IDA Pro MCP Server
About
# IDA Pro MCP Server IDA Pro MCP Server is a plugin that allows remote querying and control of IDA Pro through the Model Context Protocol (MCP) interface. This plugin enables AI assistants (such as Claude) to interact directly with IDA Pro for binary analysis tasks. ## Overview This server provides a series of tools…
Details
- License
- MIT license
Explore
- Retrieve byte data, disassembly, and decompiled pseudocode from any address.
- List and manage functions, including creation and deletion.
- Get imports, exports, entry points, and cross-references.
- Read various data types: dword, word, byte, qword, float, double, string.
- List all strings in the binary with addresses.
- Obtain segment information for the entire binary.
Setting up with Highlight
This MCP is not yet compatible with Highlight’s one-click setup. However, you can still use it with Highlight by following these steps:
- Download and install Highlight from highlightai.com/download
- Navigate to the plugins tab and select "Add Custom Plugin"
-
Configure the plugin with the settings below
Plugin Name
IDA Pro MCP ServerCommand (node, npx, python, etc.)Please refer to the README for specific instructions on how to obtain API keys or other required environment variables.
- Enable "Start Automatically" if you want the plugin to start when Highlight launches
From the repository
> Note: This plugin is designed for and tested with IDA Pro version 9.0+.
1. Ensure Python and related dependencies are installed:
pip install -r requirements.txt
2. Copy the ida-mcp-server.py file to the IDA Pro plugins directory:
- Windows: %Programfiles%\IDA Pro 9.0\plugins\
- Linux: ~/.idapro/plugins/
- macOS: ~/Library/Application Support/IDA Pro/plugins/
Add the following configuration to the mcp.json file in Claude or VSCode:
{
"mcpServers": {
"IDAPro": {
"url": "http://127.0.0.1:3000/sse",
"type": "sse"
}
}
}
get_bytes
Get bytes at a specified address
get_disasm
Get disassembly at a specified address
get_decompiled_func
Get pseudocode of the function containing the specified address
get_function_name
Get function name at a specified address
get_segments
Get all segment information
get_functions
Get all functions in the binary
get_xrefs_to
Get all cross-references to a specified address
get_imports
Get all imported functions
get_exports
Get all exported functions
get_entry_point
Get the entry point of the binary
make_function
Create a function at a specified address
undefine_function
Undefine a function at a specified address
get_dword_at
Get the dword at a specified address
get_word_at
Get the word at a specified address
get_byte_at
Get the byte at a specified address
get_qword_at
Get the qword at a specified address
get_float_at
Get the float at a specified address
get_double_at
Get the double at a specified address
get_string_at
Get the string at a specified address
get_string_list
Get all strings in the binary
get_strings
Get all strings in the binary (with addresses)
IDA Pro MCP Server provides the following tools:
- get_bytes: Get bytes at a specified address
- get_disasm: Get disassembly at a specified address
- get_decompiled_func: Get pseudocode of the function containing the specified address
- get_function_name: Get function name at a specified address
- get_segments: Get all segment information
- get_functions: Get all functions in the binary
- get_xrefs_to: Get all cross-references to a specified address
- get_imports: Get all imported functions
- get_exports: Get all exported functions
- get_entry_point: Get the entry point of the binary
- make_function: Create a function at a specified address
- undefine_function: Undefine a function at a specified address
- get_dword_at: Get the dword at a specified address
- get_word_at: Get the word at a specified address
- get_byte_at: Get the byte at a specified address
- get_qword_at: Get the qword at a specified address
- get_float_at: Get the float at a specified address
- get_double_at: Get the double at a specified address
- get_string_at: Get the string at a specified address
- get_string_list: Get all strings in the binary
- get_strings: Get all strings in the binary (with addresses)
Claude Desktop / Cursor
Paste into your MCP client config file to install this server.
{
"mcpServers": {
"ida pro mcp server": {
"IDAPro": {
"type": "http",
"url": "http://127.0.0.1:3000/sse"
}
}
}
}
McpServers
{
"IDAPro": {
"type": "http",
"url": "http://127.0.0.1:3000/sse"
}
}
IDA Pro MCP Server is a plugin that allows remote querying and control of IDA Pro through the Model Context Protocol (MCP) interface. This plugin enables AI assistants (such as Claude) to interact directly with IDA Pro for binary analysis tasks.
Overview
This server provides a series of tools that allow AI assistants to perform the following operations:
- Get byte data from specific addresses
- Get disassembly code
- Get decompiled pseudocode
- Query function names
- Get segment information
- List all functions
- Find cross-references
- Get import/export tables
- Get entry points
- Define/undefine functions
- Get various data types (dword, word, byte, qword, float, double, string)
- Get all strings in the binary file
- Get the length of the instruction at the specified address
Installation
> Note: This plugin is designed for and tested with IDA Pro version 9.0+.
1. Ensure Python and related dependencies are installed:
pip install -r requirements.txt
2. Copy the ida-mcp-server.py file to the IDA Pro plugins directory:
- Windows: %Programfiles%\IDA Pro 9.0\plugins\
- Linux: ~/.idapro/plugins/
- macOS: ~/Library/Application Support/IDA Pro/plugins/
Configure Claude / VSCode
Add the following configuration to the mcp.json file in Claude or VSCode:
{
"mcpServers": {
"IDAPro": {
"url": "http://127.0.0.1:3000/sse",
"type": "sse"
}
}
}
Usage
1. Open a binary file in IDA Pro
2. The plugin will automatically load and start the MCP server locally (port 3000)
3. Connect your AI assistant (e.g., Claude/VSstudio) to this server
4. Use the AI assistant to perform binary analysis tasks
Available Analysis Tools
IDA Pro MCP Server provides the following tools:
- get_bytes: Get bytes at a specified address
- get_disasm: Get disassembly at a specified address
- get_decompiled_func: Get pseudocode of the function containing the specified address
- get_function_name: Get function name at a specified address
- get_segments: Get all segment information
- get_functions: Get all functions in the binary
- get_xrefs_to: Get all cross-references to a specified address
- get_imports: Get all imported functions
- get_exports: Get all exported functions
- get_entry_point: Get the entry point of the binary
- make_function: Create a function at a specified address
- undefine_function: Undefine a function at a specified address
- get_dword_at: Get the dword at a specified address
- get_word_at: Get the word at a specified address
- get_byte_at: Get the byte at a specified address
- get_qword_at: Get the qword at a specified address
- get_float_at: Get the float at a specified address
- get_double_at: Get the double at a specified address
- get_string_at: Get the string at a specified address
- get_string_list: Get all strings in the binary
- get_strings: Get all strings in the binary (with addresses)
Best Practices
When analyzing binary files, it's recommended to follow these steps:
1. Examine the entry point
2. Analyze the import table
3. Review strings
4. Track key API calls
5. Identify main functional blocks
6. Analyze control flow
7. Identify malicious behaviors
8. Analyze algorithms and encryption routines
9. Document analysis results
10. Use advanced techniques
License
MIT License
Copyright (c) 2023
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.
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