forked from Mirrorlandia_minetest/minetest
master #7
@ -363,8 +363,19 @@ void ReliablePacketBuffer::incrementTimeouts(float dtime)
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}
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}
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}
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}
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u32 ReliablePacketBuffer::getTimedOuts(float timeout)
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{
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MutexAutoLock listlock(m_list_mutex);
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u32 count = 0;
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for (auto &packet : m_list) {
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if (packet->totaltime >= timeout)
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count++;
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}
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return count;
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}
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std::vector<ConstSharedPtr<BufferedPacket>>
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std::vector<ConstSharedPtr<BufferedPacket>>
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ReliablePacketBuffer::getTimedOuts(float timeout, u32 max_packets)
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ReliablePacketBuffer::getResend(float timeout, u32 max_packets)
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{
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{
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MutexAutoLock listlock(m_list_mutex);
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MutexAutoLock listlock(m_list_mutex);
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std::vector<ConstSharedPtr<BufferedPacket>> timed_outs;
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std::vector<ConstSharedPtr<BufferedPacket>> timed_outs;
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@ -939,17 +950,22 @@ void Peer::RTTStatistics(float rtt, const std::string &profiler_id,
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m_last_rtt = rtt;
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m_last_rtt = rtt;
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}
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}
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bool Peer::isTimedOut(float timeout)
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bool Peer::isTimedOut(float timeout, std::string &reason)
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{
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{
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MutexAutoLock lock(m_exclusive_access_mutex);
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MutexAutoLock lock(m_exclusive_access_mutex);
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u64 current_time = porting::getTimeMs();
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float dtime = CALC_DTIME(m_last_timeout_check,current_time);
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{
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m_last_timeout_check = current_time;
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u64 current_time = porting::getTimeMs();
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float dtime = CALC_DTIME(m_last_timeout_check, current_time);
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m_last_timeout_check = current_time;
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m_timeout_counter += dtime;
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}
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if (m_timeout_counter > timeout) {
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reason = "timeout counter";
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return true;
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}
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m_timeout_counter += dtime;
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return false;
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return m_timeout_counter > timeout;
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}
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}
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void Peer::Drop()
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void Peer::Drop()
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@ -980,6 +996,24 @@ UDPPeer::UDPPeer(session_t a_id, Address a_address, Connection* connection) :
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channel.setWindowSize(START_RELIABLE_WINDOW_SIZE);
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channel.setWindowSize(START_RELIABLE_WINDOW_SIZE);
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}
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}
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bool UDPPeer::isTimedOut(float timeout, std::string &reason)
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{
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if (Peer::isTimedOut(timeout, reason))
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return true;
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MutexAutoLock lock(m_exclusive_access_mutex);
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for (int i = 0; i < CHANNEL_COUNT; i++) {
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Channel &channel = channels[i];
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if (channel.outgoing_reliables_sent.getTimedOuts(timeout) > 0) {
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reason = "outgoing reliables channel=" + itos(i);
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return true;
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}
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}
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return false;
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}
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bool UDPPeer::getAddress(MTProtocols type,Address& toset)
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bool UDPPeer::getAddress(MTProtocols type,Address& toset)
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{
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{
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if ((type == MTP_UDP) || (type == MTP_MINETEST_RELIABLE_UDP) || (type == MTP_PRIMARY))
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if ((type == MTP_UDP) || (type == MTP_MINETEST_RELIABLE_UDP) || (type == MTP_PRIMARY))
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@ -262,7 +262,9 @@ public:
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void insert(BufferedPacketPtr &p_ptr, u16 next_expected);
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void insert(BufferedPacketPtr &p_ptr, u16 next_expected);
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void incrementTimeouts(float dtime);
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void incrementTimeouts(float dtime);
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std::vector<ConstSharedPtr<BufferedPacket>> getTimedOuts(float timeout, u32 max_packets);
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u32 getTimedOuts(float timeout);
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// timeout relative to last resend
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std::vector<ConstSharedPtr<BufferedPacket>> getResend(float timeout, u32 max_packets);
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void print();
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void print();
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bool empty();
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bool empty();
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@ -525,7 +527,7 @@ class Peer {
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bool isHalfOpen() const { return m_half_open; }
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bool isHalfOpen() const { return m_half_open; }
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void SetFullyOpen() { m_half_open = false; }
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void SetFullyOpen() { m_half_open = false; }
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bool isTimedOut(float timeout);
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virtual bool isTimedOut(float timeout, std::string &reason);
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unsigned int m_increment_packets_remaining = 0;
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unsigned int m_increment_packets_remaining = 0;
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@ -636,6 +638,8 @@ public:
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SharedBuffer<u8> addSplitPacket(u8 channel, BufferedPacketPtr &toadd,
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SharedBuffer<u8> addSplitPacket(u8 channel, BufferedPacketPtr &toadd,
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bool reliable);
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bool reliable);
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bool isTimedOut(float timeout, std::string &reason) override;
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protected:
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protected:
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/*
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/*
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Calculates avg_rtt and resend_timeout.
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Calculates avg_rtt and resend_timeout.
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@ -195,10 +195,11 @@ void ConnectionSendThread::runTimeouts(float dtime)
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// Note that this time is also fixed since the timeout is not reset in half-open state.
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// Note that this time is also fixed since the timeout is not reset in half-open state.
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const float peer_timeout = peer->isHalfOpen() ?
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const float peer_timeout = peer->isHalfOpen() ?
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MYMAX(5.0f, m_timeout / 4) : m_timeout;
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MYMAX(5.0f, m_timeout / 4) : m_timeout;
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if (peer->isTimedOut(peer_timeout)) {
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std::string reason;
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if (peer->isTimedOut(peer_timeout, reason)) {
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infostream << m_connection->getDesc()
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infostream << m_connection->getDesc()
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<< "RunTimeouts(): Peer " << peer->id
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<< "RunTimeouts(): Peer " << peer->id
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<< " has timed out."
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<< " has timed out (" << reason << ")"
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<< std::endl;
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<< std::endl;
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// Add peer to the list
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// Add peer to the list
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timeouted_peers.push_back(peer->id);
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timeouted_peers.push_back(peer->id);
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@ -216,7 +217,7 @@ void ConnectionSendThread::runTimeouts(float dtime)
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channel.outgoing_reliables_sent.incrementTimeouts(dtime);
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channel.outgoing_reliables_sent.incrementTimeouts(dtime);
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// Re-send timed out outgoing reliables
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// Re-send timed out outgoing reliables
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auto timed_outs = channel.outgoing_reliables_sent.getTimedOuts(resend_timeout,
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auto timed_outs = channel.outgoing_reliables_sent.getResend(resend_timeout,
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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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@ -424,10 +425,10 @@ void ConnectionSendThread::processReliableCommand(ConnectionCommandPtr &c)
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return;
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return;
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Channel &channel = dynamic_cast<UDPPeer *>(&peer)->channels[c->channelnum];
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Channel &channel = dynamic_cast<UDPPeer *>(&peer)->channels[c->channelnum];
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auto timed_outs = channel.outgoing_reliables_sent.getTimedOuts(0, 1);
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auto list = channel.outgoing_reliables_sent.getResend(0, 1);
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if (!timed_outs.empty())
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if (!list.empty())
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resendReliable(channel, timed_outs.front().get(), -1);
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resendReliable(channel, list.front().get(), -1);
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return;
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return;
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}
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}
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