10 #ifndef EIGEN_CXX11_TENSORSYMMETRY_STATICSYMMETRY_H
11 #define EIGEN_CXX11_TENSORSYMMETRY_STATICSYMMETRY_H
22 constexpr
static std::size_t
N =
sizeof...(nn);
25 constexpr
static inline std::array<T, N>
run(
const std::array<T, N>& indices)
27 return {{indices[nn]...}};
31 template<
typename indices_,
int flags_>
35 constexpr
static int flags = flags_;
38 template<
typename Gen,
int N>
42 typename gen_numeric_list_swapped_pair<int, N, Gen::One, Gen::Two>::type,
51 typename gen_numeric_list<int, N>::type,
56 template<
typename iib>
60 constexpr
static inline numeric_list<int, get<iia, iib>::value...>
helper(numeric_list<int, iia...>) {
61 return numeric_list<int, get<iia, iib>::value...>();
65 template<
typename A,
typename B>
69 typedef typename A::indices
iia;
70 typedef typename B::indices
iib;
71 constexpr
static int ffa = A::flags;
72 constexpr
static int ffb = B::flags;
75 static_assert(iia::count == iib::count,
"Cannot multiply symmetry elements with different number of indices.");
83 template<
typename A,
typename B>
86 typedef typename A::indices
iia;
87 typedef typename B::indices
iib;
88 constexpr
static int ffa = A::flags;
89 constexpr
static int ffb = B::flags;
90 static_assert(iia::count == iib::count,
"Cannot compare symmetry elements with different number of indices.");
114 template<std::size_t NumIndices,
typename... Gen>
121 template<
typename Index, std::size_t
N,
int... ii,
int... jj>
124 return {{ idx[ii]..., idx[jj]... }};
127 template<
typename Index,
int... ii>
130 std::vector<Index> result{{ idx[ii]... }};
131 std::size_t target_size = idx.size();
132 for (std::size_t i = result.size(); i < target_size; i++)
133 result.push_back(idx[i]);
139 template<
typename first,
typename... next>
142 template<
typename Op,
typename RV, std::size_t SGNumIndices,
typename Index, std::size_t NumIndices,
typename... Args>
143 static inline RV
run(
const std::array<Index, NumIndices>& idx, RV initial, Args&&... args)
145 static_assert(NumIndices >= SGNumIndices,
"Can only apply symmetry group to objects that have at least the required amount of indices.");
146 typedef typename internal::gen_numeric_list<
int, NumIndices - SGNumIndices, SGNumIndices>::type remaining_indices;
151 template<
typename Op,
typename RV, std::size_t SGNumIndices,
typename Index,
typename... Args>
152 static inline RV
run(
const std::vector<Index>& idx, RV initial, Args&&... args)
154 eigen_assert(idx.size() >= SGNumIndices &&
"Can only apply symmetry group to objects that have at least the required amount of indices.");
160 template<EIGEN_TPL_PP_SPEC_HACK_DEF(
typename, empty)>
163 template<
typename Op,
typename RV, std::size_t SGNumIndices,
typename Index, std::size_t NumIndices,
typename... Args>
164 static inline RV
run(
const std::array<Index, NumIndices>&, RV initial, Args&&...)
170 template<
typename Op,
typename RV, std::size_t SGNumIndices,
typename Index,
typename... Args>
171 static inline RV
run(
const std::vector<Index>&, RV initial, Args&&...)
180 template<
typename... Gen>
196 template<
typename Op,
typename RV,
typename Index, std::size_t
N,
typename... Args>
197 static inline RV
apply(
const std::array<Index, N>& idx, RV initial, Args&&... args)
202 template<
typename Op,
typename RV,
typename Index,
typename... Args>
203 static inline RV
apply(
const std::vector<Index>& idx, RV initial, Args&&... args)
211 constexpr
static inline std::size_t
size() {
216 template<
typename Tensor_,
typename... IndexTypes>
219 static_assert(
sizeof...(otherIndices) + 1 == Tensor_::NumIndices,
"Number of indices used to access a tensor coefficient must be equal to the rank of the tensor.");
220 return operator()(tensor, std::array<typename Tensor_::Index, Tensor_::NumIndices>{{firstIndex, otherIndices...}});
223 template<
typename Tensor_>
232 #endif // EIGEN_CXX11_TENSORSYMMETRY_STATICSYMMETRY_H