parent
944ffe9e53
commit
247a1ebf23
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@ -1410,6 +1410,7 @@ void ConnectionSendThread::runTimeouts(float dtime)
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(m_max_data_packets_per_iteration/numpeers));
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(m_max_data_packets_per_iteration/numpeers));
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channel->UpdatePacketLossCounter(timed_outs.size());
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channel->UpdatePacketLossCounter(timed_outs.size());
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g_profiler->graphAdd("packets_lost", timed_outs.size());
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m_iteration_packets_avaialble -= timed_outs.size();
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m_iteration_packets_avaialble -= timed_outs.size();
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@ -1421,6 +1422,7 @@ void ConnectionSendThread::runTimeouts(float dtime)
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u16 seqnum = readU16(&(k->data[BASE_HEADER_SIZE+1]));
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u16 seqnum = readU16(&(k->data[BASE_HEADER_SIZE+1]));
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channel->UpdateBytesLost(k->data.getSize());
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channel->UpdateBytesLost(k->data.getSize());
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k->resend_count++;
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LOG(derr_con<<m_connection->getDesc()
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LOG(derr_con<<m_connection->getDesc()
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<<"RE-SENDING timed-out RELIABLE to "
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<<"RE-SENDING timed-out RELIABLE to "
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@ -2349,24 +2351,30 @@ SharedBuffer<u8> ConnectionReceiveThread::processPacket(Channel *channel,
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try{
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try{
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BufferedPacket p =
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BufferedPacket p =
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channel->outgoing_reliables_sent.popSeqnum(seqnum);
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channel->outgoing_reliables_sent.popSeqnum(seqnum);
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// Get round trip time
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unsigned int current_time = porting::getTimeMs();
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if (current_time > p.absolute_send_time)
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// only calculate rtt from straight sent packets
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{
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if (p.resend_count == 0) {
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float rtt = (current_time - p.absolute_send_time) / 1000.0;
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// Get round trip time
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unsigned int current_time = porting::getTimeMs();
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// Let peer calculate stuff according to it
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// a overflow is quite unlikely but as it'd result in major
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// (avg_rtt and resend_timeout)
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// rtt miscalculation we handle it here
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dynamic_cast<UDPPeer*>(&peer)->reportRTT(rtt);
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if (current_time > p.absolute_send_time)
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}
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{
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else if (p.totaltime > 0)
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float rtt = (current_time - p.absolute_send_time) / 1000.0;
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{
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float rtt = p.totaltime;
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// Let peer calculate stuff according to it
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// Let peer calculate stuff according to it
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// (avg_rtt and resend_timeout)
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// (avg_rtt and resend_timeout)
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dynamic_cast<UDPPeer*>(&peer)->reportRTT(rtt);
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dynamic_cast<UDPPeer*>(&peer)->reportRTT(rtt);
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}
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else if (p.totaltime > 0)
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{
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float rtt = p.totaltime;
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// Let peer calculate stuff according to it
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// (avg_rtt and resend_timeout)
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dynamic_cast<UDPPeer*>(&peer)->reportRTT(rtt);
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}
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}
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}
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//put bytes for max bandwidth calculation
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//put bytes for max bandwidth calculation
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channel->UpdateBytesSent(p.data.getSize(),1);
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channel->UpdateBytesSent(p.data.getSize(),1);
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@ -2542,7 +2550,8 @@ SharedBuffer<u8> ConnectionReceiveThread::processPacket(Channel *channel,
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// we already have this packet so this one was on wire at least
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// we already have this packet so this one was on wire at least
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// the current timeout
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// the current timeout
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dynamic_cast<UDPPeer*>(&peer)->reportRTT(dynamic_cast<UDPPeer*>(&peer)->getResendTimeout());
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// we don't know how long this packet was on wire don't do silly guessing
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// dynamic_cast<UDPPeer*>(&peer)->reportRTT(dynamic_cast<UDPPeer*>(&peer)->getResendTimeout());
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throw ProcessedSilentlyException("Retransmitting ack for old packet");
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throw ProcessedSilentlyException("Retransmitting ack for old packet");
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}
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}
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@ -162,16 +162,19 @@ inline bool seqnum_in_window(u16 seqnum, u16 next,u16 window_size)
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struct BufferedPacket
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struct BufferedPacket
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{
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{
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BufferedPacket(u8 *a_data, u32 a_size):
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BufferedPacket(u8 *a_data, u32 a_size):
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data(a_data, a_size), time(0.0), totaltime(0.0), absolute_send_time(-1)
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data(a_data, a_size), time(0.0), totaltime(0.0), absolute_send_time(-1),
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resend_count(0)
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{}
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{}
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BufferedPacket(u32 a_size):
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BufferedPacket(u32 a_size):
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data(a_size), time(0.0), totaltime(0.0), absolute_send_time(-1)
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data(a_size), time(0.0), totaltime(0.0), absolute_send_time(-1),
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resend_count(0)
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{}
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{}
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SharedBuffer<u8> data; // Data of the packet, including headers
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SharedBuffer<u8> data; // Data of the packet, including headers
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float time; // Seconds from buffering the packet or re-sending
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float time; // Seconds from buffering the packet or re-sending
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float totaltime; // Seconds from buffering the packet
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float totaltime; // Seconds from buffering the packet
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unsigned int absolute_send_time;
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unsigned int absolute_send_time;
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Address address; // Sender or destination
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Address address; // Sender or destination
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unsigned int resend_count;
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};
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};
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// This adds the base headers to the data and makes a packet out of it
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// This adds the base headers to the data and makes a packet out of it
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@ -43,7 +43,7 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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#define CONNECTION_TIMEOUT 30
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#define CONNECTION_TIMEOUT 30
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#define RESEND_TIMEOUT_MIN 0.333
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#define RESEND_TIMEOUT_MIN 0.1
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#define RESEND_TIMEOUT_MAX 3.0
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#define RESEND_TIMEOUT_MAX 3.0
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// resend_timeout = avg_rtt * this
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// resend_timeout = avg_rtt * this
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#define RESEND_TIMEOUT_FACTOR 4
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#define RESEND_TIMEOUT_FACTOR 4
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