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PubSubToSplunk.java
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PubSubToSplunk.java
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/*
* Copyright (C) 2019 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package com.google.cloud.teleport.templates;
import com.google.cloud.teleport.coders.FailsafeElementCoder;
import com.google.cloud.teleport.splunk.SplunkEvent;
import com.google.cloud.teleport.splunk.SplunkEventCoder;
import com.google.cloud.teleport.splunk.SplunkIO;
import com.google.cloud.teleport.splunk.SplunkWriteError;
import com.google.cloud.teleport.templates.common.ErrorConverters;
import com.google.cloud.teleport.templates.common.JavascriptTextTransformer.FailsafeJavascriptUdf;
import com.google.cloud.teleport.templates.common.JavascriptTextTransformer.JavascriptTextTransformerOptions;
import com.google.cloud.teleport.templates.common.PubsubConverters.PubsubReadSubscriptionOptions;
import com.google.cloud.teleport.templates.common.PubsubConverters.PubsubWriteDeadletterTopicOptions;
import com.google.cloud.teleport.templates.common.SplunkConverters;
import com.google.cloud.teleport.templates.common.SplunkConverters.SplunkOptions;
import com.google.cloud.teleport.util.KMSEncryptedNestedValueProvider;
import com.google.cloud.teleport.values.FailsafeElement;
import com.google.gson.Gson;
import com.google.gson.GsonBuilder;
import com.google.gson.JsonPrimitive;
import com.google.gson.JsonSerializer;
import java.nio.charset.StandardCharsets;
import org.apache.beam.sdk.Pipeline;
import org.apache.beam.sdk.PipelineResult;
import org.apache.beam.sdk.coders.CoderRegistry;
import org.apache.beam.sdk.coders.StringUtf8Coder;
import org.apache.beam.sdk.io.gcp.pubsub.PubsubIO;
import org.apache.beam.sdk.io.gcp.pubsub.PubsubMessage;
import org.apache.beam.sdk.metrics.Counter;
import org.apache.beam.sdk.metrics.Metrics;
import org.apache.beam.sdk.options.PipelineOptionsFactory;
import org.apache.beam.sdk.options.ValueProvider;
import org.apache.beam.sdk.transforms.DoFn;
import org.apache.beam.sdk.transforms.Flatten;
import org.apache.beam.sdk.transforms.MapElements;
import org.apache.beam.sdk.transforms.PTransform;
import org.apache.beam.sdk.transforms.ParDo;
import org.apache.beam.sdk.values.PBegin;
import org.apache.beam.sdk.values.PCollection;
import org.apache.beam.sdk.values.PCollectionList;
import org.apache.beam.sdk.values.PCollectionTuple;
import org.apache.beam.sdk.values.TupleTag;
import org.apache.beam.vendor.guava.v26_0_jre.com.google.common.base.MoreObjects;
import org.apache.beam.vendor.guava.v26_0_jre.com.google.common.collect.ImmutableList;
import org.slf4j.Logger;
import org.slf4j.LoggerFactory;
/**
* The {@link PubSubToSplunk} pipeline is a streaming pipeline which ingests data from Cloud
* Pub/Sub, executes a UDF, converts the output to {@link SplunkEvent}s and writes those records
* into Splunk's HEC endpoint. Any errors which occur in the execution of the UDF, conversion to
* {@link SplunkEvent} or writing to HEC will be streamed into a Pub/Sub topic.
*
* <p><b>Pipeline Requirements</b>
*
* <ul>
* <li>The source Pub/Sub subscription exists.
* <li>HEC end-point is routable from the VPC where the Dataflow job executes.
* <li>Deadletter topic exists.
* </ul>
*
* <p><b>Example Usage</b>
*
* <pre>
* # Set the pipeline vars
* PROJECT_ID=PROJECT ID HERE
* BUCKET_NAME=BUCKET NAME HERE
* PIPELINE_FOLDER=gs://${BUCKET_NAME}/dataflow/pipelines/pubsub-to-bigquery
* USE_SUBSCRIPTION=true or false depending on whether the pipeline should read
* from a Pub/Sub Subscription or a Pub/Sub Topic.
*
* # Set the runner
* RUNNER=DataflowRunner
*
* # Build the template
* mvn compile exec:java \
* -Dexec.mainClass=com.google.cloud.teleport.templates.PubSubToSplunk \
* -Dexec.cleanupDaemonThreads=false \
* -Dexec.args=" \
* --project=${PROJECT_ID} \
* --stagingLocation=${PIPELINE_FOLDER}/staging \
* --tempLocation=${PIPELINE_FOLDER}/temp \
* --templateLocation=${PIPELINE_FOLDER}/template/PubSubToSplunk \
* --runner=${RUNNER}
* "
*
* # Execute the template
* JOB_NAME=pubsub-to-splunk-$USER-`date +"%Y%m%d-%H%M%S%z"`
* BATCH_COUNT=1
* PARALLELISM=5
*
* # Execute the templated pipeline:
* gcloud dataflow jobs run ${JOB_NAME} \
* --gcs-location=${PIPELINE_FOLDER}/template/PubSubToSplunk \
* --zone=us-east1-d \
* --parameters \
* "inputSubscription=projects/${PROJECT_ID}/subscriptions/input-subscription-name,\
* token=my-splunk-hec-token,\
* url=http://splunk-hec-server-address:8088,\
* batchCount=${BATCH_COUNT},\
* parallelism=${PARALLELISM},\
* disableCertificateValidation=false,\
* outputDeadletterTopic=projects/${PROJECT_ID}/topics/deadletter-topic-name,\
* javascriptTextTransformGcsPath=gs://${BUCKET_NAME}/splunk/js/my-js-udf.js,\
* javascriptTextTransformFunctionName=myUdf"
* </pre>
*/
public class PubSubToSplunk {
/** String/String Coder for FailsafeElement. */
public static final FailsafeElementCoder<String, String> FAILSAFE_ELEMENT_CODER =
FailsafeElementCoder.of(StringUtf8Coder.of(), StringUtf8Coder.of());
/** Counter to track inbound messages from source. */
private static final Counter INPUT_MESSAGES_COUNTER =
Metrics.counter(PubSubToSplunk.class, "inbound-pubsub-messages");
/** The tag for successful {@link SplunkEvent} conversion. */
private static final TupleTag<SplunkEvent> SPLUNK_EVENT_OUT = new TupleTag<SplunkEvent>() {};
/** The tag for failed {@link SplunkEvent} conversion. */
private static final TupleTag<FailsafeElement<String, String>> SPLUNK_EVENT_DEADLETTER_OUT =
new TupleTag<FailsafeElement<String, String>>() {};
/** The tag for the main output for the UDF. */
private static final TupleTag<FailsafeElement<String, String>> UDF_OUT =
new TupleTag<FailsafeElement<String, String>>() {};
/** The tag for the dead-letter output of the udf. */
private static final TupleTag<FailsafeElement<String, String>> UDF_DEADLETTER_OUT =
new TupleTag<FailsafeElement<String, String>>() {};
/** GSON to process a {@link PubsubMessage}. */
private static final Gson GSON =
new GsonBuilder()
.registerTypeAdapter(
byte[].class,
(JsonSerializer<byte[]>)
(bytes, type, jsonSerializationContext) ->
new JsonPrimitive(new String(bytes, StandardCharsets.UTF_8)))
.create();
/** Logger for class. */
private static final Logger LOG = LoggerFactory.getLogger(PubSubToSplunk.class);
private static final Boolean DEFAULT_INCLUDE_PUBSUBMESSAGE = false;
/**
* The main entry-point for pipeline execution. This method will start the pipeline but will not
* wait for it's execution to finish. If blocking execution is required, use the {@link
* PubSubToSplunk#run(PubSubToSplunkOptions)} method to start the pipeline and invoke {@code
* result.waitUntilFinish()} on the {@link PipelineResult}.
*
* @param args The command-line args passed by the executor.
*/
public static void main(String[] args) {
PubSubToSplunkOptions options =
PipelineOptionsFactory.fromArgs(args).withValidation().as(PubSubToSplunkOptions.class);
run(options);
}
/**
* Runs the pipeline to completion with the specified options. This method does not wait until the
* pipeline is finished before returning. Invoke {@code result.waitUntilFinish()} on the result
* object to block until the pipeline is finished running if blocking programmatic execution is
* required.
*
* @param options The execution options.
* @return The pipeline result.
*/
public static PipelineResult run(PubSubToSplunkOptions options) {
Pipeline pipeline = Pipeline.create(options);
// Register coders.
CoderRegistry registry = pipeline.getCoderRegistry();
registry.registerCoderForClass(SplunkEvent.class, SplunkEventCoder.of());
registry.registerCoderForType(
FAILSAFE_ELEMENT_CODER.getEncodedTypeDescriptor(), FAILSAFE_ELEMENT_CODER);
/*
* Steps:
* 1) Read messages in from Pub/Sub
* 2) Convert message to FailsafeElement for processing.
* 3) Apply user provided UDF (if any) on the input strings.
* 4) Convert successfully transformed messages into SplunkEvent objects
* 5) Write SplunkEvents to Splunk's HEC end point.
* 5a) Wrap write failures into a FailsafeElement.
* 6) Collect errors from UDF transform (#3), SplunkEvent transform (#4)
* and writing to Splunk HEC (#5) and stream into a Pub/Sub deadletter topic.
*/
// 1) Read messages in from Pub/Sub
PCollection<String> stringMessages =
pipeline.apply(
"ReadMessages",
new ReadMessages(options.getInputSubscription(), options.getIncludePubsubMessage()));
// 2) Convert message to FailsafeElement for processing.
PCollectionTuple transformedOutput =
stringMessages
.apply(
"ConvertToFailsafeElement",
MapElements.into(FAILSAFE_ELEMENT_CODER.getEncodedTypeDescriptor())
.via(input -> FailsafeElement.of(input, input)))
// 3) Apply user provided UDF (if any) on the input strings.
.apply(
"ApplyUDFTransformation",
FailsafeJavascriptUdf.<String>newBuilder()
.setFileSystemPath(options.getJavascriptTextTransformGcsPath())
.setFunctionName(options.getJavascriptTextTransformFunctionName())
.setSuccessTag(UDF_OUT)
.setFailureTag(UDF_DEADLETTER_OUT)
.build());
// 4) Convert successfully transformed messages into SplunkEvent objects
PCollectionTuple convertToEventTuple =
transformedOutput
.get(UDF_OUT)
.apply(
"ConvertToSplunkEvent",
SplunkConverters.failsafeStringToSplunkEvent(
SPLUNK_EVENT_OUT, SPLUNK_EVENT_DEADLETTER_OUT));
// 5) Write SplunkEvents to Splunk's HEC end point.
PCollection<SplunkWriteError> writeErrors =
convertToEventTuple
.get(SPLUNK_EVENT_OUT)
.apply(
"WriteToSplunk",
SplunkIO.writeBuilder()
.withToken(maybeDecrypt(options.getToken(), options.getTokenKMSEncryptionKey()))
.withUrl(options.getUrl())
.withBatchCount(options.getBatchCount())
.withParallelism(options.getParallelism())
.withDisableCertificateValidation(options.getDisableCertificateValidation())
.build());
// 5a) Wrap write failures into a FailsafeElement.
PCollection<FailsafeElement<String, String>> wrappedSplunkWriteErrors =
writeErrors.apply(
"WrapSplunkWriteErrors",
ParDo.of(
new DoFn<SplunkWriteError, FailsafeElement<String, String>>() {
@ProcessElement
public void processElement(ProcessContext context) {
SplunkWriteError error = context.element();
FailsafeElement<String, String> failsafeElement =
FailsafeElement.of(error.payload(), error.payload());
if (error.statusMessage() != null) {
failsafeElement.setErrorMessage(error.statusMessage());
}
if (error.statusCode() != null) {
failsafeElement.setErrorMessage(
String.format("Splunk write status code: %d", error.statusCode()));
}
context.output(failsafeElement);
}
}));
// 6) Collect errors from UDF transform (#4), SplunkEvent transform (#5)
// and writing to Splunk HEC (#6) and stream into a Pub/Sub deadletter topic.
PCollectionList.of(
ImmutableList.of(
convertToEventTuple.get(SPLUNK_EVENT_DEADLETTER_OUT),
wrappedSplunkWriteErrors,
transformedOutput.get(UDF_DEADLETTER_OUT)))
.apply("FlattenErrors", Flatten.pCollections())
.apply(
"WriteFailedRecords",
ErrorConverters.WriteStringMessageErrorsToPubSub.newBuilder()
.setErrorRecordsTopic(options.getOutputDeadletterTopic())
.build());
return pipeline.run();
}
/**
* The {@link PubSubToSplunkOptions} class provides the custom options passed by the executor at
* the command line.
*/
public interface PubSubToSplunkOptions
extends SplunkOptions,
PubsubReadSubscriptionOptions,
PubsubWriteDeadletterTopicOptions,
JavascriptTextTransformerOptions {}
/**
* A {@link PTransform} that reads messages from a Pub/Sub subscription, increments a counter and
* returns a {@link PCollection} of {@link String} messages.
*/
private static class ReadMessages extends PTransform<PBegin, PCollection<String>> {
private final ValueProvider<String> subscriptionName;
private final ValueProvider<Boolean> inputIncludePubsubMessageFlag;
private Boolean includePubsubMessage;
ReadMessages(ValueProvider<String> subscriptionName, ValueProvider<Boolean> inputIncludePubsubMessageFlag) {
this.subscriptionName = subscriptionName;
this.inputIncludePubsubMessageFlag = inputIncludePubsubMessageFlag;
}
@Override
public PCollection<String> expand(PBegin input) {
return input
.apply(
"ReadPubsubMessage",
PubsubIO.readMessagesWithAttributes().fromSubscription(subscriptionName))
.apply(
"ExtractMessageIfRequired",
ParDo.of(
new DoFn<PubsubMessage, String>() {
@Setup
public void setup() {
if (inputIncludePubsubMessageFlag != null) {
includePubsubMessage = inputIncludePubsubMessageFlag.get();
}
includePubsubMessage =
MoreObjects.firstNonNull(
includePubsubMessage, DEFAULT_INCLUDE_PUBSUBMESSAGE);
LOG.info("includePubsubMessage set to: {}", includePubsubMessage);
}
@ProcessElement
public void processElement(ProcessContext context) {
if (includePubsubMessage) {
context.output(GSON.toJson(context.element()));
} else {
context.output(
new String(context.element().getPayload(), StandardCharsets.UTF_8));
}
}
}))
.apply(
"CountMessages",
ParDo.of(
new DoFn<String, String>() {
@ProcessElement
public void processElement(ProcessContext context) {
INPUT_MESSAGES_COUNTER.inc();
context.output(context.element());
}
}));
}
}
/**
* Utility method to decrypt a Splunk HEC token.
*
* @param unencryptedToken The Splunk HEC token as a Base64 encoded {@link String} encrypted with a Cloud KMS Key.
* @param kmsKey The Cloud KMS Encryption Key to decrypt the Splunk HEC token.
* @return Decrypted Splunk HEC token.
*/
private static ValueProvider<String> maybeDecrypt(
ValueProvider<String> unencryptedToken, ValueProvider<String> kmsKey) {
return new KMSEncryptedNestedValueProvider(unencryptedToken, kmsKey);
}
}