Filtered by vendor T-mobile
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Total
13 CVE
CVE | Vendors | Products | Updated | CVSS v3.1 |
---|---|---|---|---|
CVE-2012-2980 | 5 Att, Htc, Samsung and 2 more | 9 Status, Chacha, Desire and 6 more | 2024-09-16 | N/A |
The Samsung and HTC onTouchEvent method implementation for Android on the T-Mobile myTouch 3G Slide, HTC Merge, Sprint EVO Shift 4G, HTC ChaCha, AT&T Status, HTC Desire Z, T-Mobile G2, T-Mobile myTouch 4G Slide, and Samsung Galaxy S stores touch coordinates in the dmesg buffer, which allows remote attackers to obtain sensitive information via a crafted application, as demonstrated by PIN numbers, telephone numbers, and text messages. | ||||
CVE-2007-1823 | 1 T-mobile | 1 Voice Mail Systems | 2024-08-07 | N/A |
T-Mobile voice mail systems allow remote attackers to retrieve or remove messages, or reconfigure mailboxes, by spoofing Calling Number Identification (CNID, aka Caller ID). | ||||
CVE-2011-2716 | 3 Busybox, Redhat, T-mobile | 3 Busybox, Enterprise Linux, Tm-ac1900 | 2024-08-06 | N/A |
The DHCP client (udhcpc) in BusyBox before 1.20.0 allows remote DHCP servers to execute arbitrary commands via shell metacharacters in the (1) HOST_NAME, (2) DOMAIN_NAME, (3) NIS_DOMAIN, and (4) TFTP_SERVER_NAME host name options. | ||||
CVE-2013-5948 | 2 Asus, T-mobile | 3 Rt-ac68u, Rt-ac68u Firmware, Tm-ac1900 | 2024-08-06 | N/A |
The Network Analysis tab (Main_Analysis_Content.asp) in the ASUS RT-AC68U and other RT series routers with firmware before 3.0.0.4.374.5047 allows remote authenticated users to execute arbitrary commands via shell metacharacters in the Target field (destIP parameter). | ||||
CVE-2013-1813 | 3 Busybox, Redhat, T-mobile | 3 Busybox, Enterprise Linux, Tm-ac1900 | 2024-08-06 | N/A |
util-linux/mdev.c in BusyBox before 1.21.0 uses 0777 permissions for parent directories when creating nested directories under /dev/, which allows local users to have unknown impact and attack vectors. | ||||
CVE-2014-9583 | 2 Asus, T-mobile | 4 Rt-ac66u, Rt-n66u, Wrt Firmware and 1 more | 2024-08-06 | N/A |
common.c in infosvr in ASUS WRT firmware 3.0.0.4.376_1071, 3.0.0.376.2524-g0013f52, and other versions, as used in RT-AC66U, RT-N66U, and other routers, does not properly check the MAC address for a request, which allows remote attackers to bypass authentication and execute arbitrary commands via a NET_CMD_ID_MANU_CMD packet to UDP port 9999. NOTE: this issue was incorrectly mapped to CVE-2014-10000, but that ID is invalid due to its use as an example of the 2014 CVE ID syntax change. | ||||
CVE-2014-6733 | 1 T-mobile | 1 My T-mobile | 2024-08-06 | N/A |
The My T-Mobile (aka at.tmobile.android.myt) application @7F0C0030 for Android does not verify X.509 certificates from SSL servers, which allows man-in-the-middle attackers to spoof servers and obtain sensitive information via a crafted certificate. | ||||
CVE-2014-2925 | 2 Asus, T-mobile | 3 Rt-ac68u, Rt-ac68u Firmware, Tm-ac1900 | 2024-08-06 | N/A |
Cross-site scripting (XSS) vulnerability in Advanced_Wireless_Content.asp in ASUS RT-AC68U and other RT series routers with firmware before 3.0.0.4.374.5047 allows remote attackers to inject arbitrary web script or HTML via the current_page parameter to apply.cgi. | ||||
CVE-2014-2719 | 2 Asus, T-mobile | 10 Rt-ac66u Firmware, Rt-ac68u, Rt-ac68u Firmware and 7 more | 2024-08-06 | N/A |
Advanced_System_Content.asp in the ASUS RT series routers with firmware before 3.0.0.4.374.5517, when an administrator session is active, allows remote authenticated users to obtain the administrator user name and password by reading the source code. | ||||
CVE-2014-2718 | 2 Asus, T-mobile | 10 Rt-ac56r, Rt-ac66r, Rt-ac66u and 7 more | 2024-08-06 | N/A |
ASUS RT-AC68U, RT-AC66R, RT-AC66U, RT-AC56R, RT-AC56U, RT-N66R, RT-N66U, RT-N56R, RT-N56U, and possibly other RT-series routers before firmware 3.0.0.4.376.x do not verify the integrity of firmware (1) update information or (2) downloaded updates, which allows man-in-the-middle (MITM) attackers to execute arbitrary code via a crafted image. | ||||
CVE-2018-14990 | 2 Coolpad, T-mobile | 6 Defiant, Defiant Firmware, Revvl Plus and 3 more | 2024-08-05 | N/A |
The Coolpad Defiant device with a build fingerprint of Coolpad/cp3632a/cp3632a:7.1.1/NMF26F/099480857:user/release-keys, the ZTE ZMAX Pro with a build fingerprint of ZTE/P895T20/urd:6.0.1/MMB29M/20170418.114928:user/release-keys, and the T-Mobile Revvl Plus with a build fingerprint of Coolpad/alchemy/alchemy:7.1.1/143.14.171129.3701A-TMO/buildf_nj_02-206:user/release-keys all contain a vulnerable, pre-installed Rich Communication Services (RCS) app. These devices contain an that app has a package name of com.suntek.mway.rcs.app.service (versionCode=1, versionName=RCS_sdk_M_native_20161008_01; versionCode=1, versionName=RCS_sdk_M_native_20170406_01) with a broadcast receiver app component named com.suntek.mway.rcs.app.test.TestReceiver and a refactored version of the app with a package name of com.rcs.gsma.na.sdk (versionCode=1, versionName=RCS_SDK_20170804_01) with a broadcast receiver app component named com.rcs.gsma.na.test.TestReceiver allow any app co-located on the device to programmatically send text messages where the number and body of the text message is controlled by the attacker due to an exported broadcast receiver app component. This app cannot be disabled by the user and the attack can be performed by a zero-permission app. A separate vulnerability in the app allows a zero-permission app to programmatically delete text messages, so the sent text messages can be removed to not alert the user. | ||||
CVE-2018-15003 | 2 Coolpad, T-mobile | 4 Defiant, Defiant Firmware, Revvl Plus and 1 more | 2024-08-05 | N/A |
The Coolpad Defiant (Coolpad/cp3632a/cp3632a:7.1.1/NMF26F/099480857:user/release-keys) and the T-Mobile Revvl Plus (Coolpad/alchemy/alchemy:7.1.1/143.14.171129.3701A-TMO/buildf_nj_02-206:user/release-keys) Android devices contain a pre-installed platform app with a package name of com.qualcomm.qti.telephony.extcarrierpack (versionCode=25, versionName=7.1.1) containing an exported broadcast receiver app component named com.qualcomm.qti.telephony.extcarrierpack.UiccReceiver that allows any app co-located on the device to programmatically perform a factory reset. In addition, the app initiating the factory reset does not require any permissions. A factory reset will remove all user data and apps from the device. This will result in the loss of any data that have not been backed up or synced externally. The capability to perform a factory reset is not directly available to third-party apps (those that the user installs themselves with the exception of enabled Mobile Device Management (MDM) apps), although this capability can be obtained by leveraging an unprotected app component of a pre-installed platform app. | ||||
CVE-2018-14991 | 2 Coolpad, T-mobile | 6 Defiant, Defiant Firmware, Revvl Plus and 3 more | 2024-08-05 | N/A |
The Coolpad Defiant device with a build fingerprint of Coolpad/cp3632a/cp3632a:7.1.1/NMF26F/099480857:user/release-keys, the ZTE ZMAX Pro with a build fingerprint of ZTE/P895T20/urd:6.0.1/MMB29M/20170418.114928:user/release-keys, and the T-Mobile Revvl Plus with a build fingerprint of Coolpad/alchemy/alchemy:7.1.1/143.14.171129.3701A-TMO/buildf_nj_02-206:user/release-keys all contain a vulnerable, pre-installed Rich Communication Services (RCS) app. These devices contain an that app has a package name of com.suntek.mway.rcs.app.service (versionCode=1, versionName=RCS_sdk_M_native_20161008_01; versionCode=1, versionName=RCS_sdk_M_native_20170406_01) with an exported content provider named com.suntek.mway.rcs.app.service.provider.message.MessageProvider and a refactored version of the app with a package name of com.rcs.gsma.na.sdk (versionCode=1, versionName=RCS_SDK_20170804_01) with a content provider named com.rcs.gsma.na.provider.message.MessageProvider allow any app co-located on the device to read, write, insert, and modify the user's text messages. This is enabled by an exported content provider app component that serves as a wrapper to the official content provider that contains the user's text messages. This app cannot be disabled by the user and the attack can be performed by a zero-permission app. |
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