hyperdbg-mcp
Exposes the HyperDbg hypervisor-assisted, ring-0 debugger to LLM agents, enabling low-level debugging operations with safety features like read-only mode and confirmation gates.
README
hyperdbg-mcp
An MCP server that exposes HyperDbg
- the hypervisor-assisted, ring-0 debugger - to LLM agents.
Status: early development (v0.0.1). The design is documented in
docs/DESIGN.md. End-to-end operation requires a Windows host with HyperDbg installed and its driver loaded; the FFI layer has not yet been validated against a livelibhyperdbg.dll.
How it works
The server loads libhyperdbg.dll via ctypes (there is no HTTP API) and registers a set
of MCP tools that map to HyperDbg's command surface. Command text output is captured through
HyperDbg's message callback (see docs/DESIGN.md §2).
MCP client ──stdio──► hyperdbg-mcp (Python) ──ctypes──► libhyperdbg.dll ──► driver + VMM
Safety
HyperDbg operates at ring-0; a bad write can bugcheck the host, and memory/disassembly read back from the target may be adversarial (you may be debugging malware). The server therefore:
- annotates read-only vs destructive tools (
ToolAnnotations); - requires per-call confirmation (MCP elicitation) for destructive tools;
- supports a hard
--read-onlymode that does not register write/script tools at all; - wraps all debuggee-sourced data in an untrusted-data envelope so it is treated as inert;
- writes an append-only audit log of every call.
# read-only, safest
hyperdbg-mcp --read-only
# full access (destructive tools gated behind confirmation)
hyperdbg-mcp --lib-path C:\path\to\libhyperdbg.dll --audit-log audit.jsonl
# mock backend - exercise the full tool surface with no HyperDbg / DLL
hyperdbg-mcp --mock
# Debugger Mode - connect to a remote debuggee over serial (halts it on connect)
hyperdbg-mcp --remote-com com4 --baudrate 115200
Modes. Default is local VMI (single machine, debug via the local hypervisor).
Debugger Mode (--remote-com / --remote-pipe / --remote-net) connects to a separate
debuggee machine and, by default, halts it on connect - which is what gives a valid CPU context
for register/memory reads and stepping. (Register reads are not meaningful in local VMI mode
with nothing paused.)
Tools
Read (always available): hd_mem_read, hd_reg_read_all, hd_reg_read, hd_eval,
hd_disasm, hd_list_modules, hd_status.
Execution control (available in --read-only): hd_exec_continue, hd_exec_pause,
hd_exec_step.
Target-mutating (full mode only, confirmation-gated): hd_exec_command, hd_bp_set,
hd_mem_write, hd_reg_write, hd_script_run.
Development
pip install -e ".[dev]"
pytest
ruff check .
Roadmap
- Validate FFI against a live HyperDbg host.
- Streamable-HTTP transport + progress streaming for long Intel-PT / LBR traces.
- Symbol-aware helpers; richer structured outputs.
License
GPL-3.0-or-later, matching the HyperDbg project.
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