/* * Licensed to the Apache Software Foundation (ASF) under one * or more contributor license agreements. See the NOTICE file * distributed with this work for additional information * regarding copyright ownership. The ASF licenses this file * to you 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 org.apache.cassandra.service; import java.net.InetAddress; import java.net.UnknownHostException; import java.util.*; import org.apache.cassandra.config.ConfigurationException; import org.junit.Test; import static org.junit.Assert.*; import com.google.common.collect.HashMultimap; import com.google.common.collect.Multimap; import org.apache.cassandra.CleanupHelper; import org.apache.cassandra.Util; import org.apache.cassandra.config.DatabaseDescriptor; import org.apache.cassandra.dht.*; import org.apache.cassandra.gms.ApplicationState; import org.apache.cassandra.gms.VersionedValue; import org.apache.cassandra.locator.AbstractReplicationStrategy; import org.apache.cassandra.locator.SimpleSnitch; import org.apache.cassandra.locator.TokenMetadata; public class MoveTest extends CleanupHelper { /** * Test whether write endpoints is correct when the node is leaving. Uses * StorageService.onChange and does not manipulate token metadata directly. */ @Test public void newTestWriteEndpointsDuringLeave() throws Exception { StorageService ss = StorageService.instance; final int RING_SIZE = 6; final int LEAVING_NODE = 3; TokenMetadata tmd = ss.getTokenMetadata(); tmd.clearUnsafe(); IPartitioner partitioner = new RandomPartitioner(); VersionedValue.VersionedValueFactory valueFactory = new VersionedValue.VersionedValueFactory(partitioner); IPartitioner oldPartitioner = ss.setPartitionerUnsafe(partitioner); ArrayList<Token> endpointTokens = new ArrayList<Token>(); ArrayList<Token> keyTokens = new ArrayList<Token>(); List<InetAddress> hosts = new ArrayList<InetAddress>(); Util.createInitialRing(ss, partitioner, endpointTokens, keyTokens, hosts, RING_SIZE); Map<Token, List<InetAddress>> expectedEndpoints = new HashMap<Token, List<InetAddress>>(); for (String table : DatabaseDescriptor.getNonSystemTables()) { for (Token token : keyTokens) { List<InetAddress> endpoints = new ArrayList<InetAddress>(); Iterator<Token> tokenIter = TokenMetadata.ringIterator(tmd.sortedTokens(), token, false); while (tokenIter.hasNext()) { endpoints.add(tmd.getEndpoint(tokenIter.next())); } expectedEndpoints.put(token, endpoints); } } // Third node leaves ss.onChange(hosts.get(LEAVING_NODE), ApplicationState.STATUS, valueFactory.leaving(endpointTokens.get(LEAVING_NODE))); assertTrue(tmd.isLeaving(hosts.get(LEAVING_NODE))); AbstractReplicationStrategy strategy; for (String table : DatabaseDescriptor.getNonSystemTables()) { strategy = getStrategy(table, tmd); for (Token token : keyTokens) { int replicationFactor = strategy.getReplicationFactor(); HashSet<InetAddress> actual = new HashSet<InetAddress>(tmd.getWriteEndpoints(token, table, map2Collection(strategy.calculateNaturalEndpoints(token, tmd)))); HashSet<InetAddress> expected = new HashSet<InetAddress>(); for (int i = 0; i < replicationFactor; i++) { expected.add(expectedEndpoints.get(token).get(i)); } // if the leaving node is in the endpoint list, // then we should expect it plus one extra for when it's gone if (expected.contains(hosts.get(LEAVING_NODE))) expected.add(expectedEndpoints.get(token).get(replicationFactor)); assertEquals("mismatched endpoint sets", expected, actual); } } ss.setPartitionerUnsafe(oldPartitioner); } /** * Test pending ranges and write endpoints when multiple nodes are on the move * simultaneously */ @Test public void testSimultaneousMove() throws UnknownHostException, ConfigurationException { StorageService ss = StorageService.instance; final int RING_SIZE = 10; TokenMetadata tmd = ss.getTokenMetadata(); tmd.clearUnsafe(); IPartitioner partitioner = new RandomPartitioner(); VersionedValue.VersionedValueFactory valueFactory = new VersionedValue.VersionedValueFactory(partitioner); IPartitioner oldPartitioner = ss.setPartitionerUnsafe(partitioner); ArrayList<Token> endpointTokens = new ArrayList<Token>(); ArrayList<Token> keyTokens = new ArrayList<Token>(); List<InetAddress> hosts = new ArrayList<InetAddress>(); // create a ring or 10 nodes Util.createInitialRing(ss, partitioner, endpointTokens, keyTokens, hosts, RING_SIZE); // nodes 6, 8 and 9 leave final int[] LEAVING = new int[] {6, 8, 9}; for (int leaving : LEAVING) ss.onChange(hosts.get(leaving), ApplicationState.STATUS, valueFactory.leaving(endpointTokens.get(leaving))); // boot two new nodes with keyTokens.get(5) and keyTokens.get(7) InetAddress boot1 = InetAddress.getByName("127.0.1.1"); ss.onChange(boot1, ApplicationState.STATUS, valueFactory.bootstrapping(keyTokens.get(5))); InetAddress boot2 = InetAddress.getByName("127.0.1.2"); ss.onChange(boot2, ApplicationState.STATUS, valueFactory.bootstrapping(keyTokens.get(7))); Collection<InetAddress> endpoints = null; /* don't require test update every time a new keyspace is added to test/conf/cassandra.yaml */ Map<String, AbstractReplicationStrategy> tableStrategyMap = new HashMap<String, AbstractReplicationStrategy>(); for (int i=1; i<=4; i++) { tableStrategyMap.put("Keyspace" + i, getStrategy("Keyspace" + i, tmd)); } // pre-calculate the results. Map<String, Multimap<Token, InetAddress>> expectedEndpoints = new HashMap<String, Multimap<Token, InetAddress>>(); expectedEndpoints.put("Keyspace1", HashMultimap.<Token, InetAddress>create()); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("5"), makeAddrs("127.0.0.2")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("15"), makeAddrs("127.0.0.3")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("25"), makeAddrs("127.0.0.4")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("35"), makeAddrs("127.0.0.5")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("45"), makeAddrs("127.0.0.6")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("55"), makeAddrs("127.0.0.7", "127.0.0.8", "127.0.1.1")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("65"), makeAddrs("127.0.0.8")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("75"), makeAddrs("127.0.0.9", "127.0.1.2", "127.0.0.1")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("85"), makeAddrs("127.0.0.10", "127.0.0.1")); expectedEndpoints.get("Keyspace1").putAll(new BigIntegerToken("95"), makeAddrs("127.0.0.1")); expectedEndpoints.put("Keyspace2", HashMultimap.<Token, InetAddress>create()); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("5"), makeAddrs("127.0.0.2")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("15"), makeAddrs("127.0.0.3")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("25"), makeAddrs("127.0.0.4")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("35"), makeAddrs("127.0.0.5")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("45"), makeAddrs("127.0.0.6")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("55"), makeAddrs("127.0.0.7", "127.0.0.8", "127.0.1.1")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("65"), makeAddrs("127.0.0.8")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("75"), makeAddrs("127.0.0.9", "127.0.1.2", "127.0.0.1")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("85"), makeAddrs("127.0.0.10", "127.0.0.1")); expectedEndpoints.get("Keyspace2").putAll(new BigIntegerToken("95"), makeAddrs("127.0.0.1")); expectedEndpoints.put("Keyspace3", HashMultimap.<Token, InetAddress>create()); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("5"), makeAddrs("127.0.0.2", "127.0.0.3", "127.0.0.4", "127.0.0.5", "127.0.0.6")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("15"), makeAddrs("127.0.0.3", "127.0.0.4", "127.0.0.5", "127.0.0.6", "127.0.0.7", "127.0.1.1", "127.0.0.8")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("25"), makeAddrs("127.0.0.4", "127.0.0.5", "127.0.0.6", "127.0.0.7", "127.0.0.8", "127.0.1.2", "127.0.0.1", "127.0.1.1")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("35"), makeAddrs("127.0.0.5", "127.0.0.6", "127.0.0.7", "127.0.0.8", "127.0.0.9", "127.0.1.2", "127.0.0.1", "127.0.0.2", "127.0.1.1")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("45"), makeAddrs("127.0.0.6", "127.0.0.7", "127.0.0.8", "127.0.0.9", "127.0.0.10", "127.0.1.2", "127.0.0.1", "127.0.0.2", "127.0.1.1", "127.0.0.3")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("55"), makeAddrs("127.0.0.7", "127.0.0.8", "127.0.0.9", "127.0.0.10", "127.0.0.1", "127.0.0.2", "127.0.0.3", "127.0.0.4", "127.0.1.1", "127.0.1.2")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("65"), makeAddrs("127.0.0.8", "127.0.0.9", "127.0.0.10", "127.0.0.1", "127.0.0.2", "127.0.1.2", "127.0.0.3", "127.0.0.4")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("75"), makeAddrs("127.0.0.9", "127.0.0.10", "127.0.0.1", "127.0.0.2", "127.0.0.3", "127.0.1.2", "127.0.0.4", "127.0.0.5")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("85"), makeAddrs("127.0.0.10", "127.0.0.1", "127.0.0.2", "127.0.0.3", "127.0.0.4", "127.0.0.5")); expectedEndpoints.get("Keyspace3").putAll(new BigIntegerToken("95"), makeAddrs("127.0.0.1", "127.0.0.2", "127.0.0.3", "127.0.0.4", "127.0.0.5")); expectedEndpoints.put("Keyspace4", HashMultimap.<Token, InetAddress>create()); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("5"), makeAddrs("127.0.0.2", "127.0.0.3", "127.0.0.4")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("15"), makeAddrs("127.0.0.3", "127.0.0.4", "127.0.0.5")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("25"), makeAddrs("127.0.0.4", "127.0.0.5", "127.0.0.6")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("35"), makeAddrs("127.0.0.5", "127.0.0.6", "127.0.0.7", "127.0.1.1", "127.0.0.8")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("45"), makeAddrs("127.0.0.6", "127.0.0.7", "127.0.0.8", "127.0.1.2", "127.0.0.1", "127.0.1.1")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("55"), makeAddrs("127.0.0.7", "127.0.0.8", "127.0.0.9", "127.0.0.1", "127.0.0.2", "127.0.1.1", "127.0.1.2")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("65"), makeAddrs("127.0.0.8", "127.0.0.9", "127.0.0.10", "127.0.1.2", "127.0.0.1", "127.0.0.2")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("75"), makeAddrs("127.0.0.9", "127.0.0.10", "127.0.0.1", "127.0.1.2", "127.0.0.2", "127.0.0.3")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("85"), makeAddrs("127.0.0.10", "127.0.0.1", "127.0.0.2", "127.0.0.3")); expectedEndpoints.get("Keyspace4").putAll(new BigIntegerToken("95"), makeAddrs("127.0.0.1", "127.0.0.2", "127.0.0.3")); for (Map.Entry<String, AbstractReplicationStrategy> tableStrategy : tableStrategyMap.entrySet()) { String table = tableStrategy.getKey(); AbstractReplicationStrategy strategy = tableStrategy.getValue(); for (int i = 0; i < keyTokens.size(); i++) { endpoints = tmd.getWriteEndpoints(keyTokens.get(i), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(i)))); assertTrue(expectedEndpoints.get(table).get(keyTokens.get(i)).size() == endpoints.size()); assertTrue(expectedEndpoints.get(table).get(keyTokens.get(i)).containsAll(endpoints)); } // just to be sure that things still work according to the old tests, run them: if (strategy.getReplicationFactor() != 3) continue; // tokens 5, 15 and 25 should go three nodes for (int i=0; i<3; ++i) { endpoints = tmd.getWriteEndpoints(keyTokens.get(i), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(i)))); assertTrue(endpoints.size() == 3); assertTrue(endpoints.contains(hosts.get(i+1))); assertTrue(endpoints.contains(hosts.get(i+2))); assertTrue(endpoints.contains(hosts.get(i+3))); } // token 35 should go to nodes 4, 5, 6, 7 and boot1 endpoints = tmd.getWriteEndpoints(keyTokens.get(3), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(3)))); assertTrue(endpoints.size() == 5); assertTrue(endpoints.contains(hosts.get(4))); assertTrue(endpoints.contains(hosts.get(5))); assertTrue(endpoints.contains(hosts.get(6))); assertTrue(endpoints.contains(hosts.get(7))); assertTrue(endpoints.contains(boot1)); // token 45 should go to nodes 5, 6, 7, 0, boot1 and boot2 endpoints = tmd.getWriteEndpoints(keyTokens.get(4), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(4)))); assertTrue(endpoints.size() == 6); assertTrue(endpoints.contains(hosts.get(5))); assertTrue(endpoints.contains(hosts.get(6))); assertTrue(endpoints.contains(hosts.get(7))); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(boot1)); assertTrue(endpoints.contains(boot2)); // token 55 should go to nodes 6, 7, 8, 0, 1, boot1 and boot2 endpoints = tmd.getWriteEndpoints(keyTokens.get(5), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(5)))); assertTrue(endpoints.size() == 7); assertTrue(endpoints.contains(hosts.get(6))); assertTrue(endpoints.contains(hosts.get(7))); assertTrue(endpoints.contains(hosts.get(8))); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); assertTrue(endpoints.contains(boot1)); assertTrue(endpoints.contains(boot2)); // token 65 should go to nodes 7, 8, 9, 0, 1 and boot2 endpoints = tmd.getWriteEndpoints(keyTokens.get(6), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(6)))); assertTrue(endpoints.size() == 6); assertTrue(endpoints.contains(hosts.get(7))); assertTrue(endpoints.contains(hosts.get(8))); assertTrue(endpoints.contains(hosts.get(9))); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); assertTrue(endpoints.contains(boot2)); // token 75 should to go nodes 8, 9, 0, 1, 2 and boot2 endpoints = tmd.getWriteEndpoints(keyTokens.get(7), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(7)))); assertTrue(endpoints.size() == 6); assertTrue(endpoints.contains(hosts.get(8))); assertTrue(endpoints.contains(hosts.get(9))); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); assertTrue(endpoints.contains(hosts.get(2))); assertTrue(endpoints.contains(boot2)); // token 85 should go to nodes 9, 0, 1 and 2 endpoints = tmd.getWriteEndpoints(keyTokens.get(8), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(8)))); assertTrue(endpoints.size() == 4); assertTrue(endpoints.contains(hosts.get(9))); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); assertTrue(endpoints.contains(hosts.get(2))); // token 95 should go to nodes 0, 1 and 2 endpoints = tmd.getWriteEndpoints(keyTokens.get(9), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(9)))); assertTrue(endpoints.size() == 3); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); assertTrue(endpoints.contains(hosts.get(2))); } // Now finish node 6 and node 9 leaving, as well as boot1 (after this node 8 is still // leaving and boot2 in progress ss.onChange(hosts.get(LEAVING[0]), ApplicationState.STATUS, valueFactory.left(endpointTokens.get(LEAVING[0]))); ss.onChange(hosts.get(LEAVING[2]), ApplicationState.STATUS, valueFactory.left(endpointTokens.get(LEAVING[2]))); ss.onChange(boot1, ApplicationState.STATUS, valueFactory.normal(keyTokens.get(5))); // adjust precalcuated results. this changes what the epected endpoints are. expectedEndpoints.get("Keyspace1").get(new BigIntegerToken("55")).removeAll(makeAddrs("127.0.0.7", "127.0.0.8")); expectedEndpoints.get("Keyspace1").get(new BigIntegerToken("85")).removeAll(makeAddrs("127.0.0.10")); expectedEndpoints.get("Keyspace2").get(new BigIntegerToken("55")).removeAll(makeAddrs("127.0.0.7", "127.0.0.8")); expectedEndpoints.get("Keyspace2").get(new BigIntegerToken("85")).removeAll(makeAddrs("127.0.0.10")); expectedEndpoints.get("Keyspace3").get(new BigIntegerToken("15")).removeAll(makeAddrs("127.0.0.7", "127.0.0.8")); expectedEndpoints.get("Keyspace3").get(new BigIntegerToken("25")).removeAll(makeAddrs("127.0.0.7", "127.0.1.2", "127.0.0.1")); expectedEndpoints.get("Keyspace3").get(new BigIntegerToken("35")).removeAll(makeAddrs("127.0.0.7", "127.0.0.2")); expectedEndpoints.get("Keyspace3").get(new BigIntegerToken("45")).removeAll(makeAddrs("127.0.0.7", "127.0.0.10", "127.0.0.3")); expectedEndpoints.get("Keyspace3").get(new BigIntegerToken("55")).removeAll(makeAddrs("127.0.0.7", "127.0.0.10", "127.0.0.4")); expectedEndpoints.get("Keyspace3").get(new BigIntegerToken("65")).removeAll(makeAddrs("127.0.0.10")); expectedEndpoints.get("Keyspace3").get(new BigIntegerToken("75")).removeAll(makeAddrs("127.0.0.10")); expectedEndpoints.get("Keyspace3").get(new BigIntegerToken("85")).removeAll(makeAddrs("127.0.0.10")); expectedEndpoints.get("Keyspace4").get(new BigIntegerToken("35")).removeAll(makeAddrs("127.0.0.7", "127.0.0.8")); expectedEndpoints.get("Keyspace4").get(new BigIntegerToken("45")).removeAll(makeAddrs("127.0.0.7", "127.0.1.2", "127.0.0.1")); expectedEndpoints.get("Keyspace4").get(new BigIntegerToken("55")).removeAll(makeAddrs("127.0.0.2", "127.0.0.7")); expectedEndpoints.get("Keyspace4").get(new BigIntegerToken("65")).removeAll(makeAddrs("127.0.0.10")); expectedEndpoints.get("Keyspace4").get(new BigIntegerToken("75")).removeAll(makeAddrs("127.0.0.10")); expectedEndpoints.get("Keyspace4").get(new BigIntegerToken("85")).removeAll(makeAddrs("127.0.0.10")); for (Map.Entry<String, AbstractReplicationStrategy> tableStrategy : tableStrategyMap.entrySet()) { String table = tableStrategy.getKey(); AbstractReplicationStrategy strategy = tableStrategy.getValue(); for (int i = 0; i < keyTokens.size(); i++) { endpoints = tmd.getWriteEndpoints(keyTokens.get(i), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(i)))); assertTrue(expectedEndpoints.get(table).get(keyTokens.get(i)).size() == endpoints.size()); assertTrue(expectedEndpoints.get(table).get(keyTokens.get(i)).containsAll(endpoints)); } if (strategy.getReplicationFactor() != 3) continue; // leave this stuff in to guarantee the old tests work the way they were supposed to. // tokens 5, 15 and 25 should go three nodes for (int i=0; i<3; ++i) { endpoints = tmd.getWriteEndpoints(keyTokens.get(i), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(i)))); assertTrue(endpoints.size() == 3); assertTrue(endpoints.contains(hosts.get(i+1))); assertTrue(endpoints.contains(hosts.get(i+2))); assertTrue(endpoints.contains(hosts.get(i+3))); } // token 35 goes to nodes 4, 5 and boot1 endpoints = tmd.getWriteEndpoints(keyTokens.get(3), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(3)))); assertTrue(endpoints.size() == 3); assertTrue(endpoints.contains(hosts.get(4))); assertTrue(endpoints.contains(hosts.get(5))); assertTrue(endpoints.contains(boot1)); // token 45 goes to nodes 5, boot1 and node7 endpoints = tmd.getWriteEndpoints(keyTokens.get(4), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(4)))); assertTrue(endpoints.size() == 3); assertTrue(endpoints.contains(hosts.get(5))); assertTrue(endpoints.contains(boot1)); assertTrue(endpoints.contains(hosts.get(7))); // token 55 goes to boot1, 7, boot2, 8 and 0 endpoints = tmd.getWriteEndpoints(keyTokens.get(5), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(5)))); assertTrue(endpoints.size() == 5); assertTrue(endpoints.contains(boot1)); assertTrue(endpoints.contains(hosts.get(7))); assertTrue(endpoints.contains(boot2)); assertTrue(endpoints.contains(hosts.get(8))); assertTrue(endpoints.contains(hosts.get(0))); // token 65 goes to nodes 7, boot2, 8, 0 and 1 endpoints = tmd.getWriteEndpoints(keyTokens.get(6), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(6)))); assertTrue(endpoints.size() == 5); assertTrue(endpoints.contains(hosts.get(7))); assertTrue(endpoints.contains(boot2)); assertTrue(endpoints.contains(hosts.get(8))); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); // token 75 goes to nodes boot2, 8, 0, 1 and 2 endpoints = tmd.getWriteEndpoints(keyTokens.get(7), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(7)))); assertTrue(endpoints.size() == 5); assertTrue(endpoints.contains(boot2)); assertTrue(endpoints.contains(hosts.get(8))); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); assertTrue(endpoints.contains(hosts.get(2))); // token 85 goes to nodes 0, 1 and 2 endpoints = tmd.getWriteEndpoints(keyTokens.get(8), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(8)))); assertTrue(endpoints.size() == 3); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); assertTrue(endpoints.contains(hosts.get(2))); // token 95 goes to nodes 0, 1 and 2 endpoints = tmd.getWriteEndpoints(keyTokens.get(9), table, map2Collection(strategy.getNaturalEndpoints(keyTokens.get(9)))); assertTrue(endpoints.size() == 3); assertTrue(endpoints.contains(hosts.get(0))); assertTrue(endpoints.contains(hosts.get(1))); assertTrue(endpoints.contains(hosts.get(2))); } ss.setPartitionerUnsafe(oldPartitioner); } @Test public void testStateJumpToBootstrap() throws UnknownHostException { StorageService ss = StorageService.instance; TokenMetadata tmd = ss.getTokenMetadata(); tmd.clearUnsafe(); IPartitioner partitioner = new RandomPartitioner(); VersionedValue.VersionedValueFactory valueFactory = new VersionedValue.VersionedValueFactory(partitioner); IPartitioner oldPartitioner = ss.setPartitionerUnsafe(partitioner); ArrayList<Token> endpointTokens = new ArrayList<Token>(); ArrayList<Token> keyTokens = new ArrayList<Token>(); List<InetAddress> hosts = new ArrayList<InetAddress>(); // create a ring or 5 nodes Util.createInitialRing(ss, partitioner, endpointTokens, keyTokens, hosts, 7); // node 2 leaves ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.leaving(endpointTokens.get(2))); // don't bother to test pending ranges here, that is extensively tested by other // tests. Just check that the node is in appropriate lists. assertTrue(tmd.isMember(hosts.get(2))); assertTrue(tmd.isLeaving(hosts.get(2))); assertTrue(tmd.getBootstrapTokens().isEmpty()); // Bootstrap the node immedidiately to keyTokens.get(4) without going through STATE_LEFT ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.bootstrapping(keyTokens.get(4))); assertFalse(tmd.isMember(hosts.get(2))); assertFalse(tmd.isLeaving(hosts.get(2))); assertTrue(tmd.getBootstrapTokens().get(keyTokens.get(4)).equals(hosts.get(2))); // Bootstrap node hosts.get(3) to keyTokens.get(1) ss.onChange(hosts.get(3), ApplicationState.STATUS, valueFactory.bootstrapping(keyTokens.get(1))); assertFalse(tmd.isMember(hosts.get(3))); assertFalse(tmd.isLeaving(hosts.get(3))); assertTrue(tmd.getBootstrapTokens().get(keyTokens.get(4)).equals(hosts.get(2))); assertTrue(tmd.getBootstrapTokens().get(keyTokens.get(1)).equals(hosts.get(3))); // Bootstrap node hosts.get(2) further to keyTokens.get(3) ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.bootstrapping(keyTokens.get(3))); assertFalse(tmd.isMember(hosts.get(2))); assertFalse(tmd.isLeaving(hosts.get(2))); assertTrue(tmd.getBootstrapTokens().get(keyTokens.get(3)).equals(hosts.get(2))); assertTrue(tmd.getBootstrapTokens().get(keyTokens.get(4)) == null); assertTrue(tmd.getBootstrapTokens().get(keyTokens.get(1)).equals(hosts.get(3))); // Go to normal again for both nodes ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.normal(keyTokens.get(3))); ss.onChange(hosts.get(3), ApplicationState.STATUS, valueFactory.normal(keyTokens.get(2))); assertTrue(tmd.isMember(hosts.get(2))); assertFalse(tmd.isLeaving(hosts.get(2))); assertTrue(tmd.getToken(hosts.get(2)).equals(keyTokens.get(3))); assertTrue(tmd.isMember(hosts.get(3))); assertFalse(tmd.isLeaving(hosts.get(3))); assertTrue(tmd.getToken(hosts.get(3)).equals(keyTokens.get(2))); assertTrue(tmd.getBootstrapTokens().isEmpty()); ss.setPartitionerUnsafe(oldPartitioner); } @Test public void testStateJumpToNormal() throws UnknownHostException { StorageService ss = StorageService.instance; TokenMetadata tmd = ss.getTokenMetadata(); tmd.clearUnsafe(); IPartitioner partitioner = new RandomPartitioner(); VersionedValue.VersionedValueFactory valueFactory = new VersionedValue.VersionedValueFactory(partitioner); IPartitioner oldPartitioner = ss.setPartitionerUnsafe(partitioner); ArrayList<Token> endpointTokens = new ArrayList<Token>(); ArrayList<Token> keyTokens = new ArrayList<Token>(); List<InetAddress> hosts = new ArrayList<InetAddress>(); // create a ring or 5 nodes Util.createInitialRing(ss, partitioner, endpointTokens, keyTokens, hosts, 6); // node 2 leaves ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.leaving(endpointTokens.get(2))); assertTrue(tmd.isLeaving(hosts.get(2))); assertTrue(tmd.getToken(hosts.get(2)).equals(endpointTokens.get(2))); // back to normal ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.normal(keyTokens.get(2))); assertTrue(tmd.getLeavingEndpoints().isEmpty()); assertTrue(tmd.getToken(hosts.get(2)).equals(keyTokens.get(2))); // node 3 goes through leave and left and then jumps to normal at its new token ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.leaving(keyTokens.get(2))); ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.left(keyTokens.get(2))); ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.normal(keyTokens.get(4))); assertTrue(tmd.getBootstrapTokens().isEmpty()); assertTrue(tmd.getLeavingEndpoints().isEmpty()); assertTrue(tmd.getToken(hosts.get(2)).equals(keyTokens.get(4))); ss.setPartitionerUnsafe(oldPartitioner); } @Test public void testStateJumpToLeaving() throws UnknownHostException { StorageService ss = StorageService.instance; TokenMetadata tmd = ss.getTokenMetadata(); tmd.clearUnsafe(); IPartitioner partitioner = new RandomPartitioner(); VersionedValue.VersionedValueFactory valueFactory = new VersionedValue.VersionedValueFactory(partitioner); IPartitioner oldPartitioner = ss.setPartitionerUnsafe(partitioner); ArrayList<Token> endpointTokens = new ArrayList<Token>(); ArrayList<Token> keyTokens = new ArrayList<Token>(); List<InetAddress> hosts = new ArrayList<InetAddress>(); // create a ring or 5 nodes Util.createInitialRing(ss, partitioner, endpointTokens, keyTokens, hosts, 6); // node 2 leaves with _different_ token ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.leaving(keyTokens.get(0))); assertTrue(tmd.getToken(hosts.get(2)).equals(keyTokens.get(0))); assertTrue(tmd.isLeaving(hosts.get(2))); assertTrue(tmd.getEndpoint(endpointTokens.get(2)) == null); // go to boostrap ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.bootstrapping(keyTokens.get(1))); assertFalse(tmd.isLeaving(hosts.get(2))); assertTrue(tmd.getBootstrapTokens().size() == 1); assertTrue(tmd.getBootstrapTokens().get(keyTokens.get(1)).equals(hosts.get(2))); // jump to leaving again ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.leaving(keyTokens.get(1))); assertTrue(tmd.getEndpoint(keyTokens.get(1)).equals(hosts.get(2))); assertTrue(tmd.isLeaving(hosts.get(2))); assertTrue(tmd.getBootstrapTokens().isEmpty()); // go to state left ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.left(keyTokens.get(1))); assertFalse(tmd.isMember(hosts.get(2))); assertFalse(tmd.isLeaving(hosts.get(2))); ss.setPartitionerUnsafe(oldPartitioner); } @Test public void testStateJumpToLeft() throws UnknownHostException { StorageService ss = StorageService.instance; TokenMetadata tmd = ss.getTokenMetadata(); tmd.clearUnsafe(); IPartitioner partitioner = new RandomPartitioner(); VersionedValue.VersionedValueFactory valueFactory = new VersionedValue.VersionedValueFactory(partitioner); IPartitioner oldPartitioner = ss.setPartitionerUnsafe(partitioner); ArrayList<Token> endpointTokens = new ArrayList<Token>(); ArrayList<Token> keyTokens = new ArrayList<Token>(); List<InetAddress> hosts = new ArrayList<InetAddress>(); // create a ring of 6 nodes Util.createInitialRing(ss, partitioner, endpointTokens, keyTokens, hosts, 7); // node hosts.get(2) goes jumps to left ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.left(endpointTokens.get(2))); assertFalse(tmd.isMember(hosts.get(2))); // node hosts.get(4) goes to bootstrap ss.onChange(hosts.get(3), ApplicationState.STATUS, valueFactory.bootstrapping(keyTokens.get(1))); assertFalse(tmd.isMember(hosts.get(3))); assertTrue(tmd.getBootstrapTokens().size() == 1); assertTrue(tmd.getBootstrapTokens().get(keyTokens.get(1)).equals(hosts.get(3))); // and then directly to 'left' ss.onChange(hosts.get(2), ApplicationState.STATUS, valueFactory.left(keyTokens.get(1))); assertTrue(tmd.getBootstrapTokens().size() == 0); assertFalse(tmd.isMember(hosts.get(2))); assertFalse(tmd.isLeaving(hosts.get(2))); ss.setPartitionerUnsafe(oldPartitioner); } private static Collection<InetAddress> makeAddrs(String... hosts) throws UnknownHostException { ArrayList<InetAddress> addrs = new ArrayList<InetAddress>(hosts.length); for (String host : hosts) addrs.add(InetAddress.getByName(host)); return addrs; } private AbstractReplicationStrategy getStrategy(String table, TokenMetadata tmd) throws ConfigurationException { return AbstractReplicationStrategy.createReplicationStrategy( table, "org.apache.cassandra.locator.SimpleStrategy", tmd, new SimpleSnitch(), null); } private Collection<InetAddress> map2Collection(Map<InetAddress, Integer> map) { Collection<InetAddress> col = new ArrayList<InetAddress>(map.size()); Iterator it = map.keySet().iterator(); while (it.hasNext()) col.add((InetAddress)it.next()); return col; } }