| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| A
certification validation weakness exists in communication between affected
Omada devices and cloud controllers. Certificate identity verification does not
adequately validate that a presented certificate corresponds to the expected
cloud controller hostname, which may allow certificate validation protections
to be bypassed under specific conditions.
Successful
exploitation may allow interception or modification of communication between
affected devices and cloud controllers. |
| A cryptographic
weakness exists in the Omada device adoption process. During adoption, authentication credentials associated
with site management are transmitted using a weak hashing algorithm that does
not provide sufficient protection.
An attacker who
successfully intercepts adoption-related authentication traffic may be able to
recover valid credentials and gain unauthorized access to managed devices or
controller-managed environments. |
| A cryptographic
weakness exists in the Omada adoption protocol.
The protocol relies on hard-coded cryptographic keys to establish trust and
protect authentication exchanges between controllers and managed devices during
device adoption.
An attacker may
be able to impersonate trusted controllers or managed devices and gain access
to sensitive adoption-related communications. |
| Affected
Omada devices rely on embedded certificates that are shared across deployments
to establish trust between controllers and managed devices.
An attacker
who obtains the embedded certificates may be able to impersonate trusted
controllers or devices and intercept affected communications. |
| A cryptographic
weakness exists in the Omada adoption protocol where session encryption keys
used to protect communications between controllers and managed devices may be
predictable due to insufficient entropy in session key generation.
An attacker
who successfully intercepts adoption-related communications may be able to recover
session encryption keys and decrypt affected communications. |
| A race
condition exists in the cloud-based Omada device adoption process when an
attacker may be able to interact with the adoption workflow before a legitimate
device completes registration, resulting in provisioning information being
delivered to an attacker.
Successful
exploitation may allow disclosure of provisioning information intended for a
legitimate device. |
| A
cryptographic weakness exists in affected Omada devices where site credentials
are protected using a legacy hashing algorithm that does not provide sufficient
protection.
An attacker
who obtains access to stored credential data may be able to recover valid credentials
to gain unauthorized access to affected devices or management environments. |
| Tapo P110 v1
smart Wi-Fi Plug contains an improper boundary validation vulnerability in the
handling of authenticated HTTP request bodies due to insufficient input
validation before memory copy operations. This may lead to buffer overflow condition,
causing the web service process to crash.
Successful exploitation
may cause the web service process to stop responding or restart, resulting in a
denial-of-service condition. |
| A path traversal vulnerability was identified TP-Link Tapo C260 v1, D235 v1, C211 v2 and C520WS v2.6 within the HTTP server’s handling of GET requests. The server performs path normalization before fully decoding URL encoded input and falls back to using the raw path when normalization fails. An attacker can exploit this logic flaw by supplying crafted, URL encoded traversal sequences that bypass directory restrictions and allow access to files outside the intended web root.
Successful exploitation may allow authenticated attackers to get disclosure of sensitive system files and credentials, while unauthenticated attackers may gain access to non-sensitive static assets. |
| An OS command injection vulnerability exists in the VPN module of TP-Link AXE75 V1 routers. This vulnerability allows an adjacent, authenticated attacker to execute arbitrary commands on the device by importing a specially crafted VPN client configuration file. The issue arises from improper filtering of special characters.
Successful exploitation of this vulnerability may enable an attacker to gain full control of the affected device, potentially compromising configuration integrity, network security, and service availability. |
| An OS Command Injection vulnerability in TP-Link Archer BE230 v1.2(vpn modules) and OpenVPN of AXE75 v1 allows an adjacent
authenticated
attacker to execute arbitrary code. Successful exploitation could allow an attacker to gain full administrative control of the device, resulting in severe compromise of configuration integrity, network security, and service availability.
This CVE covers one of multiple distinct OS command injection issues identified across separate code paths. Although similar in nature, each instance is tracked under a unique CVE ID.
This issue affects Archer BE230 v1.2 < 1.2.4 Build 20251218 rel.70420 and Archer AXE75 v1 < 1.5.6 Build 20260623. |
| The
TL-WR940N v6 router contains a vulnerability in its RTSP connection tracking
module that can lead to a stack-based buffer overflow. The issue occurs when a
LAN client initiates a connection to a malicious RTSP server controlled by an
attacker. A specially crafted RTSP message may trigger improper memory handling
within the kernel module
Successful
exploitation of this vulnerability may result in a denial-of-service (DoS)
condition or allow remote code execution (RCE), potentially leading to full
compromise of the device. This vulnerability can be exploited by an
unauthenticated attacker under the device's default configuration. |
| A hardcoded credential
vulnerability exists in the firmware of multiple TP-Link routers (TL-WR845N v4, TL-WR850N v3, Archer C20 v6 & Archer MR200 v5). Authentication-related credential material is
embedded within a password file in the firmware image and may be recovered
through firmware analysis.
Successful
exploitation could result in unauthorized access to privileged functions on
affected devices. |
| An OS command
injection vulnerability exists in the TR-069 / CWMP management interface of Archer VX1800v v1 due to insufficient input validation and sanitization of
parameters, allowing crafted input to be executed as system-level commands.
Exploitation requires specific conditions such as TR-069 being enabled and ability
to influence ACS-delivered commands, compromise or control an ACS server.
Successful
exploitation may allow arbitrary command execution with root privileges,
resulting in complete compromise of the device. |
| An OS
command injection vulnerability exists in Archer VX800v v1 due to insufficient input sanitization of
the domain name parameter. An adjacent attacker who can access the relevant
HTTP interface can modify the parameter to inject shell metacharacters, resulting
in arbitrary code execution with root privileges.
Successful
exploitation may allow remote code execution and complete compromise of the
device. |
| A privilege escalation vulnerability exists in the HTTP authentication component in Archer VX1800v v1. Improper handling of user-controlled input may allow newline characters to be injected into internally constructed configuration data.
An
authenticated user with sufficient privileges may be able to modify account
settings and gain elevated administrative privileges. |
| TP-Link Deco M5 v1 uses a weak password hashing mechanism to store user credentials. An attacker who obtains the password hash through system compromise or privileged access could perform brute-force or dictionary attacks.
Successful exploitation may result in disclosure of authentication credentials, enabling unauthorized access to device management functions, depending on the privileges associated with the recovered password. The primary security impact is loss of confidentiality. |
| Kasa EC71 v4 and EC70 v4 firmware contains a static cryptographic private key stored in a read-only filesystem
that is shared across devices. An
attacker with access to the firmware image can extract the embedded key.
Successful
exploitation may allow an unauthenticated attacker on the same network to use
this key in the web management service, compromising the confidentiality of
encrypted communications. This may enable passive decryption of traffic or
active man-in-the-middle (MITM) attacks |
| An information disclosure vulnerability was identified in TP-Link Kasa EC70 v4 and EC71 v4 in the local discovery mechanism, which exposes
sensitive geolocation information without requiring authentication. This issue
allows an attacker on the same local network to retrieve geolocation-related
data through crafted responses.
The
vulnerability impacts confidentiality only, with no evidence of integrity of
availability impact. |
| This vulnerability in AX53 v1, AX55 v4 and AX55 v4.6 results from insufficient input sanitization in the device’s probe handling logic, where unvalidated parameters can trigger a stack-based buffer overflow that causes the affected service to crash and, under specific conditions, may enable remote code execution through complex heap-spray techniques.
Successful exploitation may result in repeated service unavailability and, in certain scenarios, allow an attacker to gain control of the device. |