Search Results (22744 CVEs found)

CVE Vendors Products Updated CVSS v3.1
CVE-2016-4152 8 Adobe, Apple, Google and 5 more 15 Flash Player, Flash Player Desktop Runtime, Mac Os X and 12 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-4151 8 Adobe, Apple, Google and 5 more 15 Flash Player, Flash Player Desktop Runtime, Mac Os X and 12 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-4150 8 Adobe, Apple, Google and 5 more 15 Flash Player, Flash Player Desktop Runtime, Mac Os X and 12 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-4149 8 Adobe, Apple, Google and 5 more 15 Flash Player, Flash Player Desktop Runtime, Mac Os X and 12 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-4148 8 Adobe, Apple, Google and 5 more 17 Flash Player, Flash Player Desktop Runtime, Macos and 14 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-5243 1 Linux 1 Linux Kernel 2025-04-12 N/A
The tipc_nl_compat_link_dump function in net/tipc/netlink_compat.c in the Linux kernel through 4.6.3 does not properly copy a certain string, which allows local users to obtain sensitive information from kernel stack memory by reading a Netlink message.
CVE-2016-4146 8 Adobe, Apple, Google and 5 more 17 Flash Player, Flash Player Desktop Runtime, Macos and 14 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-9313 1 Linux 1 Linux Kernel 2025-04-12 7.8 High
security/keys/big_key.c in the Linux kernel before 4.8.7 mishandles unsuccessful crypto registration in conjunction with successful key-type registration, which allows local users to cause a denial of service (NULL pointer dereference and panic) or possibly have unspecified other impact via a crafted application that uses the big_key data type.
CVE-2016-6990 6 Adobe, Apple, Google and 3 more 9 Flash Player, Flash Player Desktop Runtime, Mac Os X and 6 more 2025-04-12 8.8 High
Adobe Flash Player before 18.0.0.382 and 19.x through 23.x before 23.0.0.185 on Windows and OS X and before 11.2.202.637 on Linux allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2016-4273, CVE-2016-6982, CVE-2016-6983, CVE-2016-6984, CVE-2016-6985, CVE-2016-6986, and CVE-2016-6989.
CVE-2016-4145 8 Adobe, Apple, Google and 5 more 17 Flash Player, Flash Player Desktop Runtime, Macos and 14 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-6187 1 Linux 1 Linux Kernel 2025-04-12 7.8 High
The apparmor_setprocattr function in security/apparmor/lsm.c in the Linux kernel before 4.6.5 does not validate the buffer size, which allows local users to gain privileges by triggering an AppArmor setprocattr hook.
CVE-2016-4144 8 Adobe, Apple, Google and 5 more 17 Flash Player, Flash Player Desktop Runtime, Macos and 14 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-5829 5 Canonical, Debian, Linux and 2 more 6 Ubuntu Linux, Debian Linux, Linux Kernel and 3 more 2025-04-12 7.8 High
Multiple heap-based buffer overflows in the hiddev_ioctl_usage function in drivers/hid/usbhid/hiddev.c in the Linux kernel through 4.6.3 allow local users to cause a denial of service or possibly have unspecified other impact via a crafted (1) HIDIOCGUSAGES or (2) HIDIOCSUSAGES ioctl call.
CVE-2016-6989 6 Adobe, Apple, Google and 3 more 9 Flash Player, Flash Player Desktop Runtime, Mac Os X and 6 more 2025-04-12 8.8 High
Adobe Flash Player before 18.0.0.382 and 19.x through 23.x before 23.0.0.185 on Windows and OS X and before 11.2.202.637 on Linux allows attackers to execute arbitrary code or cause a denial of service (memory corruption) via unspecified vectors, a different vulnerability than CVE-2016-4273, CVE-2016-6982, CVE-2016-6983, CVE-2016-6984, CVE-2016-6985, CVE-2016-6986, and CVE-2016-6990.
CVE-2016-7873 6 Adobe, Apple, Google and 3 more 9 Flash Player, Flash Player Desktop Runtime, Mac Os X and 6 more 2025-04-12 8.8 High
Adobe Flash Player versions 23.0.0.207 and earlier, 11.2.202.644 and earlier have an exploitable memory corruption vulnerability in the PSDK class related to ad policy functionality method. Successful exploitation could lead to arbitrary code execution.
CVE-2016-5828 5 Canonical, Debian, Linux and 2 more 5 Ubuntu Linux, Debian Linux, Linux Kernel and 2 more 2025-04-12 7.8 High
The start_thread function in arch/powerpc/kernel/process.c in the Linux kernel through 4.6.3 on powerpc platforms mishandles transactional state, which allows local users to cause a denial of service (invalid process state or TM Bad Thing exception, and system crash) or possibly have unspecified other impact by starting and suspending a transaction before an exec system call.
CVE-2016-6987 6 Adobe, Apple, Google and 3 more 9 Flash Player, Flash Player Desktop Runtime, Mac Os X and 6 more 2025-04-12 8.8 High
Use-after-free vulnerability in Adobe Flash Player before 18.0.0.382 and 19.x through 23.x before 23.0.0.185 on Windows and OS X and before 11.2.202.637 on Linux allows attackers to execute arbitrary code via unspecified vectors, a different vulnerability than CVE-2016-6981.
CVE-2016-4143 8 Adobe, Apple, Google and 5 more 17 Flash Player, Flash Player Desktop Runtime, Macos and 14 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-4142 8 Adobe, Apple, Google and 5 more 17 Flash Player, Flash Player Desktop Runtime, Macos and 14 more 2025-04-12 8.8 High
Unspecified vulnerability in Adobe Flash Player 21.0.0.242 and earlier, as used in the Adobe Flash libraries in Microsoft Internet Explorer 10 and 11 and Microsoft Edge, has unknown impact and attack vectors, a different vulnerability than other CVEs listed in MS16-083.
CVE-2016-7874 6 Adobe, Apple, Google and 3 more 9 Flash Player, Flash Player Desktop Runtime, Mac Os X and 6 more 2025-04-12 8.8 High
Adobe Flash Player versions 23.0.0.207 and earlier, 11.2.202.644 and earlier have an exploitable memory corruption vulnerability in the NetConnection class when handling the proxy types. Successful exploitation could lead to arbitrary code execution.