Total
100
Critical
0
High
0
Medium
0
CISA KEV
0
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2011-2445, CVE-2011-2451, CVE-2011-2452, CVE-2011-2453, CVE-2011-2454, CVE-2011-2455, and CVE-2011-2459.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2011-2445, CVE-2011-2451, CVE-2011-2452, CVE-2011-2453, CVE-2011-2454, CVE-2011-2455, and CVE-2011-2460.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, when Internet Explorer is used, allows remote attackers to bypass the cross-domain policy via a crafted web site.
Stack-based buffer overflow in Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code via unspecified vectors.
Buffer overflow in Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code via unspecified vectors.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2011-2445, CVE-2011-2451, CVE-2011-2452, CVE-2011-2453, CVE-2011-2454, CVE-2011-2459, and CVE-2011-2460.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2011-2445, CVE-2011-2451, CVE-2011-2452, CVE-2011-2453, CVE-2011-2455, CVE-2011-2459, and CVE-2011-2460.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2011-2445, CVE-2011-2451, CVE-2011-2452, CVE-2011-2454, CVE-2011-2455, CVE-2011-2459, and CVE-2011-2460.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2011-2445, CVE-2011-2451, CVE-2011-2453, CVE-2011-2454, CVE-2011-2455, CVE-2011-2459, and CVE-2011-2460.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2011-2445, CVE-2011-2452, CVE-2011-2453, CVE-2011-2454, CVE-2011-2455, CVE-2011-2459, and CVE-2011-2460.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (heap memory corruption) via unspecified vectors.
Adobe Flash Player before 10.3.183.11 and 11.x before 11.1.102.55 on Windows, Mac OS X, Linux, and Solaris and before 11.1.102.59 on Android, and Adobe AIR before 3.1.0.4880, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2011-2451, CVE-2011-2452, CVE-2011-2453, CVE-2011-2454, CVE-2011-2455, CVE-2011-2459, and CVE-2011-2460.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, and CVE-2010-3650.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3648, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3642, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3641, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3640, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unknown vectors, a different vulnerability than CVE-2010-3641, CVE-2010-3642, CVE-2010-3643, CVE-2010-3644, CVE-2010-3645, CVE-2010-3646, CVE-2010-3647, CVE-2010-3648, CVE-2010-3649, CVE-2010-3650, and CVE-2010-3652.
Unspecified vulnerability in Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, allows attackers to cause a denial of service or possibly execute arbitrary code via unknown vectors.
Adobe Flash Player before 9.0.289.0 and 10.x before 10.1.102.64 on Windows, Mac OS X, Linux, and Solaris, and 10.1.95.1 on Android, does not properly handle unspecified encodings during the parsing of a cross-domain policy file, which allows remote web servers to bypass intended access restrictions via unknown vectors.
Multiple cross-site request forgery (CSRF) vulnerabilities in the web management interface in InterSect Alliance Snare Agent 3.2.3 and earlier on Solaris, Snare Agent 3.1.7 and earlier on Windows, Snare Agent 1.5.0 and earlier on Linux and AIX, Snare Agent 1.4 and earlier on IRIX, Snare Epilog 1.5.3 and earlier on Windows, and Snare Epilog 1.2 and earlier on UNIX allow remote attackers to hijack the authentication of administrators for requests that (1) change the password or (2) change the listening port.
Unspecified vulnerability in multiple versions of Hitachi JP1/Automatic Job Management System 2 - View, JP1/Integrated Management - View, and JP1/Cm2/SNMP System Observer, allows remote attackers to cause a denial of service ("abnormal" termination) via vectors related to the display of an "invalid GIF file."
Unspecified vulnerability in Sun Solaris 10 and OpenSolaris snv_49 through snv_117, when 64bit mode is used on the Intel x86 platform and a Linux (lx) branded zone is configured, allows local users to cause a denial of service (panic) via unspecified vectors, a different vulnerability than CVE-2007-6225.
Certain patch-installation scripts in Oracle Solaris allow local users to append data to arbitrary files via a symlink attack on the /tmp/CLEANUP temporary file, related to use of Update Manager.
HP Operations Agent 8.51, 8.52, 8.53, and 8.60 on Solaris 10 uses a blank password for the opc_op account, which allows remote attackers to execute arbitrary code via unspecified vectors.
The ucode_ioctl function in intel/io/ucode_drv.c in Sun Solaris 10 and OpenSolaris snv_69 through snv_133, when running on x86 architectures, allows local users to cause a denial of service (panic) via a request with a 0 size value to the UCODE_GET_VERSION IOCTL, which triggers a NULL pointer dereference in the ucode_get_rev function, related to retrieval of the microcode revision.
Webmail in Sun ONE Messaging Server 6.1 and iPlanet Messaging Server 5.2 before 5.2hf2.02 allows remote attackers to obtain unspecified "access" to e-mail via a crafted e-mail message, related to a "session hijacking" issue, a different vulnerability than CVE-2005-2022 and CVE-2006-5486.
Cross-site scripting (XSS) vulnerability in Webmail in Sun ONE Messaging Server 6.1 and iPlanet Messaging Server 5.2 before 5.2hf2.02, when Internet Explorer is used, allows remote attackers to inject arbitrary web script or HTML via a crafted e-mail message, a different vulnerability than CVE-2005-2022 and CVE-2006-5486.
Buffer overflow in pamverifier in Change Manager (CM) 1.0 for Sun Management Center (SunMC) 3.0 on Solaris 8 and 9 on the sparc platform allows remote attackers to execute arbitrary code via unspecified vectors.
VERITAS File System (VxFS) 3.3.3, 3.4, and 3.5 before MP1 Rolling Patch 02 for Sun Solaris 2.5.1 through 9 does not properly implement inheritance of default ACLs in certain circumstances related to the characteristics of a directory inode, which allows local users to bypass intended file permissions by accessing a file on a VxFS filesystem.
Trusted Extensions in Sun Solaris 10 allows local users to gain privileges via vectors related to omission of unspecified libraries from software updates.
The NET_TCP_LISTEN function in net.c in Zabbix Agent before 1.6.7, when running on FreeBSD or Solaris, allows remote attackers to bypass the EnableRemoteCommands setting and execute arbitrary commands via shell metacharacters in the argument to net.tcp.listen. NOTE: this attack is limited to attacks from trusted IP addresses.
Sun Ray Server Software 4.1 on Solaris 10, when Automatic Multi-Group Hotdesking (AMGH) is enabled, responds to a logout action by immediately logging the user in again, which makes it easier for physically proximate attackers to obtain access to a session by going to an unattended DTU device.
The U.S. Defense Information Systems Agency (DISA) Security Readiness Review (SRR) script for the Solaris x86 platform executes files in arbitrary directories as root for filenames equal to (1) java, (2) openssl, (3) php, (4) snort, (5) tshark, (6) vncserver, or (7) wireshark, which allows local users to gain privileges via a Trojan horse program.
Multiple cross-site scripting (XSS) vulnerabilities in the Gateway component in Sun Java System Portal Server 6.3.1, 7.1, and 7.2 allow remote attackers to inject arbitrary web script or HTML via unspecified vectors.
Unspecified vulnerability in the timeout mechanism in sshd in Sun Solaris 10, and OpenSolaris snv_99 through snv_123, allows remote attackers to cause a denial of service (daemon outage) via unknown vectors that trigger a "dangling sshd authentication thread."
Memory leak in the Sockets Direct Protocol (SDP) driver in Sun Solaris 10, and OpenSolaris snv_57 through snv_94, allows remote attackers to cause a denial of service (memory consumption) via unspecified vectors.
Unspecified vulnerability in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, SDK and JRE 1.3.x before 1.3.1_27, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to cause a denial of service (memory consumption) via crafted HTTP headers, which are not properly parsed by the ASN.1 DER input stream parser, aka Bug Id 6864911.
Unspecified vulnerability in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, SDK and JRE 1.3.x before 1.3.1_27, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to cause a denial of service (memory consumption) via crafted DER encoded data, which is not properly decoded by the ASN.1 DER input stream parser, aka Bug Id 6864911.
The MessageDigest.isEqual function in Java Runtime Environment (JRE) in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, SDK and JRE 1.3.x before 1.3.1_27, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to spoof HMAC-based digital signatures, and possibly bypass authentication, via unspecified vectors related to "timing attack vulnerabilities," aka Bug Id 6863503.
Integer overflow in the JPEGImageReader implementation in the ImageI/O component in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to execute arbitrary code via large subsample dimensions in a JPEG file that triggers a heap-based buffer overflow, aka Bug Id 6874643.
The JPEG Image Writer in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to gain privileges via a crafted image file, related to a "quantization problem," aka Bug Id 6862968.
Unspecified vulnerability in the JPEG JFIF Decoder in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, SDK and JRE 1.3.x before 1.3.1_27, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to gain privileges via a crafted image file, aka Bug Id 6862969.
Heap-based buffer overflow in the setBytePixels function in the Abstract Window Toolkit (AWT) in Java Runtime Environment (JRE) in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, SDK and JRE 1.3.x before 1.3.1_27, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to execute arbitrary code via crafted arguments, aka Bug Id 6872358.
Stack-based buffer overflow in the setDiffICM function in the Abstract Window Toolkit (AWT) in Java Runtime Environment (JRE) in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, SDK and JRE 1.3.x before 1.3.1_27, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to execute arbitrary code via a crafted argument, aka Bug Id 6872357.
Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, SDK and JRE 1.3.x before 1.3.1_27, and SDK and JRE 1.4.x before 1.4.2_24 does not properly parse color profiles, which allows remote attackers to gain privileges via a crafted image file, aka Bug Id 6862970.
Stack-based buffer overflow in the HsbParser.getSoundBank function in Sun Java SE in JDK and JRE 5.0 before Update 22, JDK and JRE 6 before Update 17, SDK and JRE 1.3.x before 1.3.1_27, and SDK and JRE 1.4.x before 1.4.2_24 allows remote attackers to execute arbitrary code via a long file: URL in an argument, aka Bug Id 6854303.
Trusted Extensions in Sun Solaris 10 interferes with the operation of the xscreensaver-demo command for the XScreenSaver application, which makes it easier for physically proximate attackers to access an unattended workstation for which the intended screen locking did not occur, related to the "restart daemon."
Unspecified vulnerability in the Solaris Trusted Extensions Policy configuration in Sun Solaris 10, and OpenSolaris snv_37 through snv_125, might allow remote attackers to execute arbitrary code by leveraging access to the X server.
XScreenSaver in Sun Solaris 10, when the accessibility feature is enabled, allows physically proximate attackers to obtain sensitive information by reading popup windows, which are displayed even when the screen is locked, a different vulnerability than CVE-2009-1276 and CVE-2009-2711.
Unspecified vulnerability in the ZFS filesystem in Sun Solaris 10, and OpenSolaris snv_100 through snv_117, allows local users to bypass intended limitations of the file_chown_self privilege via certain uses of the chown system call.
Unspecified vulnerability in the VBoxNetAdpCtl configuration tool in Sun VirtualBox 3.0.x before 3.0.8 on Solaris x86, Linux, and Mac OS X allows local users to gain privileges via unknown vectors.
Multiple unspecified vulnerabilities in Common Desktop Environment (CDE) in Sun Solaris 10, when Trusted Extensions is enabled, allow local users to execute arbitrary commands or bypass the Mandatory Access Control (MAC) policy via unknown vectors, related to a menu typo and the Style Manager.
Unspecified vulnerability in xscreensaver in Sun Solaris 10, and OpenSolaris before snv_112, when Xorg or Xnewt is used and RandR is enabled, allows physically proximate attackers to read a locked screen via unknown vectors related to XRandR resize events.
Multiple unspecified vulnerabilities in the (1) iscsiadm and (2) iscsitadm programs in Sun Solaris 10, and OpenSolaris snv_28 through snv_109, allow local users with certain RBAC execution profiles to gain privileges via unknown vectors related to the libima library.
Heap-based buffer overflow in w in Sun Solaris 8 through 10, and OpenSolaris before snv_124, allows local users to gain privileges via unspecified vectors.
Unspecified vulnerability in the IPv6 networking stack in Sun Solaris 10, and OpenSolaris snv_01 through snv_82 and snv_111 through snv_122, when a Cassini GigaSwift Ethernet Adapter (aka CE) interface is used, allows remote attackers to cause a denial of service (panic) via vectors involving jumbo frames. NOTE: this issue exists because of an incomplete fix for CVE-2009-2136.
xscreensaver (aka Gnome-XScreenSaver) in Sun Solaris 10, and OpenSolaris snv_109 through snv_122, does not properly handle Trusted Extensions, which allows local users to cause a denial of service (CPU consumption and console hang) by locking the screen, related to a regression in certain Solaris and OpenSolaris patches.
xscreensaver (aka Gnome-XScreenSaver) in Sun Solaris 9 and 10, OpenSolaris snv_109 through snv_122, and X11 6.4.1 on Solaris 8 does not properly handle Accessibility support, which allows local users to cause a denial of service (system hang) by locking the screen and then attempting to launch an Accessibility pop-up window, related to a regression in certain Solaris and OpenSolaris patches.
Opera before 10.00 on Linux, Solaris, and FreeBSD does not properly implement the "INPUT TYPE=file" functionality, which allows remote attackers to trick a user into uploading an unintended file via vectors involving a "dropped file."
The sockfs module in the kernel in Sun Solaris 10 and OpenSolaris snv_41 through snv_122, when Network Cache Accelerator (NCA) logging is enabled, allows remote attackers to cause a denial of service (panic) via unspecified web-server traffic that triggers a NULL pointer dereference in the nl7c_http_log function, related to "improper http response handling."
in.lpd in the print service in Sun Solaris 8 and 9 allows remote attackers to cause a denial of service (memory consumption) via unspecified vectors that trigger a "fork()/exec() bomb."
Unspecified vulnerability in the pollwakeup function in Sun Solaris 10, and OpenSolaris before snv_51, allows local users to cause a denial of service (panic) via unknown vectors.
The (1) sendfile and (2) sendfilev functions in Sun Solaris 8 through 10, and OpenSolaris before snv_110, allow local users to cause a denial of service (panic) via vectors related to vnode function calls.
Sun Virtual Desktop Infrastructure (VDI) 3.0, when anonymous binding is enabled, does not properly handle a client's attempt to establish an authenticated and encrypted connection, which might allow remote attackers to read cleartext VDI configuration-data requests by sniffing LDAP sessions on the network.
XScreenSaver in Sun Solaris 9 and 10, OpenSolaris before snv_120, and X11 6.4.1 for Solaris 8, when the Xorg or Xnewt server is used, allows physically proximate attackers to obtain sensitive information by reading popup windows, which are displayed even when the screen is locked, a different vulnerability than CVE-2009-1276.
Unspecified vulnerability in Solaris Trusted Extensions in Sun Solaris 10, and OpenSolaris snv_37 through snv_120, allows remote attackers to cause a denial of service (panic) via vectors involving the parsing of labeled packets.
Race condition in the Solaris Auditing subsystem in Sun Solaris 9 and 10 and OpenSolaris before snv_121, when extended file attributes are used, allows local users to cause a denial of service (panic) via vectors related to "pathnames for invalid fds."
Unspecified vulnerability in the Solaris Auditing subsystem in Sun Solaris 9 and 10 and OpenSolaris before snv_121, when extended file attributes are used, allows local users to cause a denial of service (panic) via vectors related to fad_aupath structure members.
Unspecified vulnerability in the NFSv4 module in the kernel in Sun Solaris 10, and OpenSolaris snv_102 through snv_119, allows local users to cause a denial of service (client panic) via vectors involving "file operations."
Use-after-free vulnerability in the frpr_icmp function in the ipfilter (aka IP Filter) subsystem in Sun Solaris 10, and OpenSolaris snv_45 through snv_110, allows remote attackers to cause a denial of service (panic) via unspecified vectors.
Unspecified vulnerability in the SCTP implementation in Sun Solaris 10, and OpenSolaris before snv_120, allows remote attackers to cause a denial of service (panic) via unspecified packets.
Unspecified vulnerability in auditconfig in Sun Solaris 8, 9, 10, and OpenSolaris snv_01 through snv_58, when Solaris Auditing is enabled, allows local users with an RBAC execution profile for auditconfig to gain privileges via unknown attack vectors.
Race condition in the Sun Lightweight Availability Collection Tool 3.0 on Solaris 7 through 10 allows local users to overwrite arbitrary files via unspecified vectors.
Unspecified vulnerability in the udp subsystem in the kernel in Sun Solaris 10, and OpenSolaris snv_90 through snv_108, when Solaris Trusted Extensions is enabled, allows remote attackers to cause a denial of service (panic) via unspecified vectors involving the crgetlabel function, related to a "TX panic." NOTE: this issue exists because of a regression in earlier kernel patches.
The NFSv4 server kernel module in Sun Solaris 10, and OpenSolaris before snv_119, does not properly implement the nfs_portmon setting, which allows remote attackers to access shares, and read, create, and modify arbitrary files, via unspecified vectors.
Multiple cross-site scripting (XSS) vulnerabilities in the help jsp scripts in Sun Java Web Console 3.0.2 through 3.0.5, and Sun Java Web Console in Solaris 10, allow remote attackers to inject arbitrary web script or HTML via unspecified vectors.
Multiple memory leaks in the (1) IP and (2) IPv6 multicast implementation in the kernel in Sun Solaris 10, and OpenSolaris snv_67 through snv_93, allow local users to cause a denial of service (memory consumption) via vectors related to the association of (a) DL_ENABMULTI_REQ and (b) DL_DISABMULTI_REQ messages with ARP messages.
Memory leak in the Ultra-SPARC T2 crypto provider device driver (aka n2cp) in Sun Solaris 10, and OpenSolaris snv_54 through snv_112, allows context-dependent attackers to cause a denial of service (memory consumption) via unspecified vectors related to a large keylen value.
Unspecified vulnerability in the TCP/IP networking stack in Sun Solaris 10, and OpenSolaris snv_01 through snv_82 and snv_111 through snv_117, when a Cassini GigaSwift Ethernet Adapter (aka CE) interface is used, allows remote attackers to cause a denial of service (panic) via vectors involving jumbo frames.
Multiple race conditions in the Solaris Event Port API in Sun Solaris 10 and OpenSolaris before snv_107 allow local users to cause a denial of service (panic) via unspecified vectors related to a race between the port_dissociate and close functions.
Unspecified vulnerability in rpc.nisd in Sun Solaris 8 through 10, and OpenSolaris before snv_104, allows remote authenticated users to cause a denial of service (NIS+ daemon hang) via unspecified vectors related to NIS+ callbacks.
Kerberos in Sun Solaris 8, 9, and 10, and OpenSolaris before snv_117, does not properly manage credential caches, which allows local users to access Kerberized NFS mount points and Kerberized NFS shares via unspecified vectors.
Integer overflow in sadmind in Sun Solaris 8 and 9 allows remote attackers to execute arbitrary code via a crafted RPC request that triggers a heap-based buffer overflow, related to improper memory allocation.
Heap-based buffer overflow in sadmind in Sun Solaris 8 and 9 allows remote attackers to execute arbitrary code via a crafted RPC request, related to improper decoding of request parameters.
The kernel in Sun Solaris 9 allows local users to cause a denial of service (panic) by calling fstat with a first argument of AT_FDCWD.
Multiple unspecified vulnerabilities in the DTrace ioctl handlers in Sun Solaris 10, and OpenSolaris before snv_114, allow local users to cause a denial of service (panic) via unknown vectors.
XScreenSaver in Sun Solaris 10 and OpenSolaris before snv_109, and Solaris 8 and 9 with GNOME 2.0 or 2.0.2, allows physically proximate attackers to obtain sensitive information by reading popup windows, which are displayed even when the screen is locked, as demonstrated by Thunderbird new-mail notifications.
Race condition in the dircmp script in Sun Solaris 8 through 10, and OpenSolaris snv_01 through snv_111, allows local users to overwrite arbitrary files, probably involving a symlink attack on temporary files.
Unspecified vulnerability in the UFS filesystem functionality in Sun OpenSolaris snv_86 through snv_91, when running in 32-bit mode on x86 systems, allows local users to cause a denial of service (panic) via unknown vectors related to the (1) ufs_getpage and (2) ufs_putapage routines, aka CR 6679732.
Unspecified vulnerability in Sun Solaris 10 on SPARC sun4v systems, and OpenSolaris snv_47 through snv_85, allows local users to cause a denial of service (hang of UFS filesystem write) via unknown vectors related to the (1) ufs_getpage and (2) ufs_putapage routines, aka CR 6425723.
Unspecified vulnerability in Sun OpenSolaris snv_39 through snv_45, when running in 64-bit mode on x86 architectures, allows local users to cause a denial of service (hang of UFS filesystem write) via unknown vectors related to the (1) ufs_getpage and (2) ufs_putapage routines, aka CR 6442712.
Unspecified vulnerability in Kerberos Incremental Propagation in Solaris 10 and OpenSolaris snv_01 through snv_110 allows remote attackers to cause a denial of service (loss of incremental propagation requests to slave KDC servers) via unknown vectors related to the master Key Distribution Center (KDC) server.
Unspecified vulnerability in the keysock kernel module in Solaris 10 and OpenSolaris builds snv_01 through snv_108 allows local users to cause a denial of service (system panic) via unknown vectors related to PF_KEY socket, probably related to setting socket options.