Total
11061 CVE
| CVE | Vendors | Products | Updated | CVSS v2 | CVSS v3 |
|---|---|---|---|---|---|
| CVE-2015-1686 | 1 Microsoft | 2 Internet Explorer, Vbscript | 2026-06-17 | 4.3 MEDIUM | N/A |
| The Microsoft (1) VBScript 5.6 through 5.8 and (2) JScript 5.6 through 5.8 engines, as used in Internet Explorer 8 through 11 and other products, allow remote attackers to bypass the ASLR protection mechanism via a crafted web site, aka "VBScript and JScript ASLR Bypass." | |||||
| CVE-2015-1684 | 1 Microsoft | 2 Internet Explorer, Vbscript | 2026-06-17 | 4.3 MEDIUM | N/A |
| VBScript.dll in the Microsoft VBScript 5.6 through 5.8 engine, as used in Internet Explorer 8 through 11 and other products, allows remote attackers to bypass the ASLR protection mechanism via a crafted web site, aka "VBScript ASLR Bypass." | |||||
| CVE-2015-1680 | 1 Microsoft | 9 Windows 7, Windows 8, Windows 8.1 and 6 more | 2026-06-17 | 2.1 LOW | N/A |
| The kernel-mode drivers in Microsoft Windows Server 2003 SP2, Windows Vista SP2, Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8, Windows 8.1, Windows Server 2012 Gold and R2, and Windows RT Gold and 8.1 allow local users to bypass the ASLR protection mechanism via a crafted function call, aka "Microsoft Windows Kernel Memory Disclosure Vulnerability," a different vulnerability than CVE-2015-1676, CVE-2015-1677, CVE-2015-1678, and CVE-2015-1679. | |||||
| CVE-2015-1679 | 1 Microsoft | 9 Windows 7, Windows 8, Windows 8.1 and 6 more | 2026-06-17 | 2.1 LOW | N/A |
| The kernel-mode drivers in Microsoft Windows Server 2003 SP2, Windows Vista SP2, Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8, Windows 8.1, Windows Server 2012 Gold and R2, and Windows RT Gold and 8.1 allow local users to bypass the ASLR protection mechanism via a crafted function call, aka "Microsoft Windows Kernel Memory Disclosure Vulnerability," a different vulnerability than CVE-2015-1676, CVE-2015-1677, CVE-2015-1678, and CVE-2015-1680. | |||||
| CVE-2015-1678 | 1 Microsoft | 9 Windows 7, Windows 8, Windows 8.1 and 6 more | 2026-06-17 | 2.1 LOW | N/A |
| The kernel-mode drivers in Microsoft Windows Server 2003 SP2, Windows Vista SP2, Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8, Windows 8.1, Windows Server 2012 Gold and R2, and Windows RT Gold and 8.1 allow local users to bypass the ASLR protection mechanism via a crafted function call, aka "Microsoft Windows Kernel Memory Disclosure Vulnerability," a different vulnerability than CVE-2015-1676, CVE-2015-1677, CVE-2015-1679, and CVE-2015-1680. | |||||
| CVE-2015-1677 | 1 Microsoft | 9 Windows 7, Windows 8, Windows 8.1 and 6 more | 2026-06-17 | 2.1 LOW | N/A |
| The kernel-mode drivers in Microsoft Windows Server 2003 SP2, Windows Vista SP2, Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8, Windows 8.1, Windows Server 2012 Gold and R2, and Windows RT Gold and 8.1 allow local users to bypass the ASLR protection mechanism via a crafted function call, aka "Microsoft Windows Kernel Memory Disclosure Vulnerability," a different vulnerability than CVE-2015-1676, CVE-2015-1678, CVE-2015-1679, and CVE-2015-1680. | |||||
| CVE-2015-1676 | 1 Microsoft | 9 Windows 7, Windows 8, Windows 8.1 and 6 more | 2026-06-17 | 2.1 LOW | N/A |
| The kernel-mode drivers in Microsoft Windows Server 2003 SP2, Windows Vista SP2, Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8, Windows 8.1, Windows Server 2012 Gold and R2, and Windows RT Gold and 8.1 allow local users to bypass the ASLR protection mechanism via a crafted function call, aka "Microsoft Windows Kernel Memory Disclosure Vulnerability," a different vulnerability than CVE-2015-1677, CVE-2015-1678, CVE-2015-1679, and CVE-2015-1680. | |||||
| CVE-2015-1670 | 1 Microsoft | 1 .net Framework | 2026-06-17 | 4.3 MEDIUM | N/A |
| The Windows DirectWrite library, as used in Microsoft .NET Framework 3.0 SP2, 3.5, 3.5.1, 4, 4.5, 4.5.1, and 4.5.2, allows remote attackers to obtain sensitive information from process memory via a crafted OpenType font on a web site, aka "OpenType Font Parsing Vulnerability." | |||||
| CVE-2015-1618 | 1 Mcafee | 1 Data Loss Prevention Endpoint | 2026-06-17 | 4.0 MEDIUM | N/A |
| The ePO extension in McAfee Data Loss Prevention Endpoint (DLPe) before 9.3.400 allows remote authenticated users to obtain sensitive password information via a crafted URL. | |||||
| CVE-2015-1613 | 1 Rhodecode | 1 Rhodecode Enterprise | 2026-06-17 | 4.0 MEDIUM | N/A |
| RhodeCode before 2.2.7 allows remote authenticated users to obtain API keys and other sensitive information via the (1) update_repo, (2) get_locks, or (3) get_user_groups API method. | |||||
| CVE-2015-1602 | 1 Siemens | 1 Simatic Step 7 | 2026-06-17 | 2.1 LOW | N/A |
| Siemens SIMATIC STEP 7 (TIA Portal) 12 and 13 before 13 SP1 Upd1 improperly stores password data within project files, which makes it easier for local users to determine cleartext (1) protection-level passwords or (2) web-server passwords by leveraging the ability to read these files. | |||||
| CVE-2015-1600 | 1 Netatmo | 2 Indoor Module, Indoor Module Firmware | 2026-06-17 | 5.0 MEDIUM | 7.5 HIGH |
| Information disclosure vulnerability in Netatmo Indoor Module firmware 100 and earlier. | |||||
| CVE-2015-1598 | 1 Siemens | 1 Spcanywhere | 2026-06-17 | 2.1 LOW | N/A |
| The Siemens SPCanywhere application for Android does not properly store application passwords, which allows physically proximate attackers to obtain sensitive information by examining the device filesystem. | |||||
| CVE-2015-1595 | 1 Siemens | 1 Spcanywhere | 2026-06-17 | 4.3 MEDIUM | N/A |
| The Siemens SPCanywhere application for Android and iOS does not use encryption during lookups of system ID to IP address mappings, which allows man-in-the-middle attackers to discover alarm IP addresses and spoof servers by intercepting the client-server data stream. | |||||
| CVE-2015-1488 | 1 Symantec | 1 Endpoint Protection Manager | 2026-06-17 | 4.0 MEDIUM | N/A |
| An unspecified action handler in the management console in Symantec Endpoint Protection Manager (SEPM) 12.1 before 12.1-RU6-MP1 allows remote authenticated users to read arbitrary files via unknown vectors. | |||||
| CVE-2015-1482 | 1 Ansible | 1 Tower | 2026-06-17 | 5.0 MEDIUM | N/A |
| Ansible Tower (aka Ansible UI) before 2.0.5 allows remote attackers to bypass authentication and obtain sensitive information via a websocket connection to socket.io/1/. | |||||
| CVE-2015-1480 | 1 Manageengine | 1 Servicedesk Plus | 2026-06-17 | 4.0 MEDIUM | N/A |
| ZOHO ManageEngine ServiceDesk Plus (SDP) before 9.0 build 9031 allows remote authenticated users to obtain sensitive ticket information via a (1) getTicketData action to servlet/AJaxServlet or a direct request to (2) swf/flashreport.swf, (3) reports/flash/details.jsp, or (4) reports/CreateReportTable.jsp. | |||||
| CVE-2015-1457 | 1 Fortinet | 1 Fortiauthenticator | 2026-06-17 | 4.9 MEDIUM | N/A |
| Fortinet FortiAuthenticator 3.0.0 allows local users to read arbitrary files via the -f flag to the dig command. | |||||
| CVE-2015-1456 | 1 Fortinet | 1 Fortiauthenticator | 2026-06-17 | 4.0 MEDIUM | N/A |
| Fortinet FortiAuthenticator 3.0.0 logs the PostgreSQL usernames and passwords in cleartext, which allows remote administrators to obtain sensitive information by reading the log at debug/startup/. | |||||
| CVE-2015-1426 | 2 Puppet, Puppetlabs | 2 Facter, Facter | 2026-06-17 | 2.1 LOW | N/A |
| Puppet Labs Facter 1.6.0 through 2.4.0 allows local users to obtains sensitive Amazon EC2 IAM instance metadata by reading a fact for an Amazon EC2 node. | |||||
