Aliasrobotics
Products
8- 7 CVEs
- 7 CVEs
- 7 CVEs
- 7 CVEs
- 7 CVEs
- 3 CVEs
- 2 CVEs
- 1 CVE
Recent CVEs
12| CVE | Vendor / Product | Sev | Risk | CVSS | EPSS | KEV | Published | Description |
|---|---|---|---|---|---|---|---|---|
| CVE-2020-10279 | Cri | 0.64 | 9.8 | 0.01 | Jun 24, 2020 | MiR robot controllers (central computation unit) makes use of Ubuntu 16.04.2 an operating system, Thought for desktop uses, this operating system presents insecure defaults for robots. These insecurities include a way for users to escalate their access beyond what they were… | ||
| CVE-2020-10276 | Cri | 0.64 | 9.8 | 0.01 | Jun 24, 2020 | The password for the safety PLC is the default and thus easy to find (in manuals, etc.). This allows a manipulated program to be uploaded to the safety PLC, effectively disabling the emergency stop in case an object is too close to the robot. Navigation and any other components… | ||
| CVE-2020-10275 | Cri | 0.64 | 9.8 | 0.01 | Jun 24, 2020 | The access tokens for the REST API are directly derived from the publicly available default credentials for the web interface. Given a USERNAME and a PASSWORD, the token string is generated directly with base64(USERNAME:sha256(PASSWORD)). An unauthorized attacker inside the… | ||
| CVE-2020-10272 | Cri | 0.64 | 9.8 | 0.02 | Jun 24, 2020 | MiR100, MiR200 and other MiR robots use the Robot Operating System (ROS) default packages exposing the computational graph without any sort of authentication. This allows attackers with access to the internal wireless and wired networks to take control of the robot seamlessly.… | ||
| CVE-2020-10271 | Cri | 0.64 | 9.8 | 0.02 | Jun 24, 2020 | MiR100, MiR200 and other MiR robots use the Robot Operating System (ROS) default packages exposing the computational graph to all network interfaces, wireless and wired. This is the result of a bad set up and can be mitigated by appropriately configuring ROS and/or applying… | ||
| CVE-2020-10270 | Cri | 0.64 | 9.8 | 0.02 | Jun 24, 2020 | Out of the wired and wireless interfaces within MiR100, MiR200 and other vehicles from the MiR fleet, it's possible to access the Control Dashboard on a hardcoded IP address. Credentials to such wireless interface default to well known and widely spread users (omitted) and… | ||
| CVE-2020-10269 | Cri | 0.64 | 9.8 | 0.01 | Jun 24, 2020 | One of the wireless interfaces within MiR100, MiR200 and possibly (according to the vendor) other MiR fleet vehicles comes pre-configured in WiFi Master (Access Point) mode. Credentials to such wireless Access Point default to well known and widely spread SSID (MiR_RXXXX) and… | ||
| CVE-2025-67511 | Cri | 0.56 | 9.6 | 0.02 | Dec 11, 2025 | Cybersecurity AI (CAI) is an open-source framework for building and deploying AI-powered offensive and defensive automation. Versions 0.5.9 and below are vulnerable to Command Injection through the run_ssh_command_with_credentials() function, which is available to AI agents.… | ||
| CVE-2026-25130 | Cri | 0.55 | 9.6 | 0.01 | Jan 30, 2026 | Cybersecurity AI (CAI) is a framework for AI Security. In versions up to and including 0.5.10, the CAI (Cybersecurity AI) framework contains multiple argument injection vulnerabilities in its function tools. User-controlled input is passed directly to shell commands via… | ||
| CVE-2020-10273 | Hig | 0.49 | 7.5 | 0.01 | Jun 24, 2020 | MiR controllers across firmware versions 2.8.1.1 and before do not encrypt or protect in any way the intellectual property artifacts installed in the robots. This flaw allows attackers with access to the robot or the robot network (while in combination with other flaws) to… | ||
| CVE-2020-10274 | Hig | 0.46 | 7.1 | 0.01 | Jun 24, 2020 | The access tokens for the REST API are directly derived (sha256 and base64 encoding) from the publicly available default credentials from the Control Dashboard (refer to CVE-2020-10270 for related flaws). This flaw in combination with CVE-2020-10273 allows any attacker connected… | ||
| CVE-2020-10278 | Med | 0.30 | 4.6 | 0.01 | Jun 24, 2020 | The BIOS onboard MiR's Computer is not protected by password, therefore, it allows a Bad Operator to modify settings such as boot order. This can be leveraged by a Malicious operator to boot from a Live Image. |
- risk 0.64cvss 9.8epss 0.01
MiR robot controllers (central computation unit) makes use of Ubuntu 16.04.2 an operating system, Thought for desktop uses, this operating system presents insecure defaults for robots. These insecurities include a way for users to escalate their access beyond what they were…
- risk 0.64cvss 9.8epss 0.01
The password for the safety PLC is the default and thus easy to find (in manuals, etc.). This allows a manipulated program to be uploaded to the safety PLC, effectively disabling the emergency stop in case an object is too close to the robot. Navigation and any other components…
- risk 0.64cvss 9.8epss 0.01
The access tokens for the REST API are directly derived from the publicly available default credentials for the web interface. Given a USERNAME and a PASSWORD, the token string is generated directly with base64(USERNAME:sha256(PASSWORD)). An unauthorized attacker inside the…
- risk 0.64cvss 9.8epss 0.02
MiR100, MiR200 and other MiR robots use the Robot Operating System (ROS) default packages exposing the computational graph without any sort of authentication. This allows attackers with access to the internal wireless and wired networks to take control of the robot seamlessly.…
- risk 0.64cvss 9.8epss 0.02
MiR100, MiR200 and other MiR robots use the Robot Operating System (ROS) default packages exposing the computational graph to all network interfaces, wireless and wired. This is the result of a bad set up and can be mitigated by appropriately configuring ROS and/or applying…
- risk 0.64cvss 9.8epss 0.02
Out of the wired and wireless interfaces within MiR100, MiR200 and other vehicles from the MiR fleet, it's possible to access the Control Dashboard on a hardcoded IP address. Credentials to such wireless interface default to well known and widely spread users (omitted) and…
- risk 0.64cvss 9.8epss 0.01
One of the wireless interfaces within MiR100, MiR200 and possibly (according to the vendor) other MiR fleet vehicles comes pre-configured in WiFi Master (Access Point) mode. Credentials to such wireless Access Point default to well known and widely spread SSID (MiR_RXXXX) and…
- risk 0.56cvss 9.6epss 0.02
Cybersecurity AI (CAI) is an open-source framework for building and deploying AI-powered offensive and defensive automation. Versions 0.5.9 and below are vulnerable to Command Injection through the run_ssh_command_with_credentials() function, which is available to AI agents.…
- risk 0.55cvss 9.6epss 0.01
Cybersecurity AI (CAI) is a framework for AI Security. In versions up to and including 0.5.10, the CAI (Cybersecurity AI) framework contains multiple argument injection vulnerabilities in its function tools. User-controlled input is passed directly to shell commands via…
- risk 0.49cvss 7.5epss 0.01
MiR controllers across firmware versions 2.8.1.1 and before do not encrypt or protect in any way the intellectual property artifacts installed in the robots. This flaw allows attackers with access to the robot or the robot network (while in combination with other flaws) to…
- risk 0.46cvss 7.1epss 0.01
The access tokens for the REST API are directly derived (sha256 and base64 encoding) from the publicly available default credentials from the Control Dashboard (refer to CVE-2020-10270 for related flaws). This flaw in combination with CVE-2020-10273 allows any attacker connected…
- risk 0.30cvss 4.6epss 0.01
The BIOS onboard MiR's Computer is not protected by password, therefore, it allows a Bad Operator to modify settings such as boot order. This can be leveraged by a Malicious operator to boot from a Live Image.