Process & Analyze Pushover Data in Databricks (AWS)
Databricks is a cloud-based service that provides data processing capabilities through Apache Spark. When paired with the CData JDBC Driver, customers can use Databricks to perform data engineering and data science on live Pushover data. This article explains how to host the CData JDBC Driver in AWS, as well as connect to and process live Pushover data in Databricks.
With built-in optimized data processing, the CData JDBC Driver offers unmatched performance for interacting with live Pushover data. When you issue complex SQL queries to Pushover, the driver pushes supported SQL operations, like filters and aggregations, directly to Pushover and utilizes the embedded SQL engine to process unsupported operations client-side (often SQL functions and JOIN operations). Its built-in dynamic metadata querying allows you to work with and analyze Pushover data using native data types.
Install the CData JDBC Driver in Databricks
To work with live Pushover data in Databricks, install the driver on your Databricks cluster.
- Navigate to your Databricks administration screen and select the target cluster.
- On the Libraries tab, click "Install New."
- Select "Upload" as the Library Source and "Jar" as the Library Type.
- Upload the JDBC JAR file (cdata.jdbc.api.jar) from the installation location (typically C:\Program Files\CData\CData API Driver for JDBC\lib).
Access Pushover Data in your Notebook: Python
With the JAR file installed, we are ready to work with live Pushover data in Databricks. Start by creating a new notebook in your workspace. Name the notebook, select Python as the language (though Scala is available as well), and choose the cluster where you installed the JDBC driver. When the notebook launches, we can configure the connection, query Pushover, and create a basic report.
Configure the Connection to Pushover
Connect to Pushover by referencing the JDBC Driver class and constructing a connection string to use in the JDBC URL. Additionally, you will need to set the RTK property in the JDBC URL (unless you are using a Beta driver). You can view the licensing file included in the installation for information on how to set this property.
Step 1: Connection Information
driver = "cdata.jdbc.api.APIDriver" url = "jdbc:api:RTK=5246...;Profile=C:\profiles\Pushover.apip;AuthScheme=APIKey;ProfileSettings='APIKey=your_application_token';"
Built-in Connection String Designer
For assistance in constructing the JDBC URL, use the connection string designer built into the Pushover JDBC Driver. Either double-click the JAR file or execute the jar file from the command-line.
java -jar cdata.jdbc.api.jar
Fill in the connection properties and copy the connection string to the clipboard.
Start by setting the Profile connection property to the location of the Pushover Profile on disk (e.g. C:\profiles\Pushover.apip). Next, set the ProfileSettings connection property to the connection string for Pushover (see below).
Pushover API Profile Settings
Pushover uses API Key authentication. Your Pushover Application API Token is used to authenticate all requests. You can create and manage API tokens in the Pushover dashboard at pushover.net by registering an application under Settings > Your Applications.
After setting the following connection properties, you are ready to connect:
- AuthScheme: Set this to APIKey.
- APIKey: Set this to your 30-character Pushover Application API Token.
Load Pushover Data
Once you configure the connection, you can load Pushover data as a dataframe using the CData JDBC Driver and the connection information.
Step 2: Reading the data
remote_table = spark.read.format ( "jdbc" ) \ .option ( "driver" , driver) \ .option ( "url" , url) \ .option ( "dbtable" , "GroupMembers") \ .load ()
Display Pushover Data
Check the loaded Pushover data by calling the display function.
Step 3: Checking the result
display (remote_table.select ("User"))
Analyze Pushover Data in Databricks
If you want to process data with Databricks SparkSQL, register the loaded data as a Temp View.
Step 4: Create a view or table
remote_table.createOrReplaceTempView ( "SAMPLE_VIEW" )
With the Temp View created, you can use SparkSQL to retrieve the Pushover data for reporting, visualization, and analysis.
% sql SELECT User, Memo FROM SAMPLE_VIEW ORDER BY Memo DESC LIMIT 5
The data from Pushover is only available in the target notebook. If you want to use it with other users, save it as a table.
remote_table.write.format ( "parquet" ) .saveAsTable ( "SAMPLE_TABLE" )
Download a free, 30-day trial of the CData API Driver for JDBC and start working with your live Pushover data in Databricks. Reach out to our Support Team if you have any questions.