blob: 9e8178a0445a651490f7b3b533a7c7dcab9848b5 [file] [log] [blame]
package org.onlab.onos.net.trivial.flow.impl;
import static org.junit.Assert.assertEquals;
import static org.junit.Assert.assertFalse;
import static org.junit.Assert.assertNotNull;
import static org.junit.Assert.assertTrue;
import java.util.ArrayList;
import java.util.List;
import org.junit.After;
import org.junit.Before;
import org.junit.Test;
import org.onlab.onos.event.impl.TestEventDispatcher;
import org.onlab.onos.net.DefaultDevice;
import org.onlab.onos.net.Device;
import org.onlab.onos.net.Device.Type;
import org.onlab.onos.net.DeviceId;
import org.onlab.onos.net.MastershipRole;
import org.onlab.onos.net.Port;
import org.onlab.onos.net.PortNumber;
import org.onlab.onos.net.device.DeviceListener;
import org.onlab.onos.net.device.DeviceService;
import org.onlab.onos.net.flow.DefaultFlowEntry;
import org.onlab.onos.net.flow.DefaultFlowRule;
import org.onlab.onos.net.flow.FlowEntry;
import org.onlab.onos.net.flow.FlowRule;
import org.onlab.onos.net.flow.FlowRuleEvent;
import org.onlab.onos.net.flow.FlowRuleListener;
import org.onlab.onos.net.flow.FlowRuleProvider;
import org.onlab.onos.net.flow.FlowRuleProviderRegistry;
import org.onlab.onos.net.flow.FlowRuleProviderService;
import org.onlab.onos.net.flow.FlowRuleService;
import org.onlab.onos.net.flow.TrafficSelector;
import org.onlab.onos.net.flow.TrafficTreatment;
import org.onlab.onos.net.flow.criteria.Criterion;
import org.onlab.onos.net.flow.instructions.Instruction;
import org.onlab.onos.net.provider.AbstractProvider;
import org.onlab.onos.net.provider.ProviderId;
import com.google.common.collect.Lists;
import com.google.common.collect.Sets;
import static org.onlab.onos.net.flow.FlowRuleEvent.Type.*;
/**
* Test codifying the flow rule service & flow rule provider service contracts.
*/
public class SimpleFlowRuleManagerTest {
private static final ProviderId PID = new ProviderId("of", "foo");
private static final DeviceId DID = DeviceId.deviceId("of:001");
private static final Device DEV = new DefaultDevice(
PID, DID, Type.SWITCH, "", "", "", "");
private SimpleFlowRuleManager mgr;
protected FlowRuleService service;
protected FlowRuleProviderRegistry registry;
protected FlowRuleProviderService providerSerivce;
protected TestProvider provider;
protected TestListener listener = new TestListener();
@Before
public void setUp() {
mgr = new SimpleFlowRuleManager();
mgr.eventDispatcher = new TestEventDispatcher();
mgr.deviceService = new TestDeviceService();
service = mgr;
registry = mgr;
mgr.activate();
mgr.addListener(listener);
provider = new TestProvider(PID);
providerSerivce = registry.register(provider);
assertTrue("provider should be registered",
registry.getProviders().contains(provider.id()));
}
@After
public void tearDown() {
registry.unregister(provider);
assertFalse("provider should not be registered",
registry.getProviders().contains(provider.id()));
service.removeListener(listener);
mgr.deactivate();
mgr.eventDispatcher = null;
mgr.deviceService = null;
}
private FlowRule flowRule(int tsval, int trval) {
TestSelector ts = new TestSelector(tsval);
TestTreatment tr = new TestTreatment(trval);
return new DefaultFlowRule(DID, ts, tr);
}
private void addFlowRule(int hval) {
FlowRule rule = flowRule(hval, hval);
providerSerivce.flowAdded(rule);
assertNotNull("rule should be found", service.getFlowEntries(DID));
}
private void validateEvents(FlowRuleEvent.Type ... events) {
if (events == null) {
assertTrue("events generated", listener.events.isEmpty());
}
int i = 0;
for (FlowRuleEvent e : listener.events) {
assertTrue("unexpected event", e.type().equals(events[i]));
i++;
}
assertEquals("mispredicted number of events",
events.length, listener.events.size());
listener.events.clear();
}
private int flowCount() {
return Sets.newHashSet(service.getFlowEntries(DID)).size();
}
@Test
public void getFlowEntries() {
assertTrue("store should be empty",
Sets.newHashSet(service.getFlowEntries(DID)).isEmpty());
addFlowRule(1);
addFlowRule(2);
assertEquals("2 rules should exist", 2, flowCount());
validateEvents(RULE_ADDED, RULE_ADDED);
addFlowRule(1);
assertEquals("should still be 2 rules", 2, flowCount());
validateEvents();
}
@Test
public void applyFlowRules() {
TestSelector ts = new TestSelector(1);
FlowRule r1 = flowRule(1, 1);
FlowRule r2 = flowRule(1, 2);
FlowRule r3 = flowRule(1, 3);
//current FlowRules always return 0. FlowEntries inherit the value
FlowEntry e1 = new DefaultFlowEntry(DID, ts, r1.treatment(), 0);
FlowEntry e2 = new DefaultFlowEntry(DID, ts, r2.treatment(), 0);
FlowEntry e3 = new DefaultFlowEntry(DID, ts, r3.treatment(), 0);
List<FlowEntry> fel = Lists.newArrayList(e1, e2, e3);
assertTrue("store should be empty",
Sets.newHashSet(service.getFlowEntries(DID)).isEmpty());
List<FlowEntry> ret = mgr.applyFlowRules(r1, r2, r3);
assertEquals("3 rules should exist", 3, flowCount());
assertTrue("3 entries should result", fel.containsAll(ret));
}
@Test
public void removeFlowRules() {
addFlowRule(1);
addFlowRule(2);
addFlowRule(3);
assertEquals("3 rules should exist", 3, flowCount());
validateEvents(RULE_ADDED, RULE_ADDED, RULE_ADDED);
FlowRule rem1 = flowRule(1, 1);
FlowRule rem2 = flowRule(2, 2);
mgr.removeFlowRules(rem1, rem2);
//removing from north, so no events generated
validateEvents();
assertEquals("1 rule should exist", 1, flowCount());
mgr.removeFlowRules(rem1);
assertEquals("1 rule should still exist", 1, flowCount());
}
@Test
public void flowRemoved() {
addFlowRule(1);
addFlowRule(2);
FlowRule rem1 = flowRule(1, 1);
providerSerivce.flowRemoved(rem1);
validateEvents(RULE_ADDED, RULE_ADDED, RULE_REMOVED);
providerSerivce.flowRemoved(rem1);
validateEvents();
}
private static class TestListener implements FlowRuleListener {
final List<FlowRuleEvent> events = new ArrayList<>();
@Override
public void event(FlowRuleEvent event) {
events.add(event);
}
}
private static class TestDeviceService implements DeviceService {
@Override
public int getDeviceCount() {
return 0;
}
@Override
public Iterable<Device> getDevices() {
return null;
}
@Override
public Device getDevice(DeviceId deviceId) {
return DEV;
}
@Override
public MastershipRole getRole(DeviceId deviceId) {
return null;
}
@Override
public List<Port> getPorts(DeviceId deviceId) {
return null;
}
@Override
public Port getPort(DeviceId deviceId, PortNumber portNumber) {
return null;
}
@Override
public boolean isAvailable(DeviceId deviceId) {
return false;
}
@Override
public void addListener(DeviceListener listener) {
}
@Override
public void removeListener(DeviceListener listener) {
}
}
private class TestProvider extends AbstractProvider implements FlowRuleProvider {
protected TestProvider(ProviderId id) {
super(PID);
}
@Override
public void applyFlowRule(FlowRule... flowRules) {
}
@Override
public void removeFlowRule(FlowRule... flowRules) {
}
@Override
public Iterable<FlowEntry> getFlowMetrics(DeviceId deviceId) {
return null;
}
}
private class TestSelector implements TrafficSelector {
//for controlling hashcode uniqueness;
private int testval;
public TestSelector(int val) {
testval = val;
}
@Override
public List<Criterion> criteria() {
return null;
}
@Override
public int hashCode() {
return testval;
}
@Override
public boolean equals(Object o) {
if (o instanceof TestSelector) {
return this.testval == ((TestSelector) o).testval;
}
return false;
}
}
private class TestTreatment implements TrafficTreatment {
//for controlling hashcode uniqueness;
private int testval;
public TestTreatment(int val) {
testval = val;
}
@Override
public List<Instruction> instructions() {
return null;
}
@Override
public int hashCode() {
return testval;
}
@Override
public boolean equals(Object o) {
if (o instanceof TestTreatment) {
return this.testval == ((TestTreatment) o).testval;
}
return false;
}
}
}