# Secure channel encryption (/en/realtime-media/rtc/build/secure-and-protect-channels/media-stream-encryption/electron)

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Media stream encryption encrypts audio and video streams with a unique [key](https://en.wikipedia.org/wiki/Public_key_certificate) and [salt](https://en.wikipedia.org/wiki/Salt_%28cryptography%29) controlled by your app server. Encryption ensures that only authorized users in a channel can see and hear each other. RTC SDK provides built-in encryption methods that you can use to guarantee data confidentiality during transmission.

This article describes how to integrate Agora built-in media stream encryption into your app.

## Understand the tech

The following figure illustrates data transfer with media stream encryption enabled.

**Data transfer process**

      
  
      
  
      
  
      
  
      
  
      
![Encrypted media stream transfer process](https://assets-docs.agora.io/images/video-sdk/encrypt_media_streams_dataTransferProcess.svg)

    
  
      
  
      
  
      
  
## Prerequisites

Ensure that you have implemented the [SDK quickstart](/en/realtime-media/rtc/get-started-sdk) in your project.

## Implement media stream encryption

      
  
      
  
      
  
      
  
      
  
      
To add built-in media stream encryption to your app, refer to the following steps.

1. Generate a key and salt on your server.

   To generate a random 32-byte hexadecimal key on your server as a string, run:

   ```bash
   openssl rand -hex 32
   ```

   To generate a random Base64-encoded, 32-byte salt on your server, run:

   ```bash
   openssl rand -base64 32
   ```

2. Implement client-side logic.

<CalloutContainer type="info">
  <CalloutDescription>
    All users in a channel must use the same encryption mode, key, and salt. Discrepancies may lead to unexpected behavior, such as black screens or audio loss.

    To ensure security, use a new key and salt each time you enable media stream encryption.
  </CalloutDescription>
</CalloutContainer>

Obtain the string key and Base64-encoded salt from your server, convert the salt to a 32-byte array, and call `enableEncryption` before joining a channel. Set the encryption mode to `Aes128Gcm2` or `Aes256Gcm2` and pass the key and salt to the SDK.

```typescript
const encryptionMode = EncryptionMode.Aes128Gcm2;
const encryptionKey = await getEncryptionKeyFromServer();
const encryptionKdfSalt = await getEncryptionSaltBytesFromServer();

if (!encryptionKey) {
  throw new Error('encryptionKey is invalid');
}

rtcEngine.enableEncryption(true, {
  encryptionMode,
  encryptionKey,
  encryptionKdfSalt,
});
```

## Reference

### Sample projects

* [Electron encryption example](https://github.com/AgoraIO-Extensions/Electron-SDK/blob/main/example/src/renderer/examples/advanced/Encryption/Encryption.tsx)
* [React Native encryption example](https://github.com/AgoraIO-Extensions/react-native-agora/blob/main/example/src/examples/advanced/Encryption/Encryption.tsx)

### API reference

* [`enableEncryption`](https://api-ref.agora.io/en/video-sdk/electron/4.x/API/class_irtcengine.html#api_irtcengine_enableencryption)
* [`EncryptionConfig`](https://api-ref.agora.io/en/video-sdk/electron/4.x/API/class_encryptionconfig.html)

    
  
      
  
      
  
      
  
