rtt-estimator.cpp
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2 /*
3  * Copyright (C) 2016-2018, Arizona Board of Regents.
4  *
5  * This file is part of ndn-cxx library (NDN C++ library with eXperimental eXtensions).
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19  * See AUTHORS.md for complete list of ndn-cxx authors and contributors.
20  *
21  * @author Shuo Yang
22  * @author Weiwei Liu
23  * @author Chavoosh Ghasemi
24  */
25 
27 
28 #include <cmath>
29 #include <limits>
30 
31 namespace ndn {
32 namespace util {
33 
35  : m_options(options)
36  , m_sRtt(std::numeric_limits<double>::quiet_NaN())
37  , m_rttVar(std::numeric_limits<double>::quiet_NaN())
38  , m_rto(m_options.initialRto.count())
39  , m_rttMin(std::numeric_limits<double>::max())
40  , m_rttMax(std::numeric_limits<double>::min())
41  , m_rttAvg(0.0)
42  , m_nRttSamples(0)
43 {
44 }
45 
46 void
47 RttEstimator::addMeasurement(MillisecondsDouble rtt, size_t nExpectedSamples)
48 {
49  BOOST_ASSERT(nExpectedSamples > 0);
50 
51  if (m_nRttSamples == 0) { // first measurement
52  m_sRtt = rtt;
53  m_rttVar = m_sRtt / 2;
54  m_rto = m_sRtt + m_options.k * m_rttVar;
55  }
56  else {
57  double alpha = m_options.alpha / nExpectedSamples;
58  double beta = m_options.beta / nExpectedSamples;
59  m_rttVar = (1 - beta) * m_rttVar + beta * time::abs(m_sRtt - rtt);
60  m_sRtt = (1 - alpha) * m_sRtt + alpha * rtt;
61  m_rto = m_sRtt + m_options.k * m_rttVar;
62  }
63 
64  m_rto = clamp(m_rto, m_options.minRto, m_options.maxRto);
65 
66  m_rttAvg = MillisecondsDouble((m_nRttSamples * m_rttAvg.count() + rtt.count()) / (m_nRttSamples + 1));
67  m_rttMax = std::max<MillisecondsDouble>(rtt, m_rttMax);
68  m_rttMin = std::min<MillisecondsDouble>(rtt, m_rttMin);
69  m_nRttSamples++;
70 }
71 
72 void
74 {
75  m_rto = clamp(m_rto * m_options.rtoBackoffMultiplier,
76  m_options.minRto, m_options.maxRto);
77 }
78 
79 } // namespace util
80 } // namespace ndn
Definition: data.cpp:26
MillisecondsDouble minRto
lower bound of RTO
double alpha
weight of exponential moving average for meanRtt
double beta
weight of exponential moving average for varRtt
constexpr const T & clamp(const T &v, const T &lo, const T &hi, Compare comp)
Definition: backports.hpp:78
STL namespace.
constexpr duration< Rep, Period > abs(duration< Rep, Period > d)
Definition: time.hpp:50
void backoffRto()
Backoff RTO by a factor of Options::rtoBackoffMultiplier.
RttEstimator(const Options &options=Options())
Create a RTT Estimator.
void addMeasurement(MillisecondsDouble rtt, size_t nExpectedSamples)
Add a new RTT measurement to the estimator.
MillisecondsDouble maxRto
upper bound of RTO
int k
factor of RTT variation when calculating RTO
time::duration< double, time::milliseconds::period > MillisecondsDouble