| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| 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. |
| 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. |
| Unspecified vulnerability in the Solaris Platform Information and Control Library daemon (picld) in Sun Solaris 8 through 10, and OpenSolaris builds snv_01 through snv_95, allows local users to cause a denial of service via unknown vectors that prevent operation of utilities such as prtdiag, prtpicl, and prtfru. |
| Unspecified vulnerability in the NFS module in the kernel in Sun Solaris 10 and OpenSolaris snv_59 through snv_87, when configured as an NFS server without the nodevices option, allows local users to cause a denial of service (panic) via unspecified vectors. |
| Unspecified vulnerability in the UFS module in Sun Solaris 8 through 10 and OpenSolaris allows local users to cause a denial of service (NULL pointer dereference and kernel panic) via unknown vectors related to the Solaris Access Control List (ACL) implementation. |
| 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). |
| 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 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. |
| 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 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 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. |
| 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. |
| 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. |
| 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. |
| 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. |
| 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. |
| 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. |
| 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. |
| 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 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. |