinite loop in tcp_splice_read (Eric Dumazet) [Orabug: 25720815] (CVE-2017-6214)\n\n - USB: visor: fix null-deref at probe (Johan Hovold) [Orabug: 25796604] (CVE-2016-2782)\n\n - ipc/shm: Fix shmat mmap nil-page protection (Davidlohr Bueso) [Orabug: 25797014] (CVE-2017-5669)\n\n - vhost: actually track log eventfd file (Marc-André Lureau) [Orabug: 25797056] (CVE-2015-6252)\n\n - xfrm_user: validate XFRM_MSG_NEWAE incoming ESN size harder (Andy Whitcroft) [Orabug: 25814664] (CVE-2017-7184)\n\n - xfrm_user: validate XFRM_MSG_NEWAE XFRMA_REPLAY_ESN_VAL replay_window (Andy Whitcroft) [Orabug: 25814664] (CVE-2017-7184)\n\n - KEYS: Remove key_type::match in favour of overriding default by match_preparse (David Howells) [Orabug:\n 25823965] (CVE-2017-2647) (CVE-2017-2647)\n\n - USB: whiteheat: fix potential null-deref at probe (Johan Hovold) [Orabug: 25825107] (CVE-2015-5257)\n\n - RDS: fix race condition when sending a message on unbound socket (Quentin Casasnovas) [Orabug: 25871048] (CVE-2015-6937) (CVE-2015-6937)\n\n - udf: Check path length when reading symlink (Jan Kara) [Orabug: 25871104] (CVE-2015-9731)\n\n - udf: Treat symlink component of type 2 as / (Jan Kara) [Orabug: 25871104] (CVE-2015-9731)\n\n - udp: properly support MSG_PEEK with truncated buffers (Eric Dumazet) [Orabug: 25874741] (CVE-2016-10229)\n\n - block: fix use-after-free in seq file (Vegard Nossum) [Orabug: 25877531] (CVE-2016-7910)\n\n - RHEL: complement upstream workaround for CVE-2016-10142.\n (Quentin Casasnovas) [Orabug: 25765786] (CVE-2016-10142) (CVE-2016-10142)\n\n - net: ping: check minimum size on ICMP header length (Kees Cook) [Orabug: 25766914] (CVE-2016-8399)\n\n - ipv6: stop sending PTB packets for MTU < 1280 (Hagen Paul Pfeifer) [Orabug: 25765786] (CVE-2016-10142)\n\n - sg_write/bsg_write is not fit to be called under KERNEL_DS (Al Viro) [Orabug: 25765448] (CVE-2016-10088)\n\n - scsi: sg: check length passed to SG_NEXT_CMD_LEN (peter chang) [Orabug: 25752011] (CVE-2017-7187)\n\n - tty: n_hdlc: get rid of racy n_hdlc.tbuf (Alexander Popov) [Orabug: 25696689] (CVE-2017-2636)\n\n - TTY: n_hdlc, fix lockdep false positive (Jiri Slaby) [Orabug: 25696689] (CVE-2017-2636)\n\n - drivers/tty/n_hdlc.c: replace kmalloc/memset by kzalloc (Fabian Frederick) [Orabug: 25696689] (CVE-2017-2636)\n\n - list: introduce list_first_entry_or_null (Jiri Pirko) [Orabug: 25696689] (CVE-2017-2636)\n\n - firewire: net: guard against rx buffer overflows (Stefan Richter) [Orabug: 25451538] (CVE-2016-8633)\n\n - x86/mm/32: Enable full randomization on i386 and X86_32 (Hector Marco-Gisbert) [Orabug: 25463929] (CVE-2016-3672)\n\n - x86 get_unmapped_area: Access mmap_legacy_base through mm_struct member (Radu Caragea) [Orabug: 25463929] (CVE-2016-3672)\n\n - sg_start_req: make sure that there's not too many elements in iovec (Al Viro) [Orabug: 25490377] (CVE-2015-5707)\n\n - tcp: take care of truncations done by sk_filter (Eric Dumazet) [Orabug: 25507232] (CVE-2016-8645)\n\n - rose: limit sk_filter trim to payload (Willem de Bruijn) [Orabug: 25507232] (CVE-2016-8645)\n\n - scsi: arcmsr: Buffer overflow in arcmsr_iop_message_xfer (Dan Carpenter) [Orabug: 25507330] (CVE-2016-7425)\n\n - x86: bpf_jit: fix compilation of large bpf programs (Alexei Starovoitov) [Orabug: 25507375] (CVE-2015-4700)\n\n - net: fix a kernel infoleak in x25 module (Kangjie Lu) [Orabug: 25512417] (CVE-2016-4580)\n\n - USB: digi_acceleport: do sanity checking for the number of ports (Oliver Neukum) [Orabug: 25512472] (CVE-2016-3140)\n\n - net/llc: avoid BUG_ON in skb_orphan (Eric Dumazet) [Orabug: 25682437] (CVE-2017-6345)\n\n - dccp: fix freeing skb too early for IPV6_RECVPKTINFO (Andrey Konovalov) [Orabug: 25598277] (CVE-2017-6074)\n\n - vfs: read file_handle only once in handle_to_path (Sasha Levin) [Orabug: 25388709] (CVE-2015-1420)\n\n - crypto: algif_hash - Only export and import on sockets with data (Herbert Xu) [Orabug: 25417807]\n\n - USB: usbfs: fix potential infoleak in devio (Kangjie Lu) [Orabug: 25462763] (CVE-2016-4482)\n\n - net: fix infoleak in llc (Kangjie Lu) [Orabug: 25462811] (CVE-2016-4485)\n\n - af_unix: Guard against other == sk in unix_dgram_sendmsg (Rainer Weikusat) [Orabug: 25464000] (CVE-2013-7446)\n\n - unix: avoid use-after-free in ep_remove_wait_queue (Rainer Weikusat) [Orabug: 25464000] (CVE-2013-7446)", "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": "2017-05-17T00:00:00", "type": "nessus", "title": "OracleVM 3.2 : Unbreakable / etc (OVMSA-2017-0106)", "bulletinFamily": "scanner", "cvss2": {"severity": "HIGH", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 10.0, "vectorString": "AV:N/AC:L/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 10.0, "obtainUserPrivilege": false}, "cvelist": ["CVE-2013-7446", "CVE-2015-1420", "CVE-2015-4700", "CVE-2015-5257", "CVE-2015-5707", "CVE-2015-6252", "CVE-2015-6937", "CVE-2015-9731", "CVE-2016-10088", "CVE-2016-10142", "CVE-2016-10229", "CVE-2016-2782", "CVE-2016-3140", "CVE-2016-3672", "CVE-2016-4482", "CVE-2016-4485", "CVE-2016-4580", "CVE-2016-7425", "CVE-2016-7910", "CVE-2016-8399", "CVE-2016-8633", "CVE-2016-8645", "CVE-2017-2583", "CVE-2017-2636", "CVE-2017-2647", "CVE-2017-5669", "CVE-2017-5986", "CVE-2017-6074", "CVE-2017-6214", "CVE-2017-6345", "CVE-2017-7184", "CVE-2017-7187", "CVE-2017-7895"], "modified": "2021-01-04T00:00:00", "cpe": ["p-cpe:/a:oracle:vm:kernel-uek", "p-cpe:/a:oracle:vm:kernel-uek-firmware", "cpe:/o:oracle:vm_server:3.2"], "id": "ORACLEVM_OVMSA-2017-0106.NASL", "href": "https://www.tenable.com/plugins/nessus/100238", "sourceData": "#%NASL_MIN_LEVEL 70300\n#\n# (C) Tenable Network Security, Inc.\n#\n# The package checks in this plugin were extracted from OracleVM\n# Security Advisory OVMSA-2017-0106.\n#\n\ninclude('deprecated_nasl_level.inc');\ninclude('compat.inc');\n\nif (description)\n{\n script_id(100238);\n script_version(\"3.10\");\n script_set_attribute(attribute:\"plugin_modification_date\", value:\"2021/01/04\");\n\n script_cve_id(\"CVE-2013-7446\", \"CVE-2015-1420\", \"CVE-2015-4700\", \"CVE-2015-5257\", \"CVE-2015-5707\", \"CVE-2015-6252\", \"CVE-2015-6937\", \"CVE-2015-9731\", \"CVE-2016-10088\", \"CVE-2016-10142\", \"CVE-2016-10229\", \"CVE-2016-2782\", \"CVE-2016-3140\", \"CVE-2016-3672\", \"CVE-2016-4482\", \"CVE-2016-4485\", \"CVE-2016-4580\", \"CVE-2016-7425\", \"CVE-2016-7910\", \"CVE-2016-8399\", \"CVE-2016-8633\", \"CVE-2016-8645\", \"CVE-2017-2583\", \"CVE-2017-2636\", \"CVE-2017-2647\", \"CVE-2017-5669\", \"CVE-2017-5986\", \"CVE-2017-6074\", \"CVE-2017-6214\", \"CVE-2017-6345\", \"CVE-2017-7184\", \"CVE-2017-7187\", \"CVE-2017-7895\");\n script_bugtraq_id(72357, 75356);\n\n script_name(english:\"OracleVM 3.2 : Unbreakable / etc (OVMSA-2017-0106)\");\n script_summary(english:\"Checks the RPM output for the updated packages.\");\n\n script_set_attribute(\n attribute:\"synopsis\",\n value:\"The remote OracleVM host is missing one or more security updates.\"\n );\n script_set_attribute(\n attribute:\"description\",\n value:\n\"The remote OracleVM system is missing necessary patches to address\ncritical security updates :\n\n - nfsd: stricter decoding of write-like NFSv2/v3 ops (J.\n Bruce Fields) [Orabug: 25986995] (CVE-2017-7895)\n\n - ocfs2/o2net: o2net_listen_data_ready should do nothing\n if socket state is not TCP_LISTEN (Tariq Saeed) [Orabug:\n 25510857]\n\n - IB/CORE: sync the resouce access in fmr_pool (Wengang\n Wang) [Orabug: 23750748]\n\n - ipv6: Skip XFRM lookup if dst_entry in socket cache is\n valid (Jakub Sitnicki) [Orabug: 25534688]\n\n - uek-rpm: enable CONFIG_KSPLICE. (Jamie Iles) [Orabug:\n 25549845]\n\n - ksplice: add sysctls for determining Ksplice features.\n (Jamie Iles) \n\n - signal: protect SIGNAL_UNKILLABLE from unintentional\n clearing. (Jamie Iles) [Orabug: 25549845]\n\n - KVM: x86: fix emulation of 'MOV SS, null selector'\n (Paolo Bonzini) [Orabug: 25719676] (CVE-2017-2583)\n (CVE-2017-2583)\n\n - sctp: avoid BUG_ON on sctp_wait_for_sndbuf (Marcelo\n Ricardo Leitner) [Orabug: 25719811] (CVE-2017-5986)\n\n - tcp: avoid infinite loop in tcp_splice_read (Eric\n Dumazet) [Orabug: 25720815] (CVE-2017-6214)\n\n - USB: visor: fix null-deref at probe (Johan Hovold)\n [Orabug: 25796604] (CVE-2016-2782)\n\n - ipc/shm: Fix shmat mmap nil-page protection (Davidlohr\n Bueso) [Orabug: 25797014] (CVE-2017-5669)\n\n - vhost: actually track log eventfd file\n (Marc-André Lureau) [Orabug: 25797056]\n (CVE-2015-6252)\n\n - xfrm_user: validate XFRM_MSG_NEWAE incoming ESN size\n harder (Andy Whitcroft) [Orabug: 25814664]\n (CVE-2017-7184)\n\n - xfrm_user: validate XFRM_MSG_NEWAE XFRMA_REPLAY_ESN_VAL\n replay_window (Andy Whitcroft) [Orabug: 25814664]\n (CVE-2017-7184)\n\n - KEYS: Remove key_type::match in favour of overriding\n default by match_preparse (David Howells) [Orabug:\n 25823965] (CVE-2017-2647) (CVE-2017-2647)\n\n - USB: whiteheat: fix potential null-deref at probe (Johan\n Hovold) [Orabug: 25825107] (CVE-2015-5257)\n\n - RDS: fix race condition when sending a message on\n unbound socket (Quentin Casasnovas) [Orabug: 25871048]\n (CVE-2015-6937) (CVE-2015-6937)\n\n - udf: Check path length when reading symlink (Jan Kara)\n [Orabug: 25871104] (CVE-2015-9731)\n\n - udf: Treat symlink component of type 2 as / (Jan Kara)\n [Orabug: 25871104] (CVE-2015-9731)\n\n - udp: properly support MSG_PEEK with truncated buffers\n (Eric Dumazet) [Orabug: 25874741] (CVE-2016-10229)\n\n - block: fix use-after-free in seq file (Vegard Nossum)\n [Orabug: 25877531] (CVE-2016-7910)\n\n - RHEL: complement upstream workaround for CVE-2016-10142.\n (Quentin Casasnovas) [Orabug: 25765786] (CVE-2016-10142)\n (CVE-2016-10142)\n\n - net: ping: check minimum size on ICMP header length\n (Kees Cook) [Orabug: 25766914] (CVE-2016-8399)\n\n - ipv6: stop sending PTB packets for MTU < 1280 (Hagen\n Paul Pfeifer) [Orabug: 25765786] (CVE-2016-10142)\n\n - sg_write/bsg_write is not fit to be called under\n KERNEL_DS (Al Viro) [Orabug: 25765448] (CVE-2016-10088)\n\n - scsi: sg: check length passed to SG_NEXT_CMD_LEN (peter\n chang) [Orabug: 25752011] (CVE-2017-7187)\n\n - tty: n_hdlc: get rid of racy n_hdlc.tbuf (Alexander\n Popov) [Orabug: 25696689] (CVE-2017-2636)\n\n - TTY: n_hdlc, fix lockdep false positive (Jiri Slaby)\n [Orabug: 25696689] (CVE-2017-2636)\n\n - drivers/tty/n_hdlc.c: replace kmalloc/memset by kzalloc\n (Fabian Frederick) [Orabug: 25696689] (CVE-2017-2636)\n\n - list: introduce list_first_entry_or_null (Jiri Pirko)\n [Orabug: 25696689] (CVE-2017-2636)\n\n - firewire: net: guard against rx buffer overflows (Stefan\n Richter) [Orabug: 25451538] (CVE-2016-8633)\n\n - x86/mm/32: Enable full randomization on i386 and X86_32\n (Hector Marco-Gisbert) [Orabug: 25463929]\n (CVE-2016-3672)\n\n - x86 get_unmapped_area: Access mmap_legacy_base through\n mm_struct member (Radu Caragea) [Orabug: 25463929]\n (CVE-2016-3672)\n\n - sg_start_req: make sure that there's not too many\n elements in iovec (Al Viro) [Orabug: 25490377]\n (CVE-2015-5707)\n\n - tcp: take care of truncations done by sk_filter (Eric\n Dumazet) [Orabug: 25507232] (CVE-2016-8645)\n\n - rose: limit sk_filter trim to payload (Willem de Bruijn)\n [Orabug: 25507232] (CVE-2016-8645)\n\n - scsi: arcmsr: Buffer overflow in arcmsr_iop_message_xfer\n (Dan Carpenter) [Orabug: 25507330] (CVE-2016-7425)\n\n - x86: bpf_jit: fix compilation of large bpf programs\n (Alexei Starovoitov) [Orabug: 25507375] (CVE-2015-4700)\n\n - net: fix a kernel infoleak in x25 module (Kangjie Lu)\n [Orabug: 25512417] (CVE-2016-4580)\n\n - USB: digi_acceleport: do sanity checking for the number\n of ports (Oliver Neukum) [Orabug: 25512472]\n (CVE-2016-3140)\n\n - net/llc: avoid BUG_ON in skb_orphan (Eric Dumazet)\n [Orabug: 25682437] (CVE-2017-6345)\n\n - dccp: fix freeing skb too early for IPV6_RECVPKTINFO\n (Andrey Konovalov) [Orabug: 25598277] (CVE-2017-6074)\n\n - vfs: read file_handle only once in handle_to_path (Sasha\n Levin) [Orabug: 25388709] (CVE-2015-1420)\n\n - crypto: algif_hash - Only export and import on sockets\n with data (Herbert Xu) [Orabug: 25417807]\n\n - 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tcp: take care of truncations done by sk_filter (Eric Dumazet) [Orabug: 25507226] (CVE-2016-8645)\n\n - rose: limit sk_filter trim to payload (Willem de Bruijn) [Orabug: 25507226] (CVE-2016-8645)\n\n - tipc: check minimum bearer MTU (Michal Kubeč ek) [Orabug: 25507239] (CVE-2016-8632) (CVE-2016-8632)\n\n - fix minor infoleak in get_user_ex (Al Viro) [Orabug:\n 25507269] (CVE-2016-9178)\n\n - scsi: arcmsr: Simplify user_len checking (Borislav Petkov) [Orabug: 25507319] (CVE-2016-7425)\n\n - scsi: arcmsr: Buffer overflow in arcmsr_iop_message_xfer (Dan Carpenter) [Orabug: 25507319] (CVE-2016-7425)\n\n - tmpfs: clear S_ISGID when setting posix ACLs (Gu Zheng) [Orabug: 25507341] (CVE-2016-7097) (CVE-2016-7097)\n\n - posix_acl: Clear SGID bit when setting file permissions (Jan Kara) [Orabug: 25507341] (CVE-2016-7097) (CVE-2016-7097)\n\n - ext2: convert to mbcache2 (Jan Kara) [Orabug: 25512366] (CVE-2015-8952)\n\n - ext4: convert to mbcache2 (Jan Kara) [Orabug: 25512366] (CVE-2015-8952)\n\n - mbcache2: reimplement mbcache (Jan Kara) [Orabug:\n 25512366] (CVE-2015-8952)\n\n - USB: digi_acceleport: do sanity checking for the number of ports (Oliver Neukum) [Orabug: 25512466] (CVE-2016-3140)\n\n - net/llc: avoid BUG_ON in skb_orphan (Eric Dumazet) [Orabug: 25682419] (CVE-2017-6345)\n\n - net/mlx4_core: Disallow creation of RAW QPs on a VF (Eli Cohen) \n\n - ipv4: keep skb->dst around in presence of IP options (Eric Dumazet) [Orabug: 25698300] (CVE-2017-5970)\n\n - perf/core: Fix concurrent sys_perf_event_open vs.\n 'move_group' race (Peter Zijlstra) [Orabug: 25698751] (CVE-2017-6001)\n\n - ip6_gre: fix ip6gre_err invalid reads (Eric Dumazet) [Orabug: 25699015] (CVE-2017-5897)\n\n - mpt3sas: Don't spam logs if logging level is 0 (Johannes Thumshirn) \n\n - xen-netfront: cast grant table reference first to type int (Dongli Zhang)\n\n - xen-netfront: do not cast grant table reference to signed short (Dongli Zhang)", "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": "2017-04-03T00:00:00", "type": "nessus", "title": "OracleVM 3.4 : Unbreakable / etc (OVMSA-2017-0056)", "bulletinFamily": "scanner", "cvss2": {"severity": "HIGH", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "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, "obtainUserPrivilege": false}, "cvelist": ["CVE-2015-8952", "CVE-2016-10088", "CVE-2016-10147", "CVE-2016-3140", "CVE-2016-3672", "CVE-2016-3951", "CVE-2016-7097", "CVE-2016-7425", "CVE-2016-8399", "CVE-2016-8632", "CVE-2016-8633", "CVE-2016-8645", "CVE-2016-9178", "CVE-2016-9588", "CVE-2016-9644", "CVE-2016-9756", "CVE-2017-2596", "CVE-2017-2636", "CVE-2017-5897", "CVE-2017-5970", "CVE-2017-6001", "CVE-2017-6345", "CVE-2017-7187"], "modified": "2021-01-04T00:00:00", "cpe": ["p-cpe:/a:oracle:vm:kernel-uek", "p-cpe:/a:oracle:vm:kernel-uek-firmware", "cpe:/o:oracle:vm_server:3.4"], "id": "ORACLEVM_OVMSA-2017-0056.NASL", "href": "https://www.tenable.com/plugins/nessus/99162", "sourceData": "#%NASL_MIN_LEVEL 70300\n#\n# (C) Tenable Network Security, Inc.\n#\n# The package checks in this plugin were extracted from OracleVM\n# Security Advisory OVMSA-2017-0056.\n#\n\ninclude('deprecated_nasl_level.inc');\ninclude('compat.inc');\n\nif (description)\n{\n script_id(99162);\n script_version(\"3.5\");\n script_set_attribute(attribute:\"plugin_modification_date\", value:\"2021/01/04\");\n\n script_cve_id(\"CVE-2015-8952\", \"CVE-2016-10088\", \"CVE-2016-10147\", \"CVE-2016-3140\", \"CVE-2016-3672\", \"CVE-2016-3951\", \"CVE-2016-7097\", \"CVE-2016-7425\", \"CVE-2016-8399\", \"CVE-2016-8632\", \"CVE-2016-8633\", \"CVE-2016-8645\", \"CVE-2016-9178\", \"CVE-2016-9588\", \"CVE-2016-9644\", \"CVE-2016-9756\", \"CVE-2017-2596\", \"CVE-2017-2636\", \"CVE-2017-5897\", \"CVE-2017-5970\", \"CVE-2017-6001\", \"CVE-2017-6345\", \"CVE-2017-7187\");\n\n script_name(english:\"OracleVM 3.4 : Unbreakable / etc (OVMSA-2017-0056)\");\n script_summary(english:\"Checks the RPM output for the updated packages.\");\n\n script_set_attribute(\n attribute:\"synopsis\", \n value:\"The remote OracleVM host is missing one or more security updates.\"\n );\n script_set_attribute(\n attribute:\"description\", \n value:\n\"The remote OracleVM system is missing necessary patches to address\ncritical security updates :\n\n - 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If an attacker sends a forged ICMPv6 PTB error message to Host B, reporting an MTU smaller than 1280, this will trigger the generation of IPv6 atomic fragments from that moment on (as required by [RFC2460]). When Host B starts sending IPv6 atomic fragments (in response to the received ICMPv6 PTB error message), these packets will be dropped, since we previously noted that IPv6 packets with extension headers were being dropped between Host B and Host A. Thus, this situation will result in a DoS scenario. Another possible scenario is that in which two BGP peers are employing IPv6 transport and they implement Access Control Lists (ACLs) to drop IPv6 fragments (to avoid control-plane attacks). If the aforementioned BGP peers drop IPv6 fragments but still honor received ICMPv6 PTB error messages, an attacker could easily attack the corresponding peering session by simply sending an ICMPv6 PTB message with a reported MTU smaller than 1280 bytes. 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(CVE-2016-2069)\n\n - Double free vulnerability in the snd_usbmidi_create function in sound/usb/midi.c in the Linux kernel\n before 4.5 allows physically proximate attackers to cause a denial of service (panic) or possibly have\n unspecified other impact via vectors involving an invalid USB descriptor. (CVE-2016-2384)\n\n - Race condition in the ioctl_send_fib function in drivers/scsi/aacraid/commctrl.c in the Linux kernel\n through 4.7 allows local users to cause a denial of service (out-of-bounds access or system crash) by\n changing a certain size value, aka a double fetch vulnerability. (CVE-2016-6480)\n\n - The proc_keys_show function in security/keys/proc.c in the Linux kernel through 4.8.2, when the GNU\n Compiler Collection (gcc) stack protector is enabled, uses an incorrect buffer size for certain timeout\n data, which allows local users to cause a denial of service (stack memory corruption and panic) by reading\n the /proc/keys file. 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(CVE-2016-10088)\n\n - The filesystem implementation in the Linux kernel through 4.8.2 preserves the setgid bit during a setxattr\n call, which allows local users to gain group privileges by leveraging the existence of a setgid program\n with restrictions on execute permissions. (CVE-2016-7097)\n\n - An elevation of privilege vulnerability in the kernel networking subsystem could enable a local malicious\n application to execute arbitrary code within the context of the kernel. This issue is rated as Moderate\n because it first requires compromising a privileged process and current compiler optimizations restrict\n access to the vulnerable code. Product: Android. Versions: Kernel-3.10, Kernel-3.18. Android ID:\n A-31349935. (CVE-2016-8399)\n\n - An issue was discovered in the IPv6 protocol specification, related to ICMP Packet Too Big (PTB) messages.\n (The scope of this CVE is all affected IPv6 implementations from all vendors.) The security implications\n of IP fragmentation have been discussed at length in [RFC6274] and [RFC7739]. An attacker can leverage the\n generation of IPv6 atomic fragments to trigger the use of fragmentation in an arbitrary IPv6 flow (in\n scenarios in which actual fragmentation of packets is not needed) and can subsequently perform any type of\n fragmentation-based attack against legacy IPv6 nodes that do not implement [RFC6946]. That is, employing\n fragmentation where not actually needed allows for fragmentation-based attack vectors to be employed,\n unnecessarily. We note that, unfortunately, even nodes that already implement [RFC6946] can be subject to\n DoS attacks as a result of the generation of IPv6 atomic fragments. Let us assume that Host A is\n communicating with Host B and that, as a result of the widespread dropping of IPv6 packets that contain\n extension headers (including fragmentation) [RFC7872], some intermediate node filters fragments between\n Host B and Host A. If an attacker sends a forged ICMPv6 PTB error message to Host B, reporting an MTU\n smaller than 1280, this will trigger the generation of IPv6 atomic fragments from that moment on (as\n required by [RFC2460]). When Host B starts sending IPv6 atomic fragments (in response to the received\n ICMPv6 PTB error message), these packets will be dropped, since we previously noted that IPv6 packets with\n extension headers were being dropped between Host B and Host A. Thus, this situation will result in a DoS\n scenario. Another possible scenario is that in which two BGP peers are employing IPv6 transport and they\n implement Access Control Lists (ACLs) to drop IPv6 fragments (to avoid control-plane attacks). If the\n aforementioned BGP peers drop IPv6 fragments but still honor received ICMPv6 PTB error messages, an\n attacker could easily attack the corresponding peering session by simply sending an ICMPv6 PTB message\n with a reported MTU smaller than 1280 bytes. 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(CVE-2016-10142)\n\nNote that Nessus has not tested for this issue but has instead relied only on the application's self-reported version\nnumber.\");\n script_set_attribute(attribute:\"see_also\", value:\"https://linux.oracle.com/errata/ELSA-2017-0817.html\");\n script_set_attribute(attribute:\"solution\", value:\n\"Update the affected packages.\");\n script_set_cvss_base_vector(\"CVSS2#AV:N/AC:H/Au:N/C:C/I:C/A:C\");\n script_set_cvss_temporal_vector(\"CVSS2#E:H/RL:OF/RC:C\");\n script_set_cvss3_base_vector(\"CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:C/C:N/I:N/A:H\");\n script_set_cvss3_temporal_vector(\"CVSS:3.0/E:H/RL:O/RC:C\");\n script_set_attribute(attribute:\"cvss_score_source\", value:\"CVE-2016-8399\");\n\n script_set_attribute(attribute:\"exploitability_ease\", value:\"Exploits are available\");\n script_set_attribute(attribute:\"exploit_available\", value:\"true\");\n script_set_attribute(attribute:\"exploited_by_malware\", value:\"true\");\n\n 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'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-devel-2.6.32'},\n {'reference':'kernel-devel-2.6.32-696.el6', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-devel-2.6.32'},\n {'reference':'kernel-firmware-2.6.32-696.el6', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-firmware-2.6.32'},\n {'reference':'kernel-headers-2.6.32-696.el6', 'cpu':'i686', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-headers-2.6.32'},\n {'reference':'kernel-headers-2.6.32-696.el6', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE, 'exists_check':'kernel-headers-2.6.32'},\n {'reference':'perf-2.6.32-696.el6', 'cpu':'i686', 'release':'6', 'rpm_spec_vers_cmp':TRUE},\n {'reference':'perf-2.6.32-696.el6', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE},\n {'reference':'python-perf-2.6.32-696.el6', 'cpu':'i686', 'release':'6', 'rpm_spec_vers_cmp':TRUE},\n {'reference':'python-perf-2.6.32-696.el6', 'cpu':'x86_64', 'release':'6', 'rpm_spec_vers_cmp':TRUE}\n];\n\nvar flag = 0;\nforeach var package_array ( pkgs ) {\n var reference = NULL;\n var release = NULL;\n var sp = NULL;\n var cpu = NULL;\n var el_string = NULL;\n var rpm_spec_vers_cmp = NULL;\n var epoch = NULL;\n var allowmaj = NULL;\n var exists_check = NULL;\n if (!empty_or_null(package_array['reference'])) reference = package_array['reference'];\n if (!empty_or_null(package_array['release'])) release = 'EL' + package_array['release'];\n if (!empty_or_null(package_array['sp'])) sp = package_array['sp'];\n if (!empty_or_null(package_array['cpu'])) cpu = package_array['cpu'];\n if (!empty_or_null(package_array['el_string'])) el_string = package_array['el_string'];\n if (!empty_or_null(package_array['rpm_spec_vers_cmp'])) rpm_spec_vers_cmp = package_array['rpm_spec_vers_cmp'];\n if (!empty_or_null(package_array['epoch'])) epoch = package_array['epoch'];\n if (!empty_or_null(package_array['allowmaj'])) allowmaj = package_array['allowmaj'];\n if 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"An update for kernel is now available for Red Hat Enterprise Linux 6.\n\nRed Hat Product Security has rated this update as having a security impact of Moderate. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.\n\nThe kernel packages contain the Linux kernel, the core of any Linux operating system.\n\nSecurity Fix(es) :\n\n* It was discovered that a remote attacker could leverage the generation of IPv6 atomic fragments to trigger the use of fragmentation in an arbitrary IPv6 flow (in scenarios in which actual fragmentation of packets is not needed) and could subsequently perform any type of a fragmentation-based attack against legacy IPv6 nodes that do not implement RFC6946. (CVE-2016-10142, Moderate)\n\n* A flaw was discovered in the way the Linux kernel dealt with paging structures. When the kernel invalidated a paging structure that was not in use locally, it could, in principle, race against another CPU that is switching to a process that uses the paging structure in question. A local user could use a thread running with a stale cached virtual->physical translation to potentially escalate their privileges if the translation in question were writable and the physical page got reused for something critical (for example, a page table).\n(CVE-2016-2069, Moderate)\n\n* A race condition flaw was found in the ioctl_send_fib() function in the Linux kernel's aacraid implementation. A local attacker could use this flaw to cause a denial of service (out-of-bounds access or system crash) by changing a certain size value. (CVE-2016-6480, Moderate)\n\n* It was found that when the gcc stack protector was enabled, reading the / proc/keys file could cause a panic in the Linux kernel due to stack corruption. This happened because an incorrect buffer size was used to hold a 64-bit timeout value rendered as weeks. (CVE-2016-7042, Moderate)\n\n* It was found that when file permissions were modified via chmod and the user modifying them was not in the owning group or capable of CAP_FSETID, the setgid bit would be cleared. Setting a POSIX ACL via setxattr sets the file permissions as well as the new ACL, but doesn't clear the setgid bit in a similar way. This could allow a local user to gain group privileges via certain setgid applications.\n(CVE-2016-7097, Moderate)\n\n* A flaw was found in the Linux networking subsystem where a local attacker with CAP_NET_ADMIN capabilities could cause an out-of-bounds memory access by creating a smaller-than-expected ICMP header and sending to its destination via sendto(). 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get_kb_item(\"Host/local_checks_enabled\") ) audit(AUDIT_LOCAL_CHECKS_NOT_ENABLED);\nversion = get_kb_item(\"Host/BIG-IP/version\");\nif ( ! version ) audit(AUDIT_OS_NOT, \"F5 Networks BIG-IP\");\nif ( isnull(get_kb_item(\"Host/BIG-IP/hotfix\")) ) audit(AUDIT_KB_MISSING, \"Host/BIG-IP/hotfix\");\nif ( ! get_kb_item(\"Host/BIG-IP/modules\") ) audit(AUDIT_KB_MISSING, \"Host/BIG-IP/modules\");\n\nsol = \"K57211290\";\nvmatrix = make_array();\n\n# AFM\nvmatrix[\"AFM\"] = make_array();\nvmatrix[\"AFM\"][\"affected\" ] = make_list(\"12.0.0-12.1.2\",\"11.6.0-11.6.1\",\"11.4.1-11.5.4\",\"11.4.1-11.5.8\");\nvmatrix[\"AFM\"][\"unaffected\"] = make_list(\"13.0.0-13.1.1\",\"12.1.3-12.1.4\",\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"13.0.0-13.1.0\",\"12.0.0-12.1.3\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n# AM\nvmatrix[\"AM\"] = make_array();\nvmatrix[\"AM\"][\"affected\" ] = make_list(\"12.0.0-12.1.2\",\"11.6.0-11.6.1\",\"11.4.1-11.5.4\",\"11.4.1-11.5.8\");\nvmatrix[\"AM\"][\"unaffected\"] = make_list(\"13.0.0-13.1.1\",\"12.1.3-12.1.4\",\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"13.0.0-13.1.1\",\"12.0.0-12.1.4\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n# APM\nvmatrix[\"APM\"] = make_array();\nvmatrix[\"APM\"][\"affected\" ] = make_list(\"12.0.0-12.1.2\",\"11.6.0-11.6.1\",\"11.4.1-11.5.4\",\"11.2.1\",\"11.4.1-11.5.8\",\"11.2.1\");\nvmatrix[\"APM\"][\"unaffected\"] = make_list(\"13.0.0-13.1.1\",\"12.1.3-12.1.4\",\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"13.0.0-13.1.0\",\"12.0.0-12.1.3\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n# ASM\nvmatrix[\"ASM\"] = make_array();\nvmatrix[\"ASM\"][\"affected\" ] = make_list(\"12.0.0-12.1.2\",\"11.6.0-11.6.1\",\"11.4.1-11.5.4\",\"11.2.1\",\"11.4.1-11.5.8\",\"11.2.1\");\nvmatrix[\"ASM\"][\"unaffected\"] = make_list(\"13.0.0-13.1.1\",\"12.1.3-12.1.4\",\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"13.0.0-13.1.0\",\"12.0.0-12.1.3\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n# AVR\nvmatrix[\"AVR\"] = make_array();\nvmatrix[\"AVR\"][\"affected\" ] = make_list(\"12.0.0-12.1.2\",\"11.6.0-11.6.1\",\"11.4.1-11.5.4\",\"11.2.1\",\"11.4.1-11.5.8\",\"11.2.1\");\nvmatrix[\"AVR\"][\"unaffected\"] = make_list(\"13.0.0-13.1.1\",\"12.1.3-12.1.4\",\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"13.0.0-13.1.0\",\"12.0.0-12.1.3\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n# GTM\nvmatrix[\"GTM\"] = make_array();\nvmatrix[\"GTM\"][\"affected\" ] = make_list(\"11.6.0-11.6.1\",\"11.4.1-11.5.4\",\"11.2.1\",\"11.4.1-11.5.8\",\"11.2.1\");\nvmatrix[\"GTM\"][\"unaffected\"] = make_list(\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n# LC\nvmatrix[\"LC\"] = make_array();\nvmatrix[\"LC\"][\"affected\" ] = make_list(\"12.0.0-12.1.2\",\"11.6.0-11.6.1\",\"11.4.1-11.5.4\",\"11.2.1\",\"11.4.1-11.5.8\",\"11.2.1\");\nvmatrix[\"LC\"][\"unaffected\"] = make_list(\"13.0.0-13.1.1\",\"12.1.3-12.1.4\",\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"13.0.0-13.1.1\",\"12.0.0-12.1.4\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n# LTM\nvmatrix[\"LTM\"] = make_array();\nvmatrix[\"LTM\"][\"affected\" ] = make_list(\"12.0.0-12.1.2\",\"11.6.0-11.6.1\",\"11.4.1-11.5.4\",\"11.2.1\",\"11.4.1-11.5.8\",\"11.2.1\");\nvmatrix[\"LTM\"][\"unaffected\"] = make_list(\"13.0.0-13.1.1\",\"12.1.3-12.1.4\",\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"13.0.0-13.1.1\",\"12.0.0-12.1.4\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n# PEM\nvmatrix[\"PEM\"] = make_array();\nvmatrix[\"PEM\"][\"affected\" ] = make_list(\"12.0.0-12.1.2\",\"11.6.0-11.6.1\",\"11.4.0-11.5.4\",\"11.4.1-11.5.8\");\nvmatrix[\"PEM\"][\"unaffected\"] = make_list(\"13.0.0-13.1.1\",\"12.1.3-12.1.4\",\"11.6.2-11.6.3\",\"11.5.5-11.5.8\",\"13.0.0-13.1.1\",\"12.0.0-12.1.4\",\"11.6.0-11.6.3\",\"11.5.9\");\n\n\nif (bigip_is_affected(vmatrix:vmatrix, sol:sol))\n{\n if (report_verbosity > 0) security_warning(port:0, extra:bigip_report_get());\n else security_warning(0);\n exit(0);\n}\nelse\n{\n tested = bigip_get_tested_modules();\n audit_extra = \"For BIG-IP module(s) \" + tested + \",\";\n if (tested) audit(AUDIT_INST_VER_NOT_VULN, audit_extra, version);\n else audit(AUDIT_HOST_NOT, \"running any of the affected modules\");\n}\n", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-01-18T14:10:06", "description": "A flaw was found in the Linux kernel key management subsystem in which a local attacker could crash the kernel or corrupt the stack and additional memory (denial of service) by supplying a specially crafted RSA key. This flaw panics the machine during the verification of the RSA key. (CVE-2016-8650)\n\nThe blk_rq_map_user_iov function in block/blk-map.c in the Linux kernel before 4.8.14 does not properly restrict the type of iterator, which allows local users to read or write to arbitrary kernel memory locations or cause a denial of service (use-after-free) by leveraging access to a /dev/sg device. (CVE-2016-9576)\n\nThe sock_setsockopt function in net/core/sock.c in the Linux kernel before 4.8.14 mishandles negative values of sk_sndbuf and sk_rcvbuf, which allows local users to cause a denial of service (memory corruption and system crash) or possibly have unspecified other impact by leveraging the CAP_NET_ADMIN capability for a crafted setsockopt system call with the (1) SO_SNDBUFFORCE or (2) SO_RCVBUFFORCE option.\n(CVE-2016-9793)\n\nA flaw was found in the Linux networking subsystem where a local attacker with CAP_NET_ADMIN capabilities could cause an out of bounds read by creating a smaller-than-expected ICMP header and sending to its destination via sendto(). (CVE-2016-8399)\n\nAlgorithms not compatible with mcryptd could be spawned by mcryptd with a direct crypto_alloc_tfm invocation using a 'mcryptd(alg)' name construct. This causes mcryptd to crash the kernel if an arbitrary 'alg' is incompatible and not intended to be used with mcryptd.\n(CVE-2016-10147)\n\n(Updated on 2017-01-19: CVE-2016-8399 was fixed in this release but was previously not part of this errata.)\n\n(Updated on 2017-02-22: CVE-2016-10147 was fixed in this release but was previously not part of this errata.)", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2017-01-05T00:00:00", "type": "nessus", "title": "Amazon Linux AMI : kernel (ALAS-2017-782)", "bulletinFamily": "scanner", "cvss2": {"severity": "HIGH", "exploitabilityScore": 4.9, "obtainAllPrivilege": false, "userInteractionRequired": true, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "HIGH", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 7.6, "vectorString": "AV:N/AC:H/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 10.0, "obtainUserPrivilege": false}, "cvelist": ["CVE-2016-10147", "CVE-2016-8399", "CVE-2016-8650", "CVE-2016-9576", "CVE-2016-9793"], "modified": "2019-04-10T00:00:00", "cpe": ["p-cpe:/a:amazon:linux:kernel", "p-cpe:/a:amazon:linux:kernel-debuginfo", "p-cpe:/a:amazon:linux:kernel-debuginfo-common-i686", "p-cpe:/a:amazon:linux:kernel-debuginfo-common-x86_64", "p-cpe:/a:amazon:linux:kernel-devel", "p-cpe:/a:amazon:linux:kernel-doc", "p-cpe:/a:amazon:linux:kernel-headers", "p-cpe:/a:amazon:linux:kernel-tools", "p-cpe:/a:amazon:linux:kernel-tools-debuginfo", "p-cpe:/a:amazon:linux:kernel-tools-devel", "p-cpe:/a:amazon:linux:perf", "p-cpe:/a:amazon:linux:perf-debuginfo", "cpe:/o:amazon:linux"], "id": "ALA_ALAS-2017-782.NASL", "href": "https://www.tenable.com/plugins/nessus/96284", "sourceData": "#\n# (C) Tenable Network Security, Inc.\n#\n# The descriptive text and package checks in this plugin were\n# extracted from Amazon Linux AMI Security Advisory ALAS-2017-782.\n#\n\ninclude(\"compat.inc\");\n\nif (description)\n{\n script_id(96284);\n script_version(\"3.6\");\n script_cvs_date(\"Date: 2019/04/10 16:10:16\");\n\n script_cve_id(\"CVE-2016-10147\", \"CVE-2016-8399\", \"CVE-2016-8650\", \"CVE-2016-9576\", \"CVE-2016-9793\");\n script_xref(name:\"ALAS\", value:\"2017-782\");\n\n script_name(english:\"Amazon Linux AMI : kernel (ALAS-2017-782)\");\n script_summary(english:\"Checks rpm output for the updated packages\");\n\n script_set_attribute(\n attribute:\"synopsis\", \n value:\"The remote Amazon Linux AMI host is missing a security update.\"\n );\n script_set_attribute(\n attribute:\"description\", \n value:\n\"A flaw was found in the Linux kernel key management subsystem in which\na local attacker could crash the kernel or corrupt the stack and\nadditional memory (denial of service) by supplying a specially crafted\nRSA key. 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This issue is rated as\n Moderate because it first requires compromising a\n privileged process and current compiler optimizations\n restrict access to the vulnerable code. Product:\n Android. Versions: Kernel-3.10, Kernel-3.18. Android ID:\n A-31349935 (bnc#1014746).\n\n - CVE-2016-8633: drivers/firewire/net.c in the Linux\n kernel, in certain unusual hardware configurations,\n allowed remote attackers to execute arbitrary code via\n crafted fragmented packets (bnc#1008833).\n\n - CVE-2016-8645: The TCP stack in the Linux kernel\n mishandled skb truncation, which allowed local users to\n cause a denial of service (system crash) via a crafted\n application that made sendto system calls, related to\n net/ipv4/tcp_ipv4.c and net/ipv6/tcp_ipv6.c\n (bnc#1009969).\n\n - CVE-2016-9083: drivers/vfio/pci/vfio_pci.c in the Linux\n kernel allowed local users to bypass integer overflow\n checks, and cause a denial of service (memory\n corruption) or have unspecified other impact, by\n leveraging access to a vfio PCI device file for a\n VFIO_DEVICE_SET_IRQS ioctl call, aka a 'state machine\n confusion bug' (bnc#1007197).\n\n - CVE-2016-9084: drivers/vfio/pci/vfio_pci_intrs.c in the\n Linux kernel misuses the kzalloc function, which allowed\n local users to cause a denial of service (integer\n overflow) or have unspecified other impact by leveraging\n access to a vfio PCI device file (bnc#1007197).\n\n - CVE-2016-9756: arch/x86/kvm/emulate.c in the Linux\n kernel did not properly initialize Code Segment (CS) in\n certain error cases, which allowed local users to obtain\n sensitive information from kernel stack memory via a\n crafted application (bnc#1013038).\n\n - CVE-2016-9793: The sock_setsockopt function in\n net/core/sock.c in the Linux kernel mishandled negative\n values of sk_sndbuf and sk_rcvbuf, which allowed local\n users to cause a denial of service (memory corruption\n and system crash) or possibly have unspecified other\n impact by leveraging the CAP_NET_ADMIN capability for a\n crafted setsockopt system call with the (1)\n SO_SNDBUFFORCE or (2) SO_RCVBUFFORCE option (bnc#1013531\n 1013542).\n\n - CVE-2016-9806: Race condition in the netlink_dump\n function in net/netlink/af_netlink.c in the Linux kernel\n allowed local users to cause a denial of service (double\n free) or possibly have unspecified other impact via a\n crafted application that made sendmsg system calls,\n leading to a free operation associated with a new dump\n that started earlier than anticipated (bnc#1013540\n 1017589).\n\n - CVE-2017-2584: arch/x86/kvm/emulate.c in the Linux\n kernel allowed local users to obtain sensitive\n information from kernel memory or cause a denial of\n service (use-after-free) via a crafted application that\n leverages instruction emulation for fxrstor, fxsave,\n sgdt, and sidt (bsc#1019851).\n\n - CVE-2017-2583: Fixed broken emulation of 'MOV SS, null\n selector' (bsc#1020602).\n\n - CVE-2017-5551: Clear SGID bit when setting file\n permissions on tmpfs (bsc#1021258).\n\nThe update package also includes non-security fixes. See advisory for\ndetails.\n\nNote that Tenable Network Security has extracted the preceding\ndescription block directly from the SUSE security advisory. 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