Files
AutoGPT/autogpt_platform
Ubbe 86361fc1ae fix(frontend): fix all lint errors and add next/typescript (#10182)
## Changes 🏗️

### ESLint Config
1. **Disabled `react-hooks/exhaustive-deps`:** 
- to prevent unnecessary dependency proliferation and rely on code
review instead
2. **Added
[`next/typescript`](https://nextjs.org/docs/app/api-reference/config/eslint#with-typescript):**
- to the ESLint config to make sure we also have TS linting rules
3. **Added custom rule for `@typescript-eslint/no-unused-vars`:** 
- to allow underscore-prefixed variables (convention for intentionally
unused), in some cases helpful

From now on, whenever we have unused variables or imports, the `lint` CI
will fail 🔴 , thanks to `next/typescript` that adds
`typescript-eslint/no-unused-vars` 💆🏽

### Minor Fixes
- Replaced empty interfaces with type aliases to resolve
`@typescript-eslint/no-empty-object-type` warnings
- Fixed unsafe non-null assertions with proper null checks
- Removed `@ts-ignore` comments in favour of proper type casting ( _when
possible_ 🙏🏽 )

### Google Analytics Component
- Changed Next.js Script strategy from `beforeInteractive` to
`afterInteractive` to resolve Next.js warnings
- this make sure loading analytics does not block page render 🙏🏽 (
_better page load time_ )

### Are these changes safe?

As long as the Typescript compiler does not complain ( check the
`type-check` job ) we should be save. Most changes are removing unused
code, if that code would be used somewhere else the compiler should
catch it and tell us 🫶

I also typed some code when possible, or bypassed the linter when I
thought it was fair for now. I disabled a couple ESLint rules. Most
importantly the `no-explicity-any` one as we have loads of stuff untyped
yet ( _this should be improved once API types are generated for us_ ).

### DX

Added some settings on `.vscode` folder 📁 so that files will be
formatted on save and also ESLint will fix errors on save when able 💯

### 📈 **Result:**

-  All linting errors resolved
-  Improved TypeScript strict mode compliance  
-  Better developer experience with cleaner code

## Checklist 📋

#### For code changes:
- [x] I have clearly listed my changes in the PR description
- [x] I have made a test plan
- [x]  I have tested my changes according to the test plan:
  - [x] Lint CI job passes
- [x] There is not type errors ( _TS will catch issue related to these
changes_ )
2025-06-17 14:29:21 +00:00
..

AutoGPT Platform

Welcome to the AutoGPT Platform - a powerful system for creating and running AI agents to solve business problems. This platform enables you to harness the power of artificial intelligence to automate tasks, analyze data, and generate insights for your organization.

Getting Started

Prerequisites

  • Docker
  • Docker Compose V2 (comes with Docker Desktop, or can be installed separately)
  • Node.js & NPM (for running the frontend application)

Running the System

To run the AutoGPT Platform, follow these steps:

  1. Clone this repository to your local machine and navigate to the autogpt_platform directory within the repository:

    git clone <https://github.com/Significant-Gravitas/AutoGPT.git | git@github.com:Significant-Gravitas/AutoGPT.git>
    cd AutoGPT/autogpt_platform
    
  2. Run the following command:

    cp .env.example .env
    

    This command will copy the .env.example file to .env. You can modify the .env file to add your own environment variables.

  3. Run the following command:

    docker compose up -d
    

    This command will start all the necessary backend services defined in the docker-compose.yml file in detached mode.

  4. Navigate to frontend within the autogpt_platform directory:

    cd frontend
    

    You will need to run your frontend application separately on your local machine.

  5. Run the following command:

    cp .env.example .env.local
    

    This command will copy the .env.example file to .env.local in the frontend directory. You can modify the .env.local within this folder to add your own environment variables for the frontend application.

  6. Run the following command:

    Enable corepack and install dependencies by running:

    corepack enable
    pnpm i
    

    Then start the frontend application in development mode:

    pnpm dev
    
  7. Open your browser and navigate to http://localhost:3000 to access the AutoGPT Platform frontend.

Docker Compose Commands

Here are some useful Docker Compose commands for managing your AutoGPT Platform:

  • docker compose up -d: Start the services in detached mode.
  • docker compose stop: Stop the running services without removing them.
  • docker compose rm: Remove stopped service containers.
  • docker compose build: Build or rebuild services.
  • docker compose down: Stop and remove containers, networks, and volumes.
  • docker compose watch: Watch for changes in your services and automatically update them.

Sample Scenarios

Here are some common scenarios where you might use multiple Docker Compose commands:

  1. Updating and restarting a specific service:

    docker compose build api_srv
    docker compose up -d --no-deps api_srv
    

    This rebuilds the api_srv service and restarts it without affecting other services.

  2. Viewing logs for troubleshooting:

    docker compose logs -f api_srv ws_srv
    

    This shows and follows the logs for both api_srv and ws_srv services.

  3. Scaling a service for increased load:

    docker compose up -d --scale executor=3
    

    This scales the executor service to 3 instances to handle increased load.

  4. Stopping the entire system for maintenance:

    docker compose stop
    docker compose rm -f
    docker compose pull
    docker compose up -d
    

    This stops all services, removes containers, pulls the latest images, and restarts the system.

  5. Developing with live updates:

    docker compose watch
    

    This watches for changes in your code and automatically updates the relevant services.

  6. Checking the status of services:

    docker compose ps
    

    This shows the current status of all services defined in your docker-compose.yml file.

These scenarios demonstrate how to use Docker Compose commands in combination to manage your AutoGPT Platform effectively.

Persisting Data

To persist data for PostgreSQL and Redis, you can modify the docker-compose.yml file to add volumes. Here's how:

  1. Open the docker-compose.yml file in a text editor.

  2. Add volume configurations for PostgreSQL and Redis services:

    services:
      postgres:
        # ... other configurations ...
        volumes:
          - postgres_data:/var/lib/postgresql/data
    
      redis:
        # ... other configurations ...
        volumes:
          - redis_data:/data
    
    volumes:
      postgres_data:
      redis_data:
    
  3. Save the file and run docker compose up -d to apply the changes.

This configuration will create named volumes for PostgreSQL and Redis, ensuring that your data persists across container restarts.