769 matches found
CVE-2018-12934
rememberKtype in cplus-dem.c in GNU libiberty, as distributed in GNU Binutils 2.30, allows attackers to trigger excessive memory consumption aka OOM. This can occur during execution of cxxfilt...
CVE-2018-12934
rememberKtype in cplus-dem.c in GNU libiberty, as distributed in GNU Binutils 2.30, allows attackers to trigger excessive memory consumption aka OOM. This can occur during execution of cxxfilt...
CVE-2018-12698
demangletemplate in cplus-dem.c in GNU libiberty, as distributed in GNU Binutils 2.30, allows attackers to trigger excessive memory consumption aka OOM during the "Create an array for saving the template argument values" XNEWVEC call. This can occur during execution of objdump...
CVE-2018-12698
demangletemplate in cplus-dem.c in GNU libiberty, as distributed in GNU Binutils 2.30, allows attackers to trigger excessive memory consumption aka OOM during the "Create an array for saving the template argument values" XNEWVEC call. This can occur during execution of objdump...
CVE-2018-12698
CVE-2018-12698 affects GNU Binutils’ libiberty, specifically the demangle_template function in cplus-dem.c (Binutils 2.30). It allows attackers to trigger excessive memory consumption (OOM) during objdump execution due to a memory-management issue in demangle_template. Multiple connected advisori...
CVE-2016-10723
An issue was discovered in the Linux kernel through 4.17.2. Since the page allocator does not yield CPU resources to the owner of the oomlock mutex, a local unprivileged user can trivially lock up the system forever by wasting CPU resources from the page allocator e.g., via concurrent page fault...
CVE-2016-10723
An issue was discovered in the Linux kernel through 4.17.2. Since the page allocator does not yield CPU resources to the owner of the oomlock mutex, a local unprivileged user can trivially lock up the system forever by wasting CPU resources from the page allocator e.g., via concurrent page fault...
CVE-2016-10723
An issue was discovered in the Linux kernel through 4.17.2. Since the page allocator does not yield CPU resources to the owner of the oomlock mutex, a local unprivileged user can trivially lock up the system forever by wasting CPU resources from the page allocator e.g., via concurrent page fault...
Null pointer dereference
The Linux Kernel versions 4.14, 4.15, and 4.16 has a null pointer dereference which can result in an out of memory OOM killing of large mlocked processes. The issue arises from an oom killed process's final thread calling exitmmap, which calls munlockvmapagesall for mlocked vmas.This can happen...
CVE-2018-1000200
The Linux Kernel versions 4.14, 4.15, and 4.16 has a null pointer dereference which can result in an out of memory OOM killing of large mlocked processes. The issue arises from an oom killed process's final thread calling exitmmap, which calls munlockvmapagesall for mlocked vmas.This can happen...
CVE-2018-1000200
CVE-2018-1000200 (Linux kernel) is detailed in connected Nessus/OpenVAS entries as affecting Linux kernel versions 4.14, 4.15, and 4.16. The vulnerability is a NULL pointer dereference that can trigger an out-of-memory (OOM) kill of large memory-locked (mlocked) processes. The root cause involves...
CVE-2018-1000200
The Linux Kernel versions 4.14, 4.15, and 4.16 has a null pointer dereference which can result in an out of memory OOM killing of large mlocked processes. The issue arises from an oom killed process's final thread calling exitmmap, which calls munlockvmapagesall for mlocked vmas.This can happen...
CVE-2018-1000200
The Linux Kernel versions 4.14, 4.15, and 4.16 has a null pointer dereference which can result in an out of memory OOM killing of large mlocked processes. The issue arises from an oom killed process's final thread calling exitmmap, which calls munlockvmapagesall for mlocked vmas.This can happen...
Denial Of Service (DoS) During TIFFOpen Process
libtiff.so is vulnerable to denial of service DoS. When the attacker can send a malicious input file, tdimagelength is directly derived from the input file length. Moreover, TIFFOpen function does not check tdimagelength during TIFFOpen process, allowing the attacker to trigger out-of-memory OOM...
Updated libid3tag packages fix security vulnerabilities
id3utf16deserialize in utf16.c in libid3tag through 0.15.1b misparses ID3v2 tags encoded in UTF-16 with an odd number of bytes, triggering an endless loop allocating memory until an OOM condition is reached, leading to denial-of-service DoS. CVE-2004-2779 field.c in the libid3tag 0.15.0b library...
CVE-2018-1000200
The Linux Kernel versions 4.14, 4.15, and 4.16 has a null pointer dereference which can result in an out of memory OOM killing of large mlocked processes. The issue arises from an oom killed process's final thread calling exitmmap, which calls munlockvmapagesall for mlocked vmas.This can happen...
Denial Of Service (DoS) Through Out-of-Memory (OOM)
libid3tag.so is vulnerable to denial of service DoS through out-of-memory OOM issues. The vulnerability exists in id3utf16deserialize of utf16.c when parsing ID3v2 tags encoded in UTF-16 that contains an odd number of bytes, which causes an infinite loop of allocating memory...
Updated libtiff packages fix security vulnerabilities
In LibTIFF 4.0.8, there is a denial of service vulnerability in the TIFFOpen function. A crafted input will lead to a denial of service attack. During the TIFFOpen process, tdimagelength is not checked. The value of tdimagelength can be directly controlled by an input file. In the...
MGASA-2018-0180 Updated libtiff packages fix security vulnerabilities
In LibTIFF 4.0.8, there is a denial of service vulnerability in the TIFFOpen function. A crafted input will lead to a denial of service attack. During the TIFFOpen process, tdimagelength is not checked. The value of tdimagelength can be directly controlled by an input file. In the...
CVE-2018-6532
An issue was discovered in Icinga 2.x through 2.8.1. By sending specially crafted authenticated and unauthenticated requests, an attacker can exhaust a lot of memory on the server side, triggering the OOM killer...