| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Cross-site request forgery (CSRF) vulnerability in IBM InfoSphere Optim Workload Replay 2.x before 2.1.0.3 allows remote attackers to hijack the authentication of arbitrary users for requests that insert XSS sequences. |
| IBM InfoSphere Optim Workload Replay 2.x before 2.1.0.3 relies on client-side code to verify authorization, which allows remote attackers to bypass intended access restrictions by modifying the client behavior. |
| Stack-based buffer overflow in the FastBackMount process in IBM Tivoli Storage Manager FastBack 6.1 before 6.1.11.1 allows remote attackers to execute arbitrary code via unspecified vectors. |
| Stack-based buffer overflow in the FastBackMount process in IBM Tivoli Storage Manager FastBack 6.1 before 6.1.11.1 allows local users to gain privileges via unspecified vectors, a different vulnerability than CVE-2015-1898. |
| Cross-site scripting (XSS) vulnerability in IBM WebSphere Portal 6.1.0 through 6.1.0.6 CF27, 6.1.5 through 6.1.5.3 CF27, 7.0.0 through 7.0.0.2 CF29, 8.0.0 before 8.0.0.1 CF16, and 8.5.0 through CF05, as used in Web Content Manager and other products, allows remote attackers to inject arbitrary web script or HTML via a crafted URL. |
| The XML parser in the Reference Data Management component in the server in IBM InfoSphere Master Data Management (MDM) 10.1 before IF1, 11.0 before FP3, 11.3, and 11.4 before FP2 allows remote attackers to read arbitrary files, and consequently obtain administrative access, via an external entity declaration in conjunction with an entity reference, related to an XML External Entity (XXE) issue. |
| Cross-site scripting (XSS) vulnerability in the Reference Data Management component in the server in IBM InfoSphere Master Data Management (MDM) 10.1 before IF1, 11.0 before FP3, and 11.3 allows remote authenticated users to inject arbitrary web script or HTML via a crafted URL. |
| Cross-site scripting (XSS) vulnerability in Sterling Order Management 8.5 before HF113, Sterling Selling and Fulfillment Foundation 9.0.0 before FP92, and Sterling Field Sales (SFS) 9.0 before HF7 in IBM Sterling Selling and Fulfillment Suite allows remote attackers to inject arbitrary web script or HTML via a crafted URL. |
| Rational Test Control Panel in IBM Rational Test Workbench and Rational Test Virtualization Server 8.0.0.x before 8.0.0.5, 8.0.1.x before 8.0.1.6, 8.5.0.x before 8.5.0.4, 8.5.1.x before 8.5.1.5, 8.6.0.x before 8.6.0.4, and 8.7.0.x before 8.7.0.2 uses the MD5 algorithm for password hashing, which makes it easier for remote attackers to bypass authentication via unspecified vectors. |
| IBM Java 7 R1 before SR3, 7 before SR9, 6 R1 before SR8 FP4, 6 before SR16 FP4, and 5.0 before SR16 FP10 allows remote attackers to bypass "permission checks" and obtain sensitive information via vectors related to the Java Virtual Machine. |
| The Endpoint Manager for Remote Control component in IBM Tivoli Endpoint Manager for Lifecycle Management 9.0.1 before IF6 and 9.1.0 before IF6 does not set the secure flag for the session cookie in an https session, which makes it easier for remote attackers to capture this cookie by intercepting its transmission within an http session. |
| IBM WebSphere Application Server 7.x before 7.0.0.39, 8.0.x before 8.0.0.11, and 8.5.x before 8.5.5.7 and WebSphere Virtual Enterprise before 7.0.0.7 allow remote attackers to obtain potentially sensitive information about the proxy-server software by reading the HTTP Via header. |
| IBM Maximo Asset Management 7.1 through 7.1.1.13, 7.5.0 before 7.5.0.8 IFIX001, and 7.6.0 before 7.6.0.1 IFIX001; Maximo Asset Management 7.5.x before 7.5.0.8 IFIX001 and 7.6.0 before 7.6.0.1 IFIX001 for SmartCloud Control Desk; and Maximo Asset Management 7.1 through 7.1.1.13 and 7.2 for Tivoli IT Asset Management for IT and certain other products do not have an off autocomplete attribute for the password field, which makes it easier for remote attackers to obtain access by leveraging an unattended workstation. |
| IBM Maximo Asset Management 7.1 through 7.1.1.13, 7.5.0 before 7.5.0.8 IFIX002, and 7.6.0 before 7.6.0.1 IFIX001; Maximo Asset Management 7.5.x before 7.5.0.8 IFIX002 and 7.6.0 before 7.6.0.1 IFIX001 for SmartCloud Control Desk; and Maximo Asset Management 7.1 through 7.1.1.13 and 7.2 for Tivoli IT Asset Management for IT and certain other products do not properly encrypt passwords, which makes it easier for context-dependent attackers to determine cleartext passwords by leveraging access to a password file. |
| The scalar-function implementation in IBM DB2 9.7 through FP10, 9.8 through FP5, 10.1 before FP5, and 10.5 through FP5 on Linux, UNIX, and Windows allows remote attackers to cause a denial of service or execute arbitrary code via unspecified vectors. |
| The administrative console in IBM WebSphere Application Server (WAS) 8.0.0 before 8.0.0.11 and 8.5 before 8.5.5.6, when the Security feature is disabled, allows remote authenticated users to hijack sessions via the JSESSIONID parameter. |
| Stack-based buffer overflow in the server in IBM Tivoli Storage Manager FastBack 6.1 before 6.1.12 allows remote attackers to cause a denial of service (daemon crash) via unspecified vectors, a different vulnerability than CVE-2015-1924, CVE-2015-1925, CVE-2015-1929, CVE-2015-1930, CVE-2015-1953, CVE-2015-1954, CVE-2015-1962, CVE-2015-1963, CVE-2015-1964, and CVE-2015-1965. |
| The server in IBM Tivoli Storage Manager FastBack 6.1 before 6.1.12 allows remote attackers to execute arbitrary commands with SYSTEM privileges via unspecified vectors. |
| IBM PowerVC Standard Edition 1.2.2.1 through 1.2.2.2 does not require authentication for access to the Python interpreter with nova credentials, which allows KVM guest OS users to discover certain PowerVC credentials and bypass intended access restrictions via unspecified Python code. |
| IBM Maximo Asset Management 7.1 through 7.1.1.13, 7.5.0 before 7.5.0.8 IFIX001, and 7.6.0 before 7.6.0.0 IFIX005 does not prevent caching of HTTPS responses, which allows physically proximate attackers to obtain sensitive local-cache information by leveraging an unattended workstation. |