Total
100
Critical
0
High
0
Medium
0
CISA KEV
0
Cisco Prime Infrastructure 1.2.0 through 2.2(2) and Cisco Evolved Programmable Network Manager (EPNM) 1.2 allow remote attackers to execute arbitrary code via crafted deserialized data in an HTTP POST request, aka Bug ID CSCuw03192.
The web API in Cisco Prime Infrastructure 1.2.0 through 2.2(2) and Cisco Evolved Programmable Network Manager (EPNM) 1.2 allows remote authenticated users to bypass intended RBAC restrictions and gain privileges via an HTTP request that is inconsistent with a pattern filter, aka Bug ID CSCuy10227.
Cisco TelePresence Server 4.1(2.29) through 4.2(4.17) on 7010; Mobility Services Engine (MSE) 8710; Multiparty Media 310, 320, and 820; and Virtual Machine (VM) devices allows remote attackers to cause a denial of service (memory consumption or device reload) via crafted HTTP requests that are not followed by an unspecified negotiation, aka Bug ID CSCuv47565.
Cross-site scripting (XSS) vulnerability in Cisco Unified Communications Domain Manager (CDM) 8.1(1) allows remote authenticated users to inject arbitrary web script or HTML via a crafted URL, aka Bug ID CSCux80760.
Cisco IOS 15.3 and 15.4, Cisco IOS XE 3.8 through 3.11, and Cisco Unified Communications Manager allow remote attackers to cause a denial of service (device reload) via malformed SIP messages, aka Bug ID CSCuj23293.
The Smart Install client implementation in Cisco IOS 12.2, 15.0, and 15.2 and IOS XE 3.2 through 3.7 allows remote attackers to cause a denial of service (device reload) via crafted image list parameters in a Smart Install packet, aka Bug ID CSCuv45410.
Cisco IOS 15.0 through 15.5 and IOS XE 3.3 through 3.16 allow remote attackers to cause a denial of service (device reload) via a crafted DHCPv6 Relay message, aka Bug ID CSCus55821.
The IKEv2 implementation in Cisco IOS 15.0 through 15.6 and IOS XE 3.3 through 3.17 allows remote attackers to cause a denial of service (device reload) via fragmented packets, aka Bug ID CSCux38417.
Cisco NX-OS 4.0 through 6.1 on Nexus 1000V 3000, 4000, 5000, 6000, and 7000 devices and Unified Computing System (UCS) platforms allows remote attackers to cause a denial of service (TCP stack reload) by sending crafted TCP packets to a device that has a TIME_WAIT TCP session, aka Bug ID CSCub70579.
Cisco NX-OS 6.0(2)U6(1) through 6.0(2)U6(5) on Nexus 3000 devices and 6.0(2)A6(1) through 6.0(2)A6(5) and 6.0(2)A7(1) on Nexus 3500 devices has hardcoded credentials, which allows remote attackers to obtain root privileges via a (1) TELNET or (2) SSH session, aka Bug ID CSCuy25800.
Multiple cross-site scripting (XSS) vulnerabilities in Cisco Emergency Responder 11.5(0.99833.5) allow remote attackers to inject arbitrary web script or HTML via unspecified parameters, aka Bug ID CSCuy10766.
Cisco Unified Communications Manager (aka CallManager) 9.1(2.10000.28), 10.5(2.10000.5), 10.5(2.12901.1), and 11.0(1.10000.10); Unified Communications Manager IM & Presence Service 10.5(2); Unified Contact Center Express 11.0(1); and Unity Connection 10.5(2) store a cleartext encryption key, which allows local users to obtain sensitive information via unspecified vectors, aka Bug ID CSCuv85958.
Cisco Application Policy Infrastructure Controller (APIC) devices with software before 1.0(3h) and 1.1 before 1.1(1j) and Nexus 9000 ACI Mode switches with software before 11.0(3h) and 11.1 before 11.1(1j) allow remote authenticated users to bypass intended RBAC restrictions via crafted REST requests, aka Bug ID CSCut12998.
Cross-site scripting (XSS) vulnerability in Cisco Unity Connection 11.5(0.199) allows remote attackers to inject arbitrary web script or HTML via a crafted URL, aka Bug ID CSCuy09033.
Multiple cross-site scripting (XSS) vulnerabilities in Cisco Fog Director 1.0(0) allow remote attackers to inject arbitrary web script or HTML via a crafted parameter, aka Bug ID CSCux80466.
SQL injection vulnerability in the web-based management interface on Cisco RV220W devices allows remote attackers to execute arbitrary SQL commands via a crafted header in an HTTP request, aka Bug ID CSCuv29574.
The labeled networking implementation in Solaris Trusted Extensions in Sun Solaris 10 and OpenSolaris snv_39 through snv_67, when a labeled zone is in the installed state, allows remote authenticated users to bypass a Mandatory Access Control (MAC) policy and obtain access to the global zone.
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.
The default configuration of Oracle OpenSolaris snv_91 through snv_131 allows attackers to have an unspecified impact via vectors related to using kclient to join a Windows Active Directory domain.
The default configuration of Oracle OpenSolaris snv_77 through snv_131 allows attackers to have an unspecified impact via vectors related to using smbadm to join a Windows Active Directory domain.
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.
hald in Sun OpenSolaris snv_51 through snv_130 does not have the proc_audit privilege during unspecified attempts to write to the auditing log, which makes it easier for physically proximate attackers to avoid detection of changes to the set of connected hardware devices supporting the Hardware Abstraction Layer (HAL) specification.
Race condition in the IP module in the kernel in Sun OpenSolaris snv_106 through snv_124 allows remote attackers to cause a denial of service (NULL pointer dereference and panic) via unspecified vectors related to the (1) tcp_do_getsockname or (2) tcp_do_getpeername function.
Unspecified vulnerability in the kernel in Sun Solaris 10 and OpenSolaris 2009.06 on the x86-64 platform allows local users to gain privileges via unknown vectors, as demonstrated by the vd_sol_local module in VulnDisco Pack Professional 8.12. NOTE: as of 20091203, this disclosure has no actionable information. However, because the VulnDisco Pack author is a reliable researcher, the issue is being assigned a CVE identifier for tracking purposes.
Unspecified vulnerability in the kernel in Sun OpenSolaris 2009.06 allows remote attackers to cause a denial of service (panic) via unknown vectors, as demonstrated by the vd_solaris2 module in VulnDisco Pack Professional 8.12. NOTE: as of 20091203, this disclosure has no actionable information. However, because the VulnDisco Pack author is a reliable researcher, the issue is being assigned a CVE identifier for tracking purposes.
Multiple unspecified vulnerabilities in ldap_cachemgr (aka the LDAP client configuration cache daemon) in Sun Solaris 9 and 10, and OpenSolaris before snv_78, allow local users to cause a denial of service (daemon crash) via vectors involving multiple serviceSearchDescriptor attributes and a call to the getldap_lookup function, and unspecified other 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 Solaris TCP sockets in Sun OpenSolaris snv_106 through snv_126 allows local users to cause a denial of service (kernel memory consumption) via unspecified vectors involving tcp_sendmsg processing "ancillary data."
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 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.
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.
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.
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."
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.
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.
Unspecified vulnerability in the proc filesystem in Sun OpenSolaris snv_49 through snv_109 allows local users to cause a denial of service (deadlock and panic) via unknown vectors, related to the ldt_rewrite_syscall function.
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 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.
smbfs in Sun OpenSolaris snv_84 through snv_110, when default mount permissions are used, allows local users to read arbitrary files, and list arbitrary directories, on CIFS volumes.
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.
Unspecified vulnerability in idmap in Sun OpenSolaris snv_88 through snv_110, when a CIFS server is enabled, allows local users to cause a denial of service (idpmapd daemon crash and idmapd outage) via unknown vectors.
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.
Unspecified vulnerability in the Solaris Secure Digital slot driver (aka sdhost) in Sun OpenSolaris snv_105 through snv_108 on the x86 platform allows local users to gain privileges or cause a denial of service (filesystem or memory corruption) via unknown vectors.
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.
Unspecified vulnerability in the SCTP sockets implementation in Sun OpenSolaris snv_106 through snv_107 allows 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 Sun OpenSolaris snv_100 through snv_101 allows local users, with privileges in a non-global zone, to execute arbitrary code in the global zone when a global-zone user is using mdb on a non-global zone process.
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.
Race condition in the Doors subsystem in the kernel in Sun Solaris 8 through 10, and OpenSolaris before snv_94, allows local users to cause a denial of service (process hang), or possibly bypass file permissions or gain kernel-context privileges, via vectors involving the time at which control is transferred from a caller to a door server.
Multiple unspecified vulnerabilities in the Doors subsystem in the kernel in Sun Solaris 8 through 10, and OpenSolaris before snv_94, allow local users to cause a denial of service (process hang), or possibly bypass file permissions or gain kernel-context privileges, via vectors including ones related to (1) an argument handling deadlock in a door server and (2) watchpoint problems in the door_call function.
The NFS daemon (aka nfsd) in Sun Solaris 10 and OpenSolaris before snv_106, when NFSv3 is used, does not properly implement combinations of security modes, which allows remote attackers to bypass intended access restrictions and read or modify files, as demonstrated by a combination of the sec=sys and sec=krb5 security modes, related to modes that "override each other."
The NFS server in Sun Solaris 10, and OpenSolaris before snv_111, does not properly implement the AUTH_NONE (aka sec=none) security mode in combination with other security modes, which allows remote attackers to bypass intended access restrictions and read or modify files, as demonstrated by a combination of the AUTH_NONE and AUTH_SYS security modes.
The NFSv4 Server module in the kernel in Sun Solaris 10, and OpenSolaris before snv_111, allow local users to cause a denial of service (infinite loop and system hang) by accessing an hsfs filesystem that is shared through NFSv4, related to the rfs4_op_readdir function.
The crypto pseudo device driver in Sun Solaris 10, and OpenSolaris snv_88 through snv_102, does not properly free memory, which allows local users to cause a denial of service (panic) via unspecified vectors, related to the vmem_hash_delete function.
The IP implementation in Sun Solaris 8 through 10, and OpenSolaris before snv_82, uses an improper arena when allocating minor numbers for sockets, which allows local users to cause a denial of service (32-bit application failure and login outage) by opening a large number of sockets.
Unspecified vulnerability in the process (aka proc) filesystem in Sun OpenSolaris snv_85 through snv_100 allows local users to gain privileges via vectors related to the contract filesystem.
Unspecified vulnerability in the NFSv4 client module in the kernel on Sun Solaris 10 and OpenSolaris before snv_37, when automountd is used, allows user-assisted remote attackers to cause a denial of service (unresponsive NFS filesystems) via unknown vectors.
The IP-in-IP packet processing implementation in the IPsec and IP stacks in the kernel in Sun Solaris 9 and 10, and OpenSolaris snv_01 though snv_85, allows local users to cause a denial of service (panic) via a self-encapsulated packet that lacks IPsec protection.
Unspecified vulnerability in the autofs module in the kernel in Sun Solaris 8 through 10, and OpenSolaris before snv_108, allows local users to cause a denial of service (autofs mount outage) or possibly gain privileges via vectors related to "xdr processing problems."
The kernel in Sun Solaris 10 and 11 snv_101b, and OpenSolaris before snv_108, allows remote attackers to cause a denial of service (system crash) via a crafted IPv6 packet, related to an "insufficient validation security vulnerability," as demonstrated by SunOSipv6.c.
Unspecified vulnerability in the kernel in OpenSolaris snv_100 through snv_102 on the Sun UltraSPARC T2 and T2+ sun4v platforms allows local users to cause a denial of service (panic) via unknown vectors.
Race condition in the pseudo-terminal (aka pty) driver module in Sun Solaris 8 through 10, and OpenSolaris before snv_103, allows local users to cause a denial of service (panic) via unspecified vectors related to lack of "properly sequenced code" in ptc and ptsl.
libike in Sun Solaris 9 and 10, and OpenSolaris before snv_100, does not properly check packets, which allows remote attackers to cause a denial of service (in.iked daemon crash) via an unspecified IKE packet, a different vulnerability than CVE-2007-2989.
Unspecified vulnerability in ppdmgr in Sun Solaris 10 and OpenSolaris snv_61 through snv_106 allows local users to cause a denial of service via unspecified vectors, related to a failure to "include all cache files," and improper handling of temporary files.
Unspecified vulnerability in lpadmin in Sun Solaris 10 and OpenSolaris snv_61 through snv_106 allows local users to cause a denial of service via unspecified vectors, related to enumeration of "wrong printers," aka a "Temporary file vulnerability."
Unspecified vulnerability in txzonemgr in Sun OpenSolaris has unknown impact and local attack vectors, related to a "Temporary file vulnerability," aka Bug ID 6653462.
Unspecified vulnerability in conv_lpd in Sun OpenSolaris has unknown impact and local attack vectors, related to improper handling of temporary files, aka Bug ID 6655641.
Unspecified vulnerability in the root/boot archive tool in Sun OpenSolaris has unknown impact and local attack vectors, related to a "Temporary file vulnerability," aka Bug ID 6653455.
Integer overflow in the aio_suspend function in Sun Solaris 8 through 10 and OpenSolaris, when 32-bit mode is enabled, allows local users to cause a denial of service (panic) via a large integer value in the second argument (aka nent argument).
The UFS implementation in the kernel in Sun OpenSolaris snv_29 through snv_90 allows local users to cause a denial of service (panic) via the single posix_fallocate test in the SUSv3 POSIX test suite, related to an F_ALLOCSP fcntl call.
Unspecified vulnerability in the nfs4rename_persistent_fh function in the NFS 4 (aka NFSv4) client in the kernel in Sun Solaris 10 and OpenSolaris before snv_102 allows local users to cause a denial of service (recursive mutex_enter and panic) via unspecified vectors.
The name service cache daemon (nscd) in Sun Solaris 10 and OpenSolaris snv_50 through snv_104 does not properly check permissions, which allows local users to gain privileges and obtain sensitive information via unspecified vectors.
The Kerberos credential renewal feature in Sun Solaris 8, 9, and 10, and OpenSolaris build snv_01 through snv_104, allows local users to cause a denial of service (authentication failure) via unspecified vectors related to incorrect cache file permissions, and lack of credential storage by the store_cred function in pam_krb5.
tun in IP Tunnel in Solaris 10 and OpenSolaris snv_01 through snv_76 allows local users to cause a denial of service (panic) and possibly execute arbitrary code via a crafted SIOCGTUNPARAM IOCTL request, which triggers a NULL pointer dereference.
Unspecified vulnerability in the X Inter Client Exchange library (aka libICE) in Sun Solaris 8 through 10 and OpenSolaris before snv_85 allows context-dependent attackers to cause a denial of service (application crash), as demonstrated by a port scan that triggers a segmentation violation in the Gnome session manager (aka gnome-session).
The IPv4 Forwarding feature in Sun Solaris 10 and OpenSolaris snv_47 through snv_82, with certain patches installed, allows remote attackers to cause a denial of service (panic) via unknown vectors that trigger a NULL pointer dereference.
ipnat in IP Filter in Sun Solaris 10 and OpenSolaris before snv_96, when running on a DNS server with Network Address Translation (NAT) configured, improperly changes the source port of a packet when the destination port is the DNS port, which allows remote attackers to bypass an intended CVE-2008-1447 protection mechanism and spoof the responses to DNS queries sent by named.