queso-0.52.0
InverseGammaJointPdf.C
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1 //-----------------------------------------------------------------------bl-
2 //--------------------------------------------------------------------------
3 //
4 // QUESO - a library to support the Quantification of Uncertainty
5 // for Estimation, Simulation and Optimization
6 //
7 // Copyright (C) 2008-2015 The PECOS Development Team
8 //
9 // This library is free software; you can redistribute it and/or
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16 // Lesser General Public License for more details.
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23 //-----------------------------------------------------------------------el-
24 
25 #include <queso/InverseGammaJointPdf.h>
26 #include <queso/GslVector.h>
27 #include <queso/GslMatrix.h>
28 
29 namespace QUESO {
30 
31 // Constructor -------------------------------------
32 template<class V,class M>
34  const char* prefix,
35  const VectorSet<V,M>& domainSet,
36  const V& alpha,
37  const V& beta)
38  :
39  BaseJointPdf<V,M>(((std::string)(prefix)+"uni").c_str(),domainSet),
40  m_alpha(alpha),
41  m_beta (beta)
42 {
43  if ((m_env.subDisplayFile()) && (m_env.displayVerbosity() >= 54)) {
44  *m_env.subDisplayFile() << "Entering InverseGammaJointPdf<V,M>::constructor()"
45  << ": prefix = " << m_prefix
46  << std::endl;
47  }
48 
49  if ((m_env.subDisplayFile()) && (m_env.displayVerbosity() >= 54)) {
50  *m_env.subDisplayFile() << "Leaving InverseGammaJointPdf<V,M>::constructor()"
51  << ": prefix = " << m_prefix
52  << std::endl;
53  }
54 }
55 // Destructor --------------------------------------
56 template<class V,class M>
58 {
59 }
60 // Math methods-------------------------------------
61 template<class V, class M>
62 double
64  const V& domainVector,
65  const V* domainDirection,
66  V* gradVector,
67  M* hessianMatrix,
68  V* hessianEffect) const
69 {
70  UQ_FATAL_TEST_MACRO(domainVector.sizeLocal() != this->m_domainSet.vectorSpace().dimLocal(),
71  m_env.worldRank(),
72  "InverseGammaJointPdf<V,M>::actualValue()",
73  "invalid input");
74 
75  UQ_FATAL_TEST_MACRO((domainDirection || gradVector || hessianMatrix || hessianEffect),
76  m_env.worldRank(),
77  "InverseGammaJointPdf<V,M>::actualValue()",
78  "incomplete code for gradVector, hessianMatrix and hessianEffect calculations");
79 
80  // No need to multiply by exp(m_logOfNormalizationFactor) because 'lnValue()' is called [PDF-07]
81  return exp(this->lnValue(domainVector,domainDirection,gradVector,hessianMatrix,hessianEffect));
82 }
83 //--------------------------------------------------
84 template<class V, class M>
85 double
87  const V& domainVector,
88  const V* domainDirection,
89  V* gradVector,
90  M* hessianMatrix,
91  V* hessianEffect) const
92 {
93  UQ_FATAL_TEST_MACRO((domainDirection || gradVector || hessianMatrix || hessianEffect),
94  m_env.worldRank(),
95  "InverseGammaJointPdf<V,M>::lnValue()",
96  "incomplete code for gradVector, hessianMatrix and hessianEffect calculations");
97 
98  double result = 0.;
99  for (unsigned int i = 0; i < domainVector.sizeLocal(); ++i) {
100  result -= (m_alpha[i]+1.)*log(domainVector[i]);
101  result -= m_beta[i]/domainVector[i];
102  if (m_normalizationStyle == 0) {
103  // Code needs to be done yet
104  }
105  }
106  result += m_logOfNormalizationFactor; // [PDF-07]
107 
108  return result;
109 }
110 //--------------------------------------------------
111 template<class V, class M>
112 double
113 InverseGammaJointPdf<V,M>::computeLogOfNormalizationFactor(unsigned int numSamples, bool updateFactorInternally) const
114 {
115  double value = 0.;
116 
117  if ((m_env.subDisplayFile()) && (m_env.displayVerbosity() >= 2)) {
118  *m_env.subDisplayFile() << "Entering InverseGammaJointPdf<V,M>::computeLogOfNormalizationFactor()"
119  << std::endl;
120  }
121  value = BaseJointPdf<V,M>::commonComputeLogOfNormalizationFactor(numSamples, updateFactorInternally);
122  if ((m_env.subDisplayFile()) && (m_env.displayVerbosity() >= 2)) {
123  *m_env.subDisplayFile() << "Leaving InverseGammaJointPdf<V,M>::computeLogOfNormalizationFactor()"
124  << ", m_logOfNormalizationFactor = " << m_logOfNormalizationFactor
125  << std::endl;
126  }
127 
128  return value;
129 }
130 
131 } // End namespace QUESO
132 
double lnValue(const V &domainVector, const V *domainDirection, V *gradVector, M *hessianMatrix, V *hessianEffect) const
TODO: Logarithm of the value of the Gamma PDF.
A templated class for handling sets.
Definition: VectorSet.h:49
std::ofstream * subDisplayFile() const
Access function for m_subDisplayFile (displays file on stream).
Definition: Environment.C:305
double computeLogOfNormalizationFactor(unsigned int numSamples, bool updateFactorInternally) const
Computes the logarithm of the normalization factor.
#define UQ_FATAL_TEST_MACRO(test, givenRank, where, what)
Definition: Defines.h:223
double actualValue(const V &domainVector, const V *domainDirection, V *gradVector, M *hessianMatrix, V *hessianEffect) const
Actual value of the Gamma PDF.
InverseGammaJointPdf(const char *prefix, const VectorSet< V, M > &domainSet, const V &alpha, const V &beta)
Constructor.
A templated (base) class for handling joint PDFs.
Definition: JointPdf.h:60
double commonComputeLogOfNormalizationFactor(unsigned int numSamples, bool updateFactorInternally) const
Common method (to the derived classes) to compute the logarithm of the normalization factor...
Definition: JointPdf.C:77
unsigned int displayVerbosity() const
Definition: Environment.C:436
const BaseEnvironment & m_env
A class for handling Inverse Gamma joint PDFs.

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