| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Cross-site scripting (XSS) vulnerability in Dell OpenManage Server Administrator (OMSA) before 6.5.0.1, 7.0 before 7.0.0.1, and 7.1 before 7.1.0.1 allows remote attackers to inject arbitrary web script or HTML via unspecified vectors. |
| The Dell KACE K2000 System Deployment Appliance allows remote attackers to execute arbitrary commands by leveraging database write access. |
| SQL injection vulnerability in sgms/reports/scheduledreports/configure/scheduleProps.jsp in SonicWall ViewPoint 6.0 SP2 allows remote attackers to execute arbitrary SQL commands via the scheduleID parameter. |
| The Crowbar Ohai plugin (chef/cookbooks/ohai/files/default/plugins/crowbar.rb) in the Deployer Barclamp in Crowbar, possibly 1.4 and earlier, allows local users to execute arbitrary shell commands via vectors related to "insecure handling of tmp files" and predictable file names. |
| EMC Unisphere for VMAX before 1.6.1.6, when using an unspecified level of debug logging in LDAP configurations, allows local users to discover the cleartext LDAP bind password by reading the console. |
| The login page in the GoAhead web server on Dell PowerConnect 3348 1.2.1.3, 3524p 2.0.0.48, and 5324 2.0.1.4 switches allows remote attackers to cause a denial of service (device outage) via a long username. |
| Cross-site scripting (XSS) vulnerability in the login page in the Administrative Web Interface on Dell iDRAC6 monolithic devices with firmware before 1.96 and iDRAC7 devices with firmware before 1.46.45 allows remote attackers to inject arbitrary web script or HTML via the ErrorMsg parameter. |
| The NIST SP 800-90A default statement of the Dual Elliptic Curve Deterministic Random Bit Generation (Dual_EC_DRBG) algorithm contains point Q constants with a possible relationship to certain "skeleton key" values, which might allow context-dependent attackers to defeat cryptographic protection mechanisms by leveraging knowledge of those values. NOTE: this is a preliminary CVE for Dual_EC_DRBG; future research may provide additional details about point Q and associated attacks, and could potentially lead to a RECAST or REJECT of this CVE. |
| Buffer overflow in Dell BIOS on Dell Latitude D###, E####, XT2, and Z600 devices, and Dell Precision M#### devices, allows local users to bypass intended BIOS signing requirements and install arbitrary BIOS images by leveraging administrative privileges and providing a crafted rbu_packet.pktNum value in conjunction with a crafted rbu_packet.pktSize value. |
| The Dell KACE K2000 System Deployment Appliance stores the recovery account password in cleartext within a PHP script, which allows context-dependent attackers to obtain sensitive information by examining script source code. |
| The base-files package before 5.0.0ubuntu7.1 on Ubuntu 9.10 and before 5.0.0ubuntu20.10.04.2 on Ubuntu 10.04 LTS, as shipped on Dell Latitude 2110 netbooks, does not require authentication for package installation, which allows remote archive servers and man-in-the-middle attackers to execute arbitrary code via a crafted package. |
| Multiple cross-site scripting (XSS) vulnerabilities in the administrative web interface on the Dell KACE K2000 System Deployment Appliance allow remote attackers to inject arbitrary web script or HTML via unspecified vectors. |
|
Dell iDRAC9 version 6.00.02.00 and prior contain an improper input validation vulnerability in Racadm when the firmware lock-down configuration is set. A remote high privileged attacker could exploit this vulnerability to bypass the firmware lock-down configuration and perform a firmware update.
|
|
Dell BIOS contains an improper input validation vulnerability. A local authenticated malicious user may potentially exploit this vulnerability by using an SMI to gain arbitrary code execution in SMRAM.
|
|
Dell BIOS contains a stack based buffer overflow vulnerability. A local authenticated malicious user may potentially exploit this vulnerability by using an SMI to send larger than expected input to a parameter in order to gain arbitrary code execution in SMRAM.
|
|
Prior Dell BIOS versions contain an improper input validation vulnerability. A local authenticated malicious user may potentially exploit this vulnerability by using an SMI to gain arbitrary code execution in SMRAM.
|
|
Dell BIOS contains an improper input validation vulnerability. A local authenticated malicious user may potentially exploit this vulnerability by using an SMI to gain arbitrary code execution in SMRAM.
|
|
Dell EMC Metro node, Version(s) prior to 7.1, contain a Code Injection Vulnerability. An authenticated nonprivileged attacker could potentially exploit this vulnerability, leading to the execution of arbitrary OS commands on the application.
|
|
Dell iDRAC8 version 2.83.83.83 and prior contain an improper input validation vulnerability in Racadm when the firmware lock-down configuration is set. A remote high privileged attacker could exploit this vulnerability to bypass the firmware lock-down configuration and perform a firmware update.
|
|
Dell Alienware m17 R5 BIOS version prior to 1.2.2 contain a buffer access vulnerability. A malicious user with admin privileges could potentially exploit this vulnerability by sending input larger than expected in order to leak certain sections of SMRAM.
|