| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| A Server Side Request Forgery (SSRF) vulnerability could lead to remote code execution for authenticated administrators. This issue was introduced in version 2.2.0 of Hipchat Server and version 3.0.0 of Hipchat Data Center. Versions of Hipchat Server starting with 2.2.0 and before 2.2.6 are affected by this vulnerability. Versions of Hipchat Data Center starting with 3.0.0 and before 3.1.0 are affected. |
| A Remote Code Execution vulnerability has been found in the Horde_Image library when using the "Im" backend that utilizes ImageMagick's "convert" utility. It's not exploitable through any Horde application, because the code path to the vulnerability is not used by any Horde code. Custom applications using the Horde_Image library might be affected. This vulnerability affects all versions of Horde_Image from 2.0.0 to 2.5.1, and is fixed in 2.5.2. The problem is missing input validation of the index field in _raw() during construction of an ImageMagick command line. |
| SQL Injection in Trend Micro Control Manager 6.0 causes Remote Code Execution when executing opcode 0x6b1b due to lack of proper user input validation in cmdHandlerStatusMonitor.dll. Formerly ZDI-CAN-4545. |
| The baseband modules of Mate 10, Mate 10 Pro, Mate 9, Mate 9 Pro Huawei smart phones with software before ALP-AL00 8.0.0.120(SP2C00), before BLA-AL00 8.0.0.120(SP2C00), before MHA-AL00B 8.0.0.334(C00), and before LON-AL00B 8.0.0.334(C00) have a stack overflow vulnerability due to the lack of parameter validation. An attacker could send malicious packets to the smart phones within radio range by special wireless device, which leads stack overflow when the baseband module handles these packets. The attacker could exploit this vulnerability to perform a denial of service attack or remote code execution in baseband module. |
| The Microsoft Windows Domain Name System (DNS) DNSAPI.dll on Microsoft Windows 8.1, Windows Server 2012 R2, Windows RT 8.1, Windows 10 Gold, 1511, 1607, and 1703, and Windows Server 2016 allows a remote code execution vulnerability when it fails to properly handle DNS responses, aka "Windows DNSAPI Remote Code Execution Vulnerability". |
| Previous versions of Apache Flex BlazeDS (4.7.2 and earlier) did not restrict which types were allowed for AMF(X) object deserialization by default. During the deserialization process code is executed that for several known types has undesired side-effects. Other, unknown types may also exhibit such behaviors. One vector in the Java standard library exists that allows an attacker to trigger possibly further exploitable Java deserialization of untrusted data. Other known vectors in third party libraries can be used to trigger remote code execution. |
| Remote Code Execution is possible in Code42 CrashPlan 5.4.x via the org.apache.commons.ssl.rmi.DateRMI Java class, because (upon instantiation) it creates an RMI server that listens on a TCP port and deserializes objects sent by TCP clients. |
| A remote code execution vulnerability in the Android media framework. Product: Android. Versions: 7.0, 7.1.1, 7.1.2. Android ID: A-36588422. |
| Csrf.cs in NancyFX Nancy before 1.4.4 and 2.x before 2.0-dangermouse has Remote Code Execution via Deserialization of JSON data in a CSRF Cookie. |
| An issue was discovered in Hanwha Techwin Smart Security Manager Versions 1.5 and prior. Multiple Path Traversal vulnerabilities have been identified. The flaws exist within the ActiveMQ Broker service that is installed as part of the product. By issuing specific HTTP requests, if a user visits a malicious page, an attacker can gain access to arbitrary files on the server. Smart Security Manager Versions 1.4 and prior to 1.31 are affected by these vulnerabilities. These vulnerabilities can allow for remote code execution. |
| A remote code execution vulnerability in the Android media framework. Product: Android. Versions: 7.0, 7.1.1, 7.1.2. Android ID: A-36576151. |
| SQL Injection in Trend Micro Control Manager 6.0 causes Remote Code Execution when executing opcode 0x3b21 due to lack of proper user input validation in mdHandlerLicenseManager.dll. Formerly ZDI-CAN-4561. |
| An exploitable heap-based buffer overflow exists in the handling of TIFF images in LibTIFF's TIFF2PDF tool. A crafted TIFF document can lead to a heap-based buffer overflow resulting in remote code execution. Vulnerability can be triggered via a saved TIFF file delivered by other means. |
| import.php (aka the Phonebook import feature) in PlaySMS 1.4 allows remote code execution via vectors involving the User-Agent HTTP header and PHP code in the name of a file. |
| An Improper Authentication issue was discovered in Advantech WebAccess versions prior to V8.2_20170817. Specially crafted requests allow a possible authentication bypass that could allow remote code execution. |
| A Stack-based Buffer Overflow issue was discovered in GE CIMPLICITY Versions 9.0 and prior. A function reads a packet to indicate the next packet length. The next packet length is not verified, allowing a buffer overwrite that could lead to an arbitrary remote code execution. |
| A remote code execution vulnerability in the Android media framework. Product: Android. Versions: 6.0, 6.0.1, 7.0, 7.1.1, 7.1.2. Android ID: A-36035074. |
| The Lenovo Service Framework Android application uses a set of nonsecure credentials when performing integrity verification of downloaded applications and/or data. This exposes the application to man-in-the-middle attacks leading to possible remote code execution. |
| A remote code execution vulnerability in the Android media framework. Product: Android. Versions: 5.0.2, 5.1.1, 6.0, 6.0.1, 7.0, 7.1.1, 7.1.2. Android ID: A-34896431. |
| Remote code execution in the Venkman script debugger in Mozilla Firefox before 2.0.0.8. |