Expression Templates Library (ETL)
upsample_2d_expr.hpp
1 //=======================================================================
2 // Copyright (c) 2014-2023 Baptiste Wicht
3 // Distributed under the terms of the MIT License.
4 // (See accompanying file LICENSE or copy at
5 // http://opensource.org/licenses/MIT)
6 //=======================================================================
7 
8 #pragma once
9 
10 #include "etl/expr/base_temporary_expr.hpp"
11 
12 //Get the implementations
13 #include "etl/impl/std/upsample.hpp"
14 
15 namespace etl {
16 
21 template <etl_expr A, size_t C1, size_t C2, size_t S1, size_t S2, size_t P1, size_t P2>
22 struct upsample_2d_expr : base_temporary_expr_un<upsample_2d_expr<A, C1, C2, S1, S2, P1, P2>, A> {
27 
28  static constexpr auto storage_order = sub_traits::storage_order;
29 
34  static constexpr bool gpu_computable = false;
35 
40  explicit upsample_2d_expr(A a) : base_type(a) {
41  //Nothing else to init
42  }
43 
44  // Assignment functions
45 
50  template <same_dimensions<A> C>
51  void assign_to(C&& c) const {
52  inc_counter("temp:assign");
53 
54  auto& a = this->a();
55 
56  impl::standard::upsample_2d::template apply<C1, C2, S1, S2, P1, P2>(smart_forward(a), c);
57  }
58 
63  template <typename L>
64  void assign_add_to(L&& lhs) const {
65  std_add_evaluate(*this, lhs);
66  }
67 
72  template <typename L>
73  void assign_sub_to(L&& lhs) const {
74  std_sub_evaluate(*this, lhs);
75  }
76 
81  template <typename L>
82  void assign_mul_to(L&& lhs) const {
83  std_mul_evaluate(*this, lhs);
84  }
85 
90  template <typename L>
91  void assign_div_to(L&& lhs) const {
92  std_div_evaluate(*this, lhs);
93  }
94 
99  template <typename L>
100  void assign_mod_to(L&& lhs) const {
101  std_mod_evaluate(*this, lhs);
102  }
103 
110  friend std::ostream& operator<<(std::ostream& os, const upsample_2d_expr& expr) {
111  return os << "upsample2(" << expr._a << ")";
112  }
113 };
114 
119 template <typename A, size_t C1, size_t C2, size_t S1, size_t S2, size_t P1, size_t P2>
120 struct etl_traits<etl::upsample_2d_expr<A, C1, C2, S1, S2, P1, P2>> {
122  using sub_expr_t = std::decay_t<A>;
125 
126  static constexpr size_t D = sub_traits::dimensions();
127 
128  static constexpr bool is_etl = true;
129  static constexpr bool is_transformer = false;
130  static constexpr bool is_view = false;
131  static constexpr bool is_magic_view = false;
132  static constexpr bool is_fast = sub_traits::is_fast;
133  static constexpr bool is_linear = false;
134  static constexpr bool is_thread_safe = true;
135  static constexpr bool is_value = false;
136  static constexpr bool is_direct = true;
137  static constexpr bool is_generator = false;
138  static constexpr bool is_padded = false;
139  static constexpr bool is_aligned = true;
140  static constexpr bool is_temporary = true;
141  static constexpr order storage_order = sub_traits::storage_order;
142  static constexpr bool gpu_computable = is_gpu_t<value_type> && cuda_enabled;
143 
149  template <vector_mode_t V>
150  static constexpr bool vectorizable = true;
151 
156  template <size_t DD>
157  static constexpr size_t dim() {
158  return DD == D - 2 ? ((decay_traits<A>::template dim<DD>() - 1) * S1 + C1 - 2 * P1)
159  : DD == D - 1 ? ((decay_traits<A>::template dim<DD>() - 1) * S2 + C2 - 2 * P2) : decay_traits<A>::template dim<DD>();
160  }
161 
168  static size_t dim(const expr_t& e, size_t d) {
169  if (d == D - 2) {
170  return (etl::dim(e._a, d) - 1) * S1 + C1 - 2 * P1;
171  } else if (d == D - 1) {
172  return (etl::dim(e._a, d) - 1) * S2 + C2 - 2 * P2;
173  } else {
174  return etl::dim(e._a, d);
175  }
176  }
177 
183  static size_t size(const expr_t& e) {
184  size_t acc = 1;
185  for (size_t i = 0; i < D; ++i) {
186  acc *= dim(e, i);
187  }
188  return acc;
189  }
190 
195  template <size_t... I>
196  static constexpr size_t size_mul(const std::index_sequence<I...>& /*seq*/) {
197  return (dim<I>() * ...);
198  }
199 
204  static constexpr size_t size() {
205  return size_mul(std::make_index_sequence<D>());
206  }
207 
212  static constexpr size_t dimensions() {
213  return D;
214  }
215 
220  static constexpr int complexity() noexcept {
221  return -1;
222  }
223 };
224 
232 template <size_t C1, size_t C2, size_t S1 = C1, size_t S2 = C2, size_t P1 = 0, size_t P2 = 0, typename E>
233 upsample_2d_expr<detail::build_type<E>, C1, C2, S1, S2, P1, P2> upsample_2d(E&& value) {
234  return upsample_2d_expr<detail::build_type<E>, C1, C2, S1, S2, P1, P2>{value};
235 }
236 
237 } //end of namespace etl
void assign_mul_to(L &&lhs) const
Multiply the given left-hand-side expression.
Definition: upsample_2d_expr.hpp:82
std::add_lvalue_reference_t< A > a()
Returns the sub expression.
Definition: base_temporary_expr.hpp:489
void assign_mod_to(L &&lhs) const
Modulo the given left-hand-side expression.
Definition: upsample_2d_expr.hpp:100
static constexpr size_t dim()
Returns the DDth dimension of the expression.
Definition: upsample_2d_expr.hpp:157
constexpr bool is_magic_view
Traits indicating if the given ETL type is a magic view expression.
Definition: traits.hpp:311
D D
The number of dimensions.
Definition: dyn_matrix_view.hpp:24
static constexpr bool gpu_computable
Indicates if the temporary expression can be directly evaluated using only GPU.
Definition: upsample_2d_expr.hpp:34
void assign_sub_to(L &&lhs) const
Sub from the given left-hand-side expression.
Definition: upsample_2d_expr.hpp:73
static constexpr size_t dimensions()
Returns the number of dimensions of the expression.
Definition: upsample_2d_expr.hpp:212
order
Storage order of a matrix.
Definition: order.hpp:15
constexpr bool cuda_enabled
Indicates if CUDA is available.
Definition: config.hpp:94
static constexpr int complexity() noexcept
Estimate the complexity of computation.
Definition: upsample_2d_expr.hpp:220
static constexpr size_t size_mul(const std::index_sequence< I... > &)
Returns the multiplicative sum of the dimensions at the given indices.
Definition: upsample_2d_expr.hpp:196
A _a
The sub expression reference.
Definition: base_temporary_expr.hpp:447
std::decay_t< A > sub_expr_t
The sub expression type.
Definition: upsample_2d_expr.hpp:122
constexpr bool is_fast
Traits to test if the given ETL expresion type is fast (sizes known at compile-time) ...
Definition: traits.hpp:588
void assign_div_to(L &&lhs) const
Divide the given left-hand-side expression.
Definition: upsample_2d_expr.hpp:91
dyn_upsample_2d_expr< detail::build_type< E > > upsample_2d(E &&value, size_t c1, size_t c2)
Upsample the given 2D matrix expression.
Definition: dyn_upsample_2d_expr.hpp:215
Traits to get information about ETL types.
Definition: tmp.hpp:68
Root namespace for the ETL library.
Definition: adapter.hpp:15
static constexpr size_t dimensions()
Return the number of dimensions of the expression.
Definition: traits_base.hpp:31
auto dim(E &&value, size_t i) -> detail::identity_helper< E, dim_view< detail::build_identity_type< E >, D >>
Return a view representing the ith Dth dimension.
Definition: view_expression_builder.hpp:25
upsample_2d_expr(A a)
Construct a new expression.
Definition: upsample_2d_expr.hpp:40
An upsample expression.
Definition: upsample_2d_expr.hpp:22
static size_t size(const expr_t &e)
Returns the size of the expression.
Definition: upsample_2d_expr.hpp:183
void std_mod_evaluate(Expr &&expr, Result &&result)
Compound modulo evaluation of the expr into result.
Definition: evaluator.hpp:1271
void std_mul_evaluate(Expr &&expr, Result &&result)
Compound multiply evaluation of the expr into result.
Definition: evaluator.hpp:1233
constexpr bool is_transformer
Traits indicating if the given ETL type is a transformer expression.
Definition: traits.hpp:297
static size_t dim(const expr_t &e, size_t d)
Returns the dth dimension of the expression.
Definition: upsample_2d_expr.hpp:168
constexpr bool is_view
Traits indicating if the given ETL type is a view expression.
Definition: traits.hpp:304
friend std::ostream & operator<<(std::ostream &os, const upsample_2d_expr &expr)
Print a representation of the expression on the given stream.
Definition: upsample_2d_expr.hpp:110
static constexpr size_t size()
Returns the size of the expression.
Definition: upsample_2d_expr.hpp:204
static constexpr bool is_fast
Indicates if T is a fast structure.
Definition: traits_base.hpp:25
static constexpr auto storage_order
The sub storage order.
Definition: upsample_2d_expr.hpp:28
value_t< A > value_type
The type of value of the expression.
Definition: upsample_2d_expr.hpp:23
value_t< A > value_type
The value type of the expression.
Definition: upsample_2d_expr.hpp:124
void std_sub_evaluate(Expr &&expr, Result &&result)
Compound subtract evaluation of the expr into result.
Definition: evaluator.hpp:1214
decltype(auto) smart_forward(E &expr)
Smart forwarding for a temporary expression.
Definition: helpers.hpp:323
Abstract base class for temporary unary expression.
Definition: base_temporary_expr.hpp:443
void assign_add_to(L &&lhs) const
Add to the given left-hand-side expression.
Definition: upsample_2d_expr.hpp:64
constexpr bool is_thread_safe
Traits to test if the given ETL expresion type is thread safe.
Definition: traits.hpp:687
typename decay_traits< E >::value_type value_t
Traits to extract the value type out of an ETL type.
Definition: tmp.hpp:81
void std_div_evaluate(Expr &&expr, Result &&result)
Compound divide evaluation of the expr into result.
Definition: evaluator.hpp:1252
void inc_counter([[maybe_unused]] const char *name)
Increase the given counter.
Definition: counters.hpp:25
void assign_to(C &&c) const
Assign to a matrix of the same storage order.
Definition: upsample_2d_expr.hpp:51
void std_add_evaluate(Expr &&expr, Result &&result)
Compound add evaluation of the expr into result.
Definition: evaluator.hpp:1195