1885 matches found
CVE-2024-28182 Reading unbounded number of HTTP/2 CONTINUATION frames to cause excessive CPU usage
nghttp2 is an implementation of the Hypertext Transfer Protocol version 2 in C. The nghttp2 library prior to version 1.61.0 keeps reading the unbounded number of HTTP/2 CONTINUATION frames even after a stream is reset to keep HPACK context in sync. This causes excessive CPU usage to decode HPACK...
CVE-2024-28182 Reading unbounded number of HTTP/2 CONTINUATION frames to cause excessive CPU usage
nghttp2 is an implementation of the Hypertext Transfer Protocol version 2 in C. The nghttp2 library prior to version 1.61.0 keeps reading the unbounded number of HTTP/2 CONTINUATION frames even after a stream is reset to keep HPACK context in sync. This causes excessive CPU usage to decode HPACK...
CVE-2024-28182
nghttp2 is an implementation of the Hypertext Transfer Protocol version 2 in C. The nghttp2 library prior to version 1.61.0 keeps reading the unbounded number of HTTP/2 CONTINUATION frames even after a stream is reset to keep HPACK context in sync. This causes excessive CPU usage to decode HPACK...
CVE-2024-28182 Reading unbounded number of HTTP/2 CONTINUATION frames to cause excessive CPU usage
nghttp2 is an implementation of the Hypertext Transfer Protocol version 2 in C. The nghttp2 library prior to version 1.61.0 keeps reading the unbounded number of HTTP/2 CONTINUATION frames even after a stream is reset to keep HPACK context in sync. This causes excessive CPU usage to decode HPACK...
CVE-2024-28182
CVE-2024-28182 affects nghttp2
CVE-2024-28182
nghttp2 is an implementation of the Hypertext Transfer Protocol version 2 in C. The nghttp2 library prior to version 1.61.0 keeps reading the unbounded number of HTTP/2 CONTINUATION frames even after a stream is reset to keep HPACK context in sync. This causes excessive CPU usage to decode HPACK...
CVE-2024-28182
nghttp2 is an implementation of the Hypertext Transfer Protocol version 2 in C. The nghttp2 library prior to version 1.61.0 keeps reading the unbounded number of HTTP/2 CONTINUATION frames even after a stream is reset to keep HPACK context in sync. This causes excessive CPU usage to decode HPACK...
PT-2024-2955 · Libhtp · Libhtp
Name of the Vulnerable Software and Affected Versions: LibHTP versions 0.5.46 Description: The issue is related to the parsing of malformed request traffic, which can lead to excessive CPU usage. This can be exploited by a remote attacker to cause a denial of service. Recommendations: For version...
LibHTP 安全漏洞
LibHTP is a security-aware parser. The product is primarily used for the HTTP protocol, among other things. A security vulnerability exists in versions prior to LibHTP 0.5.47, which stems from the possibility of parsing misformatted request traffic, which can lead to high CPU utilization...
Slackware Linux 15.0 / current nghttp2 Vulnerability (SSA:2024-095-02)
The version of nghttp2 installed on the remote host is prior to 1.61.0. It is, therefore, affected by a vulnerability as referenced in the SSA:2024-095-02 advisory. - nghttp2 is an implementation of the Hypertext Transfer Protocol version 2 in C. The nghttp2 library prior to version 1.61.0 keeps...
UBUNTU-CVE-2024-28870
Suricata is a network Intrusion Detection System, Intrusion Prevention System and Network Security Monitoring engine developed by the OISF and the Suricata community. When parsing an overly long SSH banner, Suricata can use excessive CPU resources, as well as cause excessive logging volume in ale...
CVE-2024-28870 Suricata uses excessive resource use in malformed ssh traffic parsing
Suricata is a network Intrusion Detection System, Intrusion Prevention System and Network Security Monitoring engine developed by the OISF and the Suricata community. When parsing an overly long SSH banner, Suricata can use excessive CPU resources, as well as cause excessive logging volume in ale...
RUSTSEC-2024-0332 Degradation of service in h2 servers with CONTINUATION Flood
An attacker can send a flood of CONTINUATION frames, causing h2 to process them indefinitely. This results in an increase in CPU usage. Tokio task budget helps prevent this from a complete denial-of-service, as the server can still respond to legitimate requests, albeit with increased latency. Mo...
jose-go: improper handling of highly compressed data
A vulnerability was found in Jose due to improper handling of highly compressed data. This issue could allow an attacker to send a JWE containing compressed data that uses large amounts of memory and CPU when decompressed by Decrypt or DecryptMulti...
bind9: Parsing large DNS messages may cause excessive CPU load
A flaw was found in the bind package. This issue may allow a remote attacker with no specific privileges to craft a specially long DNS message leading to an excessive and uncontrolled CPU usage, the server being unavailable, and a Denial of Service...
PT-2024-22618 · Suricata +1 · Suricata +1
Name of the Vulnerable Software and Affected Versions: Suricata versions prior to 6.0.17 Suricata versions prior to 7.0.4 Description: Suricata is a network Intrusion Detection System, Intrusion Prevention System, and Network Security Monitoring engine. When parsing an overly long SSH banner,...
Fedora 39 : prometheus-podman-exporter (2024-a8a4ce2864)
The remote Fedora 39 host has a package installed that is affected by a vulnerability as referenced in the FEDORA-2024-a8a4ce2864 advisory. release v1.11.0 ---- release v1.10.1 ---- release v1.10.0 Tenable has extracted the preceding description block directly from the Fedora security advisory...
jose-go: improper handling of highly compressed data
A vulnerability was found in Jose due to improper handling of highly compressed data. This issue could allow an attacker to send a JWE containing compressed data that uses large amounts of memory and CPU when decompressed by Decrypt or DecryptMulti...
Regular Expression Denial Of Service (ReDoS)
django-wiki is vulnerable to Regular Expression Denial Of Service ReDoS. This vulnerability is due to improper input validation, allowing maliciously crafted article content to cause severe CPU usage through a regular expression loop, which results in a Denial of Service DoS condition...
bind9: KeyTrap - Extreme CPU consumption in DNSSEC validator
Processing specially crafted responses coming from DNSSEC-signed zones can lead to uncontrolled CPU usage, leading to a Denial of Service in the DNSSEC-validating resolver side. This vulnerability applies only for systems where DNSSEC validation is enabled...