| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Stack-based buffer overflow in the runtime linker, ld.so.1, on Solaris 2.6 through 9 allows local users to gain root privileges via a long LD_PRELOAD environment variable. |
| Directory traversal vulnerability in ePO agent for McAfee ePolicy Orchestrator 3.0 allows remote attackers to read arbitrary files via a certain HTTP request. |
| Multiple buffer overflows in xtokkaetama 1.0 allow local users to gain privileges via a long (1) -display command line argument or (2) XTOKKAETAMADIR environment variable. |
| Multiple buffer overflows in main.c for Crafty 19.3 allow local users to gain group "games" privileges via long command line arguments to crafty.bin. |
| Buffer overflow in zblast-svgalib of zblast 1.2.1 and earlier allows local users to execute arbitrary code via the high score file. |
| Cross-site scripting (XSS) vulnerability in search.php of Gallery 1.1 through 1.3.4 allows remote attackers to insert arbitrary web script via the searchstring parameter. |
| Cross-site scripting (XSS) vulnerability in start_form() of CGI.pm allows remote attackers to insert web script via a URL that is fed into the form's action parameter. |
| Format string vulnerability in ePO service for McAfee ePolicy Orchestrator 2.0, 2.5, and 2.5.1 allows remote attackers to execute arbitrary code via a POST request with format strings in the computerlist parameter, which are used when logging a failed name resolution. |
| Cross-site scripting (XSS) vulnerability in member.php of XMBforum XMB 1.8.x (aka Partagium) allows remote attackers to insert arbitrary HTML and web script via the "member" parameter. |
| Multiple unknown vulnerabilities in Nessus before 2.0.6, in libnessus and possibly libnasl, a different set of vulnerabilities than those identified by CVE-2003-0372 and CVE-2003-0373, aka "similar issues in other nasl functions as well as in libnessus." |
| Buffer overflow in Prishtina FTP client 1.x allows remote FTP servers to cause a denial of service (crash) and possibly execute arbitrary code via a long FTP banner. |
| Nokia Gateway GPRS support node (GGSN) allows remote attackers to cause a denial of service (kernel panic) via a malformed IP packet with a 0xFF TCP option. |
| lyskom-server 2.0.7 and earlier allows unauthenticated users to cause a denial of service (CPU consumption) via a large query. |
| psbanner in the LPRng package allows local users to overwrite arbitrary files via a symbolic link attack on the /tmp/before file. |
| Buffer overflow in Mutt 1.4.0 and possibly earlier versions, 1.5.x up to 1.5.3, and other programs that use Mutt code such as Balsa before 2.0.10, allows a remote malicious IMAP server to cause a denial of service (crash) and possibly execute arbitrary code via a crafted folder. |
| Adobe Acrobat Reader (acroread) 6, under certain circumstances when running with the "Certified plug-ins only" option disabled, loads plug-ins with signatures used for older versions of Acrobat, which can allow attackers to cause Acrobat to enter Certified mode and run untrusted plugins by modifying the CTIsCertifiedMode function. |
| The pop_msg function in qpopper 4.0.x before 4.0.5fc2 does not null terminate a message buffer after a call to Qvsnprintf, which could allow authenticated users to execute arbitrary code via a buffer overflow in a mdef command with a long macro name. |
| Buffer overflow in the lprm command in the lprold lpr package on SuSE 7.1 through 7.3, OpenBSD 3.2 and earlier, and possibly other operating systems, allows local users to gain root privileges via long command line arguments such as (1) request ID or (2) user name. |
| Unknown vulnerability in tcpdump before 3.7.2 related to an inability to "Handle unknown RADIUS attributes properly," allows remote attackers to cause a denial of service (infinite loop), a different vulnerability than CAN-2003-0093. |
| OpenSSL does not use RSA blinding by default, which allows local and remote attackers to obtain the server's private key by determining factors using timing differences on (1) the number of extra reductions during Montgomery reduction, and (2) the use of different integer multiplication algorithms ("Karatsuba" and normal). |