Cleartext Storage of Sensitive Information in Memory vulnerability in Gallagher Command Centre Server allows Cloud end-to-end encryption key to be discoverable in server memory dumps. This issue affects: Gallagher Command Centre 8.40 versions prior to 8.40.1888 (MR3).
Cleartext Storage of Sensitive Information in Memory vulnerability in Gallagher Command Centre Server allows OSDP reader master keys to be discoverable in server memory dumps. This issue affects: Gallagher Command Centre 8.40 versions prior to 8.40.1888 (MR3); All versions of 8.30.
Command Centre Server is vulnerable to SQL Injection via Windows Registry settings for date fields on the server. The Windows Registry setting allows an attacker using the Visitor Management Kiosk, an application designed for public use, to invoke an arbitrary SQL query that has been preloaded into the registry of the Windows Server to obtain sensitive information. This issue affects: Gallagher Command Centre 8.60 versions prior to 8.60.1652; 8.50 versions prior to 8.50.2245; 8.40 versions prior to 8.40.2216; 8.30 versions prior to 8.30.1470; version 8.20 and prior versions.
On controllers running versions of v8.20 prior to vCR8.20.200221b (distributed in v8.20.1093(MR2)), v8.10 prior to vGR8.10.179 (distributed in v8.10.1211(MR5)), v8.00 prior to vGR8.00.165 (Distributed in v8.00.1228(MR6)), v7.90 prior to vGR7.90.165 (distributed in v7.90.1038(MRX)), v7.80 or earlier, It is possible to retrieve site keys used for securing MIFARE Plus and Desfire using debug ports on T Series readers.
An issue was discovered in Gallagher Command Centre 8.10 before 8.10.1092(MR2). Upon an upgrade, if a custom service account is in use and the visitor management service is installed, the Windows username and password for this service are logged in cleartext to the Command_centre.log file.
IBM Cloud Private 2.1.0 , 3.1.0, 3.1.1, and 3.1.2 could allow a local privileged user to obtain sensitive OIDC token that is printed to log files, which could be used to log in to the system as another user. IBM X-Force ID: 160512.
IBM Robotic Process Automation with Automation Anywhere 11 could allow a local user to obtain highly sensitive information from log files when debugging is enabled. IBM X-Force ID: 160765.
A flaw was found in several ansible modules, where parameters containing credentials, such as secrets, were being logged in plain-text on managed nodes, as well as being made visible on the controller node when run in verbose mode. These parameters were not protected by the no_log feature. An attacker can take advantage of this information to steal those credentials, provided when they have access to the log files containing them. The highest threat from this vulnerability is to data confidentiality. This flaw affects Red Hat Ansible Automation Platform in versions before 1.2.2 and Ansible Tower in versions before 3.8.2.
IBM Maximo Anywhere 7.6.2.0, 7.6.2.1, 7.6.3.0, and 7.6.3.1 could disclose highly senstiive user information to an authenticated user with physical access to the device. IBM X-Force ID: 160514.
IBM PureApplication System 2.2.3.0 through 2.2.5.3 stores potentially sensitive information in log files that could be read by a local user. IBM X-Force ID: 159242.
An inclusion of sensitive information in log files vulnerability is present in Hickory Smart for Android mobile devices from Belwith Products, LLC. Communications to the internet API services and direct connections to the lock via Bluetooth Low Energy (BLE) from the mobile application are logged in a debug log on the Android device at HickorySmartLog/Logs/SRDeviceLog.txt. This information was found stored in the Android device's default USB or SDcard storage paths and is accessible without rooting the device. This issue affects Hickory Smart for Android, version 01.01.43 and prior versions.
There is an information leakage vulnerability in FusionCompute 6.5.1, eCNS280_TD V100R005C00 and V100R005C10. Due to the improperly storage of specific information in the log file, the attacker can obtain the information when a user logs in to the device. Successful exploit may cause the information leak.
IBM Tivoli Endpoint Manager - Mobile Device Management (MDM) stores potentially sensitive information in log files that could be available to a local user.
IBM FileNet Content Manager 5.5.2 and 5.5.3 in specific configurations, could log the web service user credentials into a log file that could be accessed by an administrator on the local machine. IBM X-Force ID: 166798.
Dell EMC PowerScale OneFS versions 8.2.x, 9.1.0.x, and 9.1.1.1 contain a sensitive information exposure vulnerability in log files. A local malicious user with ISI_PRIV_LOGIN_SSH, ISI_PRIV_LOGIN_CONSOLE, or ISI_PRIV_SYS_SUPPORT privileges may exploit this vulnerability to access sensitive information. If any third-party consumes those logs, the same sensitive information is available to those systems as well.
The ldapQueryPassword parameter, when set through the runtime setParameter command, will log the new password to the mongod.log file in plain text.
A potential logging of the firestore key via logging within nodejs-firestore exists - Developers who were logging objects through this._settings would be logging the firestore key as well potentially exposing it to anyone with logs read access. We recommend upgrading to version 6.1.0 to avoid this issue
A vulnerability was found in ceilometer before version 12.0.0.0rc1. An Information Exposure in ceilometer-agent prints sensitive configuration data to log files without DEBUG logging being activated.
It was discovered that a world-readable log file belonging to Candlepin component of Red Hat Satellite 6.4 leaked the credentials of the Candlepin database. A malicious user with local access to a Satellite host can use those credentials to modify the database and prevent Satellite from fetching package updates, thus preventing all Satellite hosts from accessing those updates.
Mattermost Desktop fails to set an appropriate log level during initial run after fresh installation resulting in logging all keystrokes including password entry being logged.
The RSA Identity Governance and Lifecycle software and RSA Via Lifecycle and Governance products prior to 7.1.0 P08 contain an information exposure vulnerability. The Office 365 user password may get logged in a plain text format in the Office 365 connector debug log file. An authenticated malicious local user with access to the debug logs may obtain the exposed password to use in further attacks.
Sensitive data could be exposed in logs of subiquity version 23.09.1 and earlier. An attacker in the adm group could use this information to find hashed passwords and possibly escalate their privilege.
RSA Archer versions, prior to 6.5 SP2, contain an information exposure vulnerability. The database connection password may get logged in plain text in the RSA Archer log files. An authenticated malicious local user with access to the log files may obtain the exposed password to use it in further attacks.
An issue was identified by Elastic whereby sensitive information is recorded in Logstash logs under specific circumstances. The prerequisites for the manifestation of this issue are: * Logstash is configured to log in JSON format https://www.elastic.co/guide/en/logstash/current/running-logstash-command-line.html , which is not the default logging format. * Sensitive data is stored in the Logstash keystore and referenced as a variable in Logstash configuration.
Sensitive information leak through log files. The following products are affected: Acronis Agent (Linux, macOS, Windows) before build 35433.
Insertion of sensitive information into log file in Windows License Manager allows an authorized attacker to disclose information locally.
Insertion of sensitive information into log file in Windows License Manager allows an authorized attacker to disclose information locally.
MongoDB server may log authentication parameters, including credentials, to the server log during SASL authentication. When connection health metric logging is enabled, the full authentication parameters are written to the log without redaction.
ydb-go-sdk is a pure Go native and database/sql driver for the YDB platform. Since ydb-go-sdk v3.48.6 if you use a custom credentials object (implementation of interface Credentials it may leak into logs. This happens because this object could be serialized into an error message using `fmt.Errorf("something went wrong (credentials: %q)", credentials)` during connection to the YDB server. If such logging occurred, a malicious user with access to logs could read sensitive information (i.e. credentials) information and use it to get access to the database. ydb-go-sdk contains this problem in versions from v3.48.6 to v3.53.2. The fix for this problem has been released in version v3.53.3. Users are advised to upgrade. Users unable to upgrade should implement the `fmt.Stringer` interface in your custom credentials type with explicit stringify of object state.
A vulnerability has been identified in SINUMERIK 828D V4 (All versions < V4.95 SP3), SINUMERIK 840D sl V4 (All versions < V4.95 SP3 in connection with using Create MyConfig (CMC) <= V4.8 SP1 HF6), SINUMERIK ONE (All versions < V6.23 in connection with using Create MyConfig (CMC) <= V6.6), SINUMERIK ONE (All versions < V6.15 SP4 in connection with using Create MyConfig (CMC) <= V6.6). Affected systems, that have been provisioned with Create MyConfig (CMC), contain a Insertion of Sensitive Information into Log File vulnerability. This could allow a local authenticated user with low privileges to read sensitive information and thus circumvent access restrictions.
Sensitive information leak through log files. The following products are affected: Acronis Cyber Protect Cloud Agent (Linux, macOS, Windows) before build 35739, Acronis Cyber Protect 16 (Linux, macOS, Windows) before build 37391.
A vulnerability was found in OpenShift Assisted Installer. During generation of the Discovery ISO, image pull secrets were leaked as plaintext in the installation logs. An authenticated user could exploit this by re-using the image pull secret to pull container images from the registry as the associated user.
rsyslog uses weak permissions for generating log files, which allows local users to obtain sensitive information by reading files in /var/log/cron.
An information disclosure issue was addressed with improved private data redaction for log entries. This issue is fixed in iOS 17.7.1 and iPadOS 17.7.1, iOS 18.1 and iPadOS 18.1, macOS Sequoia 15.1, macOS Sonoma 14.7.1, macOS Ventura 13.7.1, tvOS 18.1, visionOS 2.1, watchOS 11.1. An app may be able to leak sensitive kernel state.
Dell EMC SCG 5.00.00.10 and earlier, contain a sensitive information disclosure vulnerability. A local malicious user may exploit this vulnerability to read sensitive information and use it.
A privacy issue was addressed with improved private data redaction for log entries. This issue is fixed in macOS Sequoia 15, macOS Sonoma 14.7, macOS Ventura 13.7. An app may be able to access user-sensitive data.
When TACACS+ audit forwarding is configured on BIG-IP or BIG-IQ system, sharedsecret is logged in plaintext in the audit log. Note: Software versions which have reached End of Technical Support (EoTS) are not evaluated.
iDrive RemotePC before 7.6.48 on Windows allows information disclosure. A locally authenticated attacker can read the system's Personal Key in world-readable %PROGRAMDATA% log files.
A flaw was found in the AMQ Broker that discloses JDBC encrypted usernames and passwords when provided in the AMQ Broker application logfile when using the jdbc persistence functionality. Versions shipped in Red Hat AMQ 7 are vulnerable.
IBM Maximo Application Suite - Maximo Mobile for EAM 8.10 and 8.11 could disclose sensitive information to a local user. IBM X-Force ID: 266875.
When instructing cloud-init to set a random password for a new user account, versions before 21.2 would write that password to the world-readable log file /var/log/cloud-init-output.log. This could allow a local user to log in as another user.
An issue was discovered on Samsung mobile devices with N(7.1) and O(8.x) (Exynos chipsets) software. The ion debugfs driver allows information disclosure. The Samsung ID is SVE-2018-13427 (February 2019).
Nextcloud server is an open source, self hosted personal cloud. In affected versions logging of exceptions may have resulted in logging potentially sensitive key material for the Nextcloud Encryption-at-Rest functionality. It is recommended that the Nextcloud Server is upgraded to 20.0.12, 21.0.4 or 22.1.0. If upgrading is not an option users are advised to disable system logging to resolve this issue until such time that an upgrade can be performed Note that ff you do not use the Encryption-at-Rest functionality of Nextcloud you are not affected by this bug.
When generating QKView of BIG-IP Next instance from the BIG-IP Next Central Manager (CM), F5 iHealth credentials will be logged in the BIG-IP Central Manager logs. Note: Software versions which have reached End of Technical Support (EoTS) are not evaluated.
An issue in Archer Platform before v.6.13 fixed in v.6.12.0.6 and v.6.13.0 allows an authenticated attacker to obtain sensitive information via the log files.
An information exposure through log file vulnerability exists in Palo Alto Networks PAN-OS software where configuration secrets for the “http”, “email”, and “snmptrap” v3 log forwarding server profiles can be logged to the logrcvr.log system log. Logged information may include up to 1024 bytes of the configuration including the username and password in an encrypted form and private keys used in any certificate profiles set for log forwarding server profiles. This issue impacts: PAN-OS 8.1 versions earlier than PAN-OS 8.1.18; PAN-OS 9.0 versions earlier than PAN-OS 9.0.12; PAN-OS 9.1 versions earlier than PAN-OS 9.1.4; PAN-OS 10.0 versions earlier than PAN-OS 10.0.1.
Insertion of sensitive information into log file in Windows ETL Channel allows an authorized attacker to disclose information locally.
An information exposure through log file vulnerability exists in Palo Alto Networks PAN-OS software where secrets in PAN-OS XML API requests are logged in cleartext to the web server logs when the API is used incorrectly. This vulnerability applies only to PAN-OS appliances that are configured to use the PAN-OS XML API and exists only when a client includes a duplicate API parameter in API requests. Logged information includes the cleartext username, password, and API key of the administrator making the PAN-OS XML API request.
An information exposure through log file vulnerability exists in Palo Alto Networks PAN-OS software where the connection details for a scheduled configuration export are logged in system logs. Logged information includes the cleartext username, password, and IP address used to export the PAN-OS configuration to the destination server.
Insertion of sensitive information into log file in Windows StateRepository API allows an authorized attacker to disclose information locally.