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⇱ Security vulnerabilities and risks in MCP Server execution methods | Glama


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Security vulnerabilities and risks in MCP Server execution methods

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  • Why this server?

    This server is explicitly designed as a 'deliberately vulnerable framework' to expose 'critical security weaknesses' and allow 'hands-on learning about real-world AI MCP vulnerabilities', directly addressing the user's concern about potential risks like subprocess.run, execFile, exec.

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    IMCP - Insecure Model Context Protocol The DVWA for AI Security! Welcome to IMCP – a deliberately vulnerable framework that exposes 16 critical security weaknesses in AI/ML systems. Whether you're a security researcher, developer, or educator, IMCP is your playground for hands-on learning about real
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    15
    4
    JavaScript
  • Why this server?

    This server is 'deliberately vulnerable' and demonstrates 'security vulnerabilities including SQL injection, arbitrary code execution, and sensitive data exposure', making it highly relevant to the user's query about potential risks with code execution functions.

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    A vulnerable MCP server implementation that demonstrates how poor coding practices can lead to security issues like Remote Code Execution, designed for educational purposes to add numbers.
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    MIT
  • Why this server?

    This server is 'intentionally vulnerable' and designed for 'security research' to show how it can 'execute SQL queries or shell commands without restrictions', directly fitting the user's concern about uncontrolled execution.

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    Intentionally vulnerable Model Context Protocol (MCP) server designed for security research that processes natural language queries through an LLM to execute SQL queries or shell commands without restrictions.
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    4
  • Why this server?

    This server provides 'secure code execution in isolated Docker environments' with 'strict security constraints', directly addressing the risks associated with functions like subprocess.run, execFile, exec by focusing on safe execution.

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    A secure server that enables code execution in isolated Docker environments, supporting Python with strict security constraints including network isolation, limited filesystem access, and resource limitations.
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  • Why this server?

    This server is an 'interactive Python code execution environment that allows users and LLMs to safely execute Python code and install packages in isolated Docker containers', directly matching the user's interest in subprocess.run and exec concepts within a secure context.

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    An interactive Python code execution tool that allows users and LLMs to safely execute Python code and install packages in isolated Docker containers.
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    Apache 2.0
  • Why this server?

    This server aims to 'create secure code sandbox environment for executing code within Docker containers', offering a solution to mitigate the risks associated with arbitrary code execution.

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    An MCP server to create secure code sandbox environment for executing code within Docker containers.
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    MIT
  • Why this server?

    This server provides 'secure shell command execution capabilities' and allows AI models to 'run shell commands in a controlled environment with built-in security measures', directly addressing the user's concern about `exec` and `subprocess.run`.

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    A Node.js implementation of the Model Context Protocol that provides secure shell command execution capabilities, allowing AI models like Claude to run shell commands in a controlled environment with built-in security measures.
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    MIT
  • Why this server?

    This server is described as a 'secure server for executing terminal commands within predefined paths', directly indicating its relevance to managing risks associated with shell and exec commands.

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    A secure server for executing terminal commands within predefined paths, allowing safe interaction by Large Language Models with operating system environments.
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    MIT
  • Why this server?

    This server enables 'safe execution of predefined commands with built-in safety checks, separating regular commands from dangerous operations requiring confirmation', explicitly acknowledging and managing 'dangerous operations' related to execution.

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    A Model Context Protocol server that enables safe execution of predefined commands with built-in safety checks, separating regular commands from dangerous operations requiring confirmation.
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    4
    MIT