# Export files to MEGA

Robot: `/mega/store`

🤖/mega/store exports encoding results to MEGA.

The URL to the result file will be returned in the <dfn>Assembly Status JSON</dfn>.

Stage: ga

## Usage example

Export uploaded files to \`my\_target\_folder\` on MEGA:

```json
{
  "steps": {
    "exported": {
      "robot": "/mega/store",
      "use": ":original",
      "credentials": "YOUR_MEGA_CREDENTIALS",
      "path": "my_target_folder/${unique_prefix}/${file.url_name}"
    }
  }
}
```

## Parameters

* `interpolate`: Controls whether Assembly Variables are interpolated for individual instruction fields.

  By default, most Robot instruction fields interpolate Assembly Variables. Set this to `false` to treat every instruction field as literal text, or set an individual field path to `false` to treat only that field as literal text. For Robot-specific fields that are literal by default, set this to `true` or set that field path to `true` to opt back into interpolation.

  Use field names such as `path`, or dotted paths such as `ffmpeg.vf` for nested objects.

* `output_meta`: Allows you to specify a set of metadata that is more expensive on CPU power to calculate, and thus is disabled by default to keep your Assemblies processing fast.

  For images, you can add `"has_transparency": true` in this object to extract if the image contains transparent parts and `"dominant_colors": true` to extract an array of hexadecimal color codes from the image.

  For images, you can also add `"blurhash": true` to extract a [BlurHash](https://blurha.sh) string — a compact representation of a placeholder for the image, useful for showing a blurred preview while the full image loads.

  For videos, you can add the `"colorspace": true` parameter to extract the colorspace of the output video.

  For videos, you can also add `"interlaced": true` to detect whether the video is interlaced. This combines the cheap ffprobe `field_order` flag with a bounded `idet` sampling pass over the first frames of the source, exposing `interlaced`, `field_order`, and a diagnostic `interlace_detection` object under `file.meta`. This is computationally expensive and billed accordingly.

  For audio, you can add `"mean_volume": true` to get a single value representing the mean average volume of the audio file.

  You can also set this to `false` to skip metadata extraction and speed up transcoding.

* `result`: Whether the results of this Step should be present in the Assembly Status JSON

* `queue`: Setting the queue to 'batch', manually downgrades the priority of jobs for this step to avoid consuming Priority job slots for jobs that don't need zero queue waiting times

* `force_accept`: Force a Robot to accept a file type it would have ignored.

  By default, Robots ignore files they are not familiar with.
  [🤖/video/encode](/docs/robots/video-encode.md), for
  example, will happily ignore input images.

  With the `force_accept` parameter set to `true`, you can force Robots to accept all files thrown at them.
  This will typically lead to errors and should only be used for debugging or combatting edge cases.

* `ignore_errors`: Ignore errors during specific phases of processing.

  Setting this to `["meta"]` will cause the Robot to ignore errors during metadata extraction.

  Setting this to `["execute"]` will cause the Robot to ignore errors during the main execution phase.

  Setting this to `true` is equivalent to `["meta", "execute"]` and will ignore errors in both phases.

* `use`: Specifies which Step(s) to use as input.

  * You can pick any names for Steps except `":original"` (reserved for user uploads handled by Transloadit)
  * You can provide several Steps as input with arrays:
    ```json
    {
      "use": [
        ":original",
        "encoded",
        "resized"
      ]
    }
    ```
  * You can also tag input Steps with `as` to pass semantic intent to robots:
    ```json
    {
      "use": [
        {
          "name": ":original",
          "as": "image"
        },
        {
          "name": ":original",
          "as": "mask"
        }
      ]
    }
    ```

  > [!Tip]
  > That's likely all you need to know about `use`, but you can view [Advanced use cases](/docs/topics/use-parameter.md).

* `credentials`: Please create your associated <dfn>Template Credentials</dfn> in your Transloadit account and use the name of your <dfn>Template Credentials</dfn> as this parameter's value. They will contain the values for your MEGA object storage bucket, Key, Secret and Bucket region.

  While we recommend to use <dfn>Template Credentials</dfn> at all times, some use cases demand dynamic credentials for which using <dfn>Template Credentials</dfn> is too unwieldy because of their static nature. If you have this requirement, feel free to use the following parameters instead: `"bucket"`, `"bucket_region"`, `"key"`, `"secret"`.

* `bucket`

* `bucket_region`: The region where the bucket is located.

* `host`

* `key`

* `secret`

* `path`: The path at which the file is to be stored. This may include any available [Assembly variables](/docs/topics/assembly-instructions.md#assembly-variables). The path must not be a directory.

* `acl`: The permissions used for this file.

* `headers`: An object containing a list of headers to be set for this file on MEGA object storage, such as `{ FileURL: "${file.url_name}" }`. This can also include any available [Assembly Variables](/docs/topics/assembly-instructions.md#assembly-variables).

  Object Metadata can be specified using `x-amz-meta-*` headers. Note that these headers [do not support non-ASCII metadata values](https://docs.aws.amazon.com/AmazonS3/latest/dev/UsingMetadata.html#UserMetadata).

* `sign_urls_for`: This parameter provides signed URLs in the result JSON (in the `signed_ssl_url` property). The number that you set this parameter to is the URL expiry time in seconds. If this parameter is not used, no URL signing is done.
