CAPD DynSys Library  5.2.0
NormalForms

Files

file  linearSubstitution.hpp
 
file  normalForms.h
 
file  planarMaps.hpp
 

Namespaces

 capd
 

Functions

template<class Scalar >
Scalar takePhiByTwo ()
 
template<>
double takePhiByTwo< double > ()
 
template<typename ScalarType >
std::complex< ScalarType > Power (std::complex< ScalarType > x, int n)
 
template<typename ScalarType >
std::complex< ScalarType > Sqr (std::complex< ScalarType > x)
 
template<typename ScalarType >
std::complex< ScalarType > pow3 (std::complex< ScalarType > x)
 
template<typename ScalarType >
std::complex< ScalarType > operator* (int a, const std::complex< ScalarType > &c)
 
template<typename ScalarType >
std::complex< ScalarType > operator/ (const std::complex< ScalarType > &c, int a)
 
template<typename ScalarType >
std::complex< ScalarType > operator+ (int a, const std::complex< ScalarType > &c)
 
template<typename ScalarType >
std::complex< ScalarType > operator- (int a, const std::complex< ScalarType > &c)
 

Detailed Description

Function Documentation

◆ operator*()

template<typename ScalarType >
std::complex<ScalarType> operator* ( int  a,
const std::complex< ScalarType > &  c 
)

◆ operator+()

template<typename ScalarType >
std::complex<ScalarType> operator+ ( int  a,
const std::complex< ScalarType > &  c 
)

◆ operator-()

template<typename ScalarType >
std::complex<ScalarType> operator- ( int  a,
const std::complex< ScalarType > &  c 
)

◆ operator/()

template<typename ScalarType >
std::complex<ScalarType> operator/ ( const std::complex< ScalarType > &  c,
int  a 
)

◆ pow3()

template<typename ScalarType >
std::complex<ScalarType> pow3 ( std::complex< ScalarType >  x)

◆ Power()

template<typename ScalarType >
std::complex<ScalarType> Power ( std::complex< ScalarType >  x,
int  n 
)

◆ Sqr()

template<typename ScalarType >
std::complex<ScalarType> Sqr ( std::complex< ScalarType >  x)

◆ takePhiByTwo()

template<class Scalar >
Scalar takePhiByTwo ( )
inline

◆ takePhiByTwo< double >()

template<>
double takePhiByTwo< double > ( )
inline