v0.14.0
src
ftensor
src
FTensor
Tensor2_symmetric
Tensor2_symmetric_mod_Tensor2_symmetric.hpp
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/* Divides a Tensor2_symmetric by a Tensor2_symmetric together but
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don't contract, yielding a Tensor2_symmetric. */
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#pragma once
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namespace
FTensor
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{
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/* Base Template */
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template
<
class
A
,
class
B,
class
T,
class
U
,
int
Dim_0,
int
Dim_1,
char
i0,
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char
j0,
char
i1,
char
j1>
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class
Tensor2_symmetric_mod_Tensor2_symmetric
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{};
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/* A(i,j) % B(i,j) -> Tensor2_symmetric */
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template
<
class
A,
class
B,
class
T,
class
U,
int
Dim,
char
i,
char
j>
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class
Tensor2_symmetric_mod_Tensor2_symmetric
<
A
, B, T,
U
, Dim, Dim,
i
,
j
,
i
,
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j
>
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{
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Tensor2_symmetric_Expr<A, T, Dim, i, j>
iterA
;
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Tensor2_symmetric_Expr<B, U, Dim, i, j>
iterB
;
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public
:
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typename
promote<T, U>::V
operator()
(
const
int
N1,
const
int
N2)
const
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{
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return
iterA(N1, N2) / iterB(N1, N2);
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}
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Tensor2_symmetric_mod_Tensor2_symmetric
(
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const
Tensor2_symmetric_Expr<A, T, Dim, i, j>
&
a
,
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const
Tensor2_symmetric_Expr<B, U, Dim, i, j>
&b)
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: iterA(
a
), iterB(b)
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{}
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};
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/* A(i,j) % B(j,i) -> Tensor2_symmetric */
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template
<
class
A,
class
B,
class
T,
class
U,
int
Dim,
char
i,
char
j>
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class
Tensor2_symmetric_mod_Tensor2_symmetric
<
A
, B, T,
U
, Dim, Dim,
i
,
j
,
j
,
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i
>
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{
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Tensor2_symmetric_Expr<A, T, Dim, i, j>
iterA
;
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Tensor2_symmetric_Expr<B, U, Dim, j, i>
iterB
;
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public
:
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typename
promote<T, U>::V
operator()
(
const
int
N1,
const
int
N2)
const
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{
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return
iterA(N1, N2) / iterB(N2, N1);
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}
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Tensor2_symmetric_mod_Tensor2_symmetric
(
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const
Tensor2_symmetric_Expr<A, T, Dim, i, j>
&
a
,
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const
Tensor2_symmetric_Expr<B, U, Dim, j, i>
&b)
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: iterA(
a
), iterB(b)
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{}
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};
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template
<
class
A
,
class
B,
class
T,
class
U
,
int
Dim_0,
int
Dim_1,
char
i0,
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char
j0,
char
i1,
char
j1>
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Tensor2_symmetric_Expr<Tensor2_symmetric_mod_Tensor2_symmetric<
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A
, B, T,
U
, Dim_0, Dim_1, i0, j0, i1, j1>,
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typename
promote<T, U>::V
, Dim_0, i0, j0>
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operator%
(
const
Tensor2_symmetric_Expr<A, T, Dim_0, i0, j0>
&
a
,
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const
Tensor2_symmetric_Expr<B, U, Dim_1, i1, j1>
&b)
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{
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using
TensorExpr
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=
Tensor2_symmetric_mod_Tensor2_symmetric
<
A
, B, T,
U
, Dim_0, Dim_1, i0,
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j0, i1, j1>;
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static_assert(!std::is_empty<TensorExpr>::value,
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"Index or Dimensions are not compatible with % operator"
);
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return
Tensor2_symmetric_Expr<TensorExpr, typename promote<T, U>::V
, Dim_0,
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i0, j0>(TensorExpr(
a
, b));
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}
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}
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:11
FTensor
JSON compatible output.
Definition:
Christof_constructor.hpp:6
FTensor::operator%
Riemann_Expr< Ddg_mod_Ddg< A, B, T, U, Dim, i, j, k, l >, typename promote< T, U >::V, Dim, i, j, k, l > operator%(const Ddg_Expr< A, T, Dim, Dim, i, j, k, l > &a, const Ddg_Expr< B, U, Dim, Dim, i, l, k, j > &b)
Definition:
Ddg_mod_Ddg.hpp:33
FTensor::Tensor2_symmetric_Expr
Definition:
Tensor2_symmetric_Expr.hpp:36
A
constexpr AssemblyType A
Definition:
operators_tests.cpp:30
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric< A, B, T, U, Dim, Dim, i, j, i, j >::Tensor2_symmetric_mod_Tensor2_symmetric
Tensor2_symmetric_mod_Tensor2_symmetric(const Tensor2_symmetric_Expr< A, T, Dim, i, j > &a, const Tensor2_symmetric_Expr< B, U, Dim, i, j > &b)
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:29
a
constexpr double a
Definition:
approx_sphere.cpp:30
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric< A, B, T, U, Dim, Dim, i, j, i, j >::iterA
Tensor2_symmetric_Expr< A, T, Dim, i, j > iterA
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:20
FTensor::promote::V
T1 V
Definition:
promote.hpp:17
i
FTensor::Index< 'i', SPACE_DIM > i
Definition:
hcurl_divergence_operator_2d.cpp:27
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric< A, B, T, U, Dim, Dim, i, j, j, i >::iterB
Tensor2_symmetric_Expr< B, U, Dim, j, i > iterB
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:43
j
FTensor::Index< 'j', 3 > j
Definition:
matrix_function.cpp:19
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric< A, B, T, U, Dim, Dim, i, j, j, i >::operator()
promote< T, U >::V operator()(const int N1, const int N2) const
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:46
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric< A, B, T, U, Dim, Dim, i, j, j, i >::Tensor2_symmetric_mod_Tensor2_symmetric
Tensor2_symmetric_mod_Tensor2_symmetric(const Tensor2_symmetric_Expr< A, T, Dim, i, j > &a, const Tensor2_symmetric_Expr< B, U, Dim, j, i > &b)
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:51
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric< A, B, T, U, Dim, Dim, i, j, i, j >::operator()
promote< T, U >::V operator()(const int N1, const int N2) const
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:24
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric< A, B, T, U, Dim, Dim, i, j, i, j >::iterB
Tensor2_symmetric_Expr< B, U, Dim, i, j > iterB
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:21
EshelbianPlasticity::U
@ U
Definition:
EshelbianContact.cpp:197
FTensor::Tensor2_symmetric_mod_Tensor2_symmetric< A, B, T, U, Dim, Dim, i, j, j, i >::iterA
Tensor2_symmetric_Expr< A, T, Dim, i, j > iterA
Definition:
Tensor2_symmetric_mod_Tensor2_symmetric.hpp:42
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