The finger daemon (in.fingerd) in Sun Solaris 7 through 9 allows remote attackers to list all accounts that have certain nonstandard GECOS fields via a request composed of a single digit, as demonstrated by a "finger 9@host" command, a different vulnerability than CVE-2001-1503.
Directory traversal vulnerability in printd line printer daemon (lpd) in Solaris 7 through 10 allows remote attackers to delete arbitrary files via ".." sequences in an "Unlink data file" command.
Unspecified vulnerability in the (1) Xsun and (2) Xprt commands in Solaris 7, 8, 9, and 10 allows local users to execute arbitrary code.
Unknown vulnerability in NIS+ on Solaris 7, 8, and 9 allows remote attackers to cause a denial of service (rpc.nisd disabled and NIS+ unavailable) via unknown vectors.
Multiple TCP/IP and ICMP implementations allow remote attackers to cause a denial of service (network throughput reduction for TCP connections) via a blind throughput-reduction attack using spoofed Source Quench packets, aka the "ICMP Source Quench attack." NOTE: CVE-2004-0790, CVE-2004-0791, and CVE-2004-1060 have been SPLIT based on different attacks; CVE-2005-0065, CVE-2005-0066, CVE-2005-0067, and CVE-2005-0068 are related identifiers that are SPLIT based on the underlying vulnerability. While CVE normally SPLITs based on vulnerability, the attack-based identifiers exist due to the variety and number of affected implementations and solutions that address the attacks instead of the underlying vulnerabilities.
Multiple TCP/IP and ICMP implementations allow remote attackers to cause a denial of service (reset TCP connections) via spoofed ICMP error messages, aka the "blind connection-reset attack." NOTE: CVE-2004-0790, CVE-2004-0791, and CVE-2004-1060 have been SPLIT based on different attacks; CVE-2005-0065, CVE-2005-0066, CVE-2005-0067, and CVE-2005-0068 are related identifiers that are SPLIT based on the underlying vulnerability. While CVE normally SPLITs based on vulnerability, the attack-based identifiers exist due to the variety and number of affected implementations and solutions that address the attacks instead of the underlying vulnerabilities.
Solaris 7, 8, and 9 allows remote attackers to cause a denial of service (hang) via a flood of certain ARP packets.
Sun Solaris 7 through 9, when Basic Security Module (BSM) is enabled and the SUNWscpu package has been removed as a result of security hardening, disables mail alerts from the auditwarn script, which might allow attackers to escape detection.
Unknown vulnerability in the tcsetattr function for Sun Solaris for SPARC 2.6, 7, and 8 allows local users to cause a denial of service (system hang).
X Display Manager (XDM) on Solaris 8 allows remote attackers to cause a denial of service (XDM crash) via an invalid X Display Manager Control Protocol (XDMCP) request.
Multiple buffer overflows in uucp for Sun Solaris 2.6, 7, 8, and 9 allow local users to execute arbitrary code as the uucp user.
Buffer overflow in the syslog daemon for Solaris 2.6 through 9 allows remote attackers to cause a denial of service (syslogd crash) and possibly execute arbitrary code via long syslog UDP packets.
ISC BIND 8.3.x before 8.3.7, and 8.4.x before 8.4.3, allows remote attackers to poison the cache via a malicious name server that returns negative responses with a large TTL (time-to-live) value.
The NFS Server for Solaris 7, 8, and 9 allows remote attackers to cause a denial of service (UFS panic) via certain invalid UFS requests, which triggers a null dereference.
Unknown vulnerability in the sysinfo system call for Solaris for SPARC 2.6 through 9, and Solaris for x86 2.6, 7, and 8, allows local users to read kernel memory.
The Telnet daemon (in.telnetd) for Solaris 2.6 through 9 allows remote attackers to cause a denial of service (CPU consumption by infinite loop).
Unknown vulnerability in rpcbind for Solaris 2.6 through 9 allows remote attackers to cause a denial of service (rpcbind crash).
Unknown vulnerability in UDP RPC for Solaris 2.5.1 through 9 for SPARC, and 2.5.1 through 8 for x86, allows remote attackers to cause a denial of service (memory consumption) via certain arguments in RPC calls that cause large amounts of memory to be allocated.
Directory traversal vulnerability in Sun Kodak Color Management System (KCMS) library service daemon (kcmsserver) allows remote attackers to read arbitrary files via the KCSOPENPROFILE procedure.
Unknown vulnerability in the FTP server (in.ftpd) for Solaris 2.6 through 9 allows remote attackers to cause a denial of service (temporary FTP server hang), which affects other active mode FTP clients.
Unknown vulnerability in the System Serial Console terminal in Solaris 2.5.1, 2.6, and 7 allows local users to monitor keystrokes and possibly steal sensitive information.
Directory traversal vulnerabilities in multiple FTP clients on UNIX systems allow remote malicious FTP servers to create or overwrite files as the client user via filenames containing /absolute/path or .. (dot dot) sequences.
The getdbm procedure in ypxfrd allows local users to read arbitrary files, and remote attackers to read databases outside /var/yp, via a directory traversal and symlink attack on the domain and map arguments.
Unknown vulnerability in NFS on Solaris 2.5.1 through Solaris 9 allows an NFS client to cause a denial of service by killing the lockd daemon.
cachefsd in Solaris 2.6, 7, and 8 allows remote attackers to cause a denial of service (crash) via an invalid procedure call in an RPC request.
Buffer overflow in mailx in Solaris 8 and earlier allows a local attacker to gain additional privileges via a long '-F' command line option.
Buffer overflow in dtmail in Solaris 2.6 and 7 allows local users to gain privileges via the MAIL environment variable.
Buffer overflow in the kcsSUNWIOsolf.so library in Solaris 7 and 8 allows local attackers to execute arbitrary commands via the KCMSPROFILES environment variable, e.g. as demonstrated using the kcmsconfigure program.
kcmsconfigure as included with Solaris 7 and 8 allows a local attacker to gain additional privileges via a buffer overflow in a command line argument.
Multiple TCP implementations could allow remote attackers to cause a denial of service (bandwidth and CPU exhaustion) by setting the maximum segment size (MSS) to a very small number and requesting large amounts of data, which generates more packets with less TCP-level data that amplify network traffic and consume more server CPU to process.