| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| GDI in Microsoft Windows Vista SP2, Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8.1, Windows Server 2012 Gold and R2, Windows RT 8.1, and Windows 10 Gold and 1511 allows remote attackers to obtain sensitive information via a crafted document, aka "Windows Graphics Component Information Disclosure Vulnerability," a different vulnerability than CVE-2016-0168. |
| The kernel-mode drivers in Microsoft Windows Vista SP2, Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8.1, Windows Server 2012 Gold and R2, Windows RT 8.1, and Windows 10 Gold and 1511 allow local users to obtain sensitive information about kernel-object addresses, and consequently bypass the KASLR protection mechanism, via a crafted application, aka "Win32k Information Disclosure Vulnerability." |
| Volume Manager Driver in Microsoft Windows 8.1, Windows Server 2012 Gold and R2, and Windows RT 8.1 does not properly check whether RemoteFX RDP USB disk accesses originate from the user who mounted a disk, which allows local users to read arbitrary files on these disks via RemoteFX requests, aka "Remote Desktop Protocol Drive Redirection Information Disclosure Vulnerability." |
| Microsoft Internet Explorer 10 and 11 allows remote attackers to bypass file permissions and obtain sensitive information via a crafted web site, aka "Internet Explorer Information Disclosure Vulnerability." |
| GSKit in IBM Security Network Protection 5.3.1 before 5.3.1.7 and 5.3.2 allows remote attackers to discover credentials by triggering an MD5 collision. |
| IBM WebSphere Commerce 6.x through 6.0.0.11 and 7.x through 7.0.0.9 allows remote authenticated Commerce Accelerator administrators to obtain sensitive information via unspecified vectors. |
| IBM Financial Transaction Manager (FTM) for ACH Services, Check Services and Corporate Payment Services (CPS) 3.0.0 before FP12 allows remote authenticated users to obtain sensitive information by reading exception details in error logs. |
| IBM Financial Transaction Manager (FTM) for ACH Services, Check Services and Corporate Payment Services (CPS) 3.0.0 before FP12 allows remote authenticated users to obtain sensitive information by reading README files. |
| IBM Security Guardium 10.x through 10.1 before p100 allows remote authenticated users to obtain sensitive information by reading an Application Error message. |
| IBM Security Guardium 8.2 before p310, 9.x through 9.5 before p700, and 10.x through 10.1 before p100 allows local users to obtain sensitive cleartext information via unspecified vectors, as demonstrated by password information. |
| IBM Security Guardium 9.0 before p700 and 10.0 before p100 allows man-in-the-middle attackers to obtain sensitive query-string information from SSL sessions via unspecified vectors. |
| Directory traversal vulnerability in IBM Security Guardium Database Activity Monitor 10 before 10.0p100 allows remote authenticated users to read arbitrary files via a crafted URL. |
| IBM Control Center 6.x before 6.0.0.1 iFix06 and Sterling Control Center 5.4.x before 5.4.2.1 iFix09 allow local users to decrypt the master key via unspecified vectors. |
| runmqsc in IBM WebSphere MQ 8.x before 8.0.0.5 allows local users to bypass an intended +dsp authority requirement and obtain sensitive information via unspecified display commands. |
| IBM UrbanCode Deploy 6.0.x before 6.0.1.13, 6.1.x before 6.1.3.3, and 6.2.x before 6.2.1.1 allows remote authenticated users to obtain sensitive cleartext secure-property information via (1) the server UI or (2) a database request. |
| WebReports in IBM BigFix Platform (formerly Tivoli Endpoint Manager) 9.x before 9.5.2 allows local users to discover the cleartext system password by reading a report. |
| IBM WebSphere Application Server (WAS) 7.0 before 7.0.0.41, 8.0 before 8.0.0.13, and 8.5 before 8.5.5.10, when FIPS 140-2 is enabled, misconfigures TLS, which allows man-in-the-middle attackers to obtain sensitive information via unspecified vectors. |
| The DH_check_pub_key function in crypto/dh/dh_check.c in OpenSSL 1.0.2 before 1.0.2f does not ensure that prime numbers are appropriate for Diffie-Hellman (DH) key exchange, which makes it easier for remote attackers to discover a private DH exponent by making multiple handshakes with a peer that chose an inappropriate number, as demonstrated by a number in an X9.42 file. |
| The MOD_EXP_CTIME_COPY_FROM_PREBUF function in crypto/bn/bn_exp.c in OpenSSL 1.0.1 before 1.0.1s and 1.0.2 before 1.0.2g does not properly consider cache-bank access times during modular exponentiation, which makes it easier for local users to discover RSA keys by running a crafted application on the same Intel Sandy Bridge CPU core as a victim and leveraging cache-bank conflicts, aka a "CacheBleed" attack. |
| The get_client_master_key function in s2_srvr.c in the SSLv2 implementation in OpenSSL before 0.9.8zf, 1.0.0 before 1.0.0r, 1.0.1 before 1.0.1m, and 1.0.2 before 1.0.2a accepts a nonzero CLIENT-MASTER-KEY CLEAR-KEY-LENGTH value for an arbitrary cipher, which allows man-in-the-middle attackers to determine the MASTER-KEY value and decrypt TLS ciphertext data by leveraging a Bleichenbacher RSA padding oracle, a related issue to CVE-2016-0800. |