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Search Results (Refine Search)

Search Parameters:
  • Results Type: Overview
  • Keyword (text search): cpe:2.3:o:linux:linux_kernel:4.11.11:*:*:*:*:*:*:*
  • CPE Name Search: true
There are 1,654 matching records.
Displaying matches 1,161 through 1,180.
Vuln ID Summary CVSS Severity
CVE-2017-7541

The brcmf_cfg80211_mgmt_tx function in drivers/net/wireless/broadcom/brcm80211/brcmfmac/cfg80211.c in the Linux kernel before 4.12.3 allows local users to cause a denial of service (buffer overflow and system crash) or possibly gain privileges via a crafted NL80211_CMD_FRAME Netlink packet.

Published: July 25, 2017; 12:29:00 AM -0400
V4.0:(not available)
V3.1: 7.8 HIGH
V2.0: 7.2 HIGH
CVE-2017-11600

net/xfrm/xfrm_policy.c in the Linux kernel through 4.12.3, when CONFIG_XFRM_MIGRATE is enabled, does not ensure that the dir value of xfrm_userpolicy_id is XFRM_POLICY_MAX or less, which allows local users to cause a denial of service (out-of-bounds access) or possibly have unspecified other impact via an XFRM_MSG_MIGRATE xfrm Netlink message.

Published: July 24, 2017; 3:29:00 AM -0400
V4.0:(not available)
V3.1: 7.0 HIGH
V2.0: 6.9 MEDIUM
CVE-2017-7542

The ip6_find_1stfragopt function in net/ipv6/output_core.c in the Linux kernel through 4.12.3 allows local users to cause a denial of service (integer overflow and infinite loop) by leveraging the ability to open a raw socket.

Published: July 21, 2017; 12:29:00 PM -0400
V4.0:(not available)
V3.0: 5.5 MEDIUM
V2.0: 4.9 MEDIUM
CVE-2017-11473

Buffer overflow in the mp_override_legacy_irq() function in arch/x86/kernel/acpi/boot.c in the Linux kernel through 3.2 allows local users to gain privileges via a crafted ACPI table.

Published: July 20, 2017; 12:29:00 AM -0400
V4.0:(not available)
V3.1: 7.8 HIGH
V2.0: 7.2 HIGH
CVE-2017-8290

A potential Buffer Overflow Vulnerability (from a BB Code handling issue) has been identified in TeamSpeak Server version 3.0.13.6 (08/11/2016 09:48:33), it enables the users to Crash any WINDOWS Client that clicked into a Vulnerable Channel of a TeamSpeak Server.

Published: July 06, 2017; 12:29:00 PM -0400
V4.0:(not available)
V3.0: 7.5 HIGH
V2.0: 5.0 MEDIUM
CVE-2017-9985

The snd_msndmidi_input_read function in sound/isa/msnd/msnd_midi.c in the Linux kernel through 4.11.7 allows local users to cause a denial of service (over-boundary access) or possibly have unspecified other impact by changing the value of a message queue head pointer between two kernel reads of that value, aka a "double fetch" vulnerability.

Published: June 28, 2017; 2:29:00 AM -0400
V4.0:(not available)
V3.1: 7.8 HIGH
V2.0: 7.2 HIGH
CVE-2017-9984

The snd_msnd_interrupt function in sound/isa/msnd/msnd_pinnacle.c in the Linux kernel through 4.11.7 allows local users to cause a denial of service (over-boundary access) or possibly have unspecified other impact by changing the value of a message queue head pointer between two kernel reads of that value, aka a "double fetch" vulnerability.

Published: June 28, 2017; 2:29:00 AM -0400
V4.0:(not available)
V3.1: 7.8 HIGH
V2.0: 7.2 HIGH
CVE-2017-1000371

The offset2lib patch as used by the Linux Kernel contains a vulnerability, if RLIMIT_STACK is set to RLIM_INFINITY and 1 Gigabyte of memory is allocated (the maximum under the 1/4 restriction) then the stack will be grown down to 0x80000000, and as the PIE binary is mapped above 0x80000000 the minimum distance between the end of the PIE binary's read-write segment and the start of the stack becomes small enough that the stack guard page can be jumped over by an attacker. This affects Linux Kernel version 4.11.5. This is a different issue than CVE-2017-1000370 and CVE-2017-1000365. This issue appears to be limited to i386 based systems.

Published: June 19, 2017; 12:29:00 PM -0400
V4.0:(not available)
V3.1: 7.8 HIGH
V2.0: 7.2 HIGH
CVE-2017-1000370

The offset2lib patch as used in the Linux Kernel contains a vulnerability that allows a PIE binary to be execve()'ed with 1GB of arguments or environmental strings then the stack occupies the address 0x80000000 and the PIE binary is mapped above 0x40000000 nullifying the protection of the offset2lib patch. This affects Linux Kernel version 4.11.5 and earlier. This is a different issue than CVE-2017-1000371. This issue appears to be limited to i386 based systems.

Published: June 19, 2017; 12:29:00 PM -0400
V4.0:(not available)
V3.1: 7.8 HIGH
V2.0: 7.2 HIGH
CVE-2017-8391

The OS Installation Management component in CA Client Automation r12.9, r14.0, and r14.0 SP1 places an encrypted password into a readable local file during operating system installation, which allows local users to obtain sensitive information by reading this file after operating system installation.

Published: May 05, 2017; 8:29:00 PM -0400
V4.0:(not available)
V3.0: 5.5 MEDIUM
V2.0: 2.1 LOW
CVE-2010-5321

Memory leak in drivers/media/video/videobuf-core.c in the videobuf subsystem in the Linux kernel 2.6.x through 4.x allows local users to cause a denial of service (memory consumption) by leveraging /dev/video access for a series of mmap calls that require new allocations, a different vulnerability than CVE-2007-6761. NOTE: as of 2016-06-18, this affects only 11 drivers that have not been updated to use videobuf2 instead of videobuf.

Published: April 24, 2017; 2:59:00 AM -0400
V4.0:(not available)
V3.1: 4.3 MEDIUM
V2.0: 4.9 MEDIUM
CVE-2015-2877

Kernel Samepage Merging (KSM) in the Linux kernel 2.6.32 through 4.x does not prevent use of a write-timing side channel, which allows guest OS users to defeat the ASLR protection mechanism on other guest OS instances via a Cross-VM ASL INtrospection (CAIN) attack. NOTE: the vendor states "Basically if you care about this attack vector, disable deduplication." Share-until-written approaches for memory conservation among mutually untrusting tenants are inherently detectable for information disclosure, and can be classified as potentially misunderstood behaviors rather than vulnerabilities

Published: March 03, 2017; 6:59:00 AM -0500
V4.0:(not available)
V3.1: 3.3 LOW
V2.0: 2.1 LOW
CVE-2016-8977

IBM BigFix Inventory v9 could disclose sensitive information to an unauthorized user using HTTP GET requests. This information could be used to mount further attacks against the system.

Published: February 01, 2017; 5:59:01 PM -0500
V4.0:(not available)
V3.0: 5.3 MEDIUM
V2.0: 5.0 MEDIUM
CVE-2016-8963

IBM BigFix Inventory v9 stores potentially sensitive information in log files that could be read by a local user.

Published: February 01, 2017; 5:59:00 PM -0500
V4.0:(not available)
V3.0: 5.5 MEDIUM
V2.0: 2.1 LOW
CVE-2016-6110

IBM Tivoli Storage Manager discloses unencrypted login credentials to Vmware vCenter that could be obtained by a local user.

Published: February 01, 2017; 5:59:00 PM -0500
V4.0:(not available)
V3.0: 6.5 MEDIUM
V2.0: 2.1 LOW
CVE-2016-8967

IBM BigFix Inventory v9 9.2 stores user credentials in plain in clear text which can be read by a local user.

Published: February 01, 2017; 4:59:00 PM -0500
V4.0:(not available)
V3.0: 5.5 MEDIUM
V2.0: 2.1 LOW
CVE-2016-8981

IBM BigFix Inventory v9 allows web pages to be stored locally which can be read by another user on the system.

Published: February 01, 2017; 3:59:03 PM -0500
V4.0:(not available)
V3.0: 5.5 MEDIUM
V2.0: 2.1 LOW
CVE-2016-8980

IBM BigFix Inventory v9 is vulnerable to a denial of service, caused by an XML External Entity Injection (XXE) error when processing XML data. A remote attacker could exploit this vulnerability to expose highly sensitive information or consume all available memory resources.

Published: February 01, 2017; 3:59:03 PM -0500
V4.0:(not available)
V3.0: 8.1 HIGH
V2.0: 7.5 HIGH
CVE-2016-8966

IBM BigFix Inventory v9 could allow a remote attacker to obtain sensitive information, caused by the failure to properly enable HTTP Strict Transport Security. An attacker could exploit this vulnerability to obtain sensitive information using man in the middle techniques.

Published: February 01, 2017; 3:59:03 PM -0500
V4.0:(not available)
V3.0: 5.9 MEDIUM
V2.0: 4.3 MEDIUM
CVE-2016-8961

IBM BigFix Inventory v9 could allow a remote attacker to conduct phishing attacks, using an open redirect attack. By persuading a victim to visit a specially-crafted Web site, a remote attacker could exploit this vulnerability to spoof the URL displayed to redirect a user to a malicious Web site that would appear to be trusted. This could allow the attacker to obtain highly sensitive information or conduct further attacks against the victim.

Published: February 01, 2017; 3:59:03 PM -0500
V4.0:(not available)
V3.0: 6.1 MEDIUM
V2.0: 5.8 MEDIUM