# How to integrate Ipinfo io MCP with Pydantic AI

```json
{
  "title": "How to integrate Ipinfo io MCP with Pydantic AI",
  "toolkit": "Ipinfo io",
  "toolkit_slug": "ipinfo_io",
  "framework": "Pydantic AI",
  "framework_slug": "pydantic-ai",
  "url": "https://composio.dev/toolkits/ipinfo_io/framework/pydantic-ai",
  "markdown_url": "https://composio.dev/toolkits/ipinfo_io/framework/pydantic-ai.md",
  "updated_at": "2026-05-12T10:16:20.672Z"
}
```

## Introduction

This guide walks you through connecting Ipinfo io to Pydantic AI using the Composio tool router. By the end, you'll have a working Ipinfo io agent that can get geolocation details for this ip address, check if this ip is using a vpn or proxy, find the company behind this ip address through natural language commands.
This guide will help you understand how to give your Pydantic AI agent real control over a Ipinfo io account through Composio's Ipinfo io MCP server.
Before we dive in, let's take a quick look at the key ideas and tools involved.

## Also integrate Ipinfo io with

- [OpenAI Agents SDK](https://composio.dev/toolkits/ipinfo_io/framework/open-ai-agents-sdk)
- [Claude Agent SDK](https://composio.dev/toolkits/ipinfo_io/framework/claude-agents-sdk)
- [Claude Code](https://composio.dev/toolkits/ipinfo_io/framework/claude-code)
- [Claude Cowork](https://composio.dev/toolkits/ipinfo_io/framework/claude-cowork)
- [Codex](https://composio.dev/toolkits/ipinfo_io/framework/codex)
- [OpenClaw](https://composio.dev/toolkits/ipinfo_io/framework/openclaw)
- [Hermes](https://composio.dev/toolkits/ipinfo_io/framework/hermes-agent)
- [CLI](https://composio.dev/toolkits/ipinfo_io/framework/cli)
- [Google ADK](https://composio.dev/toolkits/ipinfo_io/framework/google-adk)
- [LangChain](https://composio.dev/toolkits/ipinfo_io/framework/langchain)
- [Vercel AI SDK](https://composio.dev/toolkits/ipinfo_io/framework/ai-sdk)
- [Mastra AI](https://composio.dev/toolkits/ipinfo_io/framework/mastra-ai)
- [LlamaIndex](https://composio.dev/toolkits/ipinfo_io/framework/llama-index)
- [CrewAI](https://composio.dev/toolkits/ipinfo_io/framework/crew-ai)

## TL;DR

Here's what you'll learn:
- How to set up your Composio API key and User ID
- How to create a Composio Tool Router session for Ipinfo io
- How to attach an MCP Server to a Pydantic AI agent
- How to stream responses and maintain chat history
- How to build a simple REPL-style chat interface to test your Ipinfo io workflows

## What is Pydantic AI?

Pydantic AI is a Python framework for building AI agents with strong typing and validation. It leverages Pydantic's data validation capabilities to create robust, type-safe AI applications.
Key features include:
- Type Safety: Built on Pydantic for automatic data validation
- MCP Support: Native support for Model Context Protocol servers
- Streaming: Built-in support for streaming responses
- Async First: Designed for async/await patterns

## What is the Ipinfo io MCP server, and what's possible with it?

The Ipinfo io MCP server is an implementation of the Model Context Protocol that connects your AI agent and assistants like Claude, Cursor, etc directly to your Ipinfo io account. It provides structured and secure access to IP address intelligence, so your agent can perform actions like geolocating IPs, retrieving company and carrier details, detecting privacy risks, and fetching abuse contacts automatically.
- Bulk IP address lookups: Perform high-volume geolocation or information retrieval for up to 1,000 IPs or URLs in a single request for audits, analytics, or security reviews.
- Comprehensive IP geolocation and details: Instantly fetch precise geolocation, ASN, and network data for any IP address—including your own—helping with network diagnostics and user profiling.
- Company and carrier information retrieval: Ask your agent to identify the organization or mobile carrier behind an IP address for enhanced business intelligence or fraud analysis.
- Abuse contact identification: Quickly retrieve the correct abuse reporting contact for any IP, streamlining incident response or reporting suspicious activity.
- Privacy and anonymization detection: Let your agent check if an IP is using VPNs, proxies, Tor, or hosting services to identify anonymized or risky traffic for extra security and compliance.

## Supported Tools

| Tool slug | Name | Description |
|---|---|---|
| `IPINFO_IO_BATCH_LITE_LOOKUP` | Batch Lite Lookup | Perform bulk Lite IP lookups for up to 1000 IPs in a single request. Returns lightweight IP information including ASN (Autonomous System Number), AS organization details, and geolocation (country and continent). Use cases: - Look up geolocation for multiple IPs at once - Identify the ISP/organization owning IP addresses - Detect bogon/private IPs (192.168.x.x, 10.x.x.x, etc.) - Retrieve specific fields only (e.g., '8.8.8.8/country' returns just the country) Supports both IPv4 and IPv6 addresses. |
| `IPINFO_IO_BATCH_LOOKUP` | Batch IP Lookup | Perform batch IP lookups to retrieve geolocation and ASN information for multiple IPs in a single request. Use this tool when you need to look up multiple IP addresses efficiently. Supports up to 1000 IPs per request. IMPORTANT: For free tier API tokens, prefix each IP with 'lite/' (e.g., 'lite/8.8.8.8'). Bare IPs without the 'lite/' prefix require a paid subscription. |
| `IPINFO_IO_GET_ABUSE_CONTACT` | Get Abuse Contact | Retrieve abuse contact and organization information for an IP address. Use this tool when you need to identify who owns an IP address or find contact information for reporting malicious activity. Note: Full abuse contact details (email, phone, name) require IPinfo Enterprise tier. For standard tiers, returns organization info (org, country, city, region) which can be used to identify the IP owner. |
| `IPINFO_IO_GET_CARRIER_INFO` | Get IP Carrier Info | Retrieves mobile carrier information for a given IP address. Returns the carrier name, Mobile Country Code (MCC), and Mobile Network Code (MNC) for mobile network IPs. For non-mobile IPs (e.g., datacenter, ISP), returns the organization/ASN name with empty MCC/MNC values. Useful for identifying if an IP belongs to a mobile carrier network and which carrier it is. |
| `IPINFO_IO_GET_CITY_BY_IP` | Get City by IP | Retrieve the city name for a specific IP address. Returns the city name as plain text for any IPv4 or IPv6 address. |
| `IPINFO_IO_GET_COMPANY_INFO` | Get Company Info for an IP | Retrieve company/organization information for an IP address. Returns the company name, domain, and type (business, ISP, hosting, etc.) associated with the IP. Supports both IPv4 and IPv6 addresses. |
| `IPINFO_IO_GET_CORE_FIELD_BY_ME` | Get Core Field by Me | Retrieve a specific field from core IP information about the current IP. Use this tool when you need just one specific piece of information (like city, country, hostname, or AS details) about the caller's IP address instead of fetching the complete IP profile. |
| `IPINFO_IO_GET_COUNTRY_BY_IP` | Get Country by IP | Retrieve the two-letter ISO 3166 country code for an IP address. Use when you need to quickly identify which country an IP address is located in without requesting full geolocation details. |
| `IPINFO_IO_GET_CURRENT_IP` | Get Current IP | Retrieve the current public/external IP address. Use this tool when you need to determine the caller's public IP address. |
| `IPINFO_IO_GET_CURRENT_IP_INFO` | Get Current IP Information | Retrieve comprehensive IP information about the caller's current IP address. Returns geolocation (city, region, country, coordinates, postal code, timezone), ASN details, company info, privacy detection flags (VPN/proxy/Tor), carrier info for mobile IPs, and abuse contact information. Use this when you need to identify and analyze the caller's IP address without specifying an IP parameter. |
| `IPINFO_IO_GET_CURRENT_LOC` | Get Current Location | Retrieve geographic coordinates for the current IP address. Returns the latitude and longitude of the caller's IP address as a comma-separated string in the format 'latitude,longitude'. Use this when you need quick location coordinates without full geolocation details. |
| `IPINFO_IO_GET_CURRENT_REGION` | Get Current Region | Retrieve the region/state for the caller's current IP address. Use this tool when you need to identify the geographic region or state where the current IP address is located. Returns a plain text region name. |
| `IPINFO_IO_GET_GEO_BY_IP` | Get Geo by IP | Get geolocation data only for an IP address. Returns city, region, country, continent, coordinates, timezone, and postal code. Use this when you need detailed geographic location information for an IP address. |
| `IPINFO_IO_GET_HOSTNAME_BY_IP` | Get Hostname by IP | Retrieve the hostname (reverse DNS) for an IP address. Use this tool to look up the hostname associated with any IPv4 or IPv6 address. Returns the hostname as a string. If no hostname is available, returns an empty string. |
| `IPINFO_IO_GET_IP_BY_IP` | Get IP by IP | Retrieve the IP address for a specified IP as plain text. Use this tool to echo back an IP address from the IPInfo API. This endpoint returns the IP address as plain text (not JSON). Useful for verifying IP address formatting or testing connectivity. |
| `IPINFO_IO_GET_IP_INFO` | Get IP Information | Retrieve geolocation and ASN information for an IP address. Use this tool to look up country, continent, and Autonomous System (AS) details for any IPv4 or IPv6 address. Pass 'me' or omit the ip parameter to get information about the caller's own IP address. For private/reserved (bogon) IP addresses like 192.168.x.x or 10.x.x.x, only the ip and bogon fields will be populated. |
| `IPINFO_IO_GET_IP_INFO_BY_IP` | Get Comprehensive IP Information | Retrieve comprehensive information about a specified IP address. Returns geographic location (city, region, country, coordinates), ASN details, company/organization info, privacy detection flags (VPN, proxy, Tor), carrier information for mobile IPs, and associated domain names. Supports both IPv4 and IPv6 addresses. |
| `IPINFO_IO_GET_LITE_FIELD_BY_IP` | Get Lite Field By IP | Retrieve a specific field from lightweight IP information. Use this tool to get a single piece of information about an IP address (e.g., just the country, or just the ASN) without fetching the full IP data. This is more efficient when you only need one specific field. Supported fields: ip, asn, as_name, as_domain, country_code, country, continent_code, continent. |
| `IPINFO_IO_GET_LOCATION_BY_IP` | Get Location by IP | Retrieve geographic coordinates (latitude, longitude) for an IP address. Returns location as comma-separated text in the format 'latitude,longitude'. Use when you need precise geolocation coordinates for IPv4 or IPv6 addresses. |
| `IPINFO_IO_GET_ORG_BY_IP` | Get Organization by IP | Retrieve ASN and organization name for an IP address as plain text. Use this tool when you need to quickly identify which organization or ASN owns a specific IP address. Returns a plain text string containing the Autonomous System Number (ASN) and organization name (e.g., 'AS15169 Google LLC'). |
| `IPINFO_IO_GET_PLUS_FIELD_BY_ME` | Get Plus Field for Current IP | Retrieve a specific field from plus IP information about the current IP. Use this tool to get individual fields from IPInfo's Plus API for your current IP address. This includes detailed geographic data (city, region, coordinates), AS information, mobile carrier details, and privacy flags. Each field returns its specific data type (string, number, boolean, or object). Note: This endpoint requires a Plus API subscription. Returns 403 if the subscription doesn't include Plus features. |
| `IPINFO_IO_GET_POSTAL_BY_IP` | Get Postal Code by IP | Retrieve the postal/zip code for an IP address. Use this when you need to identify the geographic postal code associated with an IPv4 or IPv6 address. |
| `IPINFO_IO_GET_PRIVACY_DETAILS` | Get IP Privacy Details | Retrieve privacy/anonymous IP detection flags for an IP address. Returns whether the IP is associated with VPN, proxy, Tor, relay, or hosting services. Use this to detect potentially anonymous or masked traffic from an IP address. Note: This endpoint requires a Privacy Detection API subscription. If privacy data is unavailable for your subscription level, the action will return default values (all flags set to False). |
| `IPINFO_IO_GET_REGION_BY_IP` | Get Region by IP | Retrieve the region/state for a specified IP address. Use this tool when you need to identify the geographic region or state where a specific IPv4 or IPv6 address is located. Returns a plain text region name. |
| `IPINFO_IO_GET_TIMEZONE_BY_IP` | Get Timezone by IP | Retrieve the IANA timezone for a given IP address. Use this tool when you need to determine the local timezone of an IP address location for scheduling, time conversion, or geographic analysis purposes. |
| `IPINFO_IO_GET_TOKEN_INFO` | Get Token Information | Retrieve API service request limit information by access token. Returns usage statistics, request limits, remaining quota, and available API features. Use this to check your token's rate limits, current usage, and feature access before making other API calls. |
| `IPINFO_IO_MAP_IPS` | Map IP Addresses | Create an IPinfo map visualization from a list of IP addresses. Use this tool to generate an interactive map showing the geographic locations of multiple IP addresses. The tool accepts up to 500,000 IPs and returns a link to a visual map where all IP locations are plotted. Useful for visualizing the geographic distribution of network traffic, analyzing user locations, or investigating security incidents across multiple IP addresses. |

## Supported Triggers

None listed.

## Creating MCP Server - Stand-alone vs Composio SDK

The Ipinfo io MCP server is an implementation of the Model Context Protocol that connects your AI agent to Ipinfo io. It provides structured and secure access so your agent can perform Ipinfo io operations on your behalf through a secure, permission-based interface.
With Composio's managed implementation, you don't have to create your own developer app. For production, if you're building an end product, we recommend using your own credentials. The managed server helps you prototype fast and go from 0-1 faster.

## Step-by-step Guide

### 1. Prerequisites

Before starting, make sure you have:
- Python 3.9 or higher
- A Composio account with an active API key
- Basic familiarity with Python and async programming

### 1. Getting API Keys for OpenAI and Composio

OpenAI API Key
- Go to the [OpenAI dashboard](https://platform.openai.com/settings/organization/api-keys) and create an API key. You'll need credits to use the models, or you can connect to another model provider.
- Keep the API key safe.
Composio API Key
- Log in to the [Composio dashboard](https://dashboard.composio.dev?utm_source=toolkits&utm_medium=framework_docs).
- Navigate to your API settings and generate a new API key.
- Store this key securely as you'll need it for authentication.

### 2. Install dependencies

Install the required libraries.
What's happening:
- composio connects your agent to external SaaS tools like Ipinfo io
- pydantic-ai lets you create structured AI agents with tool support
- python-dotenv loads your environment variables securely from a .env file
```bash
pip install composio pydantic-ai python-dotenv
```

### 3. Set up environment variables

Create a .env file in your project root.
What's happening:
- COMPOSIO_API_KEY authenticates your agent to Composio's API
- USER_ID associates your session with your account for secure tool access
- OPENAI_API_KEY to access OpenAI LLMs
```bash
COMPOSIO_API_KEY=your_composio_api_key_here
USER_ID=your_user_id_here
OPENAI_API_KEY=your_openai_api_key
```

### 4. Import dependencies

What's happening:
- We load environment variables and import required modules
- Composio manages connections to Ipinfo io
- MCPServerStreamableHTTP connects to the Ipinfo io MCP server endpoint
- Agent from Pydantic AI lets you define and run the AI assistant
```python
import asyncio
import os
from dotenv import load_dotenv
from composio import Composio
from pydantic_ai import Agent
from pydantic_ai.mcp import MCPServerStreamableHTTP

load_dotenv()
```

### 5. Create a Tool Router Session

What's happening:
- We're creating a Tool Router session that gives your agent access to Ipinfo io tools
- The create method takes the user ID and specifies which toolkits should be available
- The returned session.mcp.url is the MCP server URL that your agent will use
```python
async def main():
    api_key = os.getenv("COMPOSIO_API_KEY")
    user_id = os.getenv("USER_ID")
    if not api_key or not user_id:
        raise RuntimeError("Set COMPOSIO_API_KEY and USER_ID in your environment")

    # Create a Composio Tool Router session for Ipinfo io
    composio = Composio(api_key=api_key)
    session = composio.create(
        user_id=user_id,
        toolkits=["ipinfo_io"],
    )
    url = session.mcp.url
    if not url:
        raise ValueError("Composio session did not return an MCP URL")
```

### 6. Initialize the Pydantic AI Agent

What's happening:
- The MCP client connects to the Ipinfo io endpoint
- The agent uses GPT-5 to interpret user commands and perform Ipinfo io operations
- The instructions field defines the agent's role and behavior
```python
# Attach the MCP server to a Pydantic AI Agent
ipinfo_io_mcp = MCPServerStreamableHTTP(url, headers={"x-api-key": COMPOSIO_API_KEY})
agent = Agent(
    "openai:gpt-5",
    toolsets=[ipinfo_io_mcp],
    instructions=(
        "You are a Ipinfo io assistant. Use Ipinfo io tools to help users "
        "with their requests. Ask clarifying questions when needed."
    ),
)
```

### 7. Build the chat interface

What's happening:
- The agent reads input from the terminal and streams its response
- Ipinfo io API calls happen automatically under the hood
- The model keeps conversation history to maintain context across turns
```python
# Simple REPL with message history
history = []
print("Chat started! Type 'exit' or 'quit' to end.\n")
print("Try asking the agent to help you with Ipinfo io.\n")

while True:
    user_input = input("You: ").strip()
    if user_input.lower() in {"exit", "quit", "bye"}:
        print("\nGoodbye!")
        break
    if not user_input:
        continue

    print("\nAgent is thinking...\n", flush=True)

    async with agent.run_stream(user_input, message_history=history) as stream_result:
        collected_text = ""
        async for chunk in stream_result.stream_output():
            text_piece = None
            if isinstance(chunk, str):
                text_piece = chunk
            elif hasattr(chunk, "delta") and isinstance(chunk.delta, str):
                text_piece = chunk.delta
            elif hasattr(chunk, "text"):
                text_piece = chunk.text
            if text_piece:
                collected_text += text_piece
        result = stream_result

    print(f"Agent: {collected_text}\n")
    history = result.all_messages()
```

### 8. Run the application

What's happening:
- The asyncio loop launches the agent and keeps it running until you exit
```python
if __name__ == "__main__":
    asyncio.run(main())
```

## Complete Code

```python
import asyncio
import os
from dotenv import load_dotenv
from composio import Composio
from pydantic_ai import Agent
from pydantic_ai.mcp import MCPServerStreamableHTTP

load_dotenv()

async def main():
    api_key = os.getenv("COMPOSIO_API_KEY")
    user_id = os.getenv("USER_ID")
    if not api_key or not user_id:
        raise RuntimeError("Set COMPOSIO_API_KEY and USER_ID in your environment")

    # Create a Composio Tool Router session for Ipinfo io
    composio = Composio(api_key=api_key)
    session = composio.create(
        user_id=user_id,
        toolkits=["ipinfo_io"],
    )
    url = session.mcp.url
    if not url:
        raise ValueError("Composio session did not return an MCP URL")

    # Attach the MCP server to a Pydantic AI Agent
    ipinfo_io_mcp = MCPServerStreamableHTTP(url, headers={"x-api-key": COMPOSIO_API_KEY})
    agent = Agent(
        "openai:gpt-5",
        toolsets=[ipinfo_io_mcp],
        instructions=(
            "You are a Ipinfo io assistant. Use Ipinfo io tools to help users "
            "with their requests. Ask clarifying questions when needed."
        ),
    )

    # Simple REPL with message history
    history = []
    print("Chat started! Type 'exit' or 'quit' to end.\n")
    print("Try asking the agent to help you with Ipinfo io.\n")

    while True:
        user_input = input("You: ").strip()
        if user_input.lower() in {"exit", "quit", "bye"}:
            print("\nGoodbye!")
            break
        if not user_input:
            continue

        print("\nAgent is thinking...\n", flush=True)

        async with agent.run_stream(user_input, message_history=history) as stream_result:
            collected_text = ""
            async for chunk in stream_result.stream_output():
                text_piece = None
                if isinstance(chunk, str):
                    text_piece = chunk
                elif hasattr(chunk, "delta") and isinstance(chunk.delta, str):
                    text_piece = chunk.delta
                elif hasattr(chunk, "text"):
                    text_piece = chunk.text
                if text_piece:
                    collected_text += text_piece
            result = stream_result

        print(f"Agent: {collected_text}\n")
        history = result.all_messages()

if __name__ == "__main__":
    asyncio.run(main())
```

## Conclusion

You've built a Pydantic AI agent that can interact with Ipinfo io through Composio's Tool Router. With this setup, your agent can perform real Ipinfo io actions through natural language.
You can extend this further by:
- Adding other toolkits like Gmail, HubSpot, or Salesforce
- Building a web-based chat interface around this agent
- Using multiple MCP endpoints to enable cross-app workflows (for example, Gmail + Ipinfo io for workflow automation)
This architecture makes your AI agent "agent-native", able to securely use APIs in a unified, composable way without custom integrations.

## How to build Ipinfo io MCP Agent with another framework

- [OpenAI Agents SDK](https://composio.dev/toolkits/ipinfo_io/framework/open-ai-agents-sdk)
- [Claude Agent SDK](https://composio.dev/toolkits/ipinfo_io/framework/claude-agents-sdk)
- [Claude Code](https://composio.dev/toolkits/ipinfo_io/framework/claude-code)
- [Claude Cowork](https://composio.dev/toolkits/ipinfo_io/framework/claude-cowork)
- [Codex](https://composio.dev/toolkits/ipinfo_io/framework/codex)
- [OpenClaw](https://composio.dev/toolkits/ipinfo_io/framework/openclaw)
- [Hermes](https://composio.dev/toolkits/ipinfo_io/framework/hermes-agent)
- [CLI](https://composio.dev/toolkits/ipinfo_io/framework/cli)
- [Google ADK](https://composio.dev/toolkits/ipinfo_io/framework/google-adk)
- [LangChain](https://composio.dev/toolkits/ipinfo_io/framework/langchain)
- [Vercel AI SDK](https://composio.dev/toolkits/ipinfo_io/framework/ai-sdk)
- [Mastra AI](https://composio.dev/toolkits/ipinfo_io/framework/mastra-ai)
- [LlamaIndex](https://composio.dev/toolkits/ipinfo_io/framework/llama-index)
- [CrewAI](https://composio.dev/toolkits/ipinfo_io/framework/crew-ai)

## Related Toolkits

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- [Anonyflow](https://composio.dev/toolkits/anonyflow) - Anonyflow is a service for encryption-based data anonymization and secure data sharing. It helps organizations meet GDPR, CCPA, and HIPAA data privacy compliance requirements.
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- [Api sports](https://composio.dev/toolkits/api_sports) - Api sports is a comprehensive sports data platform covering 2,000+ competitions with live scores and 15+ years of stats. Instantly access up-to-date sports information for analysis, apps, or chatbots.
- [Apify](https://composio.dev/toolkits/apify) - Apify is a cloud platform for building, deploying, and managing web scraping and automation tools called Actors. It lets you automate data extraction and workflow tasks at scale—no infrastructure headaches.
- [Autom](https://composio.dev/toolkits/autom) - Autom is a lightning-fast search engine results data platform for Google, Bing, and Brave. Developers use it to access fresh, low-latency SERP data on demand.
- [Beaconchain](https://composio.dev/toolkits/beaconchain) - Beaconchain is a real-time analytics platform for Ethereum 2.0's Beacon Chain. It provides detailed insights into validators, blocks, and overall network performance.
- [Big data cloud](https://composio.dev/toolkits/big_data_cloud) - BigDataCloud provides APIs for geolocation, reverse geocoding, and address validation. Instantly access reliable location intelligence to enhance your applications and workflows.
- [Bigpicture io](https://composio.dev/toolkits/bigpicture_io) - BigPicture.io offers APIs for accessing detailed company and profile data. Instantly enrich your applications with up-to-date insights on 20M+ businesses.
- [Bitquery](https://composio.dev/toolkits/bitquery) - Bitquery is a blockchain data platform offering indexed, real-time, and historical data from 40+ blockchains via GraphQL APIs. Get unified, reliable access to complex on-chain data for analytics, trading, and research.
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- [Cabinpanda](https://composio.dev/toolkits/cabinpanda) - Cabinpanda is a data collection platform for building and managing online forms. It helps streamline how you gather, organize, and analyze responses.

## Frequently Asked Questions

### What are the differences in Tool Router MCP and Ipinfo io MCP?

With a standalone Ipinfo io MCP server, the agents and LLMs can only access a fixed set of Ipinfo io tools tied to that server. However, with the Composio Tool Router, agents can dynamically load tools from Ipinfo io and many other apps based on the task at hand, all through a single MCP endpoint.

### Can I use Tool Router MCP with Pydantic AI?

Yes, you can. Pydantic AI fully supports MCP integration. You get structured tool calling, message history handling, and model orchestration while Tool Router takes care of discovering and serving the right Ipinfo io tools.

### Can I manage the permissions and scopes for Ipinfo io while using Tool Router?

Yes, absolutely. You can configure which Ipinfo io scopes and actions are allowed when connecting your account to Composio. You can also bring your own OAuth credentials or API configuration so you keep full control over what the agent can do.

### How safe is my data with Composio Tool Router?

All sensitive data such as tokens, keys, and configuration is fully encrypted at rest and in transit. Composio is SOC 2 Type 2 compliant and follows strict security practices so your Ipinfo io data and credentials are handled as safely as possible.

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