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CVE archive

January 2016

Browse CVE records published in January 2016, with severity, affected products, CWE, KEV, and source-backed vulnerability context.

Showing 50 of 1112 matching CVEs · Page 3 of 23.

Unknown · CVSS Not scored

CVE-2016-10739: In the GNU C Library (aka glibc or libc6) through 2.28, the getaddrinfo function would successfully parse a...

In the GNU C Library (aka glibc or libc6) through 2.28, the getaddrinfo function would successfully parse a string that contained an IPv4 address followed by whitespace and arbitrary characters, which could lead applications to incorrectly assume that it had parsed a valid string, without the possibility of embedded HTTP headers or other potentially dangerous substrings.

Published Jan 21, 2019 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10176: The NETGEAR WNR2000v5 router allows an administrator to perform sensitive actions by invoking the apply.cgi...

The NETGEAR WNR2000v5 router allows an administrator to perform sensitive actions by invoking the apply.cgi URL on the web server of the device. This special URL is handled by the embedded web server (uhttpd) and processed accordingly. The web server also contains another URL, apply_noauth.cgi, that allows an unauthenticated user to perform sensitive actions on the device. This functionality can be exploited to change the router settings (such as the answers to the password-recovery questions) and achieve remote code execution.

Published Jan 30, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10137: An issue was discovered on BLU R1 HD devices with Shanghai Adups software.

An issue was discovered on BLU R1 HD devices with Shanghai Adups software. The content provider named com.adups.fota.sysoper.provider.InfoProvider in the app with a package name of com.adups.fota.sysoper allows any app on the device to read, write, and delete files as the system user. In the com.adups.fota.sysoper app's AndroidManifest.xml file, it sets the android:sharedUserId attribute to a value of android.uid.system which makes it execute as the system user, which is a very privileged user on the device. This allows a third-party app to read, write, and delete the user's sent and received text messages and call log. This allows a third-party app to obtain PII from the user without permission to do so.

Published Jan 13, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10162: The php_wddx_pop_element function in ext/wddx/wddx.c in PHP 7.0.x before 7.0.15 and 7.1.x before 7.1.1 allo...

The php_wddx_pop_element function in ext/wddx/wddx.c in PHP 7.0.x before 7.0.15 and 7.1.x before 7.1.1 allows remote attackers to cause a denial of service (NULL pointer dereference and application crash) via an inapplicable class name in a wddxPacket XML document, leading to mishandling in a wddx_deserialize call.

Published Jan 24, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10157: Akamai NetSession 1.9.3.1 is vulnerable to DLL Hijacking: it tries to load CSUNSAPI.dll without supplying t...

Akamai NetSession 1.9.3.1 is vulnerable to DLL Hijacking: it tries to load CSUNSAPI.dll without supplying the complete path. The issue is aggravated because the mentioned DLL is missing from the installation, thus making it possible to hijack the DLL and subsequently inject code within the Akamai NetSession process space.

Published Jan 23, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10148: The wp_ajax_update_plugin function in wp-admin/includes/ajax-actions.php in WordPress before 4.6 makes a ge...

The wp_ajax_update_plugin function in wp-admin/includes/ajax-actions.php in WordPress before 4.6 makes a get_plugin_data call before checking the update_plugins capability, which allows remote authenticated users to bypass intended read-access restrictions via the plugin parameter to wp-admin/admin-ajax.php, a related issue to CVE-2016-6896.

Published Jan 18, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10141: An integer overflow vulnerability was observed in the regemit function in regexp.c in Artifex Software, Inc.

An integer overflow vulnerability was observed in the regemit function in regexp.c in Artifex Software, Inc. MuJS before fa3d30fd18c348bb4b1f3858fb860f4fcd4b2045. The attack requires a regular expression with nested repetition. A successful exploitation of this issue can lead to code execution or a denial of service (buffer overflow) condition.

Published Jan 13, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10142: An issue was discovered in the IPv6 protocol specification, related to ICMP Packet Too Big (PTB) messages.

An issue was discovered in the IPv6 protocol specification, related to ICMP Packet Too Big (PTB) messages. (The scope of this CVE is all affected IPv6 implementations from all vendors.) The security implications of IP fragmentation have been discussed at length in [RFC6274] and [RFC7739]. An attacker can leverage the generation of IPv6 atomic fragments to trigger the use of fragmentation in an arbitrary IPv6 flow (in scenarios in which actual fragmentation of packets is not needed) and can subsequently perform any type of fragmentation-based attack against legacy IPv6 nodes that do not implement [RFC6946]. That is, employing fragmentation where not actually needed allows for fragmentation-based attack vectors to be employed, unnecessarily. We note that, unfortunately, even nodes that already implement [RFC6946] can be subject to DoS attacks as a result of the generation of IPv6 atomic fragments. Let us assume that Host A is communicating with Host B and that, as a result of the widespread dropping of IPv6 packets that contain extension headers (including fragmentation) [RFC7872], some intermediate node filters fragments between Host B and Host A. If an attacker sends a forged ICMPv6 PTB error message to Host B, reporting an MTU smaller than 1280, this will trigger the generation of IPv6 atomic fragments from that moment on (as required by [RFC2460]). When Host B starts sending IPv6 atomic fragments (in response to the received ICMPv6 PTB error message), these packets will be dropped, since we previously noted that IPv6 packets with extension headers were being dropped between Host B and Host A. Thus, this situation will result in a DoS scenario. Another possible scenario is that in which two BGP peers are employing IPv6 transport and they implement Access Control Lists (ACLs) to drop IPv6 fragments (to avoid control-plane attacks). If the aforementioned BGP peers drop IPv6 fragments but still honor received ICMPv6 PTB error messages, an attacker could easily attack the corresponding peering session by simply sending an ICMPv6 PTB message with a reported MTU smaller than 1280 bytes. Once the attack packet has been sent, the aforementioned routers will themselves be the ones dropping their own traffic.

Published Jan 14, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10175: The NETGEAR WNR2000v5 router leaks its serial number when performing a request to the /BRS_netgear_success....

The NETGEAR WNR2000v5 router leaks its serial number when performing a request to the /BRS_netgear_success.html URI. This serial number allows a user to obtain the administrator username and password, when used in combination with the CVE-2016-10176 vulnerability that allows resetting the answers to the password-recovery questions.

Published Jan 30, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10139: An issue was discovered on BLU R1 HD devices with Shanghai Adups software.

An issue was discovered on BLU R1 HD devices with Shanghai Adups software. The two package names involved in the exfiltration are com.adups.fota and com.adups.fota.sysoper. In the com.adups.fota.sysoper app's AndroidManifest.xml file, it sets the android:sharedUserId attribute to a value of android.uid.system which makes it execute as the system user, which is a very privileged user on the device. Therefore, the app executing as the system user has been granted a number of powerful permissions even though they are not present in the com.adups.fota.sysoper app's AndroidManifest.xml file. This app provides the com.adups.fota app access to the user's call log, text messages, and various device identifiers through the com.adups.fota.sysoper.provider.InfoProvider component. The com.adups.fota app uses timestamps when it runs and is eligible to exfiltrate the user's PII every 72 hours. If 72 hours have passed since the value of the timestamp, then the exfiltration will be triggered by the user plugging in the device to charge or when they leave or enter a wireless network. The exfiltration occurs in the background without any user interaction.

Published Jan 13, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10135: An issue was discovered on LG devices using the MTK chipset with L(5.0/5.1), M(6.0/6.0.1), and N(7.0) softw...

An issue was discovered on LG devices using the MTK chipset with L(5.0/5.1), M(6.0/6.0.1), and N(7.0) software, and RCA Voyager Tablet, BLU Advance 5.0, and BLU R1 HD devices. The MTKLogger app with a package name of com.mediatek.mtklogger has application components that are accessible to any application that resides on the device. Namely, the com.mediatek.mtklogger.framework.LogReceiver and com.mediatek.mtklogger.framework.MTKLoggerService application components are exported since they contain an intent filter, are not protected by a custom permission, and do not explicitly set the android:exported attribute to false. Therefore, these components are exported by default and are thus accessible to any third party application by using android.content.Intent object for communication. These application components can be used to start and stop the logs using Intent objects with embedded data. The available logs are the GPS log, modem log, network log, and mobile log. The base directory that contains the directories for the 4 types of logs is /sdcard/mtklog which makes them accessible to apps that require the READ_EXTERNAL_STORAGE permission. The GPS log contains the GPS coordinates of the user as well as a timestamp for the coordinates. The modem log contains AT commands and their parameters which allow the user's outgoing and incoming calls and text messages to be obtained. The network log is a tcpdump network capture. The mobile log contains the Android log, which is not available to third-party apps as of Android 4.1. The LG ID is LVE-SMP-160019.

Published Jan 13, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10124: An issue was discovered in Linux Containers (LXC) before 2016-02-22.

An issue was discovered in Linux Containers (LXC) before 2016-02-22. When executing a program via lxc-attach, the nonpriv session can escape to the parent session by using the TIOCSTI ioctl to push characters into the terminal's input buffer, allowing an attacker to escape the container.

Published Jan 9, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10140: Information disclosure and authentication bypass vulnerability exists in the Apache HTTP Server configurati...

Information disclosure and authentication bypass vulnerability exists in the Apache HTTP Server configuration bundled with ZoneMinder v1.30 and v1.29, which allows a remote unauthenticated attacker to browse all directories in the web root, e.g., a remote unauthenticated attacker can view all CCTV images on the server via the /events URI.

Published Jan 13, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10126: Splunk Web in Splunk Enterprise 5.0.x before 5.0.17, 6.0.x before 6.0.13, 6.1.x before 6.1.12, 6.2.x before...

Splunk Web in Splunk Enterprise 5.0.x before 5.0.17, 6.0.x before 6.0.13, 6.1.x before 6.1.12, 6.2.x before 6.2.12, 6.3.x before 6.3.8, and 6.4.x before 6.4.4 allows remote attackers to conduct HTTP request injection attacks and obtain sensitive REST API authentication-token information via unspecified vectors, aka SPL-128840.

Published Jan 10, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10136: An issue was discovered on BLU R1 HD devices with Shanghai Adups software.

An issue was discovered on BLU R1 HD devices with Shanghai Adups software. The content provider named com.adups.fota.sysoper.provider.InfoProvider in the app with a package name of com.adups.fota.sysoper allows any app on the device to read, write, and delete files as the system user. In the com.adups.fota.sysoper app's AndroidManifest.xml file, it sets the android:sharedUserId attribute to a value of android.uid.system which makes it execute as the system user, which is a very privileged user on the device. This allows a third-party app to read, write, and delete files owned by the system user. The third-party app can modify the /data/system/users/0/settings_secure.xml file to add an app as a notification listener to be able to receive the text of notifications as they are received on the device. This also allows the /data/system/users/0/accounts.db to be read which contains authentication tokens for various accounts on the device. The third-party app can obtain privileged information and also modify files to obtain more privileges on the device.

Published Jan 13, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10138: An issue was discovered on BLU Advance 5.0 and BLU R1 HD devices with Shanghai Adups software.

An issue was discovered on BLU Advance 5.0 and BLU R1 HD devices with Shanghai Adups software. The com.adups.fota.sysoper app is installed as a system app and cannot be disabled by the user. In the com.adups.fota.sysoper app's AndroidManifest.xml file, it sets the android:sharedUserId attribute to a value of android.uid.system which makes it execute as the system user, which is a very privileged user on the device. The app has an exported broadcast receiver named com.adups.fota.sysoper.WriteCommandReceiver which any app on the device can interact with. Therefore, any app can send a command embedded in an intent which will be executed by the WriteCommandReceiver component which is executing as the system user. The third-party app, utilizing the WriteCommandReceiver, can perform the following actions: call a phone number, factory reset the device, take pictures of the screen, record the screen in a video, install applications, inject events, obtain the Android log, and others. In addition, the com.adups.fota.sysoper.TaskService component will make a request to a URL of http://rebootv5.adsunflower.com/ps/fetch.do where the commands in the String array with a key of sf in the JSON Object sent back by the server will be executed as the system user. Since the connection is made via HTTP, it is vulnerable to a MITM attack.

Published Jan 13, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10115: NETGEAR Arlo base stations with firmware 1.7.5_6178 and earlier, Arlo Q devices with firmware 1.8.0_5551 an...

NETGEAR Arlo base stations with firmware 1.7.5_6178 and earlier, Arlo Q devices with firmware 1.8.0_5551 and earlier, and Arlo Q Plus devices with firmware 1.8.1_6094 and earlier have a default password of 12345678, which makes it easier for remote attackers to obtain access after a factory reset or in a factory configuration.

Published Jan 4, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10087: The png_set_text_2 function in libpng 0.71 before 1.0.67, 1.2.x before 1.2.57, 1.4.x before 1.4.20, 1.5.x b...

The png_set_text_2 function in libpng 0.71 before 1.0.67, 1.2.x before 1.2.57, 1.4.x before 1.4.20, 1.5.x before 1.5.28, and 1.6.x before 1.6.27 allows context-dependent attackers to cause a NULL pointer dereference vectors involving loading a text chunk into a png structure, removing the text, and then adding another text chunk to the structure.

Published Jan 30, 2017 · Updated Aug 6, 2024

Unknown · CVSS Not scored

CVE-2016-10116: NETGEAR Arlo base stations with firmware 1.7.5_6178 and earlier, Arlo Q devices with firmware 1.8.0_5551 an...

NETGEAR Arlo base stations with firmware 1.7.5_6178 and earlier, Arlo Q devices with firmware 1.8.0_5551 and earlier, and Arlo Q Plus devices with firmware 1.8.1_6094 and earlier use a pattern of adjective, noun, and three-digit number for the customized password, which makes it easier for remote attackers to obtain access via a dictionary attack.

Published Jan 4, 2017 · Updated Aug 6, 2024