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AWS Lambda is a compute service that lets you build applications that respond quickly to new information and events. AWS Lambda functions can work with live PingOne data when paired with the CData JDBC Driver for PingOne. This article describes how to connect to and query PingOne data from an AWS Lambda function built in Eclipse.
At the time this article was written (June 2022), Eclipse version 2019-12 and Java 8 were the highest versions supported by the AWS Toolkit for Eclipse.
With built-in optimized data processing, the CData JDBC Driver offers unmatched performance for interacting with live PingOne data. When you issue complex SQL queries to PingOne, the driver pushes supported SQL operations, like filters and aggregations, directly to PingOne and utilizes the embedded SQL engine to process unsupported operations client-side (often SQL functions and JOIN operations). In addition, its built-in dynamic metadata querying allows you to work with and analyze PingOne data using native data types.
To connect to PingOne, configure these properties:
is the ID of the PingOne environment in which your Worker application resides. This parameter is used only when the environment is using the default PingOne domain (auth.pingone). It is configured after you have created the custom OAuth application you will use to authenticate to PingOne, as described in Creating a Custom OAuth Application in the Help documentation.
First, find the value for this property:
WorkerAppEnvironmentId='11e96fc7-aa4d-4a60-8196-9acf91424eca'
Now set to the value of the Environment ID field.
is the base URL of the PingOne authorization server for the environment where your application is located. This property is only used when you have set up a custom domain for the environment, as described in the PingOne platform API documentation. See Custom Domains.
PingOne supports both OAuth and OAuthClient authentication. In addition to performing the configuration steps described above, there are two more steps to complete to support OAuth or OAuthCliet authentication:
Set to OAuth.
Get and Refresh the OAuth Access Token
After setting the following, you are ready to connect:
When you connect, the driver opens PingOne's OAuth endpoint in your default browser. Log in and grant permissions to the application. The driver then completes the OAuth process:
The driver refreshes the access token automatically when it expires.
For other OAuth methods, including Web Applications, Headless Machines, or Client Credentials Grant, refer to the Help documentation.
NOTE: To use the JDBC driver in an AWS Lambda function, you will need a license (full or trial) and a Runtime Key (RTK). For more information on obtaining this license (or a trial), contact our sales team.
For assistance constructing the JDBC URL, use the connection string designer built into the PingOne JDBC Driver. Double-click the JAR file or execute the jar file from the command line.
java -jar cdata.jdbc.pingone.jarπ Using the built-in connection string designer to generate a JDBC URL (Salesforce is shown.)
Fill in the connection properties (including the RTK) and copy the connection string to the clipboard.
Create a new AWS Lambda Java Project in Eclipse using the AWS Toolkit for Eclipse. You can follow the tutorial from AWS (amazon.com).
For this article, set the Input Type for the project to "Custom" so we can enter a table name as the input.
π Creating a new AWS Lambda Java projectimport java.sql.Connection; import java.sql.DriverManager; import java.sql.ResultSet; import java.sql.ResultSetMetaData; import java.sql.SQLException; import java.sql.Statement;
Replace the body of the handleRequest method with the code below. Be sure to fill in the connection string in the DriverManager.getConnection method call.
String query = "SELECT * FROM " + input;
try {
Class.forName("cdata.jdbc.pingone.PingOneDriver");
} catch (ClassNotFoundException ex) {
context.getLogger().log("Error: class not found");
}
Connection connection = null;
try {
connection = DriverManager.getConnection("jdbc:cdata:pingone:RTK=52465...;AuthScheme=OAuth;WorkerAppEnvironmentId=eebc33a8-xxxx-4f3a-yyyy-d3e5262fd49e;Region=NA;OAuthClientId=client_id;OAuthClientSecret=client_secret;InitiateOAuth=GETANDREFRESH;");
} catch (SQLException ex) {
context.getLogger().log("Error getting connection: " + ex.getMessage());
} catch (Exception ex) {
context.getLogger().log("Error: " + ex.getMessage());
}
if(connection != null)
{
context.getLogger().log("Connected Successfully!\n");
}
ResultSet resultSet = null;
try
{
//executing query
Statement stmt = connection.createStatement();
resultSet = stmt.executeQuery(query);
ResultSetMetaData metaData = resultSet.getMetaData();
int numCols = metaData.getColumnCount();
//printing the results
while(resultSet.next())
{
for(int i = 1; i <= numCols; i++)
{
System.out.printf("%-25s", (resultSet.getObject(i) != null) ? resultSet.getObject(i).toString().replaceAll("\n", "") : null );
}
System.out.print("\n");
}
}
catch (SQLException ex)
{
System.out.println("SQL Exception: " + ex.getMessage());
}
catch (Exception ex)
{
System.out.println("General exception: " + ex.getMessage());
}
String output = "query: " + query + " complete";
return output;
Once you build the function in Eclipse, you are ready to upload and run the function. In this article, the output is written to the AWS logs, but you can use this is a template to implement you own custom business logic to work with PingOne data in AWS Lambda functions.
Download a free, 30-day trial of the CData JDBC Driver for PingOne and start working with your live PingOne data in AWS Lambda. Reach out to our Support Team if you have any questions.
Download a free trial of the PingOne Driver to get started:
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