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Sacado_ELRFad_Expression.hpp
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3 //
4 // Sacado Package
5 // Copyright (2006) Sandia Corporation
6 //
7 // Under the terms of Contract DE-AC04-94AL85000 with Sandia Corporation,
8 // the U.S. Government retains certain rights in this software.
9 //
10 // This library is free software; you can redistribute it and/or modify
11 // it under the terms of the GNU Lesser General Public License as
12 // published by the Free Software Foundation; either version 2.1 of the
13 // License, or (at your option) any later version.
14 //
15 // This library is distributed in the hope that it will be useful, but
16 // WITHOUT ANY WARRANTY; without even the implied warranty of
17 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 // Lesser General Public License for more details.
19 //
20 // You should have received a copy of the GNU Lesser General Public
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24 // Questions? Contact David M. Gay (dmgay@sandia.gov) or Eric T. Phipps
25 // (etphipp@sandia.gov).
26 //
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28 //
29 // The forward-mode AD classes in Sacado are a derivative work of the
30 // expression template classes in the Fad package by Nicolas Di Cesare.
31 // The following banner is included in the original Fad source code:
32 //
33 // ************ DO NOT REMOVE THIS BANNER ****************
34 //
35 // Nicolas Di Cesare <Nicolas.Dicesare@ann.jussieu.fr>
36 // http://www.ann.jussieu.fr/~dicesare
37 //
38 // CEMRACS 98 : C++ courses,
39 // templates : new C++ techniques
40 // for scientific computing
41 //
42 //********************************************************
43 //
44 // A short implementation ( not all operators and
45 // functions are overloaded ) of 1st order Automatic
46 // Differentiation in forward mode (FAD) using
47 // EXPRESSION TEMPLATES.
48 //
49 //********************************************************
50 // @HEADER
51 
52 #ifndef SACADO_ELRFAD_EXPRESSION_HPP
53 #define SACADO_ELRFAD_EXPRESSION_HPP
54 
55 #include "Sacado_Traits.hpp"
56 
57 namespace Sacado {
58 
59  namespace ELRFad {
60 
62 
69  template <typename> struct BaseExpr {};
70 
72 
76  template <typename ExprT>
77  class Expr {};
78 
80 
85  template <typename T>
86  struct ExprLevel {
87  static const unsigned value = 0;
88  };
89 
90  template <typename T>
91  struct ExprLevel< Expr<T> > {
92  static const unsigned value =
94  };
95 
97  template <typename T>
98  struct IsFadExpr {
99  static const bool value = false;
100  };
101 
102  template <typename T>
103  struct IsFadExpr< Expr<T> > {
104  static const bool value = true;
105  };
106 
108 
111  template <typename ConstT>
112  class ConstExpr {
113 
114  public:
115 
117  typedef ConstT value_type;
118 
121 
123  typedef ConstT base_expr_type;
124 
126  static const int num_args = 0;
127 
130  ConstExpr(const ConstT& constant) : constant_(constant) {}
131 
134  int size() const { return 0; }
135 
138  bool updateValue() const { return true; }
139 
142  value_type val() const { return constant_; }
143 
147  value_type partials[]) const {}
148 
151  void getTangents(int i, value_type dots[]) const {}
152 
154  template <int Arg>
156  value_type getTangent(int i) const { return 0.0; }
157 
159  template <int Arg>
161  bool isActive() const { return false; }
162 
165  bool isLinear() const { return true; }
166 
167  protected:
168 
170  const ConstT& constant_;
171 
172  }; // class ConstExpr
173 
174  template <typename T> struct ExprConstRef {
175  typedef const T& type;
176  };
177  template <typename T> struct ExprConstRef< ConstExpr<T> > {
178  typedef const ConstExpr<T> type;
179  };
180 
181  } // namespace ELRFad
182 
183  template <typename T>
184  struct IsExpr< ELRFad::Expr<T> > {
185  static const bool value = true;
186  };
187 
188  template <typename T>
189  struct BaseExprType< ELRFad::Expr<T> > {
191  };
192 
193 } // namespace Sacado
194 
195 #include "Sacado_SFINAE_Macros.hpp"
196 
197 #endif // SACADO_ELRFAD_EXPRESSION_HPP
KOKKOS_INLINE_FUNCTION ConstExpr(const ConstT &constant)
Constructor.
KOKKOS_INLINE_FUNCTION int size() const
Return size of the derivative array of the operation.
const ConstT & constant_
The constant.
expr bar
KOKKOS_INLINE_FUNCTION bool isLinear() const
Return whether expression is linear.
static const bool value
ScalarType< value_type >::type scalar_type
Typename of scalar&#39;s (which may be different from ConstT)
KOKKOS_INLINE_FUNCTION bool isActive() const
Return whether argument is active.
ConstT base_expr_type
Typename of base-expressions.
Is a type an expression.
static const int num_args
Number of arguments.
#define KOKKOS_INLINE_FUNCTION
#define T
Definition: Sacado_rad.hpp:573
Get the base Fad type from a view/expression.
Determine whether a given type is an expression.
ConstT value_type
Typename of argument values.
Constant expression template.
Meta-function for determining nesting with an expression.
Wrapper for a generic expression template.
KOKKOS_INLINE_FUNCTION value_type getTangent(int i) const
Return tangent component i of argument Arg.
KOKKOS_INLINE_FUNCTION value_type val() const
Return value of operation.
Meta-function for determining concrete base expression.
KOKKOS_INLINE_FUNCTION void getTangents(int i, value_type dots[]) const
Rturn tangent component i of arguments.
KOKKOS_INLINE_FUNCTION bool updateValue() const
Return whether value should be updated.
KOKKOS_INLINE_FUNCTION void computePartials(const value_type &bar, value_type partials[]) const
Return partials w.r.t. arguments.