Brocade SANnav before SANnav 2.3.1b enables weak TLS ciphers on ports 443 and 18082. In case of a successful exploit, an attacker can read Brocade SANnav data stream that includes monitored Brocade Fabric OS switches performance data, port status, zoning information, WWNs, IP Addresses, but no customer data, no personal data and no secrets or passwords, as it travels across the network.
Docker daemon in Brocade SANnav before SANnav 2.3.1b runs without auditing. The vulnerability could allow a remote authenticated attacker to execute various attacks.
Under certain error conditions at time of SANnav installation or upgrade, the encryption key can be written into and obtained from a Brocade SANnav supportsave. An attacker with privileged access to the Brocade SANnav database could use the encryption key to obtain passwords used by Brocade SANnav.
CalInvocationHandler in Brocade SANnav before 2.3.1b logs sensitive information in clear text. The vulnerability could allow an authenticated, local attacker to view Brocade Fabric OS switch sensitive information in clear text. An attacker with administrative privileges could retrieve sensitive information including passwords; SNMP responses that contain AuthSecret and PrivSecret after collecting a “supportsave” or getting access to an already collected “supportsave”. NOTE: this issue exists because of an incomplete fix for CVE-2024-29952
Possible information exposure through log file vulnerability where sensitive fields are recorded in the debug-enabled logs when debugging is turned on in Brocade SANnav before 2.3.0 and 2.2.2a
Brocade SANnav versions before 2.2.2 log Brocade Fabric OS switch passwords when debugging is enabled.
An information exposure through log file vulnerability exists in Brocade SANnav before Brocade SANnav 2.2.2, where Brocade Fabric OS Switch passwords and authorization IDs are printed in the embedded MLS DB file.
Brocade SANnav before Brocade SANnav 2.2.2 supports key exchange algorithms, which are considered weak on ports 24, 6514, 18023, 19094, and 19095.
An information exposure through log file vulnerability exists in Brocade SANnav before Brocade SANnav 2.2.2, where configuration secrets are logged in supportsave. Supportsave file is generated by an admin user troubleshooting the switch. The Logged information may include usernames and passwords, and secret keys.
Brocade SANnav Web interface before Brocade SANnav v2.3.0 and v2.2.2a allows remote unauthenticated users to bypass web authentication and authorization.
Possible information exposure through log file vulnerability where sensitive fields are recorded in the configuration log without masking on Brocade SANnav before v2.3.0 and 2.2.2a. Notes: To access the logs, the local attacker must have access to an already collected Brocade SANnav "supportsave" outputs.
Brocade SANnav before v2.3.0 and v2.2.2a stores SNMPv3 Authentication passwords in plaintext. A privileged user could retrieve these credentials with knowledge and access to these log files. SNMP credentials could be seen in SANnav SupportSave if the capture is performed after an SNMP configuration failure causes an SNMP communication log dump.
Brocade SANnav before v2.2.1 logs usernames and encoded passwords in debug-enabled logs. The vulnerability could allow an attacker with admin privilege to read sensitive information.
An information exposure through log file vulnerability in Brocade SANNav versions before Brocade SANnav 2.2.0 could allow an authenticated, local attacker to view sensitive information such as ssh passwords in filetansfer.log in debug mode. To exploit this vulnerability, the attacker would need to have valid user credentials and turn on debug mode.
The host SSH servers of Brocade Fabric OS before Brocade Fabric OS v7.4.2h, v8.2.1c, v8.2.2, v9.0.0, and Brocade SANnav before v2.1.1 utilize keys of less than 2048 bits, which may be vulnerable to man-in-the-middle attacks and/or insecure SSH communications.
Brocade SANnav before v.2.1.0a could allow remote attackers cause a denial-of-service condition due to a lack of proper validation, of the length of user-supplied data as name for custom field name.
Brocade SANnav before version 2.1.1 uses a hard-coded administrator account with the weak password ‘passw0rd’ if a password is not provided for PostgreSQL at install-time.
Brocade SANnav versions before v2.1.0, contain a Plaintext Password Storage vulnerability.
A vulnerability in Brocade SANnav versions before v2.1.0 could allow a remote authenticated attacker to conduct an LDAP injection. The vulnerability could allow a remote attacker to bypass the authentication process.
A vulnerability, in The ReportsTrustManager class of Brocade SANnav versions before v2.0, could allow an attacker to perform a man-in-the-middle attack against Secure Sockets Layer(SSL)connections.
The authentication mechanism, in Brocade SANnav versions before v2.0, logs plaintext account credentials at the ‘trace’ and the 'debug' logging level; which could allow a local authenticated attacker to access sensitive information.
A vulnerability, in Brocade SANnav versions before v2.0, could allow remote attackers to brute-force a valid session ID. The vulnerability is due to an insufficiently random session ID for several post-authentication actions in the SANnav portal.
Brocade SANnav versions before v2.0, logs plain text database connection password while triggering support save.
Password-based encryption (PBE) algorithm, of Brocade SANnav versions before v2.0, has a weakness in generating cryptographic keys that may allow an attacker to decrypt passwords used with several services (Radius, TACAS, etc.).
Brocade SANnav versions before v2.0 use a hard-coded password, which could allow local authenticated attackers to access a back-end database and gain privileges.