/** Tests https://jira.jboss.org/jira/browse/JGRP-1079 */ public void testOOBMessageLoss() throws Exception { Util.close(b); // we only need 1 channel MyReceiver receiver = new MySleepingReceiver("C1", 1000); a.setReceiver(receiver); TP transport = a.getProtocolStack().getTransport(); transport.setOOBRejectionPolicy("discard"); final int NUM = 10; for (int i = 1; i <= NUM; i++) { Message msg = new Message(null, null, i); msg.setFlag(Message.OOB); a.send(msg); } STABLE stable = (STABLE) a.getProtocolStack().findProtocol(STABLE.class); if (stable != null) stable.runMessageGarbageCollection(); Collection<Integer> msgs = receiver.getMsgs(); for (int i = 0; i < 20; i++) { if (msgs.size() == NUM) break; Util.sleep(1000); sendStableMessages(a, b); } System.out.println("msgs = " + Util.print(msgs)); assert msgs.size() == NUM : "expected " + NUM + " messages but got " + msgs.size() + ", msgs=" + Util.print(msgs); for (int i = 1; i <= NUM; i++) { assert msgs.contains(i); } }
/** * Tests sending 1, 2 (OOB) and 3, where they are received in the order 1, 3, 2. Message 3 should * not get delivered until message 4 is received (http://jira.jboss.com/jira/browse/JGRP-780) */ public void testRegularAndOOBUnicasts() throws Exception { DISCARD discard = new DISCARD(); ProtocolStack stack = a.getProtocolStack(); stack.insertProtocol(discard, ProtocolStack.BELOW, UNICAST.class, UNICAST2.class); Address dest = b.getAddress(); Message m1 = new Message(dest, null, 1); Message m2 = new Message(dest, null, 2); m2.setFlag(Message.OOB); Message m3 = new Message(dest, null, 3); MyReceiver receiver = new MyReceiver("C2"); b.setReceiver(receiver); a.send(m1); discard.setDropDownUnicasts(1); a.send(m2); a.send(m3); Collection<Integer> list = receiver.getMsgs(); int count = 10; while (list.size() < 3 && --count > 0) { Util.sleep(500); // time for potential retransmission sendStableMessages(a, b); } assert list.size() == 3 : "list is " + list; assert list.contains(1) && list.contains(2) && list.contains(3); }
/** Tests https://jira.jboss.org/jira/browse/JGRP-1079 for unicast messages */ public void testOOBUnicastMessageLoss() throws Exception { MyReceiver receiver = new MySleepingReceiver("C2", 1000); b.setReceiver(receiver); a.getProtocolStack().getTransport().setOOBRejectionPolicy("discard"); final int NUM = 10; final Address dest = b.getAddress(); for (int i = 1; i <= NUM; i++) { Message msg = new Message(dest, null, i); msg.setFlag(Message.OOB); a.send(msg); } Collection<Integer> msgs = receiver.getMsgs(); for (int i = 0; i < 20; i++) { if (msgs.size() == NUM) break; Util.sleep(1000); // sendStableMessages(c1,c2); // not needed for unicasts ! } assert msgs.size() == NUM : "expected " + NUM + " messages but got " + msgs.size() + ", msgs=" + Util.print(msgs); for (int i = 1; i <= NUM; i++) { assert msgs.contains(i); } }
public void testRegularAndOOBMulticasts() throws Exception { DISCARD discard = new DISCARD(); ProtocolStack stack = a.getProtocolStack(); stack.insertProtocol(discard, ProtocolStack.BELOW, NAKACK2.class); a.setDiscardOwnMessages(true); Address dest = null; // send to all Message m1 = new Message(dest, null, 1); Message m2 = new Message(dest, null, 2); m2.setFlag(Message.OOB); Message m3 = new Message(dest, null, 3); MyReceiver receiver = new MyReceiver("C2"); b.setReceiver(receiver); a.send(m1); discard.setDropDownMulticasts(1); a.send(m2); a.send(m3); Util.sleep(500); Collection<Integer> list = receiver.getMsgs(); for (int i = 0; i < 10; i++) { System.out.println("list = " + list); if (list.size() == 3) break; Util.sleep(1000); // give the asynchronous msgs some time to be received sendStableMessages(a, b); } assert list.size() == 3 : "list is " + list; assert list.contains(1) && list.contains(2) && list.contains(3); }
public void testRegularAndOOBUnicasts2() throws Exception { DISCARD discard = new DISCARD(); ProtocolStack stack = a.getProtocolStack(); stack.insertProtocol( discard, ProtocolStack.BELOW, (Class<? extends Protocol>[]) Util.getUnicastProtocols()); Address dest = b.getAddress(); Message m1 = new Message(dest, 1); Message m2 = new Message(dest, 2).setFlag(Message.Flag.OOB); Message m3 = new Message(dest, 3).setFlag(Message.Flag.OOB); Message m4 = new Message(dest, 4); MyReceiver receiver = new MyReceiver("B"); b.setReceiver(receiver); a.send(m1); discard.setDropDownUnicasts(2); a.send(m2); // dropped a.send(m3); // dropped a.send(m4); Collection<Integer> list = receiver.getMsgs(); int count = 10; while (list.size() < 4 && --count > 0) { Util.sleep(500); // time for potential retransmission sendStableMessages(a, b); } System.out.println("list = " + list); assert list.size() == 4 : "list is " + list; assert list.contains(1) && list.contains(2) && list.contains(3) && list.contains(4); }
public void testMergeWithAsymetricViewsCoordIsolated() { // Isolate the coord Address coord = a.getView().getCreator(); System.out.println("Isolating coord: " + coord); List<Address> members = new ArrayList<>(); members.add(coord); View coord_view = new View(coord, 4, members); System.out.println("coord_view: " + coord_view); Channel coord_channel = findChannel(coord); System.out.println("coord_channel: " + coord_channel.getAddress()); MutableDigest digest = new MutableDigest(coord_view.getMembersRaw()); NAKACK2 nakack = (NAKACK2) coord_channel.getProtocolStack().findProtocol(NAKACK2.class); digest.merge(nakack.getDigest(coord)); GMS gms = (GMS) coord_channel.getProtocolStack().findProtocol(GMS.class); gms.installView(coord_view, digest); System.out.println("gms.getView() " + gms.getView()); System.out.println("Views are:"); for (JChannel ch : Arrays.asList(a, b, c, d)) System.out.println(ch.getAddress() + ": " + ch.getView()); JChannel merge_leader = findChannel(coord); MyReceiver receiver = new MyReceiver(); merge_leader.setReceiver(receiver); System.out.println("merge_leader: " + merge_leader.getAddressAsString()); System.out.println("Injecting MERGE event into merge leader " + merge_leader.getAddress()); Map<Address, View> merge_views = new HashMap<>(4); merge_views.put(a.getAddress(), a.getView()); merge_views.put(b.getAddress(), b.getView()); merge_views.put(c.getAddress(), c.getView()); merge_views.put(d.getAddress(), d.getView()); gms = (GMS) merge_leader.getProtocolStack().findProtocol(GMS.class); gms.up(new Event(Event.MERGE, merge_views)); Util.waitUntilAllChannelsHaveSameSize(10000, 1000, a, b, c, d); System.out.println("Views are:"); for (JChannel ch : Arrays.asList(a, b, c, d)) { View view = ch.getView(); System.out.println(ch.getAddress() + ": " + view); assert view.size() == 4; } MergeView merge_view = receiver.getView(); System.out.println("merge_view = " + merge_view); assert merge_view.size() == 4; assert merge_view.getSubgroups().size() == 2; for (View view : merge_view.getSubgroups()) assert contains(view, a.getAddress()) || contains(view, b.getAddress(), c.getAddress(), d.getAddress()); }
@Test(invocationCount = 5) @SuppressWarnings("unchecked") public void testRandomRegularAndOOBMulticasts() throws Exception { DISCARD discard = new DISCARD(); discard.setLocalAddress(a.getAddress()); discard.setDownDiscardRate(0.5); ProtocolStack stack = a.getProtocolStack(); stack.insertProtocol(discard, ProtocolStack.BELOW, NAKACK2.class); MyReceiver r1 = new MyReceiver("C1"), r2 = new MyReceiver("C2"); a.setReceiver(r1); b.setReceiver(r2); final int NUM_MSGS = 20; final int NUM_THREADS = 10; send(null, NUM_MSGS, NUM_THREADS, 0.5); // send on random channel (c1 or c2) Collection<Integer> one = r1.getMsgs(), two = r2.getMsgs(); for (int i = 0; i < 10; i++) { if (one.size() == NUM_MSGS && two.size() == NUM_MSGS) break; System.out.println("one size " + one.size() + ", two size " + two.size()); Util.sleep(1000); sendStableMessages(a, b); } System.out.println("one size " + one.size() + ", two size " + two.size()); stack.removeProtocol("DISCARD"); for (int i = 0; i < 5; i++) { if (one.size() == NUM_MSGS && two.size() == NUM_MSGS) break; sendStableMessages(a, b); Util.sleep(500); } System.out.println( "C1 received " + one.size() + " messages (" + NUM_MSGS + " expected)" + "\nC2 received " + two.size() + " messages (" + NUM_MSGS + " expected)"); check(NUM_MSGS, one, two); }
public void testRegularAndOOBUnicasts2() throws Exception { DISCARD discard = new DISCARD(); ProtocolStack stack = c1.getProtocolStack(); stack.insertProtocol(discard, ProtocolStack.BELOW, UNICAST.class, UNICAST2.class); Address dest = c2.getAddress(); Message m1 = new Message(dest, null, 1); Message m2 = new Message(dest, null, 2); m2.setFlag(Message.OOB); Message m3 = new Message(dest, null, 3); m3.setFlag(Message.OOB); Message m4 = new Message(dest, null, 4); MyReceiver receiver = new MyReceiver("C2"); c2.setReceiver(receiver); c1.send(m1); discard.setDropDownUnicasts(1); c1.send(m3); discard.setDropDownUnicasts(1); c1.send(m2); c1.send(m4); Util.sleep(1000); // sleep some time to receive all messages Collection<Integer> list = receiver.getMsgs(); int count = 10; while (list.size() < 4 && --count > 0) { Util.sleep(500); // time for potential retransmission sendStableMessages(c1, c2); } log.info("list = " + list); assert list.size() == 4 : "list is " + list; assert list.contains(1) && list.contains(2) && list.contains(3) && list.contains(4); }
public void receive(Message msg) { super.receive(msg); System.out.println("-- received " + msg.getObject()); Util.sleep(sleep_time); }