| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Use-after-free vulnerability in Adobe Flash Player before 13.0.0.292 and 14.x through 18.x before 18.0.0.160 on Windows and OS X and before 11.2.202.466 on Linux, Adobe AIR before 18.0.0.144 on Windows and before 18.0.0.143 on OS X and Android, Adobe AIR SDK before 18.0.0.144 on Windows and before 18.0.0.143 on OS X, and Adobe AIR SDK & Compiler before 18.0.0.144 on Windows and before 18.0.0.143 on OS X allows attackers to execute arbitrary code via unspecified vectors, a different vulnerability than CVE-2015-3103 and CVE-2015-3106. |
| Adobe Flash Player before 13.0.0.292 and 14.x through 18.x before 18.0.0.160 on Windows and OS X and before 11.2.202.466 on Linux, Adobe AIR before 18.0.0.144 on Windows and before 18.0.0.143 on OS X and Android, Adobe AIR SDK before 18.0.0.144 on Windows and before 18.0.0.143 on OS X, and Adobe AIR SDK & Compiler before 18.0.0.144 on Windows and before 18.0.0.143 on OS X do not properly restrict discovery of memory addresses, which allows attackers to bypass the ASLR protection mechanism via unspecified vectors. |
| Adobe Flash Player before 13.0.0.302 and 14.x through 18.x before 18.0.0.203 on Windows and OS X and before 11.2.202.481 on Linux, Adobe AIR before 18.0.0.180, Adobe AIR SDK before 18.0.0.180, and Adobe AIR SDK & Compiler before 18.0.0.180 allow attackers to bypass intended access restrictions and obtain sensitive information via unspecified vectors. |
| Adobe Flash Player before 13.0.0.302 and 14.x through 18.x before 18.0.0.203 on Windows and OS X and before 11.2.202.481 on Linux, Adobe AIR before 18.0.0.180, Adobe AIR SDK before 18.0.0.180, and Adobe AIR SDK & Compiler before 18.0.0.180 allow remote attackers to bypass the Same Origin Policy via unspecified vectors, a different vulnerability than CVE-2014-0578, CVE-2015-3116, CVE-2015-3125, and CVE-2015-5116. |
| Adobe Flash Player before 13.0.0.302 and 14.x through 18.x before 18.0.0.203 on Windows and OS X and before 11.2.202.481 on Linux, Adobe AIR before 18.0.0.180, Adobe AIR SDK before 18.0.0.180, and Adobe AIR SDK & Compiler before 18.0.0.180 allow remote attackers to bypass the Same Origin Policy via unspecified vectors, a different vulnerability than CVE-2014-0578, CVE-2015-3115, CVE-2015-3125, and CVE-2015-5116. |
| The BIOS implementation on Dell Latitude, OptiPlex, Precision Mobile Workstation, and Precision Workstation Client Solutions (CS) devices with model-dependent firmware before A21 does not enforce a BIOS_CNTL locking protection mechanism upon being woken from sleep, which allows local users to conduct EFI flash attacks by leveraging console access, a similar issue to CVE-2015-3692. |
| Format string vulnerability in the up.time client in Idera Uptime Infrastructure Monitor 6.0 and 7.2 allows remote attackers to cause a denial of service (application crash) via format string specifiers. |
| Buffer overflow in the up.time client in Idera Uptime Infrastructure Monitor 7.4 might allow remote attackers to execute arbitrary code via long command input. |
| The up.time client in Idera Uptime Infrastructure Monitor through 7.6 allows remote attackers to obtain potentially sensitive version, OS, process, and event-log information via a command. |
| Sierra Wireless ALEOS before 4.4.2 on AirLink ES, GX, and LS devices has hardcoded root accounts, which makes it easier for remote attackers to obtain administrative access via a (1) SSH or (2) TELNET session. |
| Multiple stack-based buffer overflows in Medicomp MEDCIN Engine before 2.22.20153.226 might allow remote attackers to execute arbitrary code via a crafted packet on port 8190, related to (1) the SetGroupSequenceEx na_setgroupsequenceex function, (2) the FormatDate julptostr function, and (3) the UserFindingCodes addtocl function. |
| Heap-based buffer overflow in the QualifierList retrieve_qualifier_list function in Medicomp MEDCIN Engine before 2.22.20153.226 might allow remote attackers to execute arbitrary code via a long list name in a packet on port 8190. |
| The AddUserFinding add_userfinding2 function in Medicomp MEDCIN Engine before 2.22.20153.226 allows remote attackers to cause a denial of service (out-of-bounds write) or possibly have unspecified other impact via a crafted packet on port 8190. |
| Multiple stack-based buffer overflows in Medicomp MEDCIN Engine 2.22.20142.166 might allow remote attackers to execute arbitrary code via a crafted packet on port 8190, related to (1) the GetProperty info_getproperty function and (2) the GetProperty UdfCodeList function. |
| HP ArcSight SmartConnectors before 7.1.6 do not verify X.509 certificates from Logger devices, which allows man-in-the-middle attackers to spoof devices and obtain sensitive information via a crafted certificate. |
| The CWSAPI SOAP service in HP ArcSight SmartConnectors before 7.1.6 has a hardcoded password, which makes it easier for remote attackers to obtain administrative access by leveraging knowledge of this password. |
| Actiontec GT784WN modems with firmware before NCS01-1.0.13 have hardcoded credentials, which makes it easier for remote attackers to obtain root access by connecting to the web administration interface. |
| Cross-site request forgery (CSRF) vulnerability on Actiontec GT784WN modems with firmware before NCS01-1.0.13 allows remote attackers to hijack the authentication or intranet connectivity of arbitrary users. |
| Mobile Devices (aka MDI) C4 OBD-II dongles with firmware 2.x and 3.4.x, as used in Metromile Pulse and other products, store SSH private keys that are the same across different customers' installations, which makes it easier for remote attackers to obtain access by leveraging knowledge of a private key from another installation. |
| Mobile Devices (aka MDI) C4 OBD-II dongles with firmware 2.x and 3.4.x, as used in Metromile Pulse and other products, have hardcoded SSH credentials, which makes it easier for remote attackers to obtain access by leveraging knowledge of the required username and password. |