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gSOAP 2.8 contains a directory traversal vulnerability that allows unauthenticated attackers to access system files by manipulating HTTP path traversal techniques. Attackers can retrieve sensitive files like /etc/passwd by sending crafted GET requests with multiple '../' directory traversal sequences.
Crystal Live HTTP Server 6.01 contains a directory traversal vulnerability that allows remote attackers to access system files by manipulating URL path segments. Attackers can use multiple '../' sequences to navigate outside the web root and retrieve sensitive configuration files like Windows system files.
In Genivia gSOAP with a specific configuration an unauthenticated remote attacker can generate a high CPU load when forcing to parse an XML having duplicate ID attributes which can lead to a DoS.
A code execution vulnerability exists in the WS-Addressing plugin functionality of Genivia gSOAP 2.8.107. A specially crafted SOAP request can lead to remote code execution. An attacker can send an HTTP request to trigger this vulnerability.
A denial-of-service vulnerability exists in the WS-Addressing plugin functionality of Genivia gSOAP 2.8.107. A specially crafted SOAP request can lead to denial of service. An attacker can send an HTTP request to trigger this vulnerability.
A denial-of-service vulnerability exists in the WS-Security plugin functionality of Genivia gSOAP 2.8.107. A specially crafted SOAP request can lead to denial of service. An attacker can send an HTTP request to trigger this vulnerability.
A denial-of-service vulnerability exists in the WS-Security plugin functionality of Genivia gSOAP 2.8.107. A specially crafted SOAP request can lead to denial of service. An attacker can send an HTTP request to trigger this vulnerability.
A denial-of-service vulnerability exists in the WS-Security plugin functionality of Genivia gSOAP 2.8.107. A specially crafted SOAP request can lead to denial of service. An attacker can send an HTTP request to trigger this vulnerability.
A code execution vulnerability exists in the WS-Addressing plugin functionality of Genivia gSOAP 2.8.107. A specially crafted SOAP request can lead to remote code execution. An attacker can send an HTTP request to trigger this vulnerability.
Sricam IP CCTV cameras are vulnerable to denial of service via multiple incomplete HTTP requests because the web server (based on gSOAP 2.8.x) is configured for an iterative queueing approach (aka non-threaded operation) with a timeout of several seconds.
Genivia gSOAP 2.7.x and 2.8.x before 2.8.75 allows attackers to cause a denial of service (application abort) or possibly have unspecified other impact if a server application is built with the -DWITHCOOKIES flag. This affects the C/C++ libgsoapck/libgsoapck++ and libgsoapssl/libgsoapssl++ libraries, as these are built with that flag.
A buffer overflow can cause an open unsecured server to crash after 2GB (greater than 2147483711 bytes to trigger the software bug)) XML message is received. Fortunately, the overflowing data after 2GB is cleaned up in the buffer which means that the chances of exploiting this flaw (by injecting code) is significantly reduced in gSOAP versions affected.
References:
https://www.genivia.com/advisory.html