| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| The SSH service 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 reset) or possibly execute arbitrary code by sending many packets to TCP port 22. |
| Multiple SQL injection vulnerabilities in Dell KACE K1000 5.4.76847 and possibly earlier allow remote attackers or remote authenticated users to execute arbitrary SQL commands via the macAddress element in a (1) getUploadPath or (2) getKBot SOAP request to service/kbot_service.php; the ID parameter to (3) userui/advisory_detail.php or (4) userui/ticket.php; and the (5) ORDER[] parameter to userui/ticket_list.php. |
| The OpenManage web application 2.5 build 1.19 on Dell PowerConnect 3348 1.2.1.3, 3524p 2.0.0.48, and 5324 2.0.1.4 switches allows remote authenticated users to cause a denial of service (device reset) via a direct request to an unspecified OSPF URL. |
| 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. |
| The Dell iDRAC6 with firmware 1.x before 1.92 and 2.x and 3.x before 3.42, and iDRAC7 with firmware before 1.23.23, allows remote attackers to bypass authentication and execute arbitrary IPMI commands by using cipher suite 0 (aka cipher zero) and an arbitrary password. NOTE: the vendor disputes the significance of this issue, stating "DRAC's are intended to be on a separate management network; they are not designed nor intended to be placed on or connected to the Internet." |
| The web interface on the Dell iDRAC6 with firmware before 1.95 allows remote attackers to modify the CLP interface for arbitrary users and possibly have other impact via a request to an unspecified form that is accessible from testurls.html. NOTE: the vendor disputes the significance of this issue, stating "DRAC's are intended to be on a separate management network; they are not designed nor intended to be placed on or connected to the Internet." |
| The Dell Quest One Password Manager, possibly 5.0, allows remote attackers to bypass CAPTCHA protections and obtain sensitive information (user's full name) by sending a login request with a valid domain and username but without the CaptchaType, UseCaptchaEveryTime, and CaptchaResponse parameters. |
| Cross-site scripting (XSS) vulnerability in adminui/user_list.php on the Dell KACE K1000 management appliance 5.5.90545 allows remote attackers to inject arbitrary web script or HTML via the LABEL_ID parameter. |
| The SSLSocket implementation in the (1) JSAFE and (2) JSSE APIs in EMC RSA BSAFE SSL-J 5.x before 5.1.3 and 6.x before 6.0.2 allows remote attackers to cause a denial of service (memory consumption) by triggering application-data processing during the TLS handshake, a time at which the data is internally buffered. |
| The (1) JSAFE and (2) JSSE APIs in EMC RSA BSAFE SSL-J 5.x before 5.1.3 and 6.x before 6.0.2 make it easier for remote attackers to bypass intended cryptographic protection mechanisms by triggering application-data processing during the TLS handshake, a time at which the data is both unencrypted and unauthenticated. |
| The SSLEngine API implementation in EMC RSA BSAFE SSL-J 5.x before 5.1.3 and 6.x before 6.0.2 allows remote attackers to trigger the selection of a weak cipher suite by using the wrap method during a certain incomplete-handshake state. |
|
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.
|
|
Dell command configuration, version 4.8 and prior, contains improper folder permission when installed not to default path but to non-secured path which leads to privilege escalation. This is critical severity vulnerability as it allows non-admin to modify the files inside installed directory and able to make application unavailable for all users.
|