use of com.mongodb.reactivestreams.client.MongoClient in project mongo-java-driver by mongodb.
the class ClientSideEncryptionExplicitEncryptionOnlyTour method main.
/**
* Run this main method to see the output of this quick example.
*
* Requires the mongodb-crypt library in the class path and mongocryptd on the system path.
* Assumes the schema has already been created in MongoDB.
*
* @param args ignored args
*/
public static void main(final String[] args) {
// This would have to be the same master key as was used to create the encryption key
final byte[] localMasterKey = new byte[96];
new SecureRandom().nextBytes(localMasterKey);
Map<String, Map<String, Object>> kmsProviders = new HashMap<String, Map<String, Object>>() {
{
put("local", new HashMap<String, Object>() {
{
put("key", localMasterKey);
}
});
}
};
MongoNamespace keyVaultNamespace = new MongoNamespace("encryption.testKeyVault");
MongoClientSettings clientSettings = MongoClientSettings.builder().autoEncryptionSettings(AutoEncryptionSettings.builder().keyVaultNamespace(keyVaultNamespace.getFullName()).kmsProviders(kmsProviders).bypassAutoEncryption(true).build()).build();
MongoClient mongoClient = MongoClients.create(clientSettings);
// Set up the key vault for this example
MongoCollection<Document> keyVaultCollection = mongoClient.getDatabase(keyVaultNamespace.getDatabaseName()).getCollection(keyVaultNamespace.getCollectionName());
ObservableSubscriber<Void> successSubscriber = new OperationSubscriber<>();
keyVaultCollection.drop().subscribe(successSubscriber);
successSubscriber.await();
// Ensure that two data keys cannot share the same keyAltName.
ObservableSubscriber<String> indexSubscriber = new OperationSubscriber<>();
keyVaultCollection.createIndex(Indexes.ascending("keyAltNames"), new IndexOptions().unique(true).partialFilterExpression(Filters.exists("keyAltNames"))).subscribe(indexSubscriber);
indexSubscriber.await();
MongoCollection<Document> collection = mongoClient.getDatabase("test").getCollection("coll");
successSubscriber = new OperationSubscriber<>();
collection.drop().subscribe(successSubscriber);
successSubscriber.await();
// Create the ClientEncryption instance
ClientEncryptionSettings clientEncryptionSettings = ClientEncryptionSettings.builder().keyVaultMongoClientSettings(MongoClientSettings.builder().applyConnectionString(new ConnectionString("mongodb://localhost")).build()).keyVaultNamespace(keyVaultNamespace.getFullName()).kmsProviders(kmsProviders).build();
ClientEncryption clientEncryption = ClientEncryptions.create(clientEncryptionSettings);
BsonBinary dataKeyId = clientEncryption.createDataKey("local", new DataKeyOptions());
// Explicitly encrypt a field
BsonBinary encryptedFieldValue = clientEncryption.encrypt(new BsonString("123456789"), new EncryptOptions("AEAD_AES_256_CBC_HMAC_SHA_512-Deterministic").keyId(dataKeyId));
ObservableSubscriber<InsertOneResult> insertOneSubscriber = new OperationSubscriber<>();
collection.insertOne(new Document("encryptedField", encryptedFieldValue)).subscribe(insertOneSubscriber);
insertOneSubscriber.await();
ObservableSubscriber<Document> documentSubscriber = new OperationSubscriber<>();
collection.find().first().subscribe(documentSubscriber);
Document doc = documentSubscriber.get().get(0);
System.out.println(doc.toJson());
// release resources
clientEncryption.close();
mongoClient.close();
}
use of com.mongodb.reactivestreams.client.MongoClient in project mongo-java-driver by mongodb.
the class QuickTour method main.
/**
* Run this main method to see the output of this quick example.
*
* @param args takes an optional single argument for the connection string
*/
public static void main(final String[] args) {
MongoClient mongoClient;
if (args.length == 0) {
// connect to the local database server
mongoClient = MongoClients.create();
} else {
mongoClient = MongoClients.create(args[0]);
}
// get handle to "mydb" database
MongoDatabase database = mongoClient.getDatabase("mydb");
// get a handle to the "test" collection
final MongoCollection<Document> collection = database.getCollection("test");
// drop all the data in it
ObservableSubscriber<Void> successSubscriber = new OperationSubscriber<>();
collection.drop().subscribe(successSubscriber);
successSubscriber.await();
// make a document and insert it
Document doc = new Document("name", "MongoDB").append("type", "database").append("count", 1).append("info", new Document("x", 203).append("y", 102));
ObservableSubscriber<InsertOneResult> insertOneSubscriber = new OperationSubscriber<>();
collection.insertOne(doc).subscribe(insertOneSubscriber);
insertOneSubscriber.await();
// get it (since it's the only one in there since we dropped the rest earlier on)
ObservableSubscriber<Document> documentSubscriber = new PrintDocumentSubscriber();
collection.find().first().subscribe(documentSubscriber);
documentSubscriber.await();
// now, lets add lots of little documents to the collection so we can explore queries and cursors
List<Document> documents = new ArrayList<>();
for (int i = 0; i < 100; i++) {
documents.add(new Document("i", i));
}
ObservableSubscriber<InsertManyResult> insertManySubscriber = new OperationSubscriber<>();
collection.insertMany(documents).subscribe(insertManySubscriber);
insertManySubscriber.await();
// find first
documentSubscriber = new PrintDocumentSubscriber();
collection.find().first().subscribe(documentSubscriber);
documentSubscriber.await();
// lets get all the documents in the collection and print them out
documentSubscriber = new PrintDocumentSubscriber();
collection.find().subscribe(documentSubscriber);
documentSubscriber.await();
// Query Filters
// now use a query to get 1 document out
documentSubscriber = new PrintDocumentSubscriber();
collection.find(eq("i", 71)).first().subscribe(documentSubscriber);
documentSubscriber.await();
// now use a range query to get a larger subset
documentSubscriber = new PrintDocumentSubscriber();
collection.find(gt("i", 50)).subscribe(documentSubscriber);
successSubscriber.await();
// range query with multiple constraints
documentSubscriber = new PrintDocumentSubscriber();
collection.find(and(gt("i", 50), lte("i", 100))).subscribe(documentSubscriber);
successSubscriber.await();
// Sorting
documentSubscriber = new PrintDocumentSubscriber();
collection.find(exists("i")).sort(descending("i")).first().subscribe(documentSubscriber);
documentSubscriber.await();
// Projection
documentSubscriber = new PrintDocumentSubscriber();
collection.find().projection(excludeId()).first().subscribe(documentSubscriber);
documentSubscriber.await();
// Aggregation
documentSubscriber = new PrintDocumentSubscriber();
collection.aggregate(asList(match(gt("i", 0)), project(Document.parse("{ITimes10: {$multiply: ['$i', 10]}}")))).subscribe(documentSubscriber);
documentSubscriber.await();
documentSubscriber = new PrintDocumentSubscriber();
collection.aggregate(singletonList(group(null, sum("total", "$i")))).first().subscribe(documentSubscriber);
documentSubscriber.await();
// Update One
ObservableSubscriber<UpdateResult> updateSubscriber = new OperationSubscriber<>();
collection.updateOne(eq("i", 10), set("i", 110)).subscribe(updateSubscriber);
updateSubscriber.await();
// Update Many
updateSubscriber = new OperationSubscriber<>();
collection.updateMany(lt("i", 100), inc("i", 100)).subscribe(updateSubscriber);
updateSubscriber.await();
// Delete One
ObservableSubscriber<DeleteResult> deleteSubscriber = new OperationSubscriber<>();
collection.deleteOne(eq("i", 110)).subscribe(deleteSubscriber);
deleteSubscriber.await();
// Delete Many
deleteSubscriber = new OperationSubscriber<>();
collection.deleteMany(gte("i", 100)).subscribe(deleteSubscriber);
deleteSubscriber.await();
// Create Index
OperationSubscriber<String> createIndexSubscriber = new PrintSubscriber<>("Create Index Result: %s");
collection.createIndex(new Document("i", 1)).subscribe(createIndexSubscriber);
createIndexSubscriber.await();
// Clean up
successSubscriber = new OperationSubscriber<>();
collection.drop().subscribe(successSubscriber);
successSubscriber.await();
// release resources
mongoClient.close();
}
use of com.mongodb.reactivestreams.client.MongoClient in project mongo-java-driver by mongodb.
the class ClientSideEncryptionExplicitEncryptionAndDecryptionTour method main.
/**
* Run this main method to see the output of this quick example.
*
* Requires the mongodb-crypt library in the class path and mongocryptd on the system path.
* Assumes the schema has already been created in MongoDB.
*
* @param args ignored args
*/
public static void main(final String[] args) {
// This would have to be the same master key as was used to create the encryption key
final byte[] localMasterKey = new byte[96];
new SecureRandom().nextBytes(localMasterKey);
Map<String, Map<String, Object>> kmsProviders = new HashMap<String, Map<String, Object>>() {
{
put("local", new HashMap<String, Object>() {
{
put("key", localMasterKey);
}
});
}
};
MongoNamespace keyVaultNamespace = new MongoNamespace("encryption.testKeyVault");
MongoClientSettings clientSettings = MongoClientSettings.builder().build();
MongoClient mongoClient = MongoClients.create(clientSettings);
// Set up the key vault for this example
MongoCollection<Document> keyVaultCollection = mongoClient.getDatabase(keyVaultNamespace.getDatabaseName()).getCollection(keyVaultNamespace.getCollectionName());
ObservableSubscriber<Void> successSubscriber = new OperationSubscriber<>();
keyVaultCollection.drop().subscribe(successSubscriber);
successSubscriber.await();
// Ensure that two data keys cannot share the same keyAltName.
ObservableSubscriber<String> indexSubscriber = new OperationSubscriber<>();
keyVaultCollection.createIndex(Indexes.ascending("keyAltNames"), new IndexOptions().unique(true).partialFilterExpression(Filters.exists("keyAltNames"))).subscribe(indexSubscriber);
indexSubscriber.await();
MongoCollection<Document> collection = mongoClient.getDatabase("test").getCollection("coll");
successSubscriber = new OperationSubscriber<>();
collection.drop().subscribe(successSubscriber);
successSubscriber.await();
// Create the ClientEncryption instance
ClientEncryptionSettings clientEncryptionSettings = ClientEncryptionSettings.builder().keyVaultMongoClientSettings(MongoClientSettings.builder().applyConnectionString(new ConnectionString("mongodb://localhost")).build()).keyVaultNamespace(keyVaultNamespace.getFullName()).kmsProviders(kmsProviders).build();
ClientEncryption clientEncryption = ClientEncryptions.create(clientEncryptionSettings);
BsonBinary dataKeyId = clientEncryption.createDataKey("local", new DataKeyOptions());
// Explicitly encrypt a field
BsonBinary encryptedFieldValue = clientEncryption.encrypt(new BsonString("123456789"), new EncryptOptions("AEAD_AES_256_CBC_HMAC_SHA_512-Deterministic").keyId(dataKeyId));
ObservableSubscriber<InsertOneResult> insertOneSubscriber = new OperationSubscriber<>();
collection.insertOne(new Document("encryptedField", encryptedFieldValue)).subscribe(insertOneSubscriber);
insertOneSubscriber.await();
ObservableSubscriber<Document> documentSubscriber = new OperationSubscriber<>();
collection.find().first().subscribe(documentSubscriber);
Document doc = documentSubscriber.get().get(0);
System.out.println(doc.toJson());
// Explicitly decrypt the field
System.out.println(clientEncryption.decrypt(new BsonBinary(doc.get("encryptedField", Binary.class).getData())));
// release resources
clientEncryption.close();
mongoClient.close();
}
use of com.mongodb.reactivestreams.client.MongoClient in project mongo-java-driver by mongodb.
the class ClientSideEncryptionSimpleTour method main.
/**
* Run this main method to see the output of this quick example.
*
* Requires the mongodb-crypt library in the class path and mongocryptd on the system path.
* Assumes the schema has already been created in MongoDB.
*
* @param args ignored args
*/
public static void main(final String[] args) {
// This would have to be the same master key as was used to create the encryption key
final byte[] localMasterKey = new byte[96];
new SecureRandom().nextBytes(localMasterKey);
Map<String, Map<String, Object>> kmsProviders = new HashMap<String, Map<String, Object>>() {
{
put("local", new HashMap<String, Object>() {
{
put("key", localMasterKey);
}
});
}
};
String keyVaultNamespace = "admin.datakeys";
AutoEncryptionSettings autoEncryptionSettings = AutoEncryptionSettings.builder().keyVaultNamespace(keyVaultNamespace).kmsProviders(kmsProviders).build();
MongoClientSettings clientSettings = MongoClientSettings.builder().autoEncryptionSettings(autoEncryptionSettings).build();
MongoClient mongoClient = MongoClients.create(clientSettings);
MongoCollection<Document> collection = mongoClient.getDatabase("test").getCollection("coll");
ObservableSubscriber<Void> successSubscriber = new OperationSubscriber<>();
collection.drop().subscribe(successSubscriber);
successSubscriber.await();
ObservableSubscriber<InsertOneResult> insertOneSubscriber = new OperationSubscriber<>();
collection.insertOne(new Document("encryptedField", "123456789")).subscribe(insertOneSubscriber);
insertOneSubscriber.await();
ObservableSubscriber<Document> documentSubscriber = new PrintDocumentSubscriber();
collection.find().first().subscribe(documentSubscriber);
documentSubscriber.await();
// release resources
mongoClient.close();
}
use of com.mongodb.reactivestreams.client.MongoClient in project mongo-java-driver by mongodb.
the class BatchCursorFluxTest method ensureExists.
/**
* This method ensures that the server considers the specified {@code collection} existing for the purposes of, e.g.,
* {@link MongoCollection#drop()}, instead of replying with
* {@code "errmsg": "ns not found", "code": 26, "codeName": "NamespaceNotFound"}.
*
* @return {@code operationTime} starting at which the {@code collection} is guaranteed to exist.
*/
private static BsonTimestamp ensureExists(final MongoClient client, final MongoCollection<Document> collection) {
BsonValue insertedId = Mono.from(collection.insertOne(Document.parse("{}"))).map(InsertOneResult::getInsertedId).block(TIMEOUT_DURATION);
BsonArray deleteStatements = new BsonArray();
deleteStatements.add(new BsonDocument().append("q", new BsonDocument().append("_id", insertedId)).append("limit", new BsonInt32(1)));
Publisher<Document> deletePublisher = client.getDatabase(collection.getNamespace().getDatabaseName()).runCommand(new BsonDocument().append("delete", new BsonString(collection.getNamespace().getCollectionName())).append("deletes", deleteStatements));
BsonTimestamp operationTime = Mono.from(deletePublisher).map(doc -> doc.get("operationTime", BsonTimestamp.class)).block(TIMEOUT_DURATION);
assertNotNull(operationTime);
return operationTime;
}
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