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/** |
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* Java RTP Library (jlibrtp) |
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* Copyright (C) 2006 Arne Kepp |
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* |
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* This library is free software; you can redistribute it and/or |
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* modify it under the terms of the GNU Lesser General Public |
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* License as published by the Free Software Foundation; either |
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* version 2.1 of the License, or (at your option) any later version. |
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* |
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* This library is distributed in the hope that it will be useful, |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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* Lesser General Public License for more details. |
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* |
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* You should have received a copy of the GNU Lesser General Public |
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* License along with this library; if not, write to the Free Software |
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA |
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*/ |
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package jlibrtp; |
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import java.io.IOException; |
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import java.net.DatagramPacket; |
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import java.net.InetSocketAddress; |
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import java.util.Enumeration; |
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import java.util.Iterator; |
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|
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/** |
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* This thread hangs on the RTCP socket and waits for new packets |
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* |
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* @author Arne Kepp |
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* |
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*/ |
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public class RTCPReceiverThread extends Thread { |
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/** Parent RTP Session */ |
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private RTPSession rtpSession = null; |
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/** Parent RTCP Session */ |
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private RTCPSession rtcpSession = null; |
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/** |
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* Constructor for new thread |
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* @param rtcpSession parent RTCP session |
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* @param rtpSession parent RTP session |
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*/ |
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RTCPReceiverThread(RTCPSession rtcpSession, RTPSession rtpSession) { |
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this.rtpSession = rtpSession; |
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this.rtcpSession = rtcpSession; |
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if(RTPSession.rtpDebugLevel > 1) { |
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System.out.println("<-> RTCPReceiverThread created"); |
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} |
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} |
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/** |
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* Find out whether a participant with this SSRC is known. |
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* |
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* If the user is unknown, and the system is operating in unicast mode, |
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* try to match the ip-address of the sender to the ip address of a |
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* previously unmatched target |
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* |
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* @param ssrc the SSRC of the participant |
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* @param packet the packet that notified us |
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* @return the relevant participant, possibly newly created |
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*/ |
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private Participant findParticipant(long ssrc, DatagramPacket packet) { |
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Participant p = rtpSession.partDb.getParticipant(ssrc); |
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if(p == null) { |
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Enumeration<Participant> enu = rtpSession.partDb.getParticipants(); |
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while(enu.hasMoreElements()) { |
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Participant tmp = (Participant) enu.nextElement(); |
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if(tmp.ssrc < 0 && |
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(tmp.rtcpAddress.getAddress().equals(packet.getAddress()) |
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|| tmp.rtpAddress.getAddress().equals(packet.getAddress()))) { |
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// Best guess |
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System.out.println("RTCPReceiverThread: Got an unexpected packet from SSRC:" |
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+ ssrc + " @" + packet.getAddress().toString() + ", WAS able to match it." ); |
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tmp.ssrc = ssrc; |
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return tmp; |
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} |
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} |
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// Create an unknown sender |
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System.out.println("RTCPReceiverThread: Got an unexpected packet from SSRC:" |
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+ ssrc + " @" + packet.getAddress().toString() + ", was NOT able to match it." ); |
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p = new Participant((InetSocketAddress) null, (InetSocketAddress) packet.getSocketAddress(), ssrc); |
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rtpSession.partDb.addParticipant(2,p); |
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} |
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return p; |
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} |
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/** |
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* Parse a received UDP packet |
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* |
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* Perform the header checks and extract the RTCP packets in it |
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* |
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* @param packet the packet to be parsed |
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* @return -1 if there was a problem, 0 if successfully parsed |
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*/ |
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private int parsePacket(DatagramPacket packet) { |
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if(packet.getLength() % 4 != 0) { |
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if(RTPSession.rtcpDebugLevel > 2) { |
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System.out.println("RTCPReceiverThread.parsePacket got packet that had length " + packet.getLength()); |
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} |
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return -1; |
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} else { |
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byte[] rawPkt = packet.getData(); |
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// Parse the received compound RTCP (?) packet |
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CompRtcpPkt compPkt = new CompRtcpPkt(rawPkt, packet.getLength(), |
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(InetSocketAddress) packet.getSocketAddress(), rtpSession); |
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if(this.rtpSession.debugAppIntf != null) { |
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String intfStr; |
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if(rtpSession.mcSession) { |
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intfStr = this.rtcpSession.rtcpMCSock.getLocalSocketAddress().toString(); |
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} else { |
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intfStr = this.rtpSession.rtpSock.getLocalSocketAddress().toString(); |
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} |
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if( compPkt.problem == 0) { |
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String str = new String("Received compound RTCP packet of size " + packet.getLength() + |
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" from " + packet.getSocketAddress().toString() + " via " + intfStr |
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+ " containing " + compPkt.rtcpPkts.size() + " packets" ); |
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this.rtpSession.debugAppIntf.packetReceived(1, |
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(InetSocketAddress) packet.getSocketAddress(), str); |
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} else { |
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String str = new String("Received invalid RTCP packet of size " + packet.getLength() + |
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" from " + packet.getSocketAddress().toString() + " via " + intfStr |
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+ ": " + this.debugErrorString(compPkt.problem) ); |
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this.rtpSession.debugAppIntf.packetReceived(-2, |
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(InetSocketAddress) packet.getSocketAddress(), str); |
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} |
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} |
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if(RTPSession.rtcpDebugLevel > 5) { |
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Iterator<RtcpPkt> iter = compPkt.rtcpPkts.iterator(); |
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String str = " "; |
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while(iter.hasNext()) { |
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RtcpPkt aPkt = iter.next(); |
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str += (aPkt.getClass().toString() + ":"+aPkt.itemCount+ ", "); |
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} |
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System.out.println("<-> RTCPReceiverThread.parsePacket() from " + packet.getSocketAddress().toString() + str); |
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} |
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//Loop over the information |
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Iterator iter = compPkt.rtcpPkts.iterator(); |
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long curTime = System.currentTimeMillis(); |
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while(iter.hasNext()) { |
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RtcpPkt aPkt = (RtcpPkt) iter.next(); |
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// Our own packets should already have been filtered out. |
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if(aPkt.ssrc == rtpSession.ssrc) { |
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System.out.println("RTCPReceiverThread() received RTCP packet" |
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+ " with conflicting SSRC from " + packet.getSocketAddress().toString()); |
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rtpSession.resolveSsrcConflict(); |
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return -1; |
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} |
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/** Receiver Reports **/ |
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if( aPkt.getClass() == RtcpPktRR.class) { |
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RtcpPktRR rrPkt = (RtcpPktRR) aPkt; |
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Participant p = findParticipant(rrPkt.ssrc, packet); |
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p.lastRtcpPkt = curTime; |
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if(rtpSession.rtcpAppIntf != null) { |
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rtpSession.rtcpAppIntf.RRPktReceived(rrPkt.ssrc, rrPkt.reporteeSsrc, |
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rrPkt.lossFraction, rrPkt.lostPktCount, rrPkt.extHighSeqRecv, |
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rrPkt.interArvJitter, rrPkt.timeStampLSR, rrPkt.delaySR); |
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} |
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/** Sender Reports **/ |
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} else if(aPkt.getClass() == RtcpPktSR.class) { |
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RtcpPktSR srPkt = (RtcpPktSR) aPkt; |
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Participant p = findParticipant(srPkt.ssrc, packet); |
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p.lastRtcpPkt = curTime; |
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if(p != null) { |
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if(p.ntpGradient < 0 && p.lastNtpTs1 > -1) { |
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//Calculate gradient NTP vs RTP |
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long newTime = StaticProcs.undoNtpMess(srPkt.ntpTs1, srPkt.ntpTs2); |
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p.ntpGradient = ((double) (newTime - p.ntpOffset))/((double) srPkt.rtpTs - p.lastSRRtpTs); |
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if(RTPSession.rtcpDebugLevel > 4) { |
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System.out.println("RTCPReceiverThread calculated NTP vs RTP gradient: " + Double.toString(p.ntpGradient)); |
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} |
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} else { |
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// Calculate sum of ntpTs1 and ntpTs2 in milliseconds |
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p.ntpOffset = StaticProcs.undoNtpMess(srPkt.ntpTs1, srPkt.ntpTs2); |
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p.lastNtpTs1 = srPkt.ntpTs1; |
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p.lastNtpTs2 = srPkt.ntpTs2; |
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p.lastSRRtpTs = srPkt.rtpTs; |
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} |
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// For the next RR |
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p.timeReceivedLSR = curTime; |
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p.setTimeStampLSR(srPkt.ntpTs1,srPkt.ntpTs2); |
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} |
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if(rtpSession.rtcpAppIntf != null) { |
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if(srPkt.rReports != null) { |
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rtpSession.rtcpAppIntf.SRPktReceived(srPkt.ssrc, srPkt.ntpTs1, srPkt.ntpTs2, |
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srPkt.rtpTs, srPkt.sendersPktCount, srPkt.sendersPktCount, |
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srPkt.rReports.reporteeSsrc, srPkt.rReports.lossFraction, srPkt.rReports.lostPktCount, |
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srPkt.rReports.extHighSeqRecv, srPkt.rReports.interArvJitter, srPkt.rReports.timeStampLSR, |
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srPkt.rReports.delaySR); |
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} else { |
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rtpSession.rtcpAppIntf.SRPktReceived(srPkt.ssrc, srPkt.ntpTs1, srPkt.ntpTs2, |
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srPkt.rtpTs, srPkt.sendersPktCount, srPkt.sendersPktCount, |
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null, null, null, |
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null, null, null, |
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null); |
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} |
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} |
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/** Source Descriptions **/ |
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} else if(aPkt.getClass() == RtcpPktSDES.class) { |
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RtcpPktSDES sdesPkt = (RtcpPktSDES) aPkt; |
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// The the participant database is updated |
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// when the SDES packet is reconstructed by CompRtcpPkt |
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if(rtpSession.rtcpAppIntf != null) { |
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rtpSession.rtcpAppIntf.SDESPktReceived(sdesPkt.participants); |
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} |
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/** Bye Packets **/ |
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} else if(aPkt.getClass() == RtcpPktBYE.class) { |
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RtcpPktBYE byePkt = (RtcpPktBYE) aPkt; |
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long time = System.currentTimeMillis(); |
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Participant[] partArray = new Participant[byePkt.ssrcArray.length]; |
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for(int i=0; i<byePkt.ssrcArray.length; i++) { |
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partArray[i] = rtpSession.partDb.getParticipant(byePkt.ssrcArray[i]); |
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if(partArray[i] != null) |
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partArray[i].timestampBYE = time; |
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} |
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if(rtpSession.rtcpAppIntf != null) { |
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rtpSession.rtcpAppIntf.BYEPktReceived(partArray, new String(byePkt.reason)); |
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} |
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/** Application specific Packets **/ |
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} else if(aPkt.getClass() == RtcpPktAPP.class) { |
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RtcpPktAPP appPkt = (RtcpPktAPP) aPkt; |
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Participant part = findParticipant(appPkt.ssrc, packet); |
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if(rtpSession.rtcpAppIntf != null) { |
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rtpSession.rtcpAppIntf.APPPktReceived(part, appPkt.itemCount, appPkt.pktName, appPkt.pktData); |
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} |
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} |
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} |
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} |
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return 0; |
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} |
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/** |
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* Returns a legible message when an error occurs |
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* |
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* @param errorCode the internal error code, commonly negative of packet type |
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* @return a string that is hopefully somewhat informative |
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*/ |
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private String debugErrorString(int errorCode) { |
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String aStr = ""; |
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switch(errorCode) { |
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case -1: aStr = "The first packet was not of type SR or RR."; break; |
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case -2: aStr = "The padding bit was set for the first packet."; break; |
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case -200: aStr = " Error parsing Sender Report packet."; break; |
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case -201: aStr = " Error parsing Receiver Report packet."; break; |
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case -202: aStr = " Error parsing SDES packet"; break; |
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case -203: aStr = " Error parsing BYE packet."; break; |
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case -204: aStr = " Error parsing Application specific packet."; break; |
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case -205: aStr = " Error parsing RTP Feedback packet."; break; |
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case -206: aStr = " Error parsing Payload-Specific Feedback packet."; break; |
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default: |
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aStr = "Unknown error code " + errorCode + "."; |
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} |
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return aStr; |
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} |
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/** |
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* Start the RTCP receiver thread. |
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* |
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* It will |
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* 1) run when it receives a packet |
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* 2) parse the packet |
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* 3) call any relevant callback functions, update database |
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* 4) block until the next one arrives. |
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*/ |
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public void run() { |
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if(RTPSession.rtcpDebugLevel > 1) { |
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if(rtpSession.mcSession) { |
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System.out.println("-> RTCPReceiverThread.run() starting on MC " + rtcpSession.rtcpMCSock.getLocalPort() ); |
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} else { |
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System.out.println("-> RTCPReceiverThread.run() starting on " + rtcpSession.rtcpSock.getLocalPort() ); |
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} |
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} |
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while(!rtpSession.endSession) { |
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if(RTPSession.rtcpDebugLevel > 4) { |
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if(rtpSession.mcSession) { |
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System.out.println("-> RTCPReceiverThread.run() waiting for packet on MC " + rtcpSession.rtcpMCSock.getLocalPort() ); |
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} else { |
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System.out.println("-> RTCPReceiverThread.run() waiting for packet on " + rtcpSession.rtcpSock.getLocalPort() ); |
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} |
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} |
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// Prepare a packet |
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byte[] rawPkt = new byte[1500]; |
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DatagramPacket packet = new DatagramPacket(rawPkt, rawPkt.length); |
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// Wait for it to arrive |
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if(! rtpSession.mcSession) { |
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//Unicast |
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try { |
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rtcpSession.rtcpSock.receive(packet); |
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} catch (IOException e) { |
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if(!rtpSession.endSession) { |
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e.printStackTrace(); |
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} else { |
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continue; |
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} |
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} |
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} else { |
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//Multicast |
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try { |
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rtcpSession.rtcpMCSock.receive(packet); |
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} catch (IOException e) { |
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if(!rtpSession.endSession) { |
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e.printStackTrace(); |
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} else { |
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continue; |
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} |
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} |
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} |
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// Check whether this is one of our own |
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if( (rtpSession.mcSession && ! packet.getSocketAddress().equals(rtcpSession.rtcpMCSock) ) |
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|| ! packet.getSocketAddress().equals(rtcpSession.rtcpSock) ) { |
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//System.out.println("Packet received from: " + packet.getSocketAddress().toString()); |
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parsePacket(packet); |
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//rtpSession.partDb.debugPrint(); |
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} |
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} |
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|
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if(RTPSession.rtcpDebugLevel > 1) { |
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System.out.println("<-> RTCPReceiverThread terminating"); |
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} |
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} |
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|
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} |