93 matches found
CVE-2019-18282
The flowdissector feature in the Linux kernel 4.3 through 5.x before 5.3.10 has a device tracking vulnerability, aka CID-55667441c84f. This occurs because the auto flowlabel of a UDP IPv6 packet relies on a 32-bit hashrnd value as a secret, and because jhash instead of siphash is used. The hashrn...
CVE-2019-18282
The flowdissector feature in the Linux kernel 4.3 through 5.x before 5.3.10 has a device tracking vulnerability, aka CID-55667441c84f. This occurs because the auto flowlabel of a UDP IPv6 packet relies on a 32-bit hashrnd value as a secret, and because jhash instead of siphash is used. The hashrn...
DEBIAN-CVE-2019-18282
The flowdissector feature in the Linux kernel 4.3 through 5.x before 5.3.10 has a device tracking vulnerability, aka CID-55667441c84f. This occurs because the auto flowlabel of a UDP IPv6 packet relies on a 32-bit hashrnd value as a secret, and because jhash instead of siphash is used. The hashrn...
CVE-2019-18282
The flowdissector feature in the Linux kernel 4.3 through 5.x before 5.3.10 has a device tracking vulnerability, aka CID-55667441c84f. This occurs because the auto flowlabel of a UDP IPv6 packet relies on a 32-bit hashrnd value as a secret, and because jhash instead of siphash is used. The hashrn...
Code injection
The flowdissector feature in the Linux kernel 4.3 through 5.x before 5.3.10 has a device tracking vulnerability, aka CID-55667441c84f. This occurs because the auto flowlabel of a UDP IPv6 packet relies on a 32-bit hashrnd value as a secret, and because jhash instead of siphash is used. The hashrn...
CVE-2019-18282
The flowdissector feature in the Linux kernel 4.3 through 5.x before 5.3.10 has a device tracking vulnerability, aka CID-55667441c84f. This occurs because the auto flowlabel of a UDP IPv6 packet relies on a 32-bit hashrnd value as a secret, and because jhash instead of siphash is used. The hashrn...
CVE-2019-18282
CVE-2019-18282 affects the Linux kernel flow_dissector (Linux 4.3–5.x up to 5.3.10). The root cause is that UDP/IPv6 flow labels rely on a 32-bit hashrnd secret, with jhash used instead of siphash, allowing an attacker to infer the secret and track flows. Affected code includes net/core/flow_diss...
CVE-2019-18282
The flowdissector feature in the Linux kernel 4.3 through 5.x before 5.3.10 has a device tracking vulnerability, aka CID-55667441c84f. This occurs because the auto flowlabel of a UDP IPv6 packet relies on a 32-bit hashrnd value as a secret, and because jhash instead of siphash is used. The hashrn...
Remote Device Tracking
Kernel is using weak IP ID generation leads to remote device tracking...
Important: Red Hat Security Advisory: kernel security, bug fix, and enhancement update
An update for kernel is now available for Red Hat Enterprise Linux 8. Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System CVSS base score, which gives a detailed severity rating, is available for each vulnerability from th...
OPENSUSE-SU-2019:1757-1 Security update for the Linux Kernel
The openSUSE Leap 15.1 kernel was updated to receive various security and bugfixes. The following security bugs were fixed: - CVE-2019-10638: A device could be tracked by an attacker using the IP ID values the kernel produces for connection-less protocols e.g., UDP and ICMP. When such traffic is...
CVE-2019-10638
In the Linux kernel before 5.1.7, a device can be tracked by an attacker using the IP ID values the kernel produces for connection-less protocols e.g., UDP and ICMP. When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash collisions of indices to the counter...
CVE-2019-10638
The CVE-2019-10638 entry concerns the Linux kernel IT: the IP ID values used for connectionless protocols (UDP/ICMP) in kernels prior to 5.1.7. The underlying issue is weak hashing of IP IDs, enabling an attacker to track a host across networks by correlating IDs and potentially obtain the hashin...
CVE-2019-10638
In the Linux kernel before 5.1.7, a device can be tracked by an attacker using the IP ID values the kernel produces for connection-less protocols e.g., UDP and ICMP. When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash collisions of indices to the counter...
CVE-2019-10638
In the Linux kernel before 5.1.7, a device can be tracked by an attacker using the IP ID values the kernel produces for connection-less protocols e.g., UDP and ICMP. When such traffic is sent to multiple destination IP addresses, it is possible to obtain hash collisions of indices to the counter...
Calibration Attack Drills Down on iPhone, Pixel Users
A proof-of-concept for a new type of privacy attack, dubbed “calibration fingerprinting,” uses data from Apple iPhone sensors to construct a globally unique fingerprint for any given mobile user. Researchers said that this provides an unusually effective means to track people as they browse acros...
Apple iOS Wi-Fi Logic Flaw Vulnerability
Apple iOS is an operating system developed by Apple Inc. for mobile devices, with Wi-Fi as one of the wireless Internet components. A security vulnerability exists in the Wi-Fi component of Apple iOS versions prior to 12.2. The vulnerability can be exploited by an attacker to track a device using...
Code injection
A captured MAC/device ID of an iTrack Easy can be registered under multiple user accounts allowing access to getgps GPS data, which can allow unauthenticated parties to track the device...
CVE-2016-6542
The iTrack device tracking ID number, also called "LosserID" in the web API, can be obtained by being in the range of an iTrack device. The tracker ID is the device's BLE MAC address...
CVE-2016-6542
The CVE-2016-6542 entry concerns the iTrack Easy device, where the BLE MAC address (the tracker ID) can be obtained by being within range of the device. The issue is described as an information exposure vulnerability: an unauthenticated party could learn the device’s BLE MAC address, enabling pot...