Skip to main content
Glama
82,908 servers. Updated

Matching MCP tools:

Matching MCP Connectors:

"Using a Cursor to Operate a Local Computer" matching MCP servers:

GET /v1/servers — MCP directory API reference
  • A
    license
    Not graded
    quality
    C
    maintenance
    Enables AI agents to conduct authorized penetration tests by providing scope-enforced access to Metasploit Framework's RPC, with tools for reconnaissance, exploitation, session management, and post-exploitation.
    3
    MIT
  • F
    license
    Not graded
    quality
    B
    maintenance
    Exposes a hardened Docker container with Kali Linux security tools (nmap, sqlmap, dig, whois, etc.) as MCP tools, enabling network reconnaissance, web analysis, and vulnerability scanning through natural language commands.
    -
  • A
    license
    A
    quality
    B
    maintenance
    Enables MCP-compatible agents to query security checklists, protocols, and framework mappings to safely build and operate AI agents, with tools for checklist runs, protocol lookup, mapping lookup, and threat search.
    9
    CC BY-4.0
  • A
    license
    A
    quality
    A
    maintenance
    MCP server for Cursor that scans codebases for security issues including hardcoded secrets, SAST, vulnerable dependencies, and IaC misconfigurations.
    7
    MIT
  • F
    license
    A
    quality
    C
    maintenance
    Automates Android app analysis using Frida via AI commands, connecting a rooted Android phone to a computer and running dynamic analysis scripts without manual command execution.
    10
    15
    -
  • A
    license
    A
    quality
    B
    maintenance
    A local MCP server that scans repository dependencies for known vulnerabilities (CVEs) using OSV.dev, enriches findings with NVD and CISA KEV data, and supports triage, remediation, and accepted risk management directly from an AI coding assistant.
    6
    35
    1
    MIT
  • A
    license
    A
    quality
    F
    maintenance
    Enables AI assistants to perform domain reconnaissance using theHarvester OSINT tool, including email harvesting, subdomain discovery, DNS brute force, and Shodan integration, via SSH on a Kali Linux host.
    8
    1
    MIT
  • A
    license
    A
    quality
    F
    maintenance
    Enables AI assistants to perform web content discovery scans using feroxbuster on a remote system via SSH, with support for recursive scanning, filtering, and background execution.
    8
    MIT
  • A
    license
    A
    quality
    B
    maintenance
    MCP server that enables LLMs to operate Acunetix/Invicti web vulnerability scanners through 15 tools, covering authentication, target management, scanning, vulnerability retrieval, and reporting via GraphQL and REST APIs.
    15
    1
    MIT
  • A
    license
    A
    quality
    F
    maintenance
    Enables AI assistants to perform password security auditing using John the Ripper on a remote Kali system via SSH, supporting cracking, hash management, and session control.
    12
    MIT
  • F
    license
    A
    quality
    B
    maintenance
    A local, read-only MCP server that connects your HackerOne researcher account to Claude Desktop and Claude Code, helping you find targets, analyze program scopes, review reports and earnings, and draft bug reports.
    17
    4
    -
  • A
    license
    B
    quality
    D
    maintenance
    Provides a Model Context Protocol server implementation that allows AI agents and other MCP clients to programmatically interact with DefectDojo, a vulnerability management tool, for managing findings, products, and engagements.
    11
    15
    MIT
  • A
    license
    Not graded
    quality
    C
    maintenance
    Manual listener MCP server that bridges OpenCode with local security tools via a Flask HTTP service, enabling AI-assisted security operations.
    MIT
  • A
    license
    Not graded
    quality
    D
    maintenance
    Enables AI assistants to execute security testing tools on a Kali Linux machine over SSH, including reconnaissance, web app scanning, and static/dynamic analysis.
    18
    MIT