25 #include <queso/GammaJointPdf.h> 
   26 #include <queso/GslVector.h> 
   27 #include <queso/GslMatrix.h> 
   32 template<
class V,
class M>
 
   39   BaseJointPdf<V,M>(((std::string)(prefix)+
"uni").c_str(),domainSet),
 
   56 template<
class V,
class M>
 
   61 template<
class V, 
class M>
 
   64   const V& domainVector,
 
   65   const V* domainDirection,
 
   68         V* hessianEffect)
 const 
   72   queso_require_msg(!(domainDirection || gradVector || hessianMatrix || hessianEffect), 
"incomplete code for gradVector, hessianMatrix and hessianEffect calculations");
 
   75   return exp(this->lnValue(domainVector,domainDirection,gradVector,hessianMatrix,hessianEffect));
 
   78 template<
class V, 
class M>
 
   81   const V& domainVector,
 
   82   const V* domainDirection,
 
   85         V* hessianEffect)
 const 
   87   queso_require_msg(!(domainDirection || gradVector || hessianMatrix || hessianEffect), 
"incomplete code for gradVector, hessianMatrix and hessianEffect calculations");
 
   91   for (
unsigned int i = 0; i < domainVector.sizeLocal(); ++i) {
 
   92     if (m_normalizationStyle == 0) {
 
   94       aux = log(m_env.basicPdfs()->gammaPdfActualValue(domainVector[i],m_a[i],m_b[i]));
 
   97       aux = (m_a[i]-1.)*log(domainVector[i]) - domainVector[i]/m_b[i];
 
   99     if ((m_env.subDisplayFile()) && (m_env.displayVerbosity() >= 99)) {
 
  100       *m_env.subDisplayFile() << 
"In GammaJointPdf<V,M>::lnValue()" 
  101                               << 
", m_normalizationStyle = "      << m_normalizationStyle
 
  102                               << 
": domainVector[" << i << 
"] = " << domainVector[i]
 
  103                               << 
", m_a[" << i << 
"] = "          << m_a[i]
 
  104                               << 
", m_b[" << i << 
"] = "          << m_b[i]
 
  105                               << 
", log(pdf)= "                   << aux
 
  110   result += m_logOfNormalizationFactor; 
 
  115 template<
class V, 
class M>
 
  121   if ((m_env.subDisplayFile()) && (m_env.displayVerbosity() >= 2)) {
 
  122     *m_env.subDisplayFile() << 
"Entering GammaJointPdf<V,M>::computeLogOfNormalizationFactor()" 
  126   if ((m_env.subDisplayFile()) && (m_env.displayVerbosity() >= 2)) {
 
  127     *m_env.subDisplayFile() << 
"Leaving GammaJointPdf<V,M>::computeLogOfNormalizationFactor()" 
  128                             << 
", m_logOfNormalizationFactor = " << m_logOfNormalizationFactor
 
unsigned int displayVerbosity() const 
 
~GammaJointPdf()
Destructor. 
 
GammaJointPdf(const char *prefix, const VectorSet< V, M > &domainSet, const V &a, const V &b)
Constructor. 
 
A templated class for handling sets. 
 
A class for handling Gamma joint PDFs. 
 
A templated (base) class for handling joint PDFs. 
 
double commonComputeLogOfNormalizationFactor(unsigned int numSamples, bool updateFactorInternally) const 
Common method (to the derived classes) to compute the logarithm of the normalization factor...
 
#define queso_require_msg(asserted, msg)
 
#define queso_require_equal_to_msg(expr1, expr2, msg)
 
const BaseEnvironment & m_env
 
std::ofstream * subDisplayFile() const 
Access function for m_subDisplayFile (displays file on stream). 
 
double computeLogOfNormalizationFactor(unsigned int numSamples, bool updateFactorInternally) const 
Computes the logarithm of the normalization factor. 
 
double lnValue(const V &domainVector, const V *domainDirection, V *gradVector, M *hessianMatrix, V *hessianEffect) const 
Logarithm of the value of the Gamma PDF. 
 
double actualValue(const V &domainVector, const V *domainDirection, V *gradVector, M *hessianMatrix, V *hessianEffect) const 
Actual value of the Gamma PDF.