| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| The Serf RA layer in Apache Subversion 1.4.0 through 1.7.x before 1.7.18 and 1.8.x before 1.8.10 does not properly handle wildcards in the Common Name (CN) or subjectAltName field of the X.509 certificate, which allows man-in-the-middle attackers to spoof servers via a crafted certificate. |
| snmplib/mib.c in net-snmp 5.7.0 and earlier, when the -OQ option is used, allows remote attackers to cause a denial of service (snmptrapd crash) via a crafted SNMP trap message, which triggers a conversion to the variable type designated in the MIB file, as demonstrated by a NULL type in an ifMtu trap message. |
| cURL and libcurl before 7.38.0 does not properly handle IP addresses in cookie domain names, which allows remote attackers to set cookies for or send arbitrary cookies to certain sites, as demonstrated by a site at 192.168.0.1 setting cookies for a site at 127.168.0.1. |
| parser.c in libxml2 before 2.9.2 does not properly prevent entity expansion even when entity substitution has been disabled, which allows context-dependent attackers to cause a denial of service (CPU consumption) via a crafted XML document containing a large number of nested entity references, a variant of the "billion laughs" attack. |
| Buffer overflow in QT Media Foundation in Apple OS X before 10.9.5 allows remote attackers to execute arbitrary code or cause a denial of service (application crash) via a crafted MIDI file. |
| Address Book in Apple iOS before 8 relies on the hardware UID for its encryption key, which makes it easier for physically proximate attackers to obtain sensitive information by obtaining this UID. |
| Race condition in iMessage in Apple iOS before 8 allows attackers to obtain sensitive information by leveraging the presence of an attachment after the deletion of its parent (1) iMessage or (2) MMS. |
| Apple iOS before 8 enables Bluetooth during all upgrade actions, which makes it easier for remote attackers to bypass intended access restrictions via a Bluetooth session. |
| Apple iOS before 8 does not follow the intended configuration setting for text-message preview on the lock screen, which allows physically proximate attackers to obtain sensitive information by reading this screen. |
| Accounts Framework in Apple iOS before 8 and Apple TV before 7 allows attackers to obtain sensitive information by reading log data that was not intended to be present in a log. |
| The Home & Lock Screen subsystem in Apple iOS before 8 does not properly restrict the private API for app prominence, which allows attackers to determine the frontmost app by leveraging access to a crafted background app. |
| An unspecified IOHIDFamily function in Apple iOS before 8 and Apple TV before 7 lacks proper bounds checking to prevent reading of kernel pointers, which allows attackers to bypass the ASLR protection mechanism via a crafted application. |
| The IOHIDFamily kernel extension in Apple iOS before 8 and Apple TV before 7 lacks proper bounds checking on write operations, which allows attackers to execute arbitrary code in the kernel's context via a crafted application. |
| Libnotify in Apple iOS before 8 and Apple TV before 7 lacks proper bounds checking on write operations, which allows attackers to execute arbitrary code as root via a crafted application. |
| The Assets subsystem in Apple iOS before 8 and Apple TV before 7 allows man-in-the-middle attackers to spoof a device's update status via a crafted Last-Modified HTTP response header. |
| Directory traversal vulnerability in the App Installation feature in Apple iOS before 8 allows local users to install unverified apps by triggering code-signature validation of an unintended bundle. |
| Race condition in the App Installation feature in Apple iOS before 8 allows local users to gain privileges and install unverified apps by leveraging /tmp write access. |
| AFP File Server in Apple OS X before 10.10 allows remote attackers to discover the network addresses of all interfaces via an unspecified command to one interface. |
| An unspecified integrated graphics driver routine in the Intel Graphics Driver subsystem in Apple OS X before 10.9.5 does not properly validate calls, which allows attackers to execute arbitrary code in a privileged context via a crafted application, a different vulnerability than CVE-2014-4394, CVE-2014-4395, CVE-2014-4397, CVE-2014-4398, CVE-2014-4399, CVE-2014-4400, CVE-2014-4401, and CVE-2014-4416. |
| An unspecified integrated graphics driver routine in the Intel Graphics Driver subsystem in Apple OS X before 10.9.5 does not properly validate calls, which allows attackers to execute arbitrary code in a privileged context via a crafted application, a different vulnerability than CVE-2014-4394, CVE-2014-4395, CVE-2014-4396, CVE-2014-4398, CVE-2014-4399, CVE-2014-4400, CVE-2014-4401, and CVE-2014-4416. |