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Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001/**
2* Copyright 2011, Big Switch Networks, Inc.
3* Originally created by David Erickson, Stanford University
4*
5* Licensed under the Apache License, Version 2.0 (the "License"); you may
6* not use this file except in compliance with the License. You may obtain
7* a copy of the License at
8*
9* http://www.apache.org/licenses/LICENSE-2.0
10*
11* Unless required by applicable law or agreed to in writing, software
12* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
13* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
14* License for the specific language governing permissions and limitations
15* under the License.
16**/
17
18package net.floodlightcontroller.core.internal;
19
20import java.io.FileInputStream;
21import java.io.IOException;
22import java.net.InetAddress;
23import java.net.InetSocketAddress;
24import java.net.SocketAddress;
Jonathan Hartd10008d2013-02-23 17:04:08 -080025import java.net.UnknownHostException;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -080026import java.nio.channels.ClosedChannelException;
Jonathan Hartd10008d2013-02-23 17:04:08 -080027import java.util.ArrayList;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -080028import java.util.Collection;
29import java.util.Collections;
30import java.util.Date;
31import java.util.HashMap;
32import java.util.HashSet;
33import java.util.Iterator;
34import java.util.LinkedHashMap;
35import java.util.List;
36import java.util.Map;
37import java.util.Map.Entry;
38import java.util.Properties;
39import java.util.Set;
40import java.util.Stack;
41import java.util.concurrent.BlockingQueue;
42import java.util.concurrent.ConcurrentHashMap;
43import java.util.concurrent.ConcurrentMap;
44import java.util.concurrent.CopyOnWriteArraySet;
45import java.util.concurrent.Executors;
46import java.util.concurrent.Future;
47import java.util.concurrent.LinkedBlockingQueue;
48import java.util.concurrent.RejectedExecutionException;
49import java.util.concurrent.TimeUnit;
50import java.util.concurrent.TimeoutException;
51
52import net.floodlightcontroller.core.FloodlightContext;
53import net.floodlightcontroller.core.IFloodlightProviderService;
54import net.floodlightcontroller.core.IHAListener;
55import net.floodlightcontroller.core.IInfoProvider;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -080056import net.floodlightcontroller.core.IListener.Command;
Jonathan Hartd10008d2013-02-23 17:04:08 -080057import net.floodlightcontroller.core.INetMapStorage.DM_OPERATION;
58import net.floodlightcontroller.core.INetMapTopologyService.ITopoRouteService;
59import net.floodlightcontroller.core.IOFMessageListener;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -080060import net.floodlightcontroller.core.IOFSwitch;
61import net.floodlightcontroller.core.IOFSwitchFilter;
62import net.floodlightcontroller.core.IOFSwitchListener;
Pankaj Berde8557a462013-01-07 08:59:31 -080063import net.floodlightcontroller.core.ISwitchStorage.SwitchState;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -080064import net.floodlightcontroller.core.annotations.LogMessageDoc;
65import net.floodlightcontroller.core.annotations.LogMessageDocs;
66import net.floodlightcontroller.core.internal.OFChannelState.HandshakeState;
67import net.floodlightcontroller.core.util.ListenerDispatcher;
68import net.floodlightcontroller.core.web.CoreWebRoutable;
69import net.floodlightcontroller.counter.ICounterStoreService;
Pavlin Radoslavov19b0e122013-02-21 18:47:38 -080070import net.floodlightcontroller.flowcache.IFlowService;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -080071import net.floodlightcontroller.packet.Ethernet;
72import net.floodlightcontroller.perfmon.IPktInProcessingTimeService;
73import net.floodlightcontroller.restserver.IRestApiService;
74import net.floodlightcontroller.storage.IResultSet;
75import net.floodlightcontroller.storage.IStorageSourceListener;
76import net.floodlightcontroller.storage.IStorageSourceService;
77import net.floodlightcontroller.storage.OperatorPredicate;
78import net.floodlightcontroller.storage.StorageException;
79import net.floodlightcontroller.threadpool.IThreadPoolService;
Jonathan Hartd82f20d2013-02-21 18:04:24 -080080import net.onrc.onos.registry.controller.IControllerRegistryService;
Jonathan Hartcc957a02013-02-26 10:39:04 -080081import net.onrc.onos.registry.controller.IControllerRegistryService.ControlChangeCallback;
Jonathan Hartd10008d2013-02-23 17:04:08 -080082import net.onrc.onos.registry.controller.RegistryException;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -080083
84import org.jboss.netty.bootstrap.ServerBootstrap;
85import org.jboss.netty.buffer.ChannelBuffer;
86import org.jboss.netty.buffer.ChannelBuffers;
87import org.jboss.netty.channel.Channel;
88import org.jboss.netty.channel.ChannelHandlerContext;
89import org.jboss.netty.channel.ChannelPipelineFactory;
90import org.jboss.netty.channel.ChannelStateEvent;
91import org.jboss.netty.channel.ChannelUpstreamHandler;
92import org.jboss.netty.channel.Channels;
93import org.jboss.netty.channel.ExceptionEvent;
94import org.jboss.netty.channel.MessageEvent;
95import org.jboss.netty.channel.group.ChannelGroup;
96import org.jboss.netty.channel.group.DefaultChannelGroup;
97import org.jboss.netty.channel.socket.nio.NioServerSocketChannelFactory;
98import org.jboss.netty.handler.timeout.IdleStateAwareChannelUpstreamHandler;
99import org.jboss.netty.handler.timeout.IdleStateEvent;
100import org.jboss.netty.handler.timeout.ReadTimeoutException;
101import org.openflow.protocol.OFEchoReply;
102import org.openflow.protocol.OFError;
103import org.openflow.protocol.OFError.OFBadActionCode;
104import org.openflow.protocol.OFError.OFBadRequestCode;
105import org.openflow.protocol.OFError.OFErrorType;
106import org.openflow.protocol.OFError.OFFlowModFailedCode;
107import org.openflow.protocol.OFError.OFHelloFailedCode;
108import org.openflow.protocol.OFError.OFPortModFailedCode;
109import org.openflow.protocol.OFError.OFQueueOpFailedCode;
110import org.openflow.protocol.OFFeaturesReply;
111import org.openflow.protocol.OFGetConfigReply;
112import org.openflow.protocol.OFMessage;
113import org.openflow.protocol.OFPacketIn;
114import org.openflow.protocol.OFPhysicalPort;
Pankaj Berde6a4075d2013-01-22 16:42:54 -0800115import org.openflow.protocol.OFPhysicalPort.OFPortConfig;
Pankaj Berde6debb042013-01-16 18:04:32 -0800116import org.openflow.protocol.OFPhysicalPort.OFPortState;
Jonathan Hartd10008d2013-02-23 17:04:08 -0800117import org.openflow.protocol.OFPortStatus;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800118import org.openflow.protocol.OFPortStatus.OFPortReason;
119import org.openflow.protocol.OFSetConfig;
120import org.openflow.protocol.OFStatisticsRequest;
121import org.openflow.protocol.OFSwitchConfig;
122import org.openflow.protocol.OFType;
123import org.openflow.protocol.OFVendor;
124import org.openflow.protocol.factory.BasicFactory;
125import org.openflow.protocol.factory.MessageParseException;
126import org.openflow.protocol.statistics.OFDescriptionStatistics;
127import org.openflow.protocol.statistics.OFStatistics;
128import org.openflow.protocol.statistics.OFStatisticsType;
129import org.openflow.protocol.vendor.OFBasicVendorDataType;
130import org.openflow.protocol.vendor.OFBasicVendorId;
131import org.openflow.protocol.vendor.OFVendorId;
132import org.openflow.util.HexString;
133import org.openflow.util.U16;
134import org.openflow.util.U32;
135import org.openflow.vendor.nicira.OFNiciraVendorData;
136import org.openflow.vendor.nicira.OFRoleReplyVendorData;
137import org.openflow.vendor.nicira.OFRoleRequestVendorData;
138import org.openflow.vendor.nicira.OFRoleVendorData;
139import org.slf4j.Logger;
140import org.slf4j.LoggerFactory;
141
142
Umesh Krishnaswamyb56bb292013-02-12 20:28:27 -0800143
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800144/**
145 * The main controller class. Handles all setup and network listeners
146 */
147public class Controller implements IFloodlightProviderService,
148 IStorageSourceListener {
Pankaj Berde29ab7fc2013-01-25 06:17:52 -0800149
150 ThreadLocal<SwitchStorageImpl> store = new ThreadLocal<SwitchStorageImpl>() {
151 @Override
152 protected SwitchStorageImpl initialValue() {
153 SwitchStorageImpl swStore = new SwitchStorageImpl();
154 //TODO: Get the file path from global properties
155 swStore.init("/tmp/cassandra.titan");
156 return swStore;
157 }
158 };
159
160 protected SwitchStorageImpl swStore = store.get();
Pankaj Berde8557a462013-01-07 08:59:31 -0800161
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800162 protected static Logger log = LoggerFactory.getLogger(Controller.class);
163
164 private static final String ERROR_DATABASE =
165 "The controller could not communicate with the system database.";
166
167 protected BasicFactory factory;
168 protected ConcurrentMap<OFType,
169 ListenerDispatcher<OFType,IOFMessageListener>>
170 messageListeners;
171 // The activeSwitches map contains only those switches that are actively
172 // being controlled by us -- it doesn't contain switches that are
173 // in the slave role
174 protected ConcurrentHashMap<Long, IOFSwitch> activeSwitches;
175 // connectedSwitches contains all connected switches, including ones where
176 // we're a slave controller. We need to keep track of them so that we can
177 // send role request messages to switches when our role changes to master
178 // We add a switch to this set after it successfully completes the
179 // handshake. Access to this Set needs to be synchronized with roleChanger
180 protected HashSet<OFSwitchImpl> connectedSwitches;
181
182 // The controllerNodeIPsCache maps Controller IDs to their IP address.
183 // It's only used by handleControllerNodeIPsChanged
184 protected HashMap<String, String> controllerNodeIPsCache;
185
186 protected Set<IOFSwitchListener> switchListeners;
187 protected Set<IHAListener> haListeners;
188 protected Map<String, List<IInfoProvider>> providerMap;
189 protected BlockingQueue<IUpdate> updates;
190
191 // Module dependencies
192 protected IRestApiService restApi;
193 protected ICounterStoreService counterStore = null;
194 protected IStorageSourceService storageSource;
195 protected IPktInProcessingTimeService pktinProcTime;
196 protected IThreadPoolService threadPool;
Pavlin Radoslavov19b0e122013-02-21 18:47:38 -0800197 protected IFlowService flowService;
Pavlin Radoslavovd7d8b792013-02-22 10:24:38 -0800198 protected ITopoRouteService topoRouteService;
Jonathan Hartd10008d2013-02-23 17:04:08 -0800199 protected IControllerRegistryService registryService;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800200
201 // Configuration options
202 protected int openFlowPort = 6633;
203 protected int workerThreads = 0;
204 // The id for this controller node. Should be unique for each controller
205 // node in a controller cluster.
206 protected String controllerId = "localhost";
207
208 // The current role of the controller.
209 // If the controller isn't configured to support roles, then this is null.
210 protected Role role;
211 // A helper that handles sending and timeout handling for role requests
212 protected RoleChanger roleChanger;
213
214 // Start time of the controller
215 protected long systemStartTime;
216
217 // Flag to always flush flow table on switch reconnect (HA or otherwise)
218 protected boolean alwaysClearFlowsOnSwAdd = false;
219
220 // Storage table names
221 protected static final String CONTROLLER_TABLE_NAME = "controller_controller";
222 protected static final String CONTROLLER_ID = "id";
223
224 protected static final String SWITCH_TABLE_NAME = "controller_switch";
225 protected static final String SWITCH_DATAPATH_ID = "dpid";
226 protected static final String SWITCH_SOCKET_ADDRESS = "socket_address";
227 protected static final String SWITCH_IP = "ip";
228 protected static final String SWITCH_CONTROLLER_ID = "controller_id";
229 protected static final String SWITCH_ACTIVE = "active";
230 protected static final String SWITCH_CONNECTED_SINCE = "connected_since";
231 protected static final String SWITCH_CAPABILITIES = "capabilities";
232 protected static final String SWITCH_BUFFERS = "buffers";
233 protected static final String SWITCH_TABLES = "tables";
234 protected static final String SWITCH_ACTIONS = "actions";
235
236 protected static final String SWITCH_CONFIG_TABLE_NAME = "controller_switchconfig";
237 protected static final String SWITCH_CONFIG_CORE_SWITCH = "core_switch";
238
239 protected static final String PORT_TABLE_NAME = "controller_port";
240 protected static final String PORT_ID = "id";
241 protected static final String PORT_SWITCH = "switch_id";
242 protected static final String PORT_NUMBER = "number";
243 protected static final String PORT_HARDWARE_ADDRESS = "hardware_address";
244 protected static final String PORT_NAME = "name";
245 protected static final String PORT_CONFIG = "config";
246 protected static final String PORT_STATE = "state";
247 protected static final String PORT_CURRENT_FEATURES = "current_features";
248 protected static final String PORT_ADVERTISED_FEATURES = "advertised_features";
249 protected static final String PORT_SUPPORTED_FEATURES = "supported_features";
250 protected static final String PORT_PEER_FEATURES = "peer_features";
251
252 protected static final String CONTROLLER_INTERFACE_TABLE_NAME = "controller_controllerinterface";
253 protected static final String CONTROLLER_INTERFACE_ID = "id";
254 protected static final String CONTROLLER_INTERFACE_CONTROLLER_ID = "controller_id";
255 protected static final String CONTROLLER_INTERFACE_TYPE = "type";
256 protected static final String CONTROLLER_INTERFACE_NUMBER = "number";
257 protected static final String CONTROLLER_INTERFACE_DISCOVERED_IP = "discovered_ip";
258
259
260
261 // Perf. related configuration
262 protected static final int SEND_BUFFER_SIZE = 4 * 1024 * 1024;
263 protected static final int BATCH_MAX_SIZE = 100;
264 protected static final boolean ALWAYS_DECODE_ETH = true;
265
266 /**
267 * Updates handled by the main loop
268 */
269 protected interface IUpdate {
270 /**
271 * Calls the appropriate listeners
272 */
273 public void dispatch();
274 }
275 public enum SwitchUpdateType {
276 ADDED,
277 REMOVED,
278 PORTCHANGED
279 }
280 /**
281 * Update message indicating a switch was added or removed
282 */
283 protected class SwitchUpdate implements IUpdate {
284 public IOFSwitch sw;
285 public SwitchUpdateType switchUpdateType;
286 public SwitchUpdate(IOFSwitch sw, SwitchUpdateType switchUpdateType) {
287 this.sw = sw;
288 this.switchUpdateType = switchUpdateType;
289 }
290 public void dispatch() {
291 if (log.isTraceEnabled()) {
292 log.trace("Dispatching switch update {} {}",
293 sw, switchUpdateType);
294 }
295 if (switchListeners != null) {
296 for (IOFSwitchListener listener : switchListeners) {
297 switch(switchUpdateType) {
298 case ADDED:
299 listener.addedSwitch(sw);
300 break;
301 case REMOVED:
302 listener.removedSwitch(sw);
303 break;
304 case PORTCHANGED:
305 listener.switchPortChanged(sw.getId());
306 break;
307 }
308 }
309 }
310 }
311 }
312
313 /**
314 * Update message indicating controller's role has changed
315 */
316 protected class HARoleUpdate implements IUpdate {
317 public Role oldRole;
318 public Role newRole;
319 public HARoleUpdate(Role newRole, Role oldRole) {
320 this.oldRole = oldRole;
321 this.newRole = newRole;
322 }
323 public void dispatch() {
324 // Make sure that old and new roles are different.
325 if (oldRole == newRole) {
326 if (log.isTraceEnabled()) {
327 log.trace("HA role update ignored as the old and " +
328 "new roles are the same. newRole = {}" +
329 "oldRole = {}", newRole, oldRole);
330 }
331 return;
332 }
333 if (log.isTraceEnabled()) {
334 log.trace("Dispatching HA Role update newRole = {}, oldRole = {}",
335 newRole, oldRole);
336 }
337 if (haListeners != null) {
338 for (IHAListener listener : haListeners) {
339 listener.roleChanged(oldRole, newRole);
340 }
341 }
342 }
343 }
344
345 /**
346 * Update message indicating
347 * IPs of controllers in controller cluster have changed.
348 */
349 protected class HAControllerNodeIPUpdate implements IUpdate {
350 public Map<String,String> curControllerNodeIPs;
351 public Map<String,String> addedControllerNodeIPs;
352 public Map<String,String> removedControllerNodeIPs;
353 public HAControllerNodeIPUpdate(
354 HashMap<String,String> curControllerNodeIPs,
355 HashMap<String,String> addedControllerNodeIPs,
356 HashMap<String,String> removedControllerNodeIPs) {
357 this.curControllerNodeIPs = curControllerNodeIPs;
358 this.addedControllerNodeIPs = addedControllerNodeIPs;
359 this.removedControllerNodeIPs = removedControllerNodeIPs;
360 }
361 public void dispatch() {
362 if (log.isTraceEnabled()) {
363 log.trace("Dispatching HA Controller Node IP update "
364 + "curIPs = {}, addedIPs = {}, removedIPs = {}",
365 new Object[] { curControllerNodeIPs, addedControllerNodeIPs,
366 removedControllerNodeIPs }
367 );
368 }
369 if (haListeners != null) {
370 for (IHAListener listener: haListeners) {
371 listener.controllerNodeIPsChanged(curControllerNodeIPs,
372 addedControllerNodeIPs, removedControllerNodeIPs);
373 }
374 }
375 }
376 }
377
378 // ***************
379 // Getters/Setters
380 // ***************
381
382 public void setStorageSourceService(IStorageSourceService storageSource) {
383 this.storageSource = storageSource;
384 }
385
386 public void setCounterStore(ICounterStoreService counterStore) {
387 this.counterStore = counterStore;
388 }
389
390 public void setPktInProcessingService(IPktInProcessingTimeService pits) {
391 this.pktinProcTime = pits;
392 }
393
394 public void setRestApiService(IRestApiService restApi) {
395 this.restApi = restApi;
396 }
397
398 public void setThreadPoolService(IThreadPoolService tp) {
399 this.threadPool = tp;
400 }
401
Pavlin Radoslavov19b0e122013-02-21 18:47:38 -0800402 public void setFlowService(IFlowService serviceImpl) {
403 this.flowService = serviceImpl;
404 }
Pavlin Radoslavovd7d8b792013-02-22 10:24:38 -0800405
406 public void setTopoRouteService(ITopoRouteService serviceImpl) {
407 this.topoRouteService = serviceImpl;
408 }
Jonathan Hartc2e95ee2013-02-22 15:25:11 -0800409
Jonathan Hartd82f20d2013-02-21 18:04:24 -0800410 public void setMastershipService(IControllerRegistryService serviceImpl) {
Jonathan Hartd10008d2013-02-23 17:04:08 -0800411 this.registryService = serviceImpl;
Umesh Krishnaswamyb56bb292013-02-12 20:28:27 -0800412 }
413
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800414 @Override
415 public Role getRole() {
416 synchronized(roleChanger) {
417 return role;
418 }
419 }
420
421 @Override
422 public void setRole(Role role) {
423 if (role == null) throw new NullPointerException("Role can not be null.");
424 if (role == Role.MASTER && this.role == Role.SLAVE) {
425 // Reset db state to Inactive for all switches.
426 updateAllInactiveSwitchInfo();
427 }
428
429 // Need to synchronize to ensure a reliable ordering on role request
430 // messages send and to ensure the list of connected switches is stable
431 // RoleChanger will handle the actual sending of the message and
432 // timeout handling
433 // @see RoleChanger
434 synchronized(roleChanger) {
435 if (role.equals(this.role)) {
436 log.debug("Ignoring role change: role is already {}", role);
437 return;
438 }
439
440 Role oldRole = this.role;
441 this.role = role;
442
443 log.debug("Submitting role change request to role {}", role);
444 roleChanger.submitRequest(connectedSwitches, role);
445
446 // Enqueue an update for our listeners.
447 try {
448 this.updates.put(new HARoleUpdate(role, oldRole));
449 } catch (InterruptedException e) {
450 log.error("Failure adding update to queue", e);
451 }
452 }
453 }
454
455
456
457 // **********************
458 // ChannelUpstreamHandler
459 // **********************
460
461 /**
462 * Return a new channel handler for processing a switch connections
463 * @param state The channel state object for the connection
464 * @return the new channel handler
465 */
466 protected ChannelUpstreamHandler getChannelHandler(OFChannelState state) {
467 return new OFChannelHandler(state);
468 }
469
Jonathan Hartcc957a02013-02-26 10:39:04 -0800470 protected class RoleChangeCallback implements ControlChangeCallback {
471 @Override
472 public void controlChanged(long dpid, boolean hasControl) {
473 log.info("Role change callback for switch {}, hasControl {}",
474 HexString.toHexString(dpid), hasControl);
475
476 synchronized(roleChanger){
477 OFSwitchImpl sw = null;
478 for (OFSwitchImpl connectedSw : connectedSwitches){
479 if (connectedSw.getId() == dpid){
480 sw = connectedSw;
481 break;
482 }
483 }
484 if (sw == null){
485 log.warn("Switch {} not found in connected switches",
486 HexString.toHexString(dpid));
487 return;
488 }
489
490 Role role = null;
491
Pankaj Berde01939e92013-03-08 14:38:27 -0800492 /*
493 * issue #229
494 * Cannot rely on sw.getRole() as it can be behind due to pending
495 * role changes in the queue. Just submit it and late the RoleChanger
496 * handle duplicates.
497 */
498
499 if (hasControl){
Jonathan Hartcc957a02013-02-26 10:39:04 -0800500 role = Role.MASTER;
501 }
Pankaj Berde01939e92013-03-08 14:38:27 -0800502 else {
Jonathan Hartcc957a02013-02-26 10:39:04 -0800503 role = Role.SLAVE;
504 }
Pankaj Berde01939e92013-03-08 14:38:27 -0800505
506 log.debug("Sending role request {} msg to {}", role, sw);
507 Collection<OFSwitchImpl> swList = new ArrayList<OFSwitchImpl>(1);
508 swList.add(sw);
509 roleChanger.submitRequest(swList, role);
510
Jonathan Hartcc957a02013-02-26 10:39:04 -0800511 }
512
513 }
514 }
515
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800516 /**
517 * Channel handler deals with the switch connection and dispatches
518 * switch messages to the appropriate locations.
519 * @author readams
520 */
521 protected class OFChannelHandler
522 extends IdleStateAwareChannelUpstreamHandler {
523 protected OFSwitchImpl sw;
524 protected OFChannelState state;
525
526 public OFChannelHandler(OFChannelState state) {
527 this.state = state;
528 }
529
530 @Override
531 @LogMessageDoc(message="New switch connection from {ip address}",
532 explanation="A new switch has connected from the " +
533 "specified IP address")
534 public void channelConnected(ChannelHandlerContext ctx,
535 ChannelStateEvent e) throws Exception {
536 log.info("New switch connection from {}",
537 e.getChannel().getRemoteAddress());
538
539 sw = new OFSwitchImpl();
540 sw.setChannel(e.getChannel());
541 sw.setFloodlightProvider(Controller.this);
542 sw.setThreadPoolService(threadPool);
543
544 List<OFMessage> msglist = new ArrayList<OFMessage>(1);
545 msglist.add(factory.getMessage(OFType.HELLO));
546 e.getChannel().write(msglist);
547
548 }
549
550 @Override
551 @LogMessageDoc(message="Disconnected switch {switch information}",
552 explanation="The specified switch has disconnected.")
553 public void channelDisconnected(ChannelHandlerContext ctx,
554 ChannelStateEvent e) throws Exception {
555 if (sw != null && state.hsState == HandshakeState.READY) {
556 if (activeSwitches.containsKey(sw.getId())) {
557 // It's safe to call removeSwitch even though the map might
558 // not contain this particular switch but another with the
559 // same DPID
560 removeSwitch(sw);
561 }
562 synchronized(roleChanger) {
Jonathan Hartcc957a02013-02-26 10:39:04 -0800563 registryService.releaseControl(sw.getId());
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800564 connectedSwitches.remove(sw);
565 }
566 sw.setConnected(false);
567 }
568 log.info("Disconnected switch {}", sw);
569 }
570
571 @Override
572 @LogMessageDocs({
573 @LogMessageDoc(level="ERROR",
574 message="Disconnecting switch {switch} due to read timeout",
575 explanation="The connected switch has failed to send any " +
576 "messages or respond to echo requests",
577 recommendation=LogMessageDoc.CHECK_SWITCH),
578 @LogMessageDoc(level="ERROR",
579 message="Disconnecting switch {switch}: failed to " +
580 "complete handshake",
581 explanation="The switch did not respond correctly " +
582 "to handshake messages",
583 recommendation=LogMessageDoc.CHECK_SWITCH),
584 @LogMessageDoc(level="ERROR",
585 message="Disconnecting switch {switch} due to IO Error: {}",
586 explanation="There was an error communicating with the switch",
587 recommendation=LogMessageDoc.CHECK_SWITCH),
588 @LogMessageDoc(level="ERROR",
589 message="Disconnecting switch {switch} due to switch " +
590 "state error: {error}",
591 explanation="The switch sent an unexpected message",
592 recommendation=LogMessageDoc.CHECK_SWITCH),
593 @LogMessageDoc(level="ERROR",
594 message="Disconnecting switch {switch} due to " +
595 "message parse failure",
596 explanation="Could not parse a message from the switch",
597 recommendation=LogMessageDoc.CHECK_SWITCH),
598 @LogMessageDoc(level="ERROR",
599 message="Terminating controller due to storage exception",
600 explanation=ERROR_DATABASE,
601 recommendation=LogMessageDoc.CHECK_CONTROLLER),
602 @LogMessageDoc(level="ERROR",
603 message="Could not process message: queue full",
604 explanation="OpenFlow messages are arriving faster than " +
605 " the controller can process them.",
606 recommendation=LogMessageDoc.CHECK_CONTROLLER),
607 @LogMessageDoc(level="ERROR",
608 message="Error while processing message " +
609 "from switch {switch} {cause}",
610 explanation="An error occurred processing the switch message",
611 recommendation=LogMessageDoc.GENERIC_ACTION)
612 })
613 public void exceptionCaught(ChannelHandlerContext ctx, ExceptionEvent e)
614 throws Exception {
615 if (e.getCause() instanceof ReadTimeoutException) {
616 // switch timeout
617 log.error("Disconnecting switch {} due to read timeout", sw);
618 ctx.getChannel().close();
619 } else if (e.getCause() instanceof HandshakeTimeoutException) {
620 log.error("Disconnecting switch {}: failed to complete handshake",
621 sw);
622 ctx.getChannel().close();
623 } else if (e.getCause() instanceof ClosedChannelException) {
624 //log.warn("Channel for sw {} already closed", sw);
625 } else if (e.getCause() instanceof IOException) {
626 log.error("Disconnecting switch {} due to IO Error: {}",
627 sw, e.getCause().getMessage());
628 ctx.getChannel().close();
629 } else if (e.getCause() instanceof SwitchStateException) {
630 log.error("Disconnecting switch {} due to switch state error: {}",
631 sw, e.getCause().getMessage());
632 ctx.getChannel().close();
633 } else if (e.getCause() instanceof MessageParseException) {
634 log.error("Disconnecting switch " + sw +
635 " due to message parse failure",
636 e.getCause());
637 ctx.getChannel().close();
638 } else if (e.getCause() instanceof StorageException) {
639 log.error("Terminating controller due to storage exception",
640 e.getCause());
641 terminate();
642 } else if (e.getCause() instanceof RejectedExecutionException) {
643 log.warn("Could not process message: queue full");
644 } else {
645 log.error("Error while processing message from switch " + sw,
646 e.getCause());
647 ctx.getChannel().close();
648 }
649 }
650
651 @Override
652 public void channelIdle(ChannelHandlerContext ctx, IdleStateEvent e)
653 throws Exception {
654 List<OFMessage> msglist = new ArrayList<OFMessage>(1);
655 msglist.add(factory.getMessage(OFType.ECHO_REQUEST));
656 e.getChannel().write(msglist);
657 }
658
659 @Override
660 public void messageReceived(ChannelHandlerContext ctx, MessageEvent e)
661 throws Exception {
662 if (e.getMessage() instanceof List) {
663 @SuppressWarnings("unchecked")
664 List<OFMessage> msglist = (List<OFMessage>)e.getMessage();
665
666 for (OFMessage ofm : msglist) {
667 try {
668 processOFMessage(ofm);
669 }
670 catch (Exception ex) {
671 // We are the last handler in the stream, so run the
672 // exception through the channel again by passing in
673 // ctx.getChannel().
674 Channels.fireExceptionCaught(ctx.getChannel(), ex);
675 }
676 }
677
678 // Flush all flow-mods/packet-out generated from this "train"
679 OFSwitchImpl.flush_all();
680 }
681 }
682
683 /**
684 * Process the request for the switch description
685 */
686 @LogMessageDoc(level="ERROR",
687 message="Exception in reading description " +
688 " during handshake {exception}",
689 explanation="Could not process the switch description string",
690 recommendation=LogMessageDoc.CHECK_SWITCH)
691 void processSwitchDescReply() {
692 try {
693 // Read description, if it has been updated
694 @SuppressWarnings("unchecked")
695 Future<List<OFStatistics>> desc_future =
696 (Future<List<OFStatistics>>)sw.
697 getAttribute(IOFSwitch.SWITCH_DESCRIPTION_FUTURE);
698 List<OFStatistics> values =
699 desc_future.get(0, TimeUnit.MILLISECONDS);
700 if (values != null) {
701 OFDescriptionStatistics description =
702 new OFDescriptionStatistics();
703 ChannelBuffer data =
704 ChannelBuffers.buffer(description.getLength());
705 for (OFStatistics f : values) {
706 f.writeTo(data);
707 description.readFrom(data);
708 break; // SHOULD be a list of length 1
709 }
710 sw.setAttribute(IOFSwitch.SWITCH_DESCRIPTION_DATA,
711 description);
712 sw.setSwitchProperties(description);
713 data = null;
714
715 // At this time, also set other switch properties from storage
716 boolean is_core_switch = false;
717 IResultSet resultSet = null;
718 try {
719 String swid = sw.getStringId();
720 resultSet =
721 storageSource.getRow(SWITCH_CONFIG_TABLE_NAME, swid);
722 for (Iterator<IResultSet> it =
723 resultSet.iterator(); it.hasNext();) {
724 // In case of multiple rows, use the status
725 // in last row?
726 Map<String, Object> row = it.next().getRow();
727 if (row.containsKey(SWITCH_CONFIG_CORE_SWITCH)) {
728 if (log.isDebugEnabled()) {
729 log.debug("Reading SWITCH_IS_CORE_SWITCH " +
730 "config for switch={}, is-core={}",
731 sw, row.get(SWITCH_CONFIG_CORE_SWITCH));
732 }
733 String ics =
734 (String)row.get(SWITCH_CONFIG_CORE_SWITCH);
735 is_core_switch = ics.equals("true");
736 }
737 }
738 }
739 finally {
740 if (resultSet != null)
741 resultSet.close();
742 }
743 if (is_core_switch) {
744 sw.setAttribute(IOFSwitch.SWITCH_IS_CORE_SWITCH,
745 new Boolean(true));
746 }
747 }
748 sw.removeAttribute(IOFSwitch.SWITCH_DESCRIPTION_FUTURE);
749 state.hasDescription = true;
750 checkSwitchReady();
751 }
752 catch (InterruptedException ex) {
753 // Ignore
754 }
755 catch (TimeoutException ex) {
756 // Ignore
757 } catch (Exception ex) {
758 log.error("Exception in reading description " +
759 " during handshake", ex);
760 }
761 }
762
763 /**
764 * Send initial switch setup information that we need before adding
765 * the switch
766 * @throws IOException
767 */
768 void sendHelloConfiguration() throws IOException {
769 // Send initial Features Request
770 sw.write(factory.getMessage(OFType.FEATURES_REQUEST), null);
771 }
772
773 /**
774 * Send the configuration requests we can only do after we have
775 * the features reply
776 * @throws IOException
777 */
778 void sendFeatureReplyConfiguration() throws IOException {
779 // Ensure we receive the full packet via PacketIn
780 OFSetConfig config = (OFSetConfig) factory
781 .getMessage(OFType.SET_CONFIG);
782 config.setMissSendLength((short) 0xffff)
783 .setLengthU(OFSwitchConfig.MINIMUM_LENGTH);
784 sw.write(config, null);
785 sw.write(factory.getMessage(OFType.GET_CONFIG_REQUEST),
786 null);
787
788 // Get Description to set switch-specific flags
789 OFStatisticsRequest req = new OFStatisticsRequest();
790 req.setStatisticType(OFStatisticsType.DESC);
791 req.setLengthU(req.getLengthU());
792 Future<List<OFStatistics>> dfuture =
793 sw.getStatistics(req);
794 sw.setAttribute(IOFSwitch.SWITCH_DESCRIPTION_FUTURE,
795 dfuture);
796
797 }
798
799 protected void checkSwitchReady() {
800 if (state.hsState == HandshakeState.FEATURES_REPLY &&
801 state.hasDescription && state.hasGetConfigReply) {
802
803 state.hsState = HandshakeState.READY;
804
805 synchronized(roleChanger) {
806 // We need to keep track of all of the switches that are connected
807 // to the controller, in any role, so that we can later send the
808 // role request messages when the controller role changes.
809 // We need to be synchronized while doing this: we must not
810 // send a another role request to the connectedSwitches until
811 // we were able to add this new switch to connectedSwitches
812 // *and* send the current role to the new switch.
813 connectedSwitches.add(sw);
814
815 if (role != null) {
Jonathan Hart97801ac2013-02-26 14:29:16 -0800816 //Put the switch in SLAVE mode until we know we have control
817 log.debug("Setting new switch {} to SLAVE", sw.getStringId());
818 Collection<OFSwitchImpl> swList = new ArrayList<OFSwitchImpl>(1);
819 swList.add(sw);
820 roleChanger.submitRequest(swList, Role.SLAVE);
821
Jonathan Hartcc957a02013-02-26 10:39:04 -0800822 //Request control of the switch from the global registry
823 try {
824 registryService.requestControl(sw.getId(),
825 new RoleChangeCallback());
826 } catch (RegistryException e) {
827 log.debug("Registry error: {}", e.getMessage());
828 }
829
Jonathan Hart97801ac2013-02-26 14:29:16 -0800830
Jonathan Hartcc957a02013-02-26 10:39:04 -0800831
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800832 // Send a role request if role support is enabled for the controller
833 // This is a probe that we'll use to determine if the switch
834 // actually supports the role request message. If it does we'll
835 // get back a role reply message. If it doesn't we'll get back an
836 // OFError message.
837 // If role is MASTER we will promote switch to active
838 // list when we receive the switch's role reply messages
Jonathan Hartcc957a02013-02-26 10:39:04 -0800839 /*
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800840 log.debug("This controller's role is {}, " +
841 "sending initial role request msg to {}",
842 role, sw);
843 Collection<OFSwitchImpl> swList = new ArrayList<OFSwitchImpl>(1);
844 swList.add(sw);
845 roleChanger.submitRequest(swList, role);
Jonathan Hartcc957a02013-02-26 10:39:04 -0800846 */
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800847 }
848 else {
849 // Role supported not enabled on controller (for now)
850 // automatically promote switch to active state.
Umesh Krishnaswamyb56bb292013-02-12 20:28:27 -0800851 log.debug("This controller's role is {}, " +
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -0800852 "not sending role request msg to {}",
853 role, sw);
854 // Need to clear FlowMods before we add the switch
855 // and dispatch updates otherwise we have a race condition.
856 sw.clearAllFlowMods();
857 addSwitch(sw);
858 state.firstRoleReplyReceived = true;
859 }
860 }
861 }
862 }
863
864 /* Handle a role reply message we received from the switch. Since
865 * netty serializes message dispatch we don't need to synchronize
866 * against other receive operations from the same switch, so no need
867 * to synchronize addSwitch(), removeSwitch() operations from the same
868 * connection.
869 * FIXME: However, when a switch with the same DPID connects we do
870 * need some synchronization. However, handling switches with same
871 * DPID needs to be revisited anyways (get rid of r/w-lock and synchronous
872 * removedSwitch notification):1
873 *
874 */
875 @LogMessageDoc(level="ERROR",
876 message="Invalid role value in role reply message",
877 explanation="Was unable to set the HA role (master or slave) " +
878 "for the controller.",
879 recommendation=LogMessageDoc.CHECK_CONTROLLER)
880 protected void handleRoleReplyMessage(OFVendor vendorMessage,
881 OFRoleReplyVendorData roleReplyVendorData) {
882 // Map from the role code in the message to our role enum
883 int nxRole = roleReplyVendorData.getRole();
884 Role role = null;
885 switch (nxRole) {
886 case OFRoleVendorData.NX_ROLE_OTHER:
887 role = Role.EQUAL;
888 break;
889 case OFRoleVendorData.NX_ROLE_MASTER:
890 role = Role.MASTER;
891 break;
892 case OFRoleVendorData.NX_ROLE_SLAVE:
893 role = Role.SLAVE;
894 break;
895 default:
896 log.error("Invalid role value in role reply message");
897 sw.getChannel().close();
898 return;
899 }
900
901 log.debug("Handling role reply for role {} from {}. " +
902 "Controller's role is {} ",
903 new Object[] { role, sw, Controller.this.role}
904 );
905
906 sw.deliverRoleReply(vendorMessage.getXid(), role);
907
908 boolean isActive = activeSwitches.containsKey(sw.getId());
909 if (!isActive && sw.isActive()) {
910 // Transition from SLAVE to MASTER.
911
912 if (!state.firstRoleReplyReceived ||
913 getAlwaysClearFlowsOnSwAdd()) {
914 // This is the first role-reply message we receive from
915 // this switch or roles were disabled when the switch
916 // connected:
917 // Delete all pre-existing flows for new connections to
918 // the master
919 //
920 // FIXME: Need to think more about what the test should
921 // be for when we flush the flow-table? For example,
922 // if all the controllers are temporarily in the backup
923 // role (e.g. right after a failure of the master
924 // controller) at the point the switch connects, then
925 // all of the controllers will initially connect as
926 // backup controllers and not flush the flow-table.
927 // Then when one of them is promoted to master following
928 // the master controller election the flow-table
929 // will still not be flushed because that's treated as
930 // a failover event where we don't want to flush the
931 // flow-table. The end result would be that the flow
932 // table for a newly connected switch is never
933 // flushed. Not sure how to handle that case though...
934 sw.clearAllFlowMods();
935 log.debug("First role reply from master switch {}, " +
936 "clear FlowTable to active switch list",
937 HexString.toHexString(sw.getId()));
938 }
939
940 // Some switches don't seem to update us with port
941 // status messages while in slave role.
942 readSwitchPortStateFromStorage(sw);
943
944 // Only add the switch to the active switch list if
945 // we're not in the slave role. Note that if the role
946 // attribute is null, then that means that the switch
947 // doesn't support the role request messages, so in that
948 // case we're effectively in the EQUAL role and the
949 // switch should be included in the active switch list.
950 addSwitch(sw);
951 log.debug("Added master switch {} to active switch list",
952 HexString.toHexString(sw.getId()));
953
954 }
955 else if (isActive && !sw.isActive()) {
956 // Transition from MASTER to SLAVE: remove switch
957 // from active switch list.
958 log.debug("Removed slave switch {} from active switch" +
959 " list", HexString.toHexString(sw.getId()));
960 removeSwitch(sw);
961 }
962
963 // Indicate that we have received a role reply message.
964 state.firstRoleReplyReceived = true;
965 }
966
967 protected boolean handleVendorMessage(OFVendor vendorMessage) {
968 boolean shouldHandleMessage = false;
969 int vendor = vendorMessage.getVendor();
970 switch (vendor) {
971 case OFNiciraVendorData.NX_VENDOR_ID:
972 OFNiciraVendorData niciraVendorData =
973 (OFNiciraVendorData)vendorMessage.getVendorData();
974 int dataType = niciraVendorData.getDataType();
975 switch (dataType) {
976 case OFRoleReplyVendorData.NXT_ROLE_REPLY:
977 OFRoleReplyVendorData roleReplyVendorData =
978 (OFRoleReplyVendorData) niciraVendorData;
979 handleRoleReplyMessage(vendorMessage,
980 roleReplyVendorData);
981 break;
982 default:
983 log.warn("Unhandled Nicira VENDOR message; " +
984 "data type = {}", dataType);
985 break;
986 }
987 break;
988 default:
989 log.warn("Unhandled VENDOR message; vendor id = {}", vendor);
990 break;
991 }
992
993 return shouldHandleMessage;
994 }
995
996 /**
997 * Dispatch an Openflow message from a switch to the appropriate
998 * handler.
999 * @param m The message to process
1000 * @throws IOException
1001 * @throws SwitchStateException
1002 */
1003 @LogMessageDocs({
1004 @LogMessageDoc(level="WARN",
1005 message="Config Reply from {switch} has " +
1006 "miss length set to {length}",
1007 explanation="The controller requires that the switch " +
1008 "use a miss length of 0xffff for correct " +
1009 "function",
1010 recommendation="Use a different switch to ensure " +
1011 "correct function"),
1012 @LogMessageDoc(level="WARN",
1013 message="Received ERROR from sw {switch} that "
1014 +"indicates roles are not supported "
1015 +"but we have received a valid "
1016 +"role reply earlier",
1017 explanation="The switch sent a confusing message to the" +
1018 "controller")
1019 })
1020 protected void processOFMessage(OFMessage m)
1021 throws IOException, SwitchStateException {
1022 boolean shouldHandleMessage = false;
1023
1024 switch (m.getType()) {
1025 case HELLO:
1026 if (log.isTraceEnabled())
1027 log.trace("HELLO from {}", sw);
1028
1029 if (state.hsState.equals(HandshakeState.START)) {
1030 state.hsState = HandshakeState.HELLO;
1031 sendHelloConfiguration();
1032 } else {
1033 throw new SwitchStateException("Unexpected HELLO from "
1034 + sw);
1035 }
1036 break;
1037 case ECHO_REQUEST:
1038 OFEchoReply reply =
1039 (OFEchoReply) factory.getMessage(OFType.ECHO_REPLY);
1040 reply.setXid(m.getXid());
1041 sw.write(reply, null);
1042 break;
1043 case ECHO_REPLY:
1044 break;
1045 case FEATURES_REPLY:
1046 if (log.isTraceEnabled())
1047 log.trace("Features Reply from {}", sw);
1048
1049 sw.setFeaturesReply((OFFeaturesReply) m);
1050 if (state.hsState.equals(HandshakeState.HELLO)) {
1051 sendFeatureReplyConfiguration();
1052 state.hsState = HandshakeState.FEATURES_REPLY;
1053 // uncomment to enable "dumb" switches like cbench
1054 // state.hsState = HandshakeState.READY;
1055 // addSwitch(sw);
1056 } else {
1057 // return results to rest api caller
1058 sw.deliverOFFeaturesReply(m);
1059 // update database */
1060 updateActiveSwitchInfo(sw);
1061 }
1062 break;
1063 case GET_CONFIG_REPLY:
1064 if (log.isTraceEnabled())
1065 log.trace("Get config reply from {}", sw);
1066
1067 if (!state.hsState.equals(HandshakeState.FEATURES_REPLY)) {
1068 String em = "Unexpected GET_CONFIG_REPLY from " + sw;
1069 throw new SwitchStateException(em);
1070 }
1071 OFGetConfigReply cr = (OFGetConfigReply) m;
1072 if (cr.getMissSendLength() == (short)0xffff) {
1073 log.trace("Config Reply from {} confirms " +
1074 "miss length set to 0xffff", sw);
1075 } else {
1076 log.warn("Config Reply from {} has " +
1077 "miss length set to {}",
1078 sw, cr.getMissSendLength() & 0xffff);
1079 }
1080 state.hasGetConfigReply = true;
1081 checkSwitchReady();
1082 break;
1083 case VENDOR:
1084 shouldHandleMessage = handleVendorMessage((OFVendor)m);
1085 break;
1086 case ERROR:
1087 // TODO: we need better error handling. Especially for
1088 // request/reply style message (stats, roles) we should have
1089 // a unified way to lookup the xid in the error message.
1090 // This will probable involve rewriting the way we handle
1091 // request/reply style messages.
1092 OFError error = (OFError) m;
1093 boolean shouldLogError = true;
1094 // TODO: should we check that firstRoleReplyReceived is false,
1095 // i.e., check only whether the first request fails?
1096 if (sw.checkFirstPendingRoleRequestXid(error.getXid())) {
1097 boolean isBadVendorError =
1098 (error.getErrorType() == OFError.OFErrorType.
1099 OFPET_BAD_REQUEST.getValue());
1100 // We expect to receive a bad vendor error when
1101 // we're connected to a switch that doesn't support
1102 // the Nicira vendor extensions (i.e. not OVS or
1103 // derived from OVS). By protocol, it should also be
1104 // BAD_VENDOR, but too many switch implementations
1105 // get it wrong and we can already check the xid()
1106 // so we can ignore the type with confidence that this
1107 // is not a spurious error
1108 shouldLogError = !isBadVendorError;
1109 if (isBadVendorError) {
1110 if (state.firstRoleReplyReceived && (role != null)) {
1111 log.warn("Received ERROR from sw {} that "
1112 +"indicates roles are not supported "
1113 +"but we have received a valid "
1114 +"role reply earlier", sw);
1115 }
1116 state.firstRoleReplyReceived = true;
Jonathan Harta95c6d92013-03-18 16:12:27 -07001117 Role requestedRole =
1118 sw.deliverRoleRequestNotSupported(error.getXid());
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001119 synchronized(roleChanger) {
1120 if (sw.role == null && Controller.this.role==Role.SLAVE) {
Jonathan Harta95c6d92013-03-18 16:12:27 -07001121 //This will now never happen. The Controller's role
1122 //is now never SLAVE, always MASTER.
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001123 // the switch doesn't understand role request
1124 // messages and the current controller role is
1125 // slave. We need to disconnect the switch.
1126 // @see RoleChanger for rationale
1127 sw.getChannel().close();
1128 }
Jonathan Harta95c6d92013-03-18 16:12:27 -07001129 else if (sw.role == null && requestedRole == Role.MASTER) {
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001130 // Controller's role is master: add to
1131 // active
1132 // TODO: check if clearing flow table is
1133 // right choice here.
1134 // Need to clear FlowMods before we add the switch
1135 // and dispatch updates otherwise we have a race condition.
1136 // TODO: switch update is async. Won't we still have a potential
1137 // race condition?
1138 sw.clearAllFlowMods();
1139 addSwitch(sw);
1140 }
1141 }
1142 }
1143 else {
1144 // TODO: Is this the right thing to do if we receive
1145 // some other error besides a bad vendor error?
1146 // Presumably that means the switch did actually
1147 // understand the role request message, but there
1148 // was some other error from processing the message.
1149 // OF 1.2 specifies a OFPET_ROLE_REQUEST_FAILED
1150 // error code, but it doesn't look like the Nicira
1151 // role request has that. Should check OVS source
1152 // code to see if it's possible for any other errors
1153 // to be returned.
1154 // If we received an error the switch is not
1155 // in the correct role, so we need to disconnect it.
1156 // We could also resend the request but then we need to
1157 // check if there are other pending request in which
1158 // case we shouldn't resend. If we do resend we need
1159 // to make sure that the switch eventually accepts one
1160 // of our requests or disconnect the switch. This feels
1161 // cumbersome.
1162 sw.getChannel().close();
1163 }
1164 }
1165 // Once we support OF 1.2, we'd add code to handle it here.
1166 //if (error.getXid() == state.ofRoleRequestXid) {
1167 //}
1168 if (shouldLogError)
1169 logError(sw, error);
1170 break;
1171 case STATS_REPLY:
1172 if (state.hsState.ordinal() <
1173 HandshakeState.FEATURES_REPLY.ordinal()) {
1174 String em = "Unexpected STATS_REPLY from " + sw;
1175 throw new SwitchStateException(em);
1176 }
1177 sw.deliverStatisticsReply(m);
1178 if (sw.hasAttribute(IOFSwitch.SWITCH_DESCRIPTION_FUTURE)) {
1179 processSwitchDescReply();
1180 }
1181 break;
1182 case PORT_STATUS:
1183 // We want to update our port state info even if we're in
1184 // the slave role, but we only want to update storage if
1185 // we're the master (or equal).
1186 boolean updateStorage = state.hsState.
1187 equals(HandshakeState.READY) &&
1188 (sw.getRole() != Role.SLAVE);
1189 handlePortStatusMessage(sw, (OFPortStatus)m, updateStorage);
1190 shouldHandleMessage = true;
1191 break;
1192
1193 default:
1194 shouldHandleMessage = true;
1195 break;
1196 }
1197
1198 if (shouldHandleMessage) {
1199 sw.getListenerReadLock().lock();
1200 try {
1201 if (sw.isConnected()) {
1202 if (!state.hsState.equals(HandshakeState.READY)) {
1203 log.debug("Ignoring message type {} received " +
1204 "from switch {} before switch is " +
1205 "fully configured.", m.getType(), sw);
1206 }
1207 // Check if the controller is in the slave role for the
1208 // switch. If it is, then don't dispatch the message to
1209 // the listeners.
1210 // TODO: Should we dispatch messages that we expect to
1211 // receive when we're in the slave role, e.g. port
1212 // status messages? Since we're "hiding" switches from
1213 // the listeners when we're in the slave role, then it
1214 // seems a little weird to dispatch port status messages
1215 // to them. On the other hand there might be special
1216 // modules that care about all of the connected switches
1217 // and would like to receive port status notifications.
1218 else if (sw.getRole() == Role.SLAVE) {
1219 // Don't log message if it's a port status message
1220 // since we expect to receive those from the switch
1221 // and don't want to emit spurious messages.
1222 if (m.getType() != OFType.PORT_STATUS) {
1223 log.debug("Ignoring message type {} received " +
1224 "from switch {} while in the slave role.",
1225 m.getType(), sw);
1226 }
1227 } else {
1228 handleMessage(sw, m, null);
1229 }
1230 }
1231 }
1232 finally {
1233 sw.getListenerReadLock().unlock();
1234 }
1235 }
1236 }
1237 }
1238
1239 // ****************
1240 // Message handlers
1241 // ****************
1242
1243 protected void handlePortStatusMessage(IOFSwitch sw,
1244 OFPortStatus m,
1245 boolean updateStorage) {
1246 short portNumber = m.getDesc().getPortNumber();
1247 OFPhysicalPort port = m.getDesc();
1248 if (m.getReason() == (byte)OFPortReason.OFPPR_MODIFY.ordinal()) {
Pankaj Berde6a4075d2013-01-22 16:42:54 -08001249 boolean portDown = ((OFPortConfig.OFPPC_PORT_DOWN.getValue() & port.getConfig()) > 0) ||
1250 ((OFPortState.OFPPS_LINK_DOWN.getValue() & port.getState()) > 0);
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001251 sw.setPort(port);
Pankaj Berde6a4075d2013-01-22 16:42:54 -08001252 if (!portDown) {
Pankaj Berde6debb042013-01-16 18:04:32 -08001253 swStore.addPort(sw.getStringId(), port);
1254 } else {
1255 swStore.deletePort(sw.getStringId(), port.getPortNumber());
1256 }
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001257 if (updateStorage)
1258 updatePortInfo(sw, port);
1259 log.debug("Port #{} modified for {}", portNumber, sw);
1260 } else if (m.getReason() == (byte)OFPortReason.OFPPR_ADD.ordinal()) {
1261 sw.setPort(port);
Pankaj Berde8557a462013-01-07 08:59:31 -08001262 swStore.addPort(sw.getStringId(), port);
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001263 if (updateStorage)
1264 updatePortInfo(sw, port);
1265 log.debug("Port #{} added for {}", portNumber, sw);
1266 } else if (m.getReason() ==
1267 (byte)OFPortReason.OFPPR_DELETE.ordinal()) {
1268 sw.deletePort(portNumber);
Pankaj Berde8557a462013-01-07 08:59:31 -08001269 swStore.deletePort(sw.getStringId(), portNumber);
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001270 if (updateStorage)
1271 removePortInfo(sw, portNumber);
1272 log.debug("Port #{} deleted for {}", portNumber, sw);
1273 }
1274 SwitchUpdate update = new SwitchUpdate(sw, SwitchUpdateType.PORTCHANGED);
1275 try {
1276 this.updates.put(update);
1277 } catch (InterruptedException e) {
1278 log.error("Failure adding update to queue", e);
1279 }
1280 }
1281
1282 /**
1283 * flcontext_cache - Keep a thread local stack of contexts
1284 */
1285 protected static final ThreadLocal<Stack<FloodlightContext>> flcontext_cache =
1286 new ThreadLocal <Stack<FloodlightContext>> () {
1287 @Override
1288 protected Stack<FloodlightContext> initialValue() {
1289 return new Stack<FloodlightContext>();
1290 }
1291 };
1292
1293 /**
1294 * flcontext_alloc - pop a context off the stack, if required create a new one
1295 * @return FloodlightContext
1296 */
1297 protected static FloodlightContext flcontext_alloc() {
1298 FloodlightContext flcontext = null;
1299
1300 if (flcontext_cache.get().empty()) {
1301 flcontext = new FloodlightContext();
1302 }
1303 else {
1304 flcontext = flcontext_cache.get().pop();
1305 }
1306
1307 return flcontext;
1308 }
1309
1310 /**
1311 * flcontext_free - Free the context to the current thread
1312 * @param flcontext
1313 */
1314 protected void flcontext_free(FloodlightContext flcontext) {
1315 flcontext.getStorage().clear();
1316 flcontext_cache.get().push(flcontext);
1317 }
1318
1319 /**
1320 * Handle replies to certain OFMessages, and pass others off to listeners
1321 * @param sw The switch for the message
1322 * @param m The message
1323 * @param bContext The floodlight context. If null then floodlight context would
1324 * be allocated in this function
1325 * @throws IOException
1326 */
1327 @LogMessageDocs({
1328 @LogMessageDoc(level="ERROR",
1329 message="Ignoring PacketIn (Xid = {xid}) because the data" +
1330 " field is empty.",
1331 explanation="The switch sent an improperly-formatted PacketIn" +
1332 " message",
1333 recommendation=LogMessageDoc.CHECK_SWITCH),
1334 @LogMessageDoc(level="WARN",
1335 message="Unhandled OF Message: {} from {}",
1336 explanation="The switch sent a message not handled by " +
1337 "the controller")
1338 })
1339 protected void handleMessage(IOFSwitch sw, OFMessage m,
1340 FloodlightContext bContext)
1341 throws IOException {
1342 Ethernet eth = null;
1343
1344 switch (m.getType()) {
1345 case PACKET_IN:
1346 OFPacketIn pi = (OFPacketIn)m;
1347
1348 if (pi.getPacketData().length <= 0) {
1349 log.error("Ignoring PacketIn (Xid = " + pi.getXid() +
1350 ") because the data field is empty.");
1351 return;
1352 }
1353
1354 if (Controller.ALWAYS_DECODE_ETH) {
1355 eth = new Ethernet();
1356 eth.deserialize(pi.getPacketData(), 0,
1357 pi.getPacketData().length);
1358 counterStore.updatePacketInCounters(sw, m, eth);
1359 }
1360 // fall through to default case...
1361
1362 default:
1363
1364 List<IOFMessageListener> listeners = null;
1365 if (messageListeners.containsKey(m.getType())) {
1366 listeners = messageListeners.get(m.getType()).
1367 getOrderedListeners();
1368 }
1369
1370 FloodlightContext bc = null;
1371 if (listeners != null) {
1372 // Check if floodlight context is passed from the calling
1373 // function, if so use that floodlight context, otherwise
1374 // allocate one
1375 if (bContext == null) {
1376 bc = flcontext_alloc();
1377 } else {
1378 bc = bContext;
1379 }
1380 if (eth != null) {
1381 IFloodlightProviderService.bcStore.put(bc,
1382 IFloodlightProviderService.CONTEXT_PI_PAYLOAD,
1383 eth);
1384 }
1385
1386 // Get the starting time (overall and per-component) of
1387 // the processing chain for this packet if performance
1388 // monitoring is turned on
1389 pktinProcTime.bootstrap(listeners);
1390 pktinProcTime.recordStartTimePktIn();
1391 Command cmd;
1392 for (IOFMessageListener listener : listeners) {
1393 if (listener instanceof IOFSwitchFilter) {
1394 if (!((IOFSwitchFilter)listener).isInterested(sw)) {
1395 continue;
1396 }
1397 }
1398
1399 pktinProcTime.recordStartTimeComp(listener);
1400 cmd = listener.receive(sw, m, bc);
1401 pktinProcTime.recordEndTimeComp(listener);
1402
1403 if (Command.STOP.equals(cmd)) {
1404 break;
1405 }
1406 }
1407 pktinProcTime.recordEndTimePktIn(sw, m, bc);
1408 } else {
1409 log.warn("Unhandled OF Message: {} from {}", m, sw);
1410 }
1411
1412 if ((bContext == null) && (bc != null)) flcontext_free(bc);
1413 }
1414 }
1415
1416 /**
1417 * Log an OpenFlow error message from a switch
1418 * @param sw The switch that sent the error
1419 * @param error The error message
1420 */
1421 @LogMessageDoc(level="ERROR",
1422 message="Error {error type} {error code} from {switch}",
1423 explanation="The switch responded with an unexpected error" +
1424 "to an OpenFlow message from the controller",
1425 recommendation="This could indicate improper network operation. " +
1426 "If the problem persists restarting the switch and " +
1427 "controller may help."
1428 )
1429 protected void logError(IOFSwitch sw, OFError error) {
1430 int etint = 0xffff & error.getErrorType();
1431 if (etint < 0 || etint >= OFErrorType.values().length) {
1432 log.error("Unknown error code {} from sw {}", etint, sw);
1433 }
1434 OFErrorType et = OFErrorType.values()[etint];
1435 switch (et) {
1436 case OFPET_HELLO_FAILED:
1437 OFHelloFailedCode hfc =
1438 OFHelloFailedCode.values()[0xffff & error.getErrorCode()];
1439 log.error("Error {} {} from {}", new Object[] {et, hfc, sw});
1440 break;
1441 case OFPET_BAD_REQUEST:
1442 OFBadRequestCode brc =
1443 OFBadRequestCode.values()[0xffff & error.getErrorCode()];
1444 log.error("Error {} {} from {}", new Object[] {et, brc, sw});
1445 break;
1446 case OFPET_BAD_ACTION:
1447 OFBadActionCode bac =
1448 OFBadActionCode.values()[0xffff & error.getErrorCode()];
1449 log.error("Error {} {} from {}", new Object[] {et, bac, sw});
1450 break;
1451 case OFPET_FLOW_MOD_FAILED:
1452 OFFlowModFailedCode fmfc =
1453 OFFlowModFailedCode.values()[0xffff & error.getErrorCode()];
1454 log.error("Error {} {} from {}", new Object[] {et, fmfc, sw});
1455 break;
1456 case OFPET_PORT_MOD_FAILED:
1457 OFPortModFailedCode pmfc =
1458 OFPortModFailedCode.values()[0xffff & error.getErrorCode()];
1459 log.error("Error {} {} from {}", new Object[] {et, pmfc, sw});
1460 break;
1461 case OFPET_QUEUE_OP_FAILED:
1462 OFQueueOpFailedCode qofc =
1463 OFQueueOpFailedCode.values()[0xffff & error.getErrorCode()];
1464 log.error("Error {} {} from {}", new Object[] {et, qofc, sw});
1465 break;
1466 default:
1467 break;
1468 }
1469 }
1470
1471 /**
1472 * Add a switch to the active switch list and call the switch listeners.
1473 * This happens either when a switch first connects (and the controller is
1474 * not in the slave role) or when the role of the controller changes from
1475 * slave to master.
1476 * @param sw the switch that has been added
1477 */
1478 // TODO: need to rethink locking and the synchronous switch update.
1479 // We can / should also handle duplicate DPIDs in connectedSwitches
1480 @LogMessageDoc(level="ERROR",
1481 message="New switch added {switch} for already-added switch {switch}",
1482 explanation="A switch with the same DPID as another switch " +
1483 "connected to the controller. This can be caused by " +
1484 "multiple switches configured with the same DPID, or " +
1485 "by a switch reconnected very quickly after " +
1486 "disconnecting.",
1487 recommendation="If this happens repeatedly, it is likely there " +
1488 "are switches with duplicate DPIDs on the network. " +
1489 "Reconfigure the appropriate switches. If it happens " +
1490 "very rarely, then it is likely this is a transient " +
1491 "network problem that can be ignored."
1492 )
1493 protected void addSwitch(IOFSwitch sw) {
1494 // TODO: is it safe to modify the HashMap without holding
1495 // the old switch's lock?
1496 OFSwitchImpl oldSw = (OFSwitchImpl) this.activeSwitches.put(sw.getId(), sw);
1497 if (sw == oldSw) {
1498 // Note == for object equality, not .equals for value
1499 log.info("New add switch for pre-existing switch {}", sw);
1500 return;
1501 }
1502
1503 if (oldSw != null) {
1504 oldSw.getListenerWriteLock().lock();
1505 try {
1506 log.error("New switch added {} for already-added switch {}",
1507 sw, oldSw);
1508 // Set the connected flag to false to suppress calling
1509 // the listeners for this switch in processOFMessage
1510 oldSw.setConnected(false);
1511
1512 oldSw.cancelAllStatisticsReplies();
1513
1514 updateInactiveSwitchInfo(oldSw);
1515
1516 // we need to clean out old switch state definitively
1517 // before adding the new switch
1518 // FIXME: It seems not completely kosher to call the
1519 // switch listeners here. I thought one of the points of
1520 // having the asynchronous switch update mechanism was so
1521 // the addedSwitch and removedSwitch were always called
1522 // from a single thread to simplify concurrency issues
1523 // for the listener.
1524 if (switchListeners != null) {
1525 for (IOFSwitchListener listener : switchListeners) {
1526 listener.removedSwitch(oldSw);
1527 }
1528 }
1529 // will eventually trigger a removeSwitch(), which will cause
1530 // a "Not removing Switch ... already removed debug message.
1531 // TODO: Figure out a way to handle this that avoids the
1532 // spurious debug message.
1533 oldSw.getChannel().close();
1534 }
1535 finally {
1536 oldSw.getListenerWriteLock().unlock();
1537 }
1538 }
1539
1540 updateActiveSwitchInfo(sw);
Pankaj Berdef8ad2852013-02-27 17:06:14 -08001541 if (registryService.hasControl(sw.getId())) {
1542 swStore.update(sw.getStringId(), SwitchState.ACTIVE, DM_OPERATION.UPDATE);
1543 for (OFPhysicalPort port: sw.getPorts()) {
1544 swStore.addPort(sw.getStringId(), port);
1545 }
Pankaj Berde0fc4e432013-01-12 09:47:22 -08001546 }
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001547 SwitchUpdate update = new SwitchUpdate(sw, SwitchUpdateType.ADDED);
1548 try {
1549 this.updates.put(update);
1550 } catch (InterruptedException e) {
1551 log.error("Failure adding update to queue", e);
1552 }
1553 }
1554
1555 /**
1556 * Remove a switch from the active switch list and call the switch listeners.
1557 * This happens either when the switch is disconnected or when the
1558 * controller's role for the switch changes from master to slave.
1559 * @param sw the switch that has been removed
1560 */
1561 protected void removeSwitch(IOFSwitch sw) {
1562 // No need to acquire the listener lock, since
1563 // this method is only called after netty has processed all
1564 // pending messages
1565 log.debug("removeSwitch: {}", sw);
Pankaj Berdefa4d0f72013-03-13 17:59:37 -07001566 //
1567 // Cannot set sw to inactive in network map due to race condition
1568 // Need a cleanup thread to periodically check switches not active in registry
1569 // and acquire control to set to inactive state in network map and release it
1570 //
1571 // if (registryService.hasControl(sw.getId())) {
1572 // swStore.update(sw.getStringId(), SwitchState.INACTIVE, DM_OPERATION.UPDATE);
1573 // }
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001574 if (!this.activeSwitches.remove(sw.getId(), sw) || !sw.isConnected()) {
1575 log.debug("Not removing switch {}; already removed", sw);
1576 return;
1577 }
1578 // We cancel all outstanding statistics replies if the switch transition
1579 // from active. In the future we might allow statistics requests
1580 // from slave controllers. Then we need to move this cancelation
1581 // to switch disconnect
1582 sw.cancelAllStatisticsReplies();
Pankaj Berdeafb20532013-01-08 15:05:24 -08001583
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001584
1585 // FIXME: I think there's a race condition if we call updateInactiveSwitchInfo
1586 // here if role support is enabled. In that case if the switch is being
1587 // removed because we've been switched to being in the slave role, then I think
1588 // it's possible that the new master may have already been promoted to master
1589 // and written out the active switch state to storage. If we now execute
1590 // updateInactiveSwitchInfo we may wipe out all of the state that was
1591 // written out by the new master. Maybe need to revisit how we handle all
1592 // of the switch state that's written to storage.
1593
1594 updateInactiveSwitchInfo(sw);
Pankaj Berdeafb20532013-01-08 15:05:24 -08001595
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08001596 SwitchUpdate update = new SwitchUpdate(sw, SwitchUpdateType.REMOVED);
1597 try {
1598 this.updates.put(update);
1599 } catch (InterruptedException e) {
1600 log.error("Failure adding update to queue", e);
1601 }
1602 }
1603
1604 // ***************
1605 // IFloodlightProvider
1606 // ***************
1607
1608 @Override
1609 public synchronized void addOFMessageListener(OFType type,
1610 IOFMessageListener listener) {
1611 ListenerDispatcher<OFType, IOFMessageListener> ldd =
1612 messageListeners.get(type);
1613 if (ldd == null) {
1614 ldd = new ListenerDispatcher<OFType, IOFMessageListener>();
1615 messageListeners.put(type, ldd);
1616 }
1617 ldd.addListener(type, listener);
1618 }
1619
1620 @Override
1621 public synchronized void removeOFMessageListener(OFType type,
1622 IOFMessageListener listener) {
1623 ListenerDispatcher<OFType, IOFMessageListener> ldd =
1624 messageListeners.get(type);
1625 if (ldd != null) {
1626 ldd.removeListener(listener);
1627 }
1628 }
1629
1630 private void logListeners() {
1631 for (Map.Entry<OFType,
1632 ListenerDispatcher<OFType,
1633 IOFMessageListener>> entry
1634 : messageListeners.entrySet()) {
1635
1636 OFType type = entry.getKey();
1637 ListenerDispatcher<OFType, IOFMessageListener> ldd =
1638 entry.getValue();
1639
1640 StringBuffer sb = new StringBuffer();
1641 sb.append("OFListeners for ");
1642 sb.append(type);
1643 sb.append(": ");
1644 for (IOFMessageListener l : ldd.getOrderedListeners()) {
1645 sb.append(l.getName());
1646 sb.append(",");
1647 }
1648 log.debug(sb.toString());
1649 }
1650 }
1651
1652 public void removeOFMessageListeners(OFType type) {
1653 messageListeners.remove(type);
1654 }
1655
1656 @Override
1657 public Map<Long, IOFSwitch> getSwitches() {
1658 return Collections.unmodifiableMap(this.activeSwitches);
1659 }
1660
1661 @Override
1662 public void addOFSwitchListener(IOFSwitchListener listener) {
1663 this.switchListeners.add(listener);
1664 }
1665
1666 @Override
1667 public void removeOFSwitchListener(IOFSwitchListener listener) {
1668 this.switchListeners.remove(listener);
1669 }
1670
1671 @Override
1672 public Map<OFType, List<IOFMessageListener>> getListeners() {
1673 Map<OFType, List<IOFMessageListener>> lers =
1674 new HashMap<OFType, List<IOFMessageListener>>();
1675 for(Entry<OFType, ListenerDispatcher<OFType, IOFMessageListener>> e :
1676 messageListeners.entrySet()) {
1677 lers.put(e.getKey(), e.getValue().getOrderedListeners());
1678 }
1679 return Collections.unmodifiableMap(lers);
1680 }
1681
1682 @Override
1683 @LogMessageDocs({
1684 @LogMessageDoc(message="Failed to inject OFMessage {message} onto " +
1685 "a null switch",
1686 explanation="Failed to process a message because the switch " +
1687 " is no longer connected."),
1688 @LogMessageDoc(level="ERROR",
1689 message="Error reinjecting OFMessage on switch {switch}",
1690 explanation="An I/O error occured while attempting to " +
1691 "process an OpenFlow message",
1692 recommendation=LogMessageDoc.CHECK_SWITCH)
1693 })
1694 public boolean injectOfMessage(IOFSwitch sw, OFMessage msg,
1695 FloodlightContext bc) {
1696 if (sw == null) {
1697 log.info("Failed to inject OFMessage {} onto a null switch", msg);
1698 return false;
1699 }
1700
1701 // FIXME: Do we need to be able to inject messages to switches
1702 // where we're the slave controller (i.e. they're connected but
1703 // not active)?
1704 // FIXME: Don't we need synchronization logic here so we're holding
1705 // the listener read lock when we call handleMessage? After some
1706 // discussions it sounds like the right thing to do here would be to
1707 // inject the message as a netty upstream channel event so it goes
1708 // through the normal netty event processing, including being
1709 // handled
1710 if (!activeSwitches.containsKey(sw.getId())) return false;
1711
1712 try {
1713 // Pass Floodlight context to the handleMessages()
1714 handleMessage(sw, msg, bc);
1715 } catch (IOException e) {
1716 log.error("Error reinjecting OFMessage on switch {}",
1717 HexString.toHexString(sw.getId()));
1718 return false;
1719 }
1720 return true;
1721 }
1722
1723 @Override
1724 @LogMessageDoc(message="Calling System.exit",
1725 explanation="The controller is terminating")
1726 public synchronized void terminate() {
1727 log.info("Calling System.exit");
1728 System.exit(1);
1729 }
1730
1731 @Override
1732 public boolean injectOfMessage(IOFSwitch sw, OFMessage msg) {
1733 // call the overloaded version with floodlight context set to null
1734 return injectOfMessage(sw, msg, null);
1735 }
1736
1737 @Override
1738 public void handleOutgoingMessage(IOFSwitch sw, OFMessage m,
1739 FloodlightContext bc) {
1740 if (log.isTraceEnabled()) {
1741 String str = OFMessage.getDataAsString(sw, m, bc);
1742 log.trace("{}", str);
1743 }
1744
1745 List<IOFMessageListener> listeners = null;
1746 if (messageListeners.containsKey(m.getType())) {
1747 listeners =
1748 messageListeners.get(m.getType()).getOrderedListeners();
1749 }
1750
1751 if (listeners != null) {
1752 for (IOFMessageListener listener : listeners) {
1753 if (listener instanceof IOFSwitchFilter) {
1754 if (!((IOFSwitchFilter)listener).isInterested(sw)) {
1755 continue;
1756 }
1757 }
1758 if (Command.STOP.equals(listener.receive(sw, m, bc))) {
1759 break;
1760 }
1761 }
1762 }
1763 }
1764
1765 @Override
1766 public BasicFactory getOFMessageFactory() {
1767 return factory;
1768 }
1769
1770 @Override
1771 public String getControllerId() {
1772 return controllerId;
1773 }
1774
1775 // **************
1776 // Initialization
1777 // **************
1778
1779 protected void updateAllInactiveSwitchInfo() {
1780 if (role == Role.SLAVE) {
1781 return;
1782 }
1783 String controllerId = getControllerId();
1784 String[] switchColumns = { SWITCH_DATAPATH_ID,
1785 SWITCH_CONTROLLER_ID,
1786 SWITCH_ACTIVE };
1787 String[] portColumns = { PORT_ID, PORT_SWITCH };
1788 IResultSet switchResultSet = null;
1789 try {
1790 OperatorPredicate op =
1791 new OperatorPredicate(SWITCH_CONTROLLER_ID,
1792 OperatorPredicate.Operator.EQ,
1793 controllerId);
1794 switchResultSet =
1795 storageSource.executeQuery(SWITCH_TABLE_NAME,
1796 switchColumns,
1797 op, null);
1798 while (switchResultSet.next()) {
1799 IResultSet portResultSet = null;
1800 try {
1801 String datapathId =
1802 switchResultSet.getString(SWITCH_DATAPATH_ID);
1803 switchResultSet.setBoolean(SWITCH_ACTIVE, Boolean.FALSE);
1804 op = new OperatorPredicate(PORT_SWITCH,
1805 OperatorPredicate.Operator.EQ,
1806 datapathId);
1807 portResultSet =
1808 storageSource.executeQuery(PORT_TABLE_NAME,
1809 portColumns,
1810 op, null);
1811 while (portResultSet.next()) {
1812 portResultSet.deleteRow();
1813 }
1814 portResultSet.save();
1815 }
1816 finally {
1817 if (portResultSet != null)
1818 portResultSet.close();
1819 }
1820 }
1821 switchResultSet.save();
1822 }
1823 finally {
1824 if (switchResultSet != null)
1825 switchResultSet.close();
1826 }
1827 }
1828
1829 protected void updateControllerInfo() {
1830 updateAllInactiveSwitchInfo();
1831
1832 // Write out the controller info to the storage source
1833 Map<String, Object> controllerInfo = new HashMap<String, Object>();
1834 String id = getControllerId();
1835 controllerInfo.put(CONTROLLER_ID, id);
1836 storageSource.updateRow(CONTROLLER_TABLE_NAME, controllerInfo);
1837 }
1838
1839 protected void updateActiveSwitchInfo(IOFSwitch sw) {
1840 if (role == Role.SLAVE) {
1841 return;
1842 }
1843 // Obtain the row info for the switch
1844 Map<String, Object> switchInfo = new HashMap<String, Object>();
1845 String datapathIdString = sw.getStringId();
1846 switchInfo.put(SWITCH_DATAPATH_ID, datapathIdString);
1847 String controllerId = getControllerId();
1848 switchInfo.put(SWITCH_CONTROLLER_ID, controllerId);
1849 Date connectedSince = sw.getConnectedSince();
1850 switchInfo.put(SWITCH_CONNECTED_SINCE, connectedSince);
1851 Channel channel = sw.getChannel();
1852 SocketAddress socketAddress = channel.getRemoteAddress();
1853 if (socketAddress != null) {
1854 String socketAddressString = socketAddress.toString();
1855 switchInfo.put(SWITCH_SOCKET_ADDRESS, socketAddressString);
1856 if (socketAddress instanceof InetSocketAddress) {
1857 InetSocketAddress inetSocketAddress =
1858 (InetSocketAddress)socketAddress;
1859 InetAddress inetAddress = inetSocketAddress.getAddress();
1860 String ip = inetAddress.getHostAddress();
1861 switchInfo.put(SWITCH_IP, ip);
1862 }
1863 }
1864
1865 // Write out the switch features info
1866 long capabilities = U32.f(sw.getCapabilities());
1867 switchInfo.put(SWITCH_CAPABILITIES, capabilities);
1868 long buffers = U32.f(sw.getBuffers());
1869 switchInfo.put(SWITCH_BUFFERS, buffers);
1870 long tables = U32.f(sw.getTables());
1871 switchInfo.put(SWITCH_TABLES, tables);
1872 long actions = U32.f(sw.getActions());
1873 switchInfo.put(SWITCH_ACTIONS, actions);
1874 switchInfo.put(SWITCH_ACTIVE, Boolean.TRUE);
1875
1876 // Update the switch
1877 storageSource.updateRowAsync(SWITCH_TABLE_NAME, switchInfo);
1878
1879 // Update the ports
1880 for (OFPhysicalPort port: sw.getPorts()) {
1881 updatePortInfo(sw, port);
1882 }
1883 }
1884
1885 protected void updateInactiveSwitchInfo(IOFSwitch sw) {
1886 if (role == Role.SLAVE) {
1887 return;
1888 }
1889 log.debug("Update DB with inactiveSW {}", sw);
1890 // Update the controller info in the storage source to be inactive
1891 Map<String, Object> switchInfo = new HashMap<String, Object>();
1892 String datapathIdString = sw.getStringId();
1893 switchInfo.put(SWITCH_DATAPATH_ID, datapathIdString);
1894 //switchInfo.put(SWITCH_CONNECTED_SINCE, null);
1895 switchInfo.put(SWITCH_ACTIVE, Boolean.FALSE);
1896 storageSource.updateRowAsync(SWITCH_TABLE_NAME, switchInfo);
1897 }
1898
1899 protected void updatePortInfo(IOFSwitch sw, OFPhysicalPort port) {
1900 if (role == Role.SLAVE) {
1901 return;
1902 }
1903 String datapathIdString = sw.getStringId();
1904 Map<String, Object> portInfo = new HashMap<String, Object>();
1905 int portNumber = U16.f(port.getPortNumber());
1906 String id = datapathIdString + "|" + portNumber;
1907 portInfo.put(PORT_ID, id);
1908 portInfo.put(PORT_SWITCH, datapathIdString);
1909 portInfo.put(PORT_NUMBER, portNumber);
1910 byte[] hardwareAddress = port.getHardwareAddress();
1911 String hardwareAddressString = HexString.toHexString(hardwareAddress);
1912 portInfo.put(PORT_HARDWARE_ADDRESS, hardwareAddressString);
1913 String name = port.getName();
1914 portInfo.put(PORT_NAME, name);
1915 long config = U32.f(port.getConfig());
1916 portInfo.put(PORT_CONFIG, config);
1917 long state = U32.f(port.getState());
1918 portInfo.put(PORT_STATE, state);
1919 long currentFeatures = U32.f(port.getCurrentFeatures());
1920 portInfo.put(PORT_CURRENT_FEATURES, currentFeatures);
1921 long advertisedFeatures = U32.f(port.getAdvertisedFeatures());
1922 portInfo.put(PORT_ADVERTISED_FEATURES, advertisedFeatures);
1923 long supportedFeatures = U32.f(port.getSupportedFeatures());
1924 portInfo.put(PORT_SUPPORTED_FEATURES, supportedFeatures);
1925 long peerFeatures = U32.f(port.getPeerFeatures());
1926 portInfo.put(PORT_PEER_FEATURES, peerFeatures);
1927 storageSource.updateRowAsync(PORT_TABLE_NAME, portInfo);
1928 }
1929
1930 /**
1931 * Read switch port data from storage and write it into a switch object
1932 * @param sw the switch to update
1933 */
1934 protected void readSwitchPortStateFromStorage(OFSwitchImpl sw) {
1935 OperatorPredicate op =
1936 new OperatorPredicate(PORT_SWITCH,
1937 OperatorPredicate.Operator.EQ,
1938 sw.getStringId());
1939 IResultSet portResultSet =
1940 storageSource.executeQuery(PORT_TABLE_NAME,
1941 null, op, null);
1942 //Map<Short, OFPhysicalPort> oldports =
1943 // new HashMap<Short, OFPhysicalPort>();
1944 //oldports.putAll(sw.getPorts());
1945
1946 while (portResultSet.next()) {
1947 try {
1948 OFPhysicalPort p = new OFPhysicalPort();
1949 p.setPortNumber((short)portResultSet.getInt(PORT_NUMBER));
1950 p.setName(portResultSet.getString(PORT_NAME));
1951 p.setConfig((int)portResultSet.getLong(PORT_CONFIG));
1952 p.setState((int)portResultSet.getLong(PORT_STATE));
1953 String portMac = portResultSet.getString(PORT_HARDWARE_ADDRESS);
1954 p.setHardwareAddress(HexString.fromHexString(portMac));
1955 p.setCurrentFeatures((int)portResultSet.
1956 getLong(PORT_CURRENT_FEATURES));
1957 p.setAdvertisedFeatures((int)portResultSet.
1958 getLong(PORT_ADVERTISED_FEATURES));
1959 p.setSupportedFeatures((int)portResultSet.
1960 getLong(PORT_SUPPORTED_FEATURES));
1961 p.setPeerFeatures((int)portResultSet.
1962 getLong(PORT_PEER_FEATURES));
1963 //oldports.remove(Short.valueOf(p.getPortNumber()));
1964 sw.setPort(p);
1965 } catch (NullPointerException e) {
1966 // ignore
1967 }
1968 }
1969 SwitchUpdate update = new SwitchUpdate(sw, SwitchUpdateType.PORTCHANGED);
1970 try {
1971 this.updates.put(update);
1972 } catch (InterruptedException e) {
1973 log.error("Failure adding update to queue", e);
1974 }
1975 }
1976
1977 protected void removePortInfo(IOFSwitch sw, short portNumber) {
1978 if (role == Role.SLAVE) {
1979 return;
1980 }
1981 String datapathIdString = sw.getStringId();
1982 String id = datapathIdString + "|" + portNumber;
1983 storageSource.deleteRowAsync(PORT_TABLE_NAME, id);
1984 }
1985
1986 /**
1987 * Sets the initial role based on properties in the config params.
1988 * It looks for two different properties.
1989 * If the "role" property is specified then the value should be
1990 * either "EQUAL", "MASTER", or "SLAVE" and the role of the
1991 * controller is set to the specified value. If the "role" property
1992 * is not specified then it looks next for the "role.path" property.
1993 * In this case the value should be the path to a property file in
1994 * the file system that contains a property called "floodlight.role"
1995 * which can be one of the values listed above for the "role" property.
1996 * The idea behind the "role.path" mechanism is that you have some
1997 * separate heartbeat and master controller election algorithm that
1998 * determines the role of the controller. When a role transition happens,
1999 * it updates the current role in the file specified by the "role.path"
2000 * file. Then if floodlight restarts for some reason it can get the
2001 * correct current role of the controller from the file.
2002 * @param configParams The config params for the FloodlightProvider service
2003 * @return A valid role if role information is specified in the
2004 * config params, otherwise null
2005 */
2006 @LogMessageDocs({
2007 @LogMessageDoc(message="Controller role set to {role}",
2008 explanation="Setting the initial HA role to "),
2009 @LogMessageDoc(level="ERROR",
2010 message="Invalid current role value: {role}",
2011 explanation="An invalid HA role value was read from the " +
2012 "properties file",
2013 recommendation=LogMessageDoc.CHECK_CONTROLLER)
2014 })
2015 protected Role getInitialRole(Map<String, String> configParams) {
2016 Role role = null;
2017 String roleString = configParams.get("role");
2018 if (roleString == null) {
2019 String rolePath = configParams.get("rolepath");
2020 if (rolePath != null) {
2021 Properties properties = new Properties();
2022 try {
2023 properties.load(new FileInputStream(rolePath));
2024 roleString = properties.getProperty("floodlight.role");
2025 }
2026 catch (IOException exc) {
2027 // Don't treat it as an error if the file specified by the
2028 // rolepath property doesn't exist. This lets us enable the
2029 // HA mechanism by just creating/setting the floodlight.role
2030 // property in that file without having to modify the
2031 // floodlight properties.
2032 }
2033 }
2034 }
2035
2036 if (roleString != null) {
2037 // Canonicalize the string to the form used for the enum constants
2038 roleString = roleString.trim().toUpperCase();
2039 try {
2040 role = Role.valueOf(roleString);
2041 }
2042 catch (IllegalArgumentException exc) {
2043 log.error("Invalid current role value: {}", roleString);
2044 }
2045 }
2046
2047 log.info("Controller role set to {}", role);
2048
2049 return role;
2050 }
2051
2052 /**
2053 * Tell controller that we're ready to accept switches loop
2054 * @throws IOException
2055 */
2056 @LogMessageDocs({
2057 @LogMessageDoc(message="Listening for switch connections on {address}",
2058 explanation="The controller is ready and listening for new" +
2059 " switch connections"),
2060 @LogMessageDoc(message="Storage exception in controller " +
2061 "updates loop; terminating process",
2062 explanation=ERROR_DATABASE,
2063 recommendation=LogMessageDoc.CHECK_CONTROLLER),
2064 @LogMessageDoc(level="ERROR",
2065 message="Exception in controller updates loop",
2066 explanation="Failed to dispatch controller event",
2067 recommendation=LogMessageDoc.GENERIC_ACTION)
2068 })
2069 public void run() {
2070 if (log.isDebugEnabled()) {
2071 logListeners();
2072 }
2073
2074 try {
2075 final ServerBootstrap bootstrap = createServerBootStrap();
2076
2077 bootstrap.setOption("reuseAddr", true);
2078 bootstrap.setOption("child.keepAlive", true);
2079 bootstrap.setOption("child.tcpNoDelay", true);
2080 bootstrap.setOption("child.sendBufferSize", Controller.SEND_BUFFER_SIZE);
2081
2082 ChannelPipelineFactory pfact =
2083 new OpenflowPipelineFactory(this, null);
2084 bootstrap.setPipelineFactory(pfact);
2085 InetSocketAddress sa = new InetSocketAddress(openFlowPort);
2086 final ChannelGroup cg = new DefaultChannelGroup();
2087 cg.add(bootstrap.bind(sa));
2088
2089 log.info("Listening for switch connections on {}", sa);
2090 } catch (Exception e) {
2091 throw new RuntimeException(e);
2092 }
2093
2094 // main loop
2095 while (true) {
2096 try {
2097 IUpdate update = updates.take();
2098 update.dispatch();
2099 } catch (InterruptedException e) {
2100 return;
2101 } catch (StorageException e) {
2102 log.error("Storage exception in controller " +
2103 "updates loop; terminating process", e);
2104 return;
2105 } catch (Exception e) {
2106 log.error("Exception in controller updates loop", e);
2107 }
2108 }
2109 }
2110
2111 private ServerBootstrap createServerBootStrap() {
2112 if (workerThreads == 0) {
2113 return new ServerBootstrap(
2114 new NioServerSocketChannelFactory(
2115 Executors.newCachedThreadPool(),
2116 Executors.newCachedThreadPool()));
2117 } else {
2118 return new ServerBootstrap(
2119 new NioServerSocketChannelFactory(
2120 Executors.newCachedThreadPool(),
2121 Executors.newCachedThreadPool(), workerThreads));
2122 }
2123 }
2124
2125 public void setConfigParams(Map<String, String> configParams) {
2126 String ofPort = configParams.get("openflowport");
2127 if (ofPort != null) {
2128 this.openFlowPort = Integer.parseInt(ofPort);
2129 }
2130 log.debug("OpenFlow port set to {}", this.openFlowPort);
2131 String threads = configParams.get("workerthreads");
2132 if (threads != null) {
2133 this.workerThreads = Integer.parseInt(threads);
2134 }
2135 log.debug("Number of worker threads set to {}", this.workerThreads);
2136 String controllerId = configParams.get("controllerid");
2137 if (controllerId != null) {
2138 this.controllerId = controllerId;
2139 }
Jonathan Hartd10008d2013-02-23 17:04:08 -08002140 else {
2141 //Try to get the hostname of the machine and use that for controller ID
2142 try {
2143 String hostname = java.net.InetAddress.getLocalHost().getHostName();
2144 this.controllerId = hostname;
2145 } catch (UnknownHostException e) {
2146 // Can't get hostname, we'll just use the default
2147 }
2148 }
2149
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08002150 log.debug("ControllerId set to {}", this.controllerId);
2151 }
2152
2153 private void initVendorMessages() {
2154 // Configure openflowj to be able to parse the role request/reply
2155 // vendor messages.
2156 OFBasicVendorId niciraVendorId = new OFBasicVendorId(
2157 OFNiciraVendorData.NX_VENDOR_ID, 4);
2158 OFVendorId.registerVendorId(niciraVendorId);
2159 OFBasicVendorDataType roleRequestVendorData =
2160 new OFBasicVendorDataType(
2161 OFRoleRequestVendorData.NXT_ROLE_REQUEST,
2162 OFRoleRequestVendorData.getInstantiable());
2163 niciraVendorId.registerVendorDataType(roleRequestVendorData);
2164 OFBasicVendorDataType roleReplyVendorData =
2165 new OFBasicVendorDataType(
2166 OFRoleReplyVendorData.NXT_ROLE_REPLY,
2167 OFRoleReplyVendorData.getInstantiable());
2168 niciraVendorId.registerVendorDataType(roleReplyVendorData);
2169 }
2170
2171 /**
2172 * Initialize internal data structures
2173 */
2174 public void init(Map<String, String> configParams) {
2175 // These data structures are initialized here because other
2176 // module's startUp() might be called before ours
2177 this.messageListeners =
2178 new ConcurrentHashMap<OFType,
2179 ListenerDispatcher<OFType,
2180 IOFMessageListener>>();
2181 this.switchListeners = new CopyOnWriteArraySet<IOFSwitchListener>();
2182 this.haListeners = new CopyOnWriteArraySet<IHAListener>();
2183 this.activeSwitches = new ConcurrentHashMap<Long, IOFSwitch>();
2184 this.connectedSwitches = new HashSet<OFSwitchImpl>();
2185 this.controllerNodeIPsCache = new HashMap<String, String>();
2186 this.updates = new LinkedBlockingQueue<IUpdate>();
2187 this.factory = new BasicFactory();
2188 this.providerMap = new HashMap<String, List<IInfoProvider>>();
2189 setConfigParams(configParams);
Jonathan Hartcc957a02013-02-26 10:39:04 -08002190 //this.role = getInitialRole(configParams);
2191 //Set the controller's role to MASTER so it always tries to do role requests.
2192 this.role = Role.MASTER;
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08002193 this.roleChanger = new RoleChanger();
2194 initVendorMessages();
2195 this.systemStartTime = System.currentTimeMillis();
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08002196 }
2197
2198 /**
2199 * Startup all of the controller's components
2200 */
2201 @LogMessageDoc(message="Waiting for storage source",
2202 explanation="The system database is not yet ready",
2203 recommendation="If this message persists, this indicates " +
2204 "that the system database has failed to start. " +
2205 LogMessageDoc.CHECK_CONTROLLER)
2206 public void startupComponents() {
Jonathan Hartd10008d2013-02-23 17:04:08 -08002207 try {
2208 registryService.registerController(controllerId);
2209 } catch (RegistryException e2) {
2210 log.warn("Registry service error: {}", e2.getMessage());
2211 }
2212
Umesh Krishnaswamy345ee992012-12-13 20:29:48 -08002213 // Create the table names we use
2214 storageSource.createTable(CONTROLLER_TABLE_NAME, null);
2215 storageSource.createTable(SWITCH_TABLE_NAME, null);
2216 storageSource.createTable(PORT_TABLE_NAME, null);
2217 storageSource.createTable(CONTROLLER_INTERFACE_TABLE_NAME, null);
2218 storageSource.createTable(SWITCH_CONFIG_TABLE_NAME, null);
2219 storageSource.setTablePrimaryKeyName(CONTROLLER_TABLE_NAME,
2220 CONTROLLER_ID);
2221 storageSource.setTablePrimaryKeyName(SWITCH_TABLE_NAME,
2222 SWITCH_DATAPATH_ID);
2223 storageSource.setTablePrimaryKeyName(PORT_TABLE_NAME, PORT_ID);
2224 storageSource.setTablePrimaryKeyName(CONTROLLER_INTERFACE_TABLE_NAME,
2225 CONTROLLER_INTERFACE_ID);
2226 storageSource.addListener(CONTROLLER_INTERFACE_TABLE_NAME, this);
2227
2228 while (true) {
2229 try {
2230 updateControllerInfo();
2231 break;
2232 }
2233 catch (StorageException e) {
2234 log.info("Waiting for storage source");
2235 try {
2236 Thread.sleep(1000);
2237 } catch (InterruptedException e1) {
2238 }
2239 }
2240 }
2241
2242 // Add our REST API
2243 restApi.addRestletRoutable(new CoreWebRoutable());
2244 }
2245
2246 @Override
2247 public void addInfoProvider(String type, IInfoProvider provider) {
2248 if (!providerMap.containsKey(type)) {
2249 providerMap.put(type, new ArrayList<IInfoProvider>());
2250 }
2251 providerMap.get(type).add(provider);
2252 }
2253
2254 @Override
2255 public void removeInfoProvider(String type, IInfoProvider provider) {
2256 if (!providerMap.containsKey(type)) {
2257 log.debug("Provider type {} doesn't exist.", type);
2258 return;
2259 }
2260
2261 providerMap.get(type).remove(provider);
2262 }
2263
2264 public Map<String, Object> getControllerInfo(String type) {
2265 if (!providerMap.containsKey(type)) return null;
2266
2267 Map<String, Object> result = new LinkedHashMap<String, Object>();
2268 for (IInfoProvider provider : providerMap.get(type)) {
2269 result.putAll(provider.getInfo(type));
2270 }
2271
2272 return result;
2273 }
2274
2275 @Override
2276 public void addHAListener(IHAListener listener) {
2277 this.haListeners.add(listener);
2278 }
2279
2280 @Override
2281 public void removeHAListener(IHAListener listener) {
2282 this.haListeners.remove(listener);
2283 }
2284
2285
2286 /**
2287 * Handle changes to the controller nodes IPs and dispatch update.
2288 */
2289 @SuppressWarnings("unchecked")
2290 protected void handleControllerNodeIPChanges() {
2291 HashMap<String,String> curControllerNodeIPs = new HashMap<String,String>();
2292 HashMap<String,String> addedControllerNodeIPs = new HashMap<String,String>();
2293 HashMap<String,String> removedControllerNodeIPs =new HashMap<String,String>();
2294 String[] colNames = { CONTROLLER_INTERFACE_CONTROLLER_ID,
2295 CONTROLLER_INTERFACE_TYPE,
2296 CONTROLLER_INTERFACE_NUMBER,
2297 CONTROLLER_INTERFACE_DISCOVERED_IP };
2298 synchronized(controllerNodeIPsCache) {
2299 // We currently assume that interface Ethernet0 is the relevant
2300 // controller interface. Might change.
2301 // We could (should?) implement this using
2302 // predicates, but creating the individual and compound predicate
2303 // seems more overhead then just checking every row. Particularly,
2304 // since the number of rows is small and changes infrequent
2305 IResultSet res = storageSource.executeQuery(CONTROLLER_INTERFACE_TABLE_NAME,
2306 colNames,null, null);
2307 while (res.next()) {
2308 if (res.getString(CONTROLLER_INTERFACE_TYPE).equals("Ethernet") &&
2309 res.getInt(CONTROLLER_INTERFACE_NUMBER) == 0) {
2310 String controllerID = res.getString(CONTROLLER_INTERFACE_CONTROLLER_ID);
2311 String discoveredIP = res.getString(CONTROLLER_INTERFACE_DISCOVERED_IP);
2312 String curIP = controllerNodeIPsCache.get(controllerID);
2313
2314 curControllerNodeIPs.put(controllerID, discoveredIP);
2315 if (curIP == null) {
2316 // new controller node IP
2317 addedControllerNodeIPs.put(controllerID, discoveredIP);
2318 }
2319 else if (curIP != discoveredIP) {
2320 // IP changed
2321 removedControllerNodeIPs.put(controllerID, curIP);
2322 addedControllerNodeIPs.put(controllerID, discoveredIP);
2323 }
2324 }
2325 }
2326 // Now figure out if rows have been deleted. We can't use the
2327 // rowKeys from rowsDeleted directly, since the tables primary
2328 // key is a compound that we can't disassemble
2329 Set<String> curEntries = curControllerNodeIPs.keySet();
2330 Set<String> removedEntries = controllerNodeIPsCache.keySet();
2331 removedEntries.removeAll(curEntries);
2332 for (String removedControllerID : removedEntries)
2333 removedControllerNodeIPs.put(removedControllerID, controllerNodeIPsCache.get(removedControllerID));
2334 controllerNodeIPsCache = (HashMap<String, String>) curControllerNodeIPs.clone();
2335 HAControllerNodeIPUpdate update = new HAControllerNodeIPUpdate(
2336 curControllerNodeIPs, addedControllerNodeIPs,
2337 removedControllerNodeIPs);
2338 if (!removedControllerNodeIPs.isEmpty() || !addedControllerNodeIPs.isEmpty()) {
2339 try {
2340 this.updates.put(update);
2341 } catch (InterruptedException e) {
2342 log.error("Failure adding update to queue", e);
2343 }
2344 }
2345 }
2346 }
2347
2348 @Override
2349 public Map<String, String> getControllerNodeIPs() {
2350 // We return a copy of the mapping so we can guarantee that
2351 // the mapping return is the same as one that will be (or was)
2352 // dispatched to IHAListeners
2353 HashMap<String,String> retval = new HashMap<String,String>();
2354 synchronized(controllerNodeIPsCache) {
2355 retval.putAll(controllerNodeIPsCache);
2356 }
2357 return retval;
2358 }
2359
2360 @Override
2361 public void rowsModified(String tableName, Set<Object> rowKeys) {
2362 if (tableName.equals(CONTROLLER_INTERFACE_TABLE_NAME)) {
2363 handleControllerNodeIPChanges();
2364 }
2365
2366 }
2367
2368 @Override
2369 public void rowsDeleted(String tableName, Set<Object> rowKeys) {
2370 if (tableName.equals(CONTROLLER_INTERFACE_TABLE_NAME)) {
2371 handleControllerNodeIPChanges();
2372 }
2373 }
2374
2375 @Override
2376 public long getSystemStartTime() {
2377 return (this.systemStartTime);
2378 }
2379
2380 @Override
2381 public void setAlwaysClearFlowsOnSwAdd(boolean value) {
2382 this.alwaysClearFlowsOnSwAdd = value;
2383 }
2384
2385 public boolean getAlwaysClearFlowsOnSwAdd() {
2386 return this.alwaysClearFlowsOnSwAdd;
2387 }
2388}