| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Zend Framework 1 (ZF1) before 1.12.4, Zend Framework 2 before 2.1.6 and 2.2.x before 2.2.6, ZendOpenId, ZendRest, ZendService_AudioScrobbler, ZendService_Nirvanix, ZendService_SlideShare, ZendService_Technorati, and ZendService_WindowsAzure before 2.0.2, ZendService_Amazon before 2.0.3, and ZendService_Api before 1.0.0 allow remote attackers to cause a denial of service (CPU consumption) via (1) recursive or (2) circular references in an XML entity definition in an XML DOCTYPE declaration, aka an XML Entity Expansion (XEE) attack. NOTE: this issue exists because of an incomplete fix for CVE-2012-6532. |
| The GenericConsumer class in the Consumer component in ZendOpenId before 2.0.2 and the Zend_OpenId_Consumer class in Zend Framework 1 before 1.12.4 does not verify that the openid_op_endpoint value identifies the same Identity Provider as the provider used in the association handle, which allows remote attackers to bypass authentication and spoof arbitrary OpenID identities by using a malicious OpenID Provider that generates OpenID tokens with arbitrary identifier and claimed_id values. |
| Ekahau B4 staff badge tag 5.7 with firmware 1.4.52, Real-Time Location System (RTLS) Controller 6.0.5-FINAL, and Activator 3 reuses the RC4 cipher stream, which makes it easier for remote attackers to obtain plaintext messages via an XOR operation on two ciphertexts. |
| Zend Framework 1 (ZF1) before 1.12.4, Zend Framework 2 before 2.1.6 and 2.2.x before 2.2.6, ZendOpenId, ZendRest, ZendService_AudioScrobbler, ZendService_Nirvanix, ZendService_SlideShare, ZendService_Technorati, and ZendService_WindowsAzure before 2.0.2, ZendService_Amazon before 2.0.3, and ZendService_Api before 1.0.0 allow remote attackers to read arbitrary files, send HTTP requests to intranet servers, and possibly cause a denial of service (CPU and memory consumption) via an XML External Entity (XXE) attack. NOTE: this issue exists because of an incomplete fix for CVE-2012-5657. |
| ASUS RT-AC68U, RT-AC66R, RT-AC66U, RT-AC56R, RT-AC56U, RT-N66R, RT-N66U, RT-N56R, RT-N56U, and possibly other RT-series routers before firmware 3.0.0.4.376.x do not verify the integrity of firmware (1) update information or (2) downloaded updates, which allows man-in-the-middle (MITM) attackers to execute arbitrary code via a crafted image. |
| Stack-based buffer overflow in cifskey.c or cifscreds.c in cifs-utils before 6.4, as used in pam_cifscreds, allows remote attackers to have unspecified impact via unknown vectors. |
| Multiple cross-site request forgery (CSRF) vulnerabilities in the GD Star Rating plugin 19.22 for WordPress allow remote attackers to hijack the authentication of administrators for requests that conduct (1) SQL injection attacks via the s parameter in the gd-star-rating-stats page to wp-admin/admin.php or (2) cross-site scripting (XSS) attacks via unspecified vectors. |
| SQL injection vulnerability in the GD Star Rating plugin 19.22 for WordPress allows remote administrators to execute arbitrary SQL commands via the s parameter in the gd-star-rating-stats page to wp-admin/admin.php. |
| IBM BladeCenter SAS Connectivity Module (aka NSSM) and SAS RAID Module (aka RSSM) before 1.3.3.006 allow remote attackers to cause a denial of service (reboot) via a flood of IP packets. |
| IBM BladeCenter SAS Connectivity Module (aka NSSM) and SAS RAID Module (aka RSSM) before 1.3.3.006 allow remote attackers to obtain blade and storage-pool access via a TELNET session. |
| Cross-site scripting (XSS) vulnerability in the Web GUI in IBM Tivoli Netcool/OMNIbus 7.3.0 before 7.3.0.6, 7.3.1 before 7.3.1.7, and 7.4.0 before 7.4.0.3 allows remote authenticated users to inject arbitrary web script or HTML via a crafted URL. |
| Cross-site request forgery (CSRF) vulnerability on the IBM WebSphere DataPower XC10 appliance 2.1 and 2.5 before FP4 allows remote authenticated users to hijack the authentication of arbitrary users for requests that insert XSS sequences. |
| Unspecified vulnerability in IBM Java Runtime Environment (JRE) 7 R1 before SR2 (7.1.2.0), 7 before SR8 (7.0.8.0), 6 R1 before SR8 FP2 (6.1.8.2), 6 before SR16 FP2 (6.0.16.2), and before SR16 FP8 (5.0.16.8) allows local users to execute arbitrary code via vectors related to the shared classes cache. |
| IBM Java Runtime Environment (JRE) 7 R1 before SR1 FP1 (7.1.1.1), 7 before SR7 FP1 (7.0.7.1), 6 R1 before SR8 FP1 (6.1.8.1), 6 before SR16 FP1 (6.0.16.1), and before 5.0 SR16 FP7 (5.0.16.7) allows attackers to obtain the private key from a Certificate Management System (CMS) keystore via a brute force attack. |
| Cross-site scripting (XSS) vulnerability in IBM Curam Social Program Management before 6.0.5.5a allows remote authenticated users to inject arbitrary web script or HTML via a crafted URL. |
| Cross-site scripting (XSS) vulnerability in libahttp/err.c in OkCupid OKWS (OK Web Server) allows remote attackers to inject arbitrary web script or HTML via the PATH_INFO to a non-existent page, which is not properly handled in a 404 error page. |
| Integer overflow in the getword function in options.c in pppd in Paul's PPP Package (ppp) before 2.4.7 allows attackers to "access privileged options" via a long word in an options file, which triggers a heap-based buffer overflow that "[corrupts] security-relevant variables." |
| The ldns-keygen tool in ldns 1.6.x uses the current umask to set the privileges of the private key, which might allow local users to obtain the private key by reading the file. |
| Untrusted search path vulnerability in Puppet Enterprise 2.8 before 2.8.7, Puppet before 2.7.26 and 3.x before 3.6.2, Facter 1.6.x and 2.x before 2.0.2, Hiera before 1.3.4, and Mcollective before 2.5.2, when running with Ruby 1.9.1 or earlier, allows local users to gain privileges via a Trojan horse file in the current working directory, as demonstrated using (1) rubygems/defaults/operating_system.rb, (2) Win32API.rb, (3) Win32API.so, (4) safe_yaml.rb, (5) safe_yaml/deep.rb, or (6) safe_yaml/deep.so; or (7) operatingsystem.rb, (8) operatingsystem.so, (9) osfamily.rb, or (10) osfamily.so in puppet/confine. |
| Cisco AnyConnect on Android and OS X does not properly verify the host type, which allows remote attackers to spoof authentication forms and possibly capture credentials via unspecified vectors, aka Bug IDs CSCuo24931 and CSCuo24940. |