mirror of
https://github.com/zerotier/ZeroTierOne.git
synced 2025-01-18 02:40:13 +00:00
Added multipath field to zerotier-cli status output. Adjusted how path estimates are computed and cached
This commit is contained in:
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f8005b88ad
commit
17fbb020e7
@ -449,13 +449,6 @@ enum ZT_MultipathMode
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* Will cease sending traffic over links that appear to be stale.
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*/
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ZT_MULTIPATH_PROPORTIONALLY_BALANCED = 2,
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/**
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* Traffic is allocated across a user-defined interface/allocation
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*
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* Will cease sending traffic over links that appear to be stale.
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*/
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ZT_MULTIPATH_MANUALLY_BALANCED = 3
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};
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/**
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@ -1221,6 +1214,56 @@ typedef struct
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*/
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uint64_t trustedPathId;
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/**
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* One-way latency
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*/
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float latency;
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/**
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* How much latency varies over time
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*/
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float packetDelayVariance;
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/**
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* How much observed throughput varies over time
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*/
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float throughputDisturbCoeff;
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/**
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* Packet Error Ratio (PER)
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*/
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float packetErrorRatio;
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/**
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* Packet Loss Ratio (PLR)
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*/
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float packetLossRatio;
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/**
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* Stability of the path
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*/
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float stability;
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/**
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* Current throughput (moving average)
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*/
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uint64_t throughput;
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/**
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* Maximum observed throughput for this path
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*/
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uint64_t maxThroughput;
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/**
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* Percentage of traffic allocated to this path
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*/
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float allocation;
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/**
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* Name of physical interface (for monitoring)
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*/
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char *ifname;
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/**
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* Is path expired?
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*/
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@ -474,6 +474,17 @@ ZT_PeerList *Node::peers() const
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p->paths[p->pathCount].trustedPathId = RR->topology->getOutboundPathTrust((*path)->address());
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p->paths[p->pathCount].expired = 0;
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p->paths[p->pathCount].preferred = ((*path) == bestp) ? 1 : 0;
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p->paths[p->pathCount].latency = (*path)->latency();
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p->paths[p->pathCount].packetDelayVariance = (*path)->packetDelayVariance();
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p->paths[p->pathCount].throughputDisturbCoeff = (*path)->throughputDisturbanceCoefficient();
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p->paths[p->pathCount].packetErrorRatio = (*path)->packetErrorRatio();
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p->paths[p->pathCount].packetLossRatio = (*path)->packetLossRatio();
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p->paths[p->pathCount].stability = (*path)->lastComputedStability();
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p->paths[p->pathCount].throughput = (*path)->meanThroughput();
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p->paths[p->pathCount].maxThroughput = (*path)->maxLifetimeThroughput();
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p->paths[p->pathCount].allocation = (*path)->allocation();
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p->paths[p->pathCount].ifname = (*path)->getName();
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++p->pathCount;
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}
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}
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@ -111,15 +111,16 @@ public:
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_expectingAckAsOf(0),
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_packetsReceivedSinceLastAck(0),
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_packetsReceivedSinceLastQoS(0),
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_meanThroughput(0.0),
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_maxLifetimeThroughput(0),
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_lastComputedMeanThroughput(0),
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_bytesAckedSinceLastThroughputEstimation(0),
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_meanLatency(0.0),
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_packetDelayVariance(0.0),
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_packetErrorRatio(0.0),
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_packetLossRatio(0),
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_lastComputedMeanLatency(0.0),
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_lastComputedPacketDelayVariance(0.0),
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_lastComputedPacketErrorRatio(0.0),
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_lastComputedPacketLossRatio(0),
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_lastComputedStability(0.0),
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_lastComputedRelativeQuality(0),
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_lastComputedThroughputDistCoeff(0.0),
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_lastAllocation(0.0)
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{
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prepareBuffers();
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@ -142,15 +143,16 @@ public:
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_expectingAckAsOf(0),
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_packetsReceivedSinceLastAck(0),
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_packetsReceivedSinceLastQoS(0),
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_meanThroughput(0.0),
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_maxLifetimeThroughput(0),
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_lastComputedMeanThroughput(0),
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_bytesAckedSinceLastThroughputEstimation(0),
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_meanLatency(0.0),
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_packetDelayVariance(0.0),
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_packetErrorRatio(0.0),
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_packetLossRatio(0),
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_lastComputedMeanLatency(0.0),
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_lastComputedPacketDelayVariance(0.0),
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_lastComputedPacketErrorRatio(0.0),
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_lastComputedPacketLossRatio(0),
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_lastComputedStability(0.0),
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_lastComputedRelativeQuality(0),
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_lastComputedThroughputDistCoeff(0.0),
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_lastAllocation(0.0)
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{
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prepareBuffers();
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@ -162,9 +164,11 @@ public:
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delete _throughputSamples;
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delete _latencySamples;
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delete _packetValiditySamples;
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delete _throughputDisturbanceSamples;
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_throughputSamples = NULL;
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_latencySamples = NULL;
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_packetValiditySamples = NULL;
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_throughputDisturbanceSamples = NULL;
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}
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/**
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@ -311,7 +315,7 @@ public:
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inline void recordOutgoingPacket(int64_t now, int64_t packetId, uint16_t payloadLength, Packet::Verb verb)
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{
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Mutex::Lock _l(_statistics_m);
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if (verb == Packet::VERB_FRAME || verb == Packet::VERB_EXT_FRAME) {
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if (verb != Packet::VERB_ACK && verb != Packet::VERB_QOS_MEASUREMENT) {
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if (packetId % 2 == 0) { // even -> use for ACK
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_unackedBytes += payloadLength;
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// Take note that we're expecting a VERB_ACK on this path as of a specific time
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@ -336,7 +340,7 @@ public:
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inline void recordIncomingPacket(int64_t now, int64_t packetId, uint16_t payloadLength, Packet::Verb verb)
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{
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Mutex::Lock _l(_statistics_m);
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if (verb == Packet::VERB_FRAME || verb == Packet::VERB_EXT_FRAME) {
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if (verb != Packet::VERB_ACK && verb != Packet::VERB_QOS_MEASUREMENT) {
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if (packetId % 2 == 0) { // even -> use for ACK
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_inACKRecords[packetId] = payloadLength;
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_packetsReceivedSinceLastAck++;
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@ -497,14 +501,14 @@ public:
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inline int64_t ackAge(int64_t now) { return _expectingAckAsOf ? now - _expectingAckAsOf : 0; }
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/**
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* The maximum observed throughput for this path
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* The maximum observed throughput (in bits/s) for this path
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*/
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inline uint64_t maxLifetimeThroughput() { return _maxLifetimeThroughput; }
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/**
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* @return The mean throughput (in bits/s) of this link
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*/
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inline float meanThroughput() { return _meanThroughput; }
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inline uint64_t meanThroughput() { return _lastComputedMeanThroughput; }
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/**
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* Assign a new relative quality value for this path in the aggregate link
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@ -543,22 +547,22 @@ public:
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/**
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* @return Packet delay variance
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*/
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inline float packetDelayVariance() { return _packetDelayVariance; }
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inline float packetDelayVariance() { return _lastComputedPacketDelayVariance; }
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/**
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* @return Previously-computed mean latency
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*/
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inline float meanLatency() { return _meanLatency; }
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inline float meanLatency() { return _lastComputedMeanLatency; }
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/**
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* @return Packet loss rate (PLR)
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*/
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inline float packetLossRatio() { return _packetLossRatio; }
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inline float packetLossRatio() { return _lastComputedPacketLossRatio; }
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/**
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* @return Packet error ratio (PER)
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*/
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inline float packetErrorRatio() { return _packetErrorRatio; }
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inline float packetErrorRatio() { return _lastComputedPacketErrorRatio; }
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/**
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* Record an invalid incoming packet. This packet failed MAC/compression/cipher checks and will now
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@ -571,38 +575,46 @@ public:
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*/
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inline char *getAddressString() { return _addrString; }
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/**
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* @return The current throughput disturbance coefficient
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*/
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inline float throughputDisturbanceCoefficient() { return _lastComputedThroughputDistCoeff; }
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/**
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* Compute and cache stability and performance metrics. The resultant stability coefficient is a measure of how "well behaved"
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* this path is. This figure is substantially different from (but required for the estimation of the path's overall "quality".
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*
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* @param now Current time
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*/
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inline void processBackgroundPathMeasurements(int64_t now, const int64_t peerId) {
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inline void processBackgroundPathMeasurements(int64_t now) {
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if (now - _lastPathQualityComputeTime > ZT_PATH_QUALITY_COMPUTE_INTERVAL) {
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Mutex::Lock _l(_statistics_m);
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_lastPathQualityComputeTime = now;
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address().toString(_addrString);
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_meanThroughput = _throughputSamples->mean();
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_meanLatency = _latencySamples->mean();
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_packetDelayVariance = _latencySamples->stddev(); // Similar to "jitter" (SEE: RFC 3393, RFC 4689)
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_lastComputedMeanLatency = _latencySamples->mean();
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_lastComputedPacketDelayVariance = _latencySamples->stddev(); // Similar to "jitter" (SEE: RFC 3393, RFC 4689)
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_lastComputedMeanThroughput = (uint64_t)_throughputSamples->mean();
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// If no packet validity samples, assume PER==0
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_packetErrorRatio = 1 - (_packetValiditySamples->count() ? _packetValiditySamples->mean() : 1);
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_lastComputedPacketErrorRatio = 1 - (_packetValiditySamples->count() ? _packetValiditySamples->mean() : 1);
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// Compute path stability
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// Normalize measurements with wildly different ranges into a reasonable range
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float normalized_pdv = Utils::normalize(_packetDelayVariance, 0, ZT_PATH_MAX_PDV, 0, 10);
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float normalized_la = Utils::normalize(_meanLatency, 0, ZT_PATH_MAX_MEAN_LATENCY, 0, 10);
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float normalized_pdv = Utils::normalize(_lastComputedPacketDelayVariance, 0, ZT_PATH_MAX_PDV, 0, 10);
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float normalized_la = Utils::normalize(_lastComputedMeanLatency, 0, ZT_PATH_MAX_MEAN_LATENCY, 0, 10);
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float throughput_cv = _throughputSamples->mean() > 0 ? _throughputSamples->stddev() / _throughputSamples->mean() : 1;
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// Form an exponential cutoff and apply contribution weights
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float pdv_contrib = exp((-1)*normalized_pdv) * ZT_PATH_CONTRIB_PDV;
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float latency_contrib = exp((-1)*normalized_la) * ZT_PATH_CONTRIB_LATENCY;
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// Throughput Disturbance Coefficient
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float throughput_disturbance_contrib = exp((-1)*throughput_cv) * ZT_PATH_CONTRIB_THROUGHPUT_DISTURBANCE;
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_throughputDisturbanceSamples->push(throughput_cv);
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_lastComputedThroughputDistCoeff = _throughputDisturbanceSamples->mean();
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// Obey user-defined ignored contributions
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pdv_contrib = ZT_PATH_CONTRIB_PDV > 0.0 ? pdv_contrib : 1;
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latency_contrib = ZT_PATH_CONTRIB_LATENCY > 0.0 ? latency_contrib : 1;
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throughput_disturbance_contrib = ZT_PATH_CONTRIB_THROUGHPUT_DISTURBANCE > 0.0 ? throughput_disturbance_contrib : 1;
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// Compute the quality product
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// Stability
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_lastComputedStability = pdv_contrib + latency_contrib + throughput_disturbance_contrib;
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_lastComputedStability *= 1 - _packetErrorRatio;
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_lastComputedStability *= 1 - _lastComputedPacketErrorRatio;
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// Prevent QoS records from sticking around for too long
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std::map<uint64_t,uint64_t>::iterator it = _outQoSRecords.begin();
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while (it != _outQoSRecords.end()) {
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@ -646,6 +658,7 @@ public:
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_throughputSamples = new RingBuffer<uint64_t>(ZT_PATH_QUALITY_METRIC_WIN_SZ);
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_latencySamples = new RingBuffer<uint32_t>(ZT_PATH_QUALITY_METRIC_WIN_SZ);
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_packetValiditySamples = new RingBuffer<bool>(ZT_PATH_QUALITY_METRIC_WIN_SZ);
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_throughputDisturbanceSamples = new RingBuffer<float>(ZT_PATH_QUALITY_METRIC_WIN_SZ);
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memset(_ifname, 0, 16);
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memset(_addrString, 0, sizeof(_addrString));
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}
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@ -677,19 +690,20 @@ private:
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int16_t _packetsReceivedSinceLastAck;
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int16_t _packetsReceivedSinceLastQoS;
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float _meanThroughput;
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uint64_t _maxLifetimeThroughput;
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uint64_t _lastComputedMeanThroughput;
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uint64_t _bytesAckedSinceLastThroughputEstimation;
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volatile float _meanLatency;
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float _packetDelayVariance;
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float _lastComputedMeanLatency;
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float _lastComputedPacketDelayVariance;
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float _packetErrorRatio;
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float _packetLossRatio;
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float _lastComputedPacketErrorRatio;
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float _lastComputedPacketLossRatio;
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// cached estimates
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float _lastComputedStability;
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float _lastComputedRelativeQuality;
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float _lastComputedThroughputDistCoeff;
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float _lastAllocation;
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// cached human-readable strings for tracing purposes
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@ -699,6 +713,7 @@ private:
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RingBuffer<uint64_t> *_throughputSamples;
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RingBuffer<uint32_t> *_latencySamples;
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RingBuffer<bool> *_packetValiditySamples;
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RingBuffer<float> *_throughputDisturbanceSamples;
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};
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} // namespace ZeroTier
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@ -116,7 +116,7 @@ void Peer::received(
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}
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for(unsigned int i=0;i<ZT_MAX_PEER_NETWORK_PATHS;++i) {
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if (_paths[i].p) {
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_paths[i].p->processBackgroundPathMeasurements(now, _id.address().toInt());
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_paths[i].p->processBackgroundPathMeasurements(now);
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}
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}
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}
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@ -415,7 +415,7 @@ SharedPtr<Path> Peer::getAppropriatePath(int64_t now, bool includeExpired)
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for(unsigned int i=0;i<ZT_MAX_PEER_NETWORK_PATHS;++i) {
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if (_paths[i].p) {
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_paths[i].p->processBackgroundPathMeasurements(now, _id.address().toInt());
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_paths[i].p->processBackgroundPathMeasurements(now);
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}
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}
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@ -353,14 +353,18 @@ public:
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inline int64_t isActive(int64_t now) const { return ((now - _lastNontrivialReceive) < ZT_PEER_ACTIVITY_TIMEOUT); }
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/**
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* @return Latency in milliseconds of best path or 0xffff if unknown / no paths
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* @return Latency in milliseconds of best/aggregate path or 0xffff if unknown / no paths
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*/
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inline unsigned int latency(const int64_t now)
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{
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SharedPtr<Path> bp(getAppropriatePath(now,false));
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if (bp)
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return bp->latency();
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return 0xffff;
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if (RR->node->getMultipathMode()) {
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return (int)computeAggregateLinkMeanLatency();
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} else {
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SharedPtr<Path> bp(getAppropriatePath(now,false));
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if (bp)
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return bp->latency();
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return 0xffff;
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}
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}
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/**
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@ -298,6 +298,39 @@ static void _peerToJson(nlohmann::json &pj,const ZT_Peer *peer)
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pj["paths"] = pa;
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}
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static void _peerAggregateLinkToJson(nlohmann::json &pj,const ZT_Peer *peer)
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{
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char tmp[256];
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OSUtils::ztsnprintf(tmp,sizeof(tmp),"%.10llx",peer->address);
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pj["aggregateLinkLatency"] = peer->latency;
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nlohmann::json pa = nlohmann::json::array();
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for(unsigned int i=0;i<peer->pathCount;++i) {
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//int64_t lastSend = peer->paths[i].lastSend;
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//int64_t lastReceive = peer->paths[i].lastReceive;
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nlohmann::json j;
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j["address"] = reinterpret_cast<const InetAddress *>(&(peer->paths[i].address))->toString(tmp);
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//j["lastSend"] = (lastSend < 0) ? 0 : lastSend;
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//j["lastReceive"] = (lastReceive < 0) ? 0 : lastReceive;
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//j["trustedPathId"] = peer->paths[i].trustedPathId;
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//j["active"] = (bool)(peer->paths[i].expired == 0);
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//j["expired"] = (bool)(peer->paths[i].expired != 0);
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//j["preferred"] = (bool)(peer->paths[i].preferred != 0);
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j["latency"] = peer->paths[i].latency;
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//j["packetDelayVariance"] = peer->paths[i].packetDelayVariance;
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//j["throughputDisturbCoeff"] = peer->paths[i].throughputDisturbCoeff;
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//j["packetErrorRatio"] = peer->paths[i].packetErrorRatio;
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//j["packetLossRatio"] = peer->paths[i].packetLossRatio;
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j["stability"] = peer->paths[i].stability;
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j["throughput"] = peer->paths[i].throughput;
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//j["maxThroughput"] = peer->paths[i].maxThroughput;
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j["allocation"] = peer->paths[i].allocation;
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j["ifname"] = peer->paths[i].ifname;
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pa.push_back(j);
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}
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pj["paths"] = pa;
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}
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static void _moonToJson(nlohmann::json &mj,const World &world)
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{
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char tmp[4096];
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@ -1189,7 +1222,23 @@ public:
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json &settings = res["config"]["settings"];
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settings["primaryPort"] = OSUtils::jsonInt(settings["primaryPort"],(uint64_t)_primaryPort) & 0xffff;
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settings["allowTcpFallbackRelay"] = OSUtils::jsonBool(settings["allowTcpFallbackRelay"],_allowTcpFallbackRelay);
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settings["multipathMode"] = OSUtils::jsonInt(settings["multipathMode"],_multipathMode);
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if (_multipathMode) {
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json &multipathConfig = res["multipath"];
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ZT_PeerList *pl = _node->peers();
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char peerAddrStr[256];
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if (pl) {
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for(unsigned long i=0;i<pl->peerCount;++i) {
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if (pl->peers[i].role == ZT_PEER_ROLE_LEAF) {
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nlohmann::json pj;
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_peerAggregateLinkToJson(pj,&(pl->peers[i]));
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OSUtils::ztsnprintf(peerAddrStr,sizeof(peerAddrStr),"%.10llx",pl->peers[i].address);
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multipathConfig[peerAddrStr] = (pj);
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}
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}
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}
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}
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#ifdef ZT_USE_MINIUPNPC
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settings["portMappingEnabled"] = OSUtils::jsonBool(settings["portMappingEnabled"],true);
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#else
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