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authorJohn Hurliman2009-10-25 00:40:21 -0700
committerJohn Hurliman2009-10-25 00:40:21 -0700
commit730930955a7edc0bfa69ff1cac93acd024cf8d24 (patch)
treeae38c7d82245acdc4499d9b39a227eba541132bb /OpenSim/Region/ClientStack/LindenUDP/LLUDPClient.cs
parent* Changed various modules to not initialize timers unless the module is initi... (diff)
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Changing Scene.ForEachClient to use the synchronous for loop instead of Parallel. This is quite possibly the source of some deadlocking, and at the very least the synchronous version gives better stack traces
* Lock the LLUDPClient RTO math * Add a helper function for backing off the RTO, and follow the optional advice in RFC 2988 to clear existing SRTT and RTTVAR values during a backoff * Removing the unused PrimitiveBaseShape.SculptImage parameter * Improved performance of SceneObjectPart instantiation * ZeroMesher now drops SculptData bytes like Meshmerizer, to allow the texture data to be GCed * Improved typecasting speed in MySQLLegacyRegionData.BuildShape() * Improved the instantiation of PrimitiveBaseShape
Diffstat (limited to '')
-rw-r--r--OpenSim/Region/ClientStack/LindenUDP/LLUDPClient.cs54
1 files changed, 40 insertions, 14 deletions
diff --git a/OpenSim/Region/ClientStack/LindenUDP/LLUDPClient.cs b/OpenSim/Region/ClientStack/LindenUDP/LLUDPClient.cs
index d2cd6d9..0948e1c 100644
--- a/OpenSim/Region/ClientStack/LindenUDP/LLUDPClient.cs
+++ b/OpenSim/Region/ClientStack/LindenUDP/LLUDPClient.cs
@@ -144,6 +144,9 @@ namespace OpenSim.Region.ClientStack.LindenUDP
144 private readonly OutgoingPacket[] m_nextPackets = new OutgoingPacket[THROTTLE_CATEGORY_COUNT]; 144 private readonly OutgoingPacket[] m_nextPackets = new OutgoingPacket[THROTTLE_CATEGORY_COUNT];
145 /// <summary>A reference to the LLUDPServer that is managing this client</summary> 145 /// <summary>A reference to the LLUDPServer that is managing this client</summary>
146 private readonly LLUDPServer m_udpServer; 146 private readonly LLUDPServer m_udpServer;
147 /// <summary>Locks access to the variables used while calculating round-trip
148 /// packet times and the retransmission timeout</summary>
149 private readonly object m_roundTripCalcLock = new object();
147 150
148 /// <summary> 151 /// <summary>
149 /// Default constructor 152 /// Default constructor
@@ -484,29 +487,52 @@ namespace OpenSim.Region.ClientStack.LindenUDP
484 const float BETA = 0.25f; 487 const float BETA = 0.25f;
485 const float K = 4.0f; 488 const float K = 4.0f;
486 489
487 if (RTTVAR == 0.0f) 490 lock (m_roundTripCalcLock)
488 { 491 {
489 // First RTT measurement 492 if (RTTVAR == 0.0f)
490 SRTT = r; 493 {
491 RTTVAR = r * 0.5f; 494 // First RTT measurement
492 } 495 SRTT = r;
493 else 496 RTTVAR = r * 0.5f;
494 { 497 }
495 // Subsequence RTT measurement 498 else
496 RTTVAR = (1.0f - BETA) * RTTVAR + BETA * Math.Abs(SRTT - r); 499 {
497 SRTT = (1.0f - ALPHA) * SRTT + ALPHA * r; 500 // Subsequence RTT measurement
498 } 501 RTTVAR = (1.0f - BETA) * RTTVAR + BETA * Math.Abs(SRTT - r);
502 SRTT = (1.0f - ALPHA) * SRTT + ALPHA * r;
503 }
499 504
500 RTO = (int)(SRTT + Math.Max(m_udpServer.TickCountResolution, K * RTTVAR)); 505 int rto = (int)(SRTT + Math.Max(m_udpServer.TickCountResolution, K * RTTVAR));
501 506
502 // Clamp the retransmission timeout to manageable values 507 // Clamp the retransmission timeout to manageable values
503 RTO = Utils.Clamp(RTO, 3000, 60000); 508 rto = Utils.Clamp(RTO, 3000, 60000);
509
510 RTO = rto;
511 }
504 512
505 //m_log.Debug("[LLUDPCLIENT]: Setting agent " + this.Agent.FullName + "'s RTO to " + RTO + "ms with an RTTVAR of " + 513 //m_log.Debug("[LLUDPCLIENT]: Setting agent " + this.Agent.FullName + "'s RTO to " + RTO + "ms with an RTTVAR of " +
506 // RTTVAR + " based on new RTT of " + r + "ms"); 514 // RTTVAR + " based on new RTT of " + r + "ms");
507 } 515 }
508 516
509 /// <summary> 517 /// <summary>
518 /// Exponential backoff of the retransmission timeout, per section 5.5
519 /// of RFC 2988
520 /// </summary>
521 public void BackoffRTO()
522 {
523 lock (m_roundTripCalcLock)
524 {
525 // Reset SRTT and RTTVAR, we assume they are bogus since things
526 // didn't work out and we're backing off the timeout
527 SRTT = 0.0f;
528 RTTVAR = 0.0f;
529
530 // Double the retransmission timeout
531 RTO = Math.Min(RTO * 2, 60000);
532 }
533 }
534
535 /// <summary>
510 /// Does an early check to see if this queue empty callback is already 536 /// Does an early check to see if this queue empty callback is already
511 /// running, then asynchronously firing the event 537 /// running, then asynchronously firing the event
512 /// </summary> 538 /// </summary>