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high·Exposed Panels·Updated Aug 30, 2026

DeepStack AI Server Panel Detection Scanner

This scanner detects the use of DeepStack AI Server Panel in digital assets. It helps identify exposed panels for security evaluations. The detection assists in securing home-automation setups using DeepStack.

Est. Time~10 seconds
Scan TypeSingle Scan
Targetsurl
CostFree
2.7k
Times Used
continuous scan runs
4.8k
Continuously Checked
assets under CS
0
Vulnerabilities Found
confirmed findings
References
Detail

DeepStack AI Server is an open-source, self-hosted computer-vision server used widely in applications requiring object, face, and scene detection. It is often deployed in conjunction with home-automation tools like Home Assistant and Frigate. The server provides versatile APIs that facilitate machine learning-based feature integration. In home automation landscapes, DeepStack plays a pivotal role in enhancing security and automation capabilities. The service is mostly accessed via web browsers and interacts over network protocols to facilitate seamless operations. Its adoption across multiple platforms stems from its robustness and flexibility in handling diverse computer vision tasks.

The purpose of the DeepStack AI Server Detection Scanner is to identify open and exposed panels associated with DeepStack deployments. It is tailored to discover unauthenticated landing and activation pages that might be unintentionally accessible. By leveraging this detection, users can ensure their DeepStack installations are not exposed to potential security threats. It primarily focuses on configurations that leave the server panel open to unauthorized access without proper security measures. This detection is crucial as it heightens security awareness within home automation systems relying on DeepStack.

This detection method involves scanning the DeepStack service endpoint for specific identifiers. The scanner matches markers such as "DeepStack Activated" and related keywords in the HTML body to confirm the server's presence. The scan targets the HTTP status of 200 and checks for title elements that indicate DeepStack activity. Matching conditions are stringently combined to prevent false detections, ensuring accuracy in exposed panel identification. The scanner performs HTTP GET requests with host redirects enabled for comprehensive scanning across potential deployments. Avoiding false positives and negatives is prioritized through layered verification of expected signatures and conditions.

If a DeepStack panel is inadvertently exposed, it may lead to unauthorized access, allowing attackers to exploit the system. Such exposure can potentially reveal sensitive operational information of the AI server that could be capitalized on by malicious entities. In a worst-case scenario, unauthorized users might gain insights into vulnerabilities within the integration, leading to broader security challenges. Consequently, securing the panel and other access points becomes paramount in preserving the integrity of the overall system. Continued exposure also risks unauthorized modifications of AI configurations, altering intended automation outcomes.

REFERENCES

Solution Advice
  • Configure authentication measures for accessing the DeepStack panel to prevent unauthorized access.
  • Limit IP ranges that can access the DeepStack server to trusted networks only.
  • Regularly update the DeepStack software to incorporate security patches and improvements.
  • Review network security settings to ensure that sensitive ports are not exposed to the internet.
  • Consider using a VPN or other secure network layer to access the DeepStack panel remotely.

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