Files
ra-h-os/apps/mcp-server/server.js
T
“BeeRad” 545dc6e2e8 fix: port search and dimension safety guardrails
- enforce canonical dimensions across app and MCP surfaces
- prioritize title-first node search in UI and query tools
- add regression tests for ranking and dimension validation
2026-03-23 10:47:18 +11:00

1047 lines
30 KiB
JavaScript

/**
* RA-H MCP Server
*
* Exposes a minimal HTTP-based Model Context Protocol endpoint that lets external
* assistants read/write the local RA-H SQLite graph by calling our existing API routes.
* Designed to run locally (packaged with the desktop app) and never exposes data
* beyond 127.0.0.1.
*/
const http = require('node:http');
const os = require('node:os');
const path = require('node:path');
const fs = require('node:fs');
const { URL } = require('node:url');
const { z } = require('zod');
const { McpServer } = require('@modelcontextprotocol/sdk/server/mcp.js');
const { StreamableHTTPServerTransport } = require('@modelcontextprotocol/sdk/server/streamableHttp.js');
const { McpError, ErrorCode } = require('@modelcontextprotocol/sdk/types.js');
const getRawBody = require('raw-body');
const packageJson = require('../../package.json');
const DEFAULT_PORT = Number(process.env.RAH_MCP_PORT || 44145);
const DEFAULT_HOST = '127.0.0.1';
const STATUS_DIR = path.join(
os.homedir(),
'Library',
'Application Support',
'RA-H',
'config'
);
const STATUS_FILE = path.join(STATUS_DIR, 'mcp-status.json');
let baseUrlResolver =
typeof process.env.RAH_MCP_TARGET_URL === 'string'
? () => process.env.RAH_MCP_TARGET_URL
: () => process.env.NEXT_PUBLIC_BASE_URL || 'http://127.0.0.1:3000';
let httpServer = null;
let httpPort = null;
let lastErrorMessage = null;
let logger = (message) => console.log(`[mcp] ${message}`);
const instructions = [
'RA-H is a personal knowledge graph — local-first, vendor-neutral.',
'Core concepts: nodes (knowledge units), edges (connections with explanations), dimensions (categories).',
'Always call rah_get_context first to orient yourself — it returns hub nodes, dimensions, stats, and available guides.',
'When assigning dimensions, use only existing dimensions returned by rah_get_context or rah_query_dimensions.',
'Do not invent new dimensions from node titles, concepts, or phrasing.',
'Only call rah_create_dimension when the user explicitly instructs you to create a new dimension.',
'Search before creating: use rah_search_nodes to check if content already exists.',
'Every edge needs an explanation: why does this connection exist?',
'All data stays local on this device; nothing leaves 127.0.0.1.',
].join(' ');
const serverInfo = {
name: 'ra-h-local-mcp',
version: packageJson.version || '0.0.0'
};
const createServer = () =>
new McpServer(serverInfo, {
instructions,
capabilities: {
tools: {}
}
});
const mcpServer = createServer();
const sanitizeDimensions = (raw) => {
if (!Array.isArray(raw)) return [];
const result = [];
const seen = new Set();
for (const value of raw) {
if (typeof value !== 'string') continue;
const trimmed = value.trim();
if (!trimmed) continue;
const lowered = trimmed.toLowerCase();
if (seen.has(lowered)) continue;
seen.add(lowered);
result.push(trimmed);
if (result.length >= 5) break;
}
return result;
};
const addNodeInputSchema = {
title: z.string().min(1).max(160),
content: z.string().max(20000).optional(),
source: z.string().max(50000).optional(),
link: z.string().url().optional(),
description: z.string().max(2000).optional(),
dimensions: z.array(z.string()).min(1).max(5),
metadata: z.record(z.any()).optional(),
chunk: z.string().max(50000).optional()
};
const addNodeOutputSchema = {
nodeId: z.number(),
title: z.string(),
dimensions: z.array(z.string()),
message: z.string()
};
const searchNodesInputSchema = {
query: z.string().min(1).max(400),
limit: z.number().min(1).max(25).optional(),
dimensions: z.array(z.string()).max(5).optional()
};
const searchNodesOutputSchema = {
count: z.number(),
nodes: z.array(
z.object({
id: z.number(),
title: z.string(),
source: z.string().nullable(),
description: z.string().nullable(),
link: z.string().nullable(),
dimensions: z.array(z.string()),
updated_at: z.string()
})
)
};
// rah_update_node schemas
const updateNodeInputSchema = {
id: z.number().int().positive().describe('The ID of the node to update'),
updates: z.object({
title: z.string().optional().describe('New title'),
description: z.string().optional().describe('New description (overwrites existing)'),
content: z.string().optional().describe('Content to APPEND (not replace)'),
link: z.string().optional().describe('New link'),
dimensions: z.array(z.string()).optional().describe('New dimensions (replaces existing)'),
metadata: z.record(z.any()).optional().describe('New metadata (replaces existing)')
}).describe('Fields to update')
};
const updateNodeOutputSchema = {
success: z.boolean(),
nodeId: z.number(),
message: z.string()
};
// rah_get_nodes schemas
const getNodesInputSchema = {
nodeIds: z.array(z.number().int().positive()).min(1).max(10).describe('List of node IDs to load')
};
const getNodesOutputSchema = {
count: z.number(),
nodes: z.array(
z.object({
id: z.number(),
title: z.string(),
source: z.string().nullable(),
link: z.string().nullable(),
dimensions: z.array(z.string()),
updated_at: z.string()
})
)
};
// rah_create_edge schemas
const createEdgeInputSchema = {
sourceId: z.number().int().positive().describe('Source node ID'),
targetId: z.number().int().positive().describe('Target node ID'),
explanation: z.string().min(1).describe('REQUIRED: Why does this connection exist? Be specific.')
};
const createEdgeOutputSchema = {
success: z.boolean(),
edgeId: z.number(),
message: z.string()
};
// rah_query_edges schemas
const queryEdgesInputSchema = {
nodeId: z.number().int().positive().optional().describe('Find edges connected to this node'),
limit: z.number().min(1).max(50).optional().describe('Max edges to return')
};
const queryEdgesOutputSchema = {
count: z.number(),
edges: z.array(
z.object({
id: z.number(),
source_id: z.number(),
target_id: z.number(),
type: z.string().nullable(),
weight: z.number().nullable()
})
)
};
// rah_update_edge schemas
const updateEdgeInputSchema = {
id: z.number().int().positive().describe('Edge ID to update'),
explanation: z.string().min(1).optional().describe('New explanation text (will re-infer relationship type)')
};
const updateEdgeOutputSchema = {
success: z.boolean(),
message: z.string()
};
// rah_create_dimension schemas
const createDimensionInputSchema = {
name: z.string().min(1).describe('Dimension name'),
description: z.string().max(500).optional().describe('Dimension description'),
isPriority: z.boolean().optional().describe('Lock dimension for auto-assignment')
};
const createDimensionOutputSchema = {
success: z.boolean(),
dimension: z.string(),
message: z.string()
};
// rah_update_dimension schemas
const updateDimensionInputSchema = {
name: z.string().min(1).describe('Current dimension name'),
newName: z.string().optional().describe('New name (for renaming)'),
description: z.string().max(500).optional().describe('New description'),
isPriority: z.boolean().optional().describe('Lock/unlock dimension')
};
const updateDimensionOutputSchema = {
success: z.boolean(),
dimension: z.string(),
message: z.string()
};
// rah_delete_dimension schemas
const deleteDimensionInputSchema = {
name: z.string().min(1).describe('Dimension name to delete')
};
const deleteDimensionOutputSchema = {
success: z.boolean(),
message: z.string()
};
// rah_search_embeddings schemas
const searchEmbeddingsInputSchema = {
query: z.string().min(1).describe('Semantic search query'),
limit: z.number().min(1).max(20).optional().describe('Max results')
};
const searchEmbeddingsOutputSchema = {
count: z.number(),
results: z.array(
z.object({
nodeId: z.number(),
title: z.string(),
chunkPreview: z.string(),
similarity: z.number()
})
)
};
// rah_extract_url schemas
const extractUrlInputSchema = {
url: z.string().url().describe('URL of the webpage to extract content from')
};
const extractUrlOutputSchema = {
success: z.boolean(),
title: z.string(),
content: z.string(),
chunk: z.string(),
metadata: z.record(z.any())
};
// rah_extract_youtube schemas
const extractYoutubeInputSchema = {
url: z.string().describe('YouTube video URL to extract transcript from')
};
const extractYoutubeOutputSchema = {
success: z.boolean(),
title: z.string(),
channel: z.string(),
transcript: z.string(),
metadata: z.record(z.any())
};
// rah_extract_pdf schemas
const extractPdfInputSchema = {
url: z.string().url().describe('URL of the PDF file to extract content from')
};
const extractPdfOutputSchema = {
success: z.boolean(),
title: z.string(),
content: z.string(),
chunk: z.string(),
metadata: z.record(z.any())
};
async function resolveBaseUrl() {
try {
const value = await baseUrlResolver();
if (typeof value === 'string' && value.trim().length > 0) {
return value.replace(/\/+$/, '');
}
} catch (error) {
lastErrorMessage = error instanceof Error ? error.message : String(error);
}
return (process.env.NEXT_PUBLIC_BASE_URL || 'http://127.0.0.1:3000').replace(/\/+$/, '');
}
async function callRaHApi(pathname, options = {}) {
const baseUrl = await resolveBaseUrl();
const targetUrl = `${baseUrl}${pathname}`;
try {
const response = await fetch(targetUrl, {
...options,
headers: {
'Content-Type': 'application/json',
...(options.headers || {})
}
});
const body = await response.json().catch(() => null);
if (!response.ok || !body || body.success === false) {
const errorMessage = body?.error || `RA-H API request failed at ${pathname}`;
lastErrorMessage = errorMessage;
throw new McpError(ErrorCode.InternalError, errorMessage);
}
lastErrorMessage = null;
return body;
} catch (error) {
const message =
error instanceof McpError
? error.message
: `Unable to reach local RA-H API at ${targetUrl}`;
lastErrorMessage = message;
if (error instanceof McpError) {
throw error;
}
throw new McpError(ErrorCode.InternalError, message);
}
}
mcpServer.registerTool(
'rah_add_node',
{
title: 'Add RA-H node',
description: 'Create a new node in the local RA-H knowledge base.',
inputSchema: addNodeInputSchema,
outputSchema: addNodeOutputSchema
},
async ({ title, content, source, link, description, dimensions, metadata, chunk }) => {
const normalizedDimensions = sanitizeDimensions(dimensions);
if (normalizedDimensions.length === 0) {
throw new McpError(
ErrorCode.InvalidParams,
'At least one dimension/tag is required when creating a node.'
);
}
const payload = {
title: title.trim(),
source: source?.trim() || chunk?.trim() || content?.trim() || undefined,
link: link?.trim() || undefined,
description: description?.trim() || undefined,
dimensions: normalizedDimensions,
metadata: metadata || {}
};
const result = await callRaHApi('/api/nodes', {
method: 'POST',
body: JSON.stringify(payload)
});
const node = result.data;
const summary = `Created node #${node.id}: ${node.title} [${(node.dimensions || normalizedDimensions).join(', ')}]`;
return {
content: [{ type: 'text', text: summary }],
structuredContent: {
nodeId: node.id,
title: node.title,
dimensions: node.dimensions || normalizedDimensions,
message: result.message || summary
}
};
}
);
mcpServer.registerTool(
'rah_search_nodes',
{
title: 'Search RA-H nodes',
description: 'Find existing RA-H entries that mention a topic before adding new ones.',
inputSchema: searchNodesInputSchema,
outputSchema: searchNodesOutputSchema
},
async ({ query, limit = 10, dimensions }) => {
const params = new URLSearchParams();
params.set('search', query.trim());
params.set('limit', String(Math.min(Math.max(limit, 1), 25)));
const dimensionList = sanitizeDimensions(dimensions || []);
if (dimensionList.length > 0) {
params.set('dimensions', dimensionList.join(','));
}
const result = await callRaHApi(`/api/nodes?${params.toString()}`, {
method: 'GET'
});
const nodes = Array.isArray(result.data) ? result.data : [];
const summary = nodes.length === 0
? 'No existing RA-H nodes mention that topic yet.'
: `Found ${nodes.length} node(s) mentioning that topic.`;
return {
content: [{ type: 'text', text: summary }],
structuredContent: {
count: nodes.length,
nodes: nodes.map((node) => ({
id: node.id,
title: node.title,
source: node.source ?? null,
description: node.description ?? null,
link: node.link ?? null,
dimensions: node.dimensions || [],
updated_at: node.updated_at
}))
}
};
}
);
mcpServer.registerTool(
'rah_update_node',
{
title: 'Update RA-H node',
description: 'Update an existing node. Content is APPENDED (not replaced). Dimensions are replaced.',
inputSchema: updateNodeInputSchema,
outputSchema: updateNodeOutputSchema
},
async ({ id, updates }) => {
if (!updates || Object.keys(updates).length === 0) {
throw new McpError(ErrorCode.InvalidParams, 'At least one field must be provided in updates.');
}
// Map MCP legacy fields to canonical source
const mappedUpdates = { ...updates };
if (mappedUpdates.content !== undefined) {
mappedUpdates.source = mappedUpdates.content;
}
if (mappedUpdates.chunk !== undefined && mappedUpdates.source === undefined) {
mappedUpdates.source = mappedUpdates.chunk;
}
delete mappedUpdates.content;
delete mappedUpdates.chunk;
const result = await callRaHApi(`/api/nodes/${id}`, {
method: 'PUT',
body: JSON.stringify(mappedUpdates)
});
const node = result.node || result.data;
return {
content: [{ type: 'text', text: `Updated node #${id}` }],
structuredContent: {
success: true,
nodeId: node?.id || id,
message: result.message || `Updated node #${id}`
}
};
}
);
mcpServer.registerTool(
'rah_get_nodes',
{
title: 'Get RA-H nodes by ID',
description: 'Load full node records by their IDs.',
inputSchema: getNodesInputSchema,
outputSchema: getNodesOutputSchema
},
async ({ nodeIds }) => {
const uniqueIds = Array.from(new Set(nodeIds.filter(id => Number.isFinite(id) && id > 0)));
if (uniqueIds.length === 0) {
throw new McpError(ErrorCode.InvalidParams, 'No valid node IDs provided.');
}
const nodes = [];
for (const id of uniqueIds) {
try {
const result = await callRaHApi(`/api/nodes/${id}`, { method: 'GET' });
if (result.node) {
nodes.push({
id: result.node.id,
title: result.node.title,
source: result.node.source ?? null,
link: result.node.link ?? null,
dimensions: result.node.dimensions || [],
updated_at: result.node.updated_at
});
}
} catch (e) {
// Skip missing nodes
}
}
return {
content: [{ type: 'text', text: `Loaded ${nodes.length} of ${uniqueIds.length} nodes.` }],
structuredContent: {
count: nodes.length,
nodes
}
};
}
);
mcpServer.registerTool(
'rah_create_edge',
{
title: 'Create RA-H edge',
description: 'Create a connection between two nodes.',
inputSchema: createEdgeInputSchema,
outputSchema: createEdgeOutputSchema
},
async ({ sourceId, targetId, explanation }) => {
const payload = {
from_node_id: sourceId,
to_node_id: targetId,
explanation: explanation.trim(),
source: 'helper_name',
created_via: 'mcp'
};
const result = await callRaHApi('/api/edges', {
method: 'POST',
body: JSON.stringify(payload)
});
const edge = result.edge || result.data;
return {
content: [{ type: 'text', text: `Created edge from #${sourceId} to #${targetId}` }],
structuredContent: {
success: true,
edgeId: edge?.id || 0,
message: result.message || `Created edge from #${sourceId} to #${targetId}`
}
};
}
);
mcpServer.registerTool(
'rah_query_edges',
{
title: 'Query RA-H edges',
description: 'Find connections between nodes.',
inputSchema: queryEdgesInputSchema,
outputSchema: queryEdgesOutputSchema
},
async ({ nodeId, limit = 25 }) => {
const params = new URLSearchParams();
if (nodeId) params.set('nodeId', String(nodeId));
params.set('limit', String(Math.min(Math.max(limit, 1), 50)));
const result = await callRaHApi(`/api/edges?${params.toString()}`, {
method: 'GET'
});
const edges = Array.isArray(result.data) ? result.data : [];
return {
content: [{ type: 'text', text: `Found ${edges.length} edge(s).` }],
structuredContent: {
count: edges.length,
edges: edges.map(e => ({
id: e.id,
source_id: e.from_node_id,
target_id: e.to_node_id,
type: e.context?.type ?? null,
weight: typeof e.context?.confidence === 'number' ? e.context.confidence : null
}))
}
};
}
);
mcpServer.registerTool(
'rah_update_edge',
{
title: 'Update RA-H edge',
description: 'Update an existing edge connection.',
inputSchema: updateEdgeInputSchema,
outputSchema: updateEdgeOutputSchema
},
async ({ id, explanation }) => {
if (typeof explanation !== 'string' || explanation.trim().length === 0) {
throw new McpError(ErrorCode.InvalidParams, 'explanation is required.');
}
const result = await callRaHApi(`/api/edges/${id}`, {
method: 'PUT',
body: JSON.stringify({
context: { explanation: explanation.trim(), created_via: 'mcp' }
})
});
return {
content: [{ type: 'text', text: `Updated edge #${id}` }],
structuredContent: {
success: true,
message: result.message || `Updated edge #${id}`
}
};
}
);
mcpServer.registerTool(
'rah_create_dimension',
{
title: 'Create RA-H dimension',
description: 'Create a new dimension/tag for organizing nodes.',
inputSchema: createDimensionInputSchema,
outputSchema: createDimensionOutputSchema
},
async ({ name, description, isPriority }) => {
const payload = { name };
if (description) payload.description = description;
if (isPriority !== undefined) payload.isPriority = isPriority;
const result = await callRaHApi('/api/dimensions', {
method: 'POST',
body: JSON.stringify(payload)
});
const dim = result.data?.dimension || name;
return {
content: [{ type: 'text', text: `Created dimension: ${dim}` }],
structuredContent: {
success: true,
dimension: dim,
message: `Created dimension: ${dim}`
}
};
}
);
mcpServer.registerTool(
'rah_update_dimension',
{
title: 'Update RA-H dimension',
description: 'Update dimension properties (rename, description, lock/unlock).',
inputSchema: updateDimensionInputSchema,
outputSchema: updateDimensionOutputSchema
},
async ({ name, newName, description, isPriority }) => {
const payload = {};
if (newName) {
payload.currentName = name;
payload.newName = newName;
} else {
payload.name = name;
}
if (description !== undefined) payload.description = description;
if (isPriority !== undefined) payload.isPriority = isPriority;
const result = await callRaHApi('/api/dimensions', {
method: 'PUT',
body: JSON.stringify(payload)
});
const dim = result.data?.dimension || newName || name;
return {
content: [{ type: 'text', text: `Updated dimension: ${dim}` }],
structuredContent: {
success: true,
dimension: dim,
message: `Updated dimension: ${dim}`
}
};
}
);
mcpServer.registerTool(
'rah_delete_dimension',
{
title: 'Delete RA-H dimension',
description: 'Delete a dimension and remove it from all nodes.',
inputSchema: deleteDimensionInputSchema,
outputSchema: deleteDimensionOutputSchema
},
async ({ name }) => {
const result = await callRaHApi(`/api/dimensions?name=${encodeURIComponent(name)}`, {
method: 'DELETE'
});
return {
content: [{ type: 'text', text: `Deleted dimension: ${name}` }],
structuredContent: {
success: true,
message: `Deleted dimension: ${name}`
}
};
}
);
mcpServer.registerTool(
'rah_search_embeddings',
{
title: 'Semantic search RA-H',
description: 'Search node content using semantic similarity (vector search).',
inputSchema: searchEmbeddingsInputSchema,
outputSchema: searchEmbeddingsOutputSchema
},
async ({ query, limit = 10 }) => {
const params = new URLSearchParams();
params.set('q', query);
params.set('limit', String(Math.min(Math.max(limit, 1), 20)));
const result = await callRaHApi(`/api/nodes/search?${params.toString()}`, {
method: 'GET'
});
const results = Array.isArray(result.data) ? result.data : [];
return {
content: [{ type: 'text', text: `Found ${results.length} semantically similar result(s).` }],
structuredContent: {
count: results.length,
results: results.map(r => ({
nodeId: r.node_id || r.nodeId || r.id,
title: r.title || 'Untitled',
chunkPreview: (r.source || '').slice(0, 200),
similarity: r.similarity || r.score || 0
}))
}
};
}
);
mcpServer.registerTool(
'rah_extract_url',
{
title: 'Extract URL content',
description: 'Extract content from a webpage URL. Returns title, content, and metadata for creating nodes.',
inputSchema: extractUrlInputSchema,
outputSchema: extractUrlOutputSchema
},
async ({ url }) => {
const result = await callRaHApi('/api/extract/url', {
method: 'POST',
body: JSON.stringify({ url })
});
const summary = `Extracted content from: ${result.title || 'webpage'}`;
return {
content: [{ type: 'text', text: summary }],
structuredContent: {
success: true,
title: result.title || 'Untitled',
content: result.content || '',
chunk: result.chunk || '',
metadata: result.metadata || {}
}
};
}
);
mcpServer.registerTool(
'rah_extract_youtube',
{
title: 'Extract YouTube transcript',
description: 'Extract transcript from a YouTube video. Returns title, channel, transcript, and metadata.',
inputSchema: extractYoutubeInputSchema,
outputSchema: extractYoutubeOutputSchema
},
async ({ url }) => {
const result = await callRaHApi('/api/extract/youtube', {
method: 'POST',
body: JSON.stringify({ url })
});
const summary = `Extracted transcript from: ${result.title || 'YouTube video'}`;
return {
content: [{ type: 'text', text: summary }],
structuredContent: {
success: true,
title: result.title || 'Untitled',
channel: result.channel || 'Unknown',
transcript: result.transcript || '',
metadata: result.metadata || {}
}
};
}
);
mcpServer.registerTool(
'rah_extract_pdf',
{
title: 'Extract PDF content',
description: 'Extract content from a PDF file URL. Returns title, content, and metadata for creating nodes.',
inputSchema: extractPdfInputSchema,
outputSchema: extractPdfOutputSchema
},
async ({ url }) => {
const result = await callRaHApi('/api/extract/pdf', {
method: 'POST',
body: JSON.stringify({ url })
});
const summary = `Extracted content from: ${result.title || 'PDF document'}`;
return {
content: [{ type: 'text', text: summary }],
structuredContent: {
success: true,
title: result.title || 'Untitled PDF',
content: result.content || '',
chunk: result.chunk || '',
metadata: result.metadata || {}
}
};
}
);
// rah_get_context — orientation tool for external agents
mcpServer.registerTool(
'rah_get_context',
{
title: 'Get RA-H context',
description: 'Get orientation context: hub nodes, dimensions, stats, and available guides. Call this first.',
inputSchema: {},
outputSchema: {
stats: z.object({ nodeCount: z.number(), edgeCount: z.number(), dimensionCount: z.number() }),
hubNodes: z.array(z.object({ id: z.number(), title: z.string(), description: z.string().nullable(), edgeCount: z.number() })),
dimensions: z.array(z.object({ name: z.string(), nodeCount: z.number(), description: z.string().nullable() })),
guides: z.array(z.string())
}
},
async () => {
const hubResult = await callRaHApi('/api/nodes?sortBy=edges&limit=5', { method: 'GET' });
const hubNodes = Array.isArray(hubResult.data) ? hubResult.data.map(n => ({
id: n.id, title: n.title, description: n.description ?? null, edgeCount: n.edge_count ?? 0
})) : [];
const dimResult = await callRaHApi('/api/dimensions', { method: 'GET' });
const dimensions = Array.isArray(dimResult.data) ? dimResult.data.map(d => ({
name: d.name, nodeCount: d.node_count ?? 0, description: d.description ?? null
})) : [];
const guideResult = await callRaHApi('/api/guides', { method: 'GET' });
const guides = Array.isArray(guideResult.data) ? guideResult.data.map(g => g.name) : [];
const stats = { nodeCount: 0, edgeCount: 0, dimensionCount: dimensions.length };
try {
const countResult = await callRaHApi('/api/nodes?limit=1', { method: 'GET' });
if (countResult.total !== undefined) stats.nodeCount = countResult.total;
} catch { /* use defaults */ }
return {
content: [{ type: 'text', text: `Knowledge graph: ${stats.dimensionCount} dimensions, ${hubNodes.length} hub nodes. ${guides.length} guides available.` }],
structuredContent: { stats, hubNodes, dimensions, guides }
};
}
);
async function readRequestBody(req) {
if (req.method !== 'POST') return undefined;
try {
const raw = await getRawBody(req, {
limit: '4mb',
encoding: 'utf-8'
});
return raw ? JSON.parse(raw) : undefined;
} catch (error) {
const message = error instanceof Error ? error.message : String(error);
throw new McpError(ErrorCode.ParseError, `Invalid JSON body: ${message}`);
}
}
async function handleMcpRequest(req, res) {
const transport = new StreamableHTTPServerTransport({
sessionIdGenerator: undefined,
enableJsonResponse: true
});
res.on('close', () => {
transport.close().catch(() => undefined);
});
try {
const parsedBody = await readRequestBody(req);
await mcpServer.connect(transport);
await transport.handleRequest(req, res, parsedBody);
} catch (error) {
const message = error instanceof McpError ? error.message : 'MCP transport failure';
res.writeHead(500, { 'Content-Type': 'application/json' });
res.end(JSON.stringify({
jsonrpc: '2.0',
error: { code: ErrorCode.InternalError, message }
}));
logger(`MCP request error: ${message}`);
}
}
function ensureStatusDir() {
fs.mkdirSync(STATUS_DIR, { recursive: true });
}
async function getStatusSnapshot() {
const baseUrl = await resolveBaseUrl();
return {
enabled: !!httpServer,
port: httpPort,
url: httpPort ? `http://${DEFAULT_HOST}:${httpPort}/mcp` : null,
target_base_url: baseUrl,
last_updated: new Date().toISOString(),
last_error: lastErrorMessage
};
}
async function persistStatus() {
try {
if (!httpServer) {
ensureStatusDir();
fs.writeFileSync(
STATUS_FILE,
JSON.stringify({
enabled: false,
port: null,
url: null,
last_updated: new Date().toISOString()
}, null, 2)
);
return;
}
const snapshot = await getStatusSnapshot();
ensureStatusDir();
fs.writeFileSync(STATUS_FILE, JSON.stringify(snapshot, null, 2));
} catch (error) {
logger(`Failed to persist MCP status: ${error instanceof Error ? error.message : String(error)}`);
}
}
async function ensureMcpServer(options = {}) {
if (typeof options.logger === 'function') {
logger = options.logger;
}
if (typeof options.resolveBaseUrl === 'function') {
baseUrlResolver = options.resolveBaseUrl;
}
if (httpServer) {
await persistStatus();
return { port: httpPort };
}
const port = Number(options.port || DEFAULT_PORT);
const host = options.host || DEFAULT_HOST;
httpServer = http.createServer(async (req, res) => {
const parsedUrl = new URL(req.url || '/', `http://${req.headers.host || `${host}:${port}`}`);
if (req.method === 'OPTIONS') {
res.writeHead(204, {
'Access-Control-Allow-Origin': '*',
'Access-Control-Allow-Methods': 'GET,POST,OPTIONS',
'Access-Control-Allow-Headers': 'Content-Type'
});
res.end();
return;
}
if (parsedUrl.pathname === '/status') {
const snapshot = await getStatusSnapshot();
res.writeHead(200, {
'Content-Type': 'application/json',
'Access-Control-Allow-Origin': '*'
});
res.end(JSON.stringify(snapshot));
return;
}
if (parsedUrl.pathname !== '/mcp') {
res.writeHead(404, { 'Content-Type': 'application/json' });
res.end(JSON.stringify({ error: 'Route not found' }));
return;
}
if (req.method !== 'POST') {
res.writeHead(405, { 'Content-Type': 'application/json' });
res.end(JSON.stringify({ error: 'Use POST for MCP requests' }));
return;
}
await handleMcpRequest(req, res);
});
await new Promise((resolve, reject) => {
httpServer.once('error', reject);
httpServer.listen(port, host, () => {
httpPort = port;
logger(`MCP server listening on http://${host}:${port}/mcp`);
resolve();
});
});
await persistStatus();
return { port };
}
function updateBaseUrlResolver(resolver) {
if (typeof resolver === 'function') {
baseUrlResolver = resolver;
persistStatus().catch(() => undefined);
}
}
async function stopMcpServer() {
if (!httpServer) return;
await new Promise((resolve) => {
httpServer.close(() => resolve());
});
httpServer = null;
httpPort = null;
await persistStatus();
}
module.exports = {
ensureMcpServer,
updateBaseUrlResolver,
getStatusSnapshot,
stopMcpServer,
STATUS_FILE
};
if (require.main === module) {
ensureMcpServer({
port: DEFAULT_PORT,
resolveBaseUrl: baseUrlResolver
}).catch((error) => {
console.error('Failed to start RA-H MCP server:', error);
process.exit(1);
});
}