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ThirdOrderDelayODE.cc
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1 #include <cmath>
2 #include <cassert>
4 
6 
8  const double currentIn,
9  double /* dIdt */,
10  double /* d2Id2t */,
11  const double* x,
12  const unsigned lenX,
13  const unsigned firstNode,
14  double* derivative) const {
15  // Check input sanity
16  if (lenX < firstNode + 3U)
17  throw cms::Exception("In ThirdOrderDelayODE::calculate: insufficient number of variables");
18  if (tau <= 0.0)
19  throw cms::Exception("In ThirdOrderDelayODE::calculate: delay time is not positive");
20  assert(x);
22 
23  derivative[firstNode] = x[firstNode + 1];
24  derivative[firstNode + 1] = x[firstNode + 2];
25  derivative[firstNode + 2] =
26  6.0 / a_ * (currentIn - x[firstNode] - c_ * tau * x[firstNode + 1] - b_ / 2.0 * tau * tau * x[firstNode + 2]) /
27  tau / tau / tau;
28 }
29 
30 void ThirdOrderDelayODE::setParameters(const double* pars, const unsigned nPars) {
31  assert(nPars == 3U);
32  assert(pars);
33  a_ = exp(pars[0]);
34  b_ = exp(pars[1]);
35  c_ = exp(pars[2]);
36 }
metsig::tau
Definition: SignAlgoResolutions.h:49
ThirdOrderDelayODE::a_
double a_
Definition: ThirdOrderDelayODE.h:30
cms::cuda::assert
assert(be >=bs)
funct::derivative
Derivative< X, A >::type derivative(const A &_)
Definition: Derivative.h:18
DDAxes::x
mitigatedMETSequence_cff.U
U
Definition: mitigatedMETSequence_cff.py:36
ThirdOrderDelayODE::b_
double b_
Definition: ThirdOrderDelayODE.h:31
ThirdOrderDelayODE.h
ThirdOrderDelayODE::setParameters
void setParameters(const double *pars, unsigned nPars)
Definition: ThirdOrderDelayODE.cc:30
Exception
Definition: hltDiff.cc:245
genVertex_cff.x
x
Definition: genVertex_cff.py:13
Exception.h
JetChargeProducer_cfi.exp
exp
Definition: JetChargeProducer_cfi.py:6
ThirdOrderDelayODE::calculate
void calculate(double tau, double inputCurrent, double dIdt, double d2Id2t, const double *x, unsigned lenX, unsigned firstNode, double *derivative) const
Definition: ThirdOrderDelayODE.cc:7
ThirdOrderDelayODE::c_
double c_
Definition: ThirdOrderDelayODE.h:32