| name | codeblocks-mcp-connector |
| description | MCP connector for Code::Blocks C/C++ IDE – enables AI-powered C/C++ development, compiler configuration, and debugging through Claude |
| license | GPL |
| tags | ["dev","ide","mcp","codeblocks","cpp"] |
| difficulty | intermediate |
| time_to_master | 4-8 weeks |
| version | 1.0.0 |
Codeblocks MCP Connector
Overview
This skill enables Claude to interact with Codeblocks through the Model Context Protocol (MCP). It provides a bridge between Claude's AI capabilities and Codeblocks's Plugin API/CLI, allowing natural language control of Codeblocks operations, intelligent automation, and AI-powered assistance for Codeblocks workflows.
When to Use This Skill
- Compiler and toolchain configuration via AI
- Project workspace and target management
- Debugger session control and watch expressions
- Code completion enhancement with AI context
- Build log analysis and error resolution
Architecture
┌─────────────┐ ┌─────────────────┐ ┌──────────────────┐
│ Claude │────▶│ MCP Server │────▶│ Codeblocks │
│ (Client) │◀────│ (C++/TypeScript) │◀────│ (Plugin API/CLI)│
└─────────────┘ └─────────────────┘ └──────────────────┘
Core Concepts
MCP Server Setup
The connector implements an MCP server that exposes Codeblocks operations as tools Claude can invoke. The server translates natural language intentions into Plugin API/CLI calls.
Key Endpoints/Interfaces
CompilerManager, ProjectManager, DebuggerManager, EditorManager, ScriptingManager
Implementation
import { McpServer } from "@modelcontextprotocol/sdk/server/mcp.js";
import { StdioServerTransport } from "@modelcontextprotocol/sdk/server/stdio.js";
import { z } from "zod";
const server = new McpServer({
name: "codeblocks-mcp-connector",
version: "1.0.0",
});
server.tool(
"list_resources",
"List and query Codeblocks resources with optional filters",
{
query: z.string().optional().describe("Search query or filter"),
limit: z.number().optional().describe("Max results to return"),
},
async ({ query, limit }) => {
const response = await fetch(`${BASE_URL}CompilerManager`, {
headers: { "Authorization": `Bearer ${API_KEY}` },
});
const data = await response.json();
return {
: [{ : , : .(data, , ) }],
};
}
);
server.(
,
,
{
: z.().(),
: z.({}).().().(),
},
({ name, config }) => {
response = (, {
: ,
: {
: ,
: ,
},
: .({ name, ...config }),
});
data = response.();
{
: [{ : , : }],
};
}
);
server.(
,
,
{
: z.().(),
: z.().().(),
},
({ , timeframe }) => {
response = (, {
: { : },
});
data = response.();
{
: [{ : , : .(data, , ) }],
};
}
);
transport = ();
server.(transport);
Claude Desktop Configuration
{
"mcpServers": {
"codeblocks-mcp-connector": {
"command": "node",
"args": ["path/to/codeblocks-mcp-connector/index.js"],
"env": {
"CODEBLOCKS_API_KEY": "your-api-key",
"CODEBLOCKS_BASE_URL": "https://your-instance-url"
}
}
}
}
Best Practices
- Authentication: Store API keys securely using environment variables; never hardcode credentials
- Rate Limiting: Implement request throttling to respect Codeblocks API rate limits
- Error Handling: Provide clear, actionable error messages for common failure scenarios
- Pagination: Handle paginated responses for large datasets efficiently
- Caching: Cache frequently accessed read-only data to reduce API calls
- Security: Validate all inputs before passing to the Codeblocks API; sanitize outputs
- Logging: Log all API interactions for debugging and audit purposes
Example Prompts
"Configure the GCC toolchain for cross-compilation targeting ARM and build the project"
Security Considerations
- All API credentials must be stored as environment variables
- Implement input validation and sanitization for all tool parameters
- Use HTTPS for all API communications
- Follow the principle of least privilege for API token permissions
- Audit log all write operations for compliance tracking
Resources
Changelog
| Version | Date | Changes |
|---|
| 1.0.0 | 2026-04-01 | Initial MCP connector skill |
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