Search Results (46802 CVEs found)

CVE Vendors Products Updated CVSS v3.1
CVE-2014-6354 1 Microsoft 1 Internet Explorer 2025-04-20 N/A
Internet Explorer 6, Internet Explorer 7, Internet Explorer 8, Internet Explorer 9, Internet Explorer 10, and Internet Explorer 11 allows remote attackers to execute arbitrary code.
CVE-2017-15803 2 Microsoft, Xnview 2 Windows, Xnview 2025-04-20 N/A
XnView Classic for Windows Version 2.43 allows attackers to cause a denial of service or possibly have unspecified other impact via a crafted .dll file that is mishandled during an attempt to render the DLL icon, related to "Data from Faulting Address is used as one or more arguments in a subsequent Function Call starting at ntdll_77310000!LdrpResCompareResourceNames+0x0000000000000150."
CVE-2016-9400 2 Fedoraproject, Teeworlds 2 Fedora, Teeworlds 2025-04-20 9.8 Critical
The CClient::ProcessServerPacket method in engine/client/client.cpp in Teeworlds before 0.6.4 allows remote servers to write to arbitrary physical memory locations and possibly execute arbitrary code via vectors involving snap handling.
CVE-2016-7938 2 Redhat, Tcpdump 2 Enterprise Linux, Tcpdump 2025-04-20 N/A
The ZeroMQ parser in tcpdump before 4.9.0 has an integer overflow in print-zeromq.c:zmtp1_print_frame().
CVE-2016-7940 2 Redhat, Tcpdump 2 Enterprise Linux, Tcpdump 2025-04-20 N/A
The STP parser in tcpdump before 4.9.0 has a buffer overflow in print-stp.c, multiple functions.
CVE-2017-11053 1 Google 1 Android 2025-04-20 N/A
In Android for MSM, Firefox OS for MSM, QRD Android, with all Android releases from CAF using the Linux kernel, when qos map set IE of length less than 16 is received in association response or in qos map configure action frame, a buffer overflow can potentially occur in ConvertQosMapsetFrame().
CVE-2015-8983 1 Gnu 1 Glibc 2025-04-20 N/A
Integer overflow in the _IO_wstr_overflow function in libio/wstrops.c in the GNU C Library (aka glibc or libc6) before 2.22 allows context-dependent attackers to cause a denial of service (application crash) or possibly execute arbitrary code via vectors related to computing a size in bytes, which triggers a heap-based buffer overflow.
CVE-2015-1332 2 Canonical, Oxide Project 2 Ubuntu Linux, Oxide 2025-04-20 N/A
The oxide::JavaScriptDialogManager function in oxide-qt before 1.9.1 as packaged in Ubuntu 15.04 and Ubuntu 14.04 allows remote attackers to cause a denial of service (application crash) or execute arbitrary code via a crafted website.
CVE-2017-0757 1 Google 1 Android 2025-04-20 N/A
A remote code execution vulnerability in the Android media framework (libavc). Product: Android. Versions: 6.0, 6.0.1, 7.0, 7.1.1, 7.1.2. Android ID: A-36006815.
CVE-2016-3063 1 Netapp 1 Oncommand System Manager 2025-04-20 N/A
Multiple functions in NetApp OnCommand System Manager before 8.3.2 do not properly escape special characters, which allows remote authenticated users to execute arbitrary API calls via unspecified vectors.
CVE-2016-2519 1 Ntp 1 Ntp 2025-04-20 N/A
ntpd in NTP before 4.2.8p7 and 4.3.x before 4.3.92 allows remote attackers to cause a denial of service (ntpd abort) by a large request data value, which triggers the ctl_getitem function to return a NULL value.
CVE-2017-8366 1 Ettercap Project 1 Ettercap 2025-04-20 N/A
The strescape function in ec_strings.c in Ettercap 0.8.2 allows remote attackers to cause a denial of service (heap-based buffer overflow and application crash) or possibly have unspecified other impact via a crafted filter that is mishandled by etterfilter.
CVE-2015-8981 1 Podofo Project 1 Podofo 2025-04-20 N/A
Heap-based buffer overflow in the PdfParser::ReadXRefSubsection function in base/PdfParser.cpp in PoDoFo allows attackers to have unspecified impact via vectors related to m_offsets.size.
CVE-2017-0712 1 Google 1 Android 2025-04-20 N/A
A elevation of privilege vulnerability in the Android framework (wi-fi service). Product: Android. Versions: 5.0.2, 5.1.1, 6.0, 6.0.1, 7.0, 7.1.1, 7.1.2. Android ID: A-37207928.
CVE-2016-10141 1 Artifex 1 Mujs 2025-04-20 9.8 Critical
An integer overflow vulnerability was observed in the regemit function in regexp.c in Artifex Software, Inc. MuJS before fa3d30fd18c348bb4b1f3858fb860f4fcd4b2045. The attack requires a regular expression with nested repetition. A successful exploitation of this issue can lead to code execution or a denial of service (buffer overflow) condition.
CVE-2015-7504 4 Debian, Qemu, Redhat and 1 more 5 Debian Linux, Qemu, Enterprise Linux and 2 more 2025-04-20 8.8 High
Heap-based buffer overflow in the pcnet_receive function in hw/net/pcnet.c in QEMU allows guest OS administrators to cause a denial of service (instance crash) or possibly execute arbitrary code via a series of packets in loopback mode.
CVE-2017-8870 1 Mediacoderhq 1 Audiocoder 2025-04-20 N/A
Buffer overflow in AudioCoder 0.8.46 allows remote attackers to execute arbitrary code via a crafted .m3u file.
CVE-2015-5186 1 Linux Audit Project 1 Linux Audit 2025-04-20 N/A
Audit before 2.4.4 in Linux does not sanitize escape characters in filenames.
CVE-2015-6674 2 Debian, Inspircd 2 Debian Linux, Inspircd 2025-04-20 N/A
Buffer underflow vulnerability in the Debian inspircd package before 2.0.5-1+deb7u1 for wheezy and before 2.0.16-1 for jessie and sid. NOTE: This issue exists as an additional issue from an incomplete fix of CVE-2012-1836.
CVE-2016-10142 2 Ietf, Redhat 2 Ipv6, Enterprise Linux 2025-04-20 N/A
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.