/* * Copyright 2015-present Open Networking Laboratory * * 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 org.onosproject.store.host.impl; import com.google.common.collect.ImmutableSet; import com.google.common.collect.Sets; import org.apache.felix.scr.annotations.Activate; import org.apache.felix.scr.annotations.Component; import org.apache.felix.scr.annotations.Deactivate; import org.apache.felix.scr.annotations.Reference; import org.apache.felix.scr.annotations.ReferenceCardinality; import org.apache.felix.scr.annotations.Service; import org.onlab.packet.IpAddress; import org.onlab.packet.MacAddress; import org.onlab.packet.VlanId; import org.onlab.util.KryoNamespace; import org.onosproject.net.Annotations; import org.onosproject.net.ConnectPoint; import org.onosproject.net.DefaultAnnotations; import org.onosproject.net.DefaultHost; import org.onosproject.net.DeviceId; import org.onosproject.net.Host; import org.onosproject.net.HostId; import org.onosproject.net.HostLocation; import org.onosproject.net.host.HostDescription; import org.onosproject.net.host.HostEvent; import org.onosproject.net.host.HostStore; import org.onosproject.net.host.HostStoreDelegate; import org.onosproject.net.provider.ProviderId; import org.onosproject.store.AbstractStore; import org.onosproject.store.serializers.KryoNamespaces; import org.onosproject.store.service.ConsistentMap; import org.onosproject.store.service.MapEvent; import org.onosproject.store.service.MapEventListener; import org.onosproject.store.service.Serializer; import org.onosproject.store.service.StorageService; import org.onosproject.store.service.DistributedPrimitive.Status; import org.slf4j.Logger; import java.util.Collection; import java.util.HashSet; import java.util.Iterator; import java.util.Map; import java.util.Objects; import java.util.Set; import java.util.concurrent.ConcurrentHashMap; import java.util.concurrent.ScheduledExecutorService; import java.util.function.Consumer; import java.util.function.Predicate; import java.util.stream.Collectors; import static com.google.common.base.Preconditions.checkNotNull; import static com.google.common.base.Preconditions.checkState; import static java.util.concurrent.Executors.newSingleThreadScheduledExecutor; import static org.onlab.util.Tools.groupedThreads; import static org.onosproject.net.DefaultAnnotations.merge; import static org.onosproject.net.host.HostEvent.Type.*; import static org.slf4j.LoggerFactory.getLogger; /** * Manages the inventory of hosts using a {@code EventuallyConsistentMap}. */ @Component(immediate = true) @Service public class DistributedHostStore extends AbstractStore<HostEvent, HostStoreDelegate> implements HostStore { private final Logger log = getLogger(getClass()); @Reference(cardinality = ReferenceCardinality.MANDATORY_UNARY) protected StorageService storageService; private ConsistentMap<HostId, DefaultHost> hostsConsistentMap; private Map<HostId, DefaultHost> hosts; private Map<IpAddress, Set<Host>> hostsByIp; private MapEventListener<HostId, DefaultHost> hostLocationTracker = new HostLocationTracker(); private ScheduledExecutorService executor; private Consumer<Status> statusChangeListener; @Activate public void activate() { KryoNamespace.Builder hostSerializer = KryoNamespace.newBuilder() .register(KryoNamespaces.API); hostsConsistentMap = storageService.<HostId, DefaultHost>consistentMapBuilder() .withName("onos-hosts") .withRelaxedReadConsistency() .withSerializer(Serializer.using(hostSerializer.build())) .build(); hosts = hostsConsistentMap.asJavaMap(); hostsConsistentMap.addListener(hostLocationTracker); executor = newSingleThreadScheduledExecutor(groupedThreads("onos/hosts", "store", log)); statusChangeListener = status -> { if (status == Status.ACTIVE) { executor.execute(this::loadHostsByIp); } }; hostsConsistentMap.addStatusChangeListener(statusChangeListener); loadHostsByIp(); log.info("Started"); } @Deactivate public void deactivate() { hostsConsistentMap.removeListener(hostLocationTracker); log.info("Stopped"); } private void loadHostsByIp() { hostsByIp = new ConcurrentHashMap<IpAddress, Set<Host>>(); hostsConsistentMap.asJavaMap().values().forEach(host -> { host.ipAddresses().forEach(ip -> { Set<Host> existingHosts = hostsByIp.get(ip); if (existingHosts == null) { hostsByIp.put(ip, addHosts(host)); } else { existingHosts.add(host); } }); }); } private boolean shouldUpdate(DefaultHost existingHost, ProviderId providerId, HostDescription hostDescription, boolean replaceIPs) { if (existingHost == null) { return true; } // Avoid overriding configured host with learnt host if (existingHost.configured() && !hostDescription.configured()) { return false; } if (!Objects.equals(existingHost.providerId(), providerId) || !Objects.equals(existingHost.mac(), hostDescription.hwAddress()) || !Objects.equals(existingHost.vlan(), hostDescription.vlan()) || !Objects.equals(existingHost.location(), hostDescription.location())) { return true; } if (replaceIPs) { if (!Objects.equals(hostDescription.ipAddress(), existingHost.ipAddresses())) { return true; } } else { if (!existingHost.ipAddresses().containsAll(hostDescription.ipAddress())) { return true; } } // check to see if any of the annotations provided by hostDescription // differ from those in the existing host return hostDescription.annotations().keys().stream() .anyMatch(k -> !Objects.equals(hostDescription.annotations().value(k), existingHost.annotations().value(k))); } // TODO No longer need to return HostEvent @Override public HostEvent createOrUpdateHost(ProviderId providerId, HostId hostId, HostDescription hostDescription, boolean replaceIPs) { hostsConsistentMap.computeIf(hostId, existingHost -> shouldUpdate(existingHost, providerId, hostDescription, replaceIPs), (id, existingHost) -> { HostLocation location = hostDescription.location(); final Set<IpAddress> addresses; if (existingHost == null || replaceIPs) { addresses = ImmutableSet.copyOf(hostDescription.ipAddress()); } else { addresses = Sets.newHashSet(existingHost.ipAddresses()); addresses.addAll(hostDescription.ipAddress()); } final Annotations annotations; final boolean configured; if (existingHost != null) { annotations = merge((DefaultAnnotations) existingHost.annotations(), hostDescription.annotations()); configured = existingHost.configured(); } else { annotations = hostDescription.annotations(); configured = hostDescription.configured(); } return new DefaultHost(providerId, hostId, hostDescription.hwAddress(), hostDescription.vlan(), location, addresses, configured, annotations); }); return null; } // TODO No longer need to return HostEvent @Override public HostEvent removeHost(HostId hostId) { hosts.remove(hostId); return null; } // TODO No longer need to return HostEvent @Override public HostEvent removeIp(HostId hostId, IpAddress ipAddress) { hosts.compute(hostId, (id, existingHost) -> { if (existingHost != null) { checkState(Objects.equals(hostId.mac(), existingHost.mac()), "Existing and new MAC addresses differ."); checkState(Objects.equals(hostId.vlanId(), existingHost.vlan()), "Existing and new VLANs differ."); Set<IpAddress> addresses = existingHost.ipAddresses(); if (addresses != null && addresses.contains(ipAddress)) { addresses = new HashSet<>(existingHost.ipAddresses()); addresses.remove(ipAddress); removeIpFromHostsByIp(existingHost, ipAddress); return new DefaultHost(existingHost.providerId(), hostId, existingHost.mac(), existingHost.vlan(), existingHost.location(), ImmutableSet.copyOf(addresses), existingHost.annotations()); } else { return existingHost; } } return null; }); return null; } @Override public int getHostCount() { return hosts.size(); } @Override public Iterable<Host> getHosts() { return ImmutableSet.copyOf(hosts.values()); } @Override public Host getHost(HostId hostId) { return hosts.get(hostId); } @Override public Set<Host> getHosts(VlanId vlanId) { return filter(hosts.values(), host -> Objects.equals(host.vlan(), vlanId)); } @Override public Set<Host> getHosts(MacAddress mac) { return filter(hosts.values(), host -> Objects.equals(host.mac(), mac)); } @Override public Set<Host> getHosts(IpAddress ip) { Set<Host> hosts = hostsByIp.get(ip); return hosts != null ? ImmutableSet.copyOf(hosts) : ImmutableSet.of(); } @Override public Set<Host> getConnectedHosts(ConnectPoint connectPoint) { Set<Host> filtered = hosts.entrySet().stream() .filter(entry -> entry.getValue().location().equals(connectPoint)) .map(Map.Entry::getValue) .collect(Collectors.toSet()); return ImmutableSet.copyOf(filtered); } @Override public Set<Host> getConnectedHosts(DeviceId deviceId) { Set<Host> filtered = hosts.entrySet().stream() .filter(entry -> entry.getValue().location().deviceId().equals(deviceId)) .map(Map.Entry::getValue) .collect(Collectors.toSet()); return ImmutableSet.copyOf(filtered); } private Set<Host> filter(Collection<DefaultHost> collection, Predicate<DefaultHost> predicate) { return collection.stream().filter(predicate).collect(Collectors.toSet()); } private Set<Host> addHosts(Host host) { Set<Host> hosts = Sets.newConcurrentHashSet(); hosts.add(host); return hosts; } private Set<Host> updateHosts(Set<Host> existingHosts, Host host) { Iterator<Host> iterator = existingHosts.iterator(); while (iterator.hasNext()) { Host existingHost = iterator.next(); if (existingHost.id().equals(host.id())) { iterator.remove(); } } existingHosts.add(host); return existingHosts; } private Set<Host> removeHosts(Set<Host> existingHosts, Host host) { if (existingHosts != null) { Iterator<Host> iterator = existingHosts.iterator(); while (iterator.hasNext()) { Host existingHost = iterator.next(); if (existingHost.id().equals(host.id())) { iterator.remove(); } } } if (existingHosts.isEmpty()) { return null; } return existingHosts; } private void updateHostsByIp(DefaultHost host) { host.ipAddresses().forEach(ip -> { hostsByIp.compute(ip, (k, v) -> v == null ? addHosts(host) : updateHosts(v, host)); }); } private void removeHostsByIp(DefaultHost host) { host.ipAddresses().forEach(ip -> { hostsByIp.computeIfPresent(ip, (k, v) -> removeHosts(v, host)); }); } private void removeIpFromHostsByIp(DefaultHost host, IpAddress ip) { hostsByIp.computeIfPresent(ip, (k, v) -> removeHosts(v, host)); } private class HostLocationTracker implements MapEventListener<HostId, DefaultHost> { @Override public void event(MapEvent<HostId, DefaultHost> event) { DefaultHost host = checkNotNull(event.value().value()); switch (event.type()) { case INSERT: updateHostsByIp(host); notifyDelegate(new HostEvent(HOST_ADDED, host)); break; case UPDATE: updateHostsByIp(host); DefaultHost prevHost = checkNotNull(event.oldValue().value()); if (!Objects.equals(prevHost.location(), host.location())) { notifyDelegate(new HostEvent(HOST_MOVED, host, prevHost)); } else if (!Objects.equals(prevHost, host)) { notifyDelegate(new HostEvent(HOST_UPDATED, host, prevHost)); } break; case REMOVE: updateHostsByIp(host); notifyDelegate(new HostEvent(HOST_REMOVED, host)); break; default: log.warn("Unknown map event type: {}", event.type()); } } } }