v0.14.0
Public Member Functions | Private Member Functions | Private Attributes | List of all members
FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k > Class Template Reference

#include <src/ftensor/src/FTensor/Tensor3/Tensor3_times_Tensor1.hpp>

Collaboration diagram for FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k >:
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Public Member Functions

 Tensor3_times_Tensor1_1 (const Tensor3_Expr< A, T, Dim0, Dim1, Dim2, i, j, k > &a, const Tensor1_Expr< B, U, Dim1, j > &b)
 
promote< T, U >::V operator() (const int N1, const int N2) const
 

Private Member Functions

template<int Current_Dim>
promote< T, U >::V eval (const int N1, const int N2, const Number< Current_Dim > &) const
 
promote< T, U >::V eval (const int N1, const int N2, const Number< 1 > &) const
 

Private Attributes

Tensor3_Expr< A, T, Dim0, Dim1, Dim2, i, j, kiterA
 
Tensor1_Expr< B, U, Dim1, jiterB
 

Detailed Description

template<class A, class B, class T, class U, int Dim0, int Dim1, int Dim2, char i, char j, char k>
class FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k >

Definition at line 11 of file Tensor3_times_Tensor1.hpp.

Constructor & Destructor Documentation

◆ Tensor3_times_Tensor1_1()

template<class A , class B , class T , class U , int Dim0, int Dim1, int Dim2, char i, char j, char k>
FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k >::Tensor3_times_Tensor1_1 ( const Tensor3_Expr< A, T, Dim0, Dim1, Dim2, i, j, k > &  a,
const Tensor1_Expr< B, U, Dim1, j > &  b 
)
inline

Definition at line 30 of file Tensor3_times_Tensor1.hpp.

33  : iterA(a), iterB(b)
34  {}

Member Function Documentation

◆ eval() [1/2]

template<class A , class B , class T , class U , int Dim0, int Dim1, int Dim2, char i, char j, char k>
promote<T, U>::V FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k >::eval ( const int  N1,
const int  N2,
const Number< 1 > &   
) const
inlineprivate

Definition at line 24 of file Tensor3_times_Tensor1.hpp.

25  {
26  return iterA(N1, 0, N2) * iterB(0);
27  }

◆ eval() [2/2]

template<class A , class B , class T , class U , int Dim0, int Dim1, int Dim2, char i, char j, char k>
template<int Current_Dim>
promote<T, U>::V FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k >::eval ( const int  N1,
const int  N2,
const Number< Current_Dim > &   
) const
inlineprivate

Definition at line 18 of file Tensor3_times_Tensor1.hpp.

19  {
20  return iterA(N1, Current_Dim - 1, N2) * iterB(Current_Dim - 1)
21  + eval(N1, N2, Number<Current_Dim - 1>());
22  }

◆ operator()()

template<class A , class B , class T , class U , int Dim0, int Dim1, int Dim2, char i, char j, char k>
promote<T, U>::V FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k >::operator() ( const int  N1,
const int  N2 
) const
inline

Definition at line 35 of file Tensor3_times_Tensor1.hpp.

36  {
37  return eval(N1, N2, Number<Dim1>());
38  }

Member Data Documentation

◆ iterA

template<class A , class B , class T , class U , int Dim0, int Dim1, int Dim2, char i, char j, char k>
Tensor3_Expr<A, T, Dim0, Dim1, Dim2, i, j, k> FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k >::iterA
private

Definition at line 13 of file Tensor3_times_Tensor1.hpp.

◆ iterB

template<class A , class B , class T , class U , int Dim0, int Dim1, int Dim2, char i, char j, char k>
Tensor1_Expr<B, U, Dim1, j> FTensor::Tensor3_times_Tensor1_1< A, B, T, U, Dim0, Dim1, Dim2, i, j, k >::iterB
private

Definition at line 14 of file Tensor3_times_Tensor1.hpp.


The documentation for this class was generated from the following file:
a
constexpr double a
Definition: approx_sphere.cpp:30
FTensor::Tensor3_times_Tensor1_1::iterA
Tensor3_Expr< A, T, Dim0, Dim1, Dim2, i, j, k > iterA
Definition: Tensor3_times_Tensor1.hpp:13
FTensor::Tensor3_times_Tensor1_1::iterB
Tensor1_Expr< B, U, Dim1, j > iterB
Definition: Tensor3_times_Tensor1.hpp:14
FTensor::Tensor3_times_Tensor1_1::eval
promote< T, U >::V eval(const int N1, const int N2, const Number< Current_Dim > &) const
Definition: Tensor3_times_Tensor1.hpp:18