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Eigen-unsupported  5.0.1-dev
SpecialFunctionsFunctors.h
1 // This file is part of Eigen, a lightweight C++ template library
2 // for linear algebra.
3 //
4 // Copyright (C) 2016 Eugene Brevdo <ebrevdo@gmail.com>
5 // Copyright (C) 2016 Gael Guennebaud <gael.guennebaud@inria.fr>
6 //
7 // This Source Code Form is subject to the terms of the Mozilla
8 // Public License v. 2.0. If a copy of the MPL was not distributed
9 // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
10 
11 #ifndef EIGEN_SPECIALFUNCTIONS_FUNCTORS_H
12 #define EIGEN_SPECIALFUNCTIONS_FUNCTORS_H
13 
14 // IWYU pragma: private
15 #include "./InternalHeaderCheck.h"
16 
17 namespace Eigen {
18 
19 namespace internal {
20 
26 template <typename Scalar>
27 struct scalar_igamma_op : binary_op_base<Scalar, Scalar> {
28  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& a, const Scalar& x) const {
29  using numext::igamma;
30  return igamma(a, x);
31  }
32  template <typename Packet>
33  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet& a, const Packet& x) const {
34  return internal::pigamma(a, x);
35  }
36 };
37 template <typename Scalar>
38 struct functor_traits<scalar_igamma_op<Scalar> > {
39  enum {
40  // Guesstimate
41  Cost = 20 * NumTraits<Scalar>::MulCost + 10 * NumTraits<Scalar>::AddCost,
42  PacketAccess = packet_traits<Scalar>::HasIGamma
43  };
44 };
45 
52 template <typename Scalar>
53 struct scalar_igamma_der_a_op {
54  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& a, const Scalar& x) const {
55  using numext::igamma_der_a;
56  return igamma_der_a(a, x);
57  }
58  template <typename Packet>
59  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet& a, const Packet& x) const {
60  return internal::pigamma_der_a(a, x);
61  }
62 };
63 template <typename Scalar>
64 struct functor_traits<scalar_igamma_der_a_op<Scalar> > {
65  enum {
66  // 2x the cost of igamma
67  Cost = 40 * NumTraits<Scalar>::MulCost + 20 * NumTraits<Scalar>::AddCost,
68  PacketAccess = packet_traits<Scalar>::HasIGammaDerA
69  };
70 };
71 
79 template <typename Scalar>
80 struct scalar_gamma_sample_der_alpha_op {
81  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& alpha, const Scalar& sample) const {
82  using numext::gamma_sample_der_alpha;
83  return gamma_sample_der_alpha(alpha, sample);
84  }
85  template <typename Packet>
86  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet& alpha, const Packet& sample) const {
87  return internal::pgamma_sample_der_alpha(alpha, sample);
88  }
89 };
90 template <typename Scalar>
91 struct functor_traits<scalar_gamma_sample_der_alpha_op<Scalar> > {
92  enum {
93  // 2x the cost of igamma, minus the lgamma cost (the lgamma cancels out)
94  Cost = 30 * NumTraits<Scalar>::MulCost + 15 * NumTraits<Scalar>::AddCost,
95  PacketAccess = packet_traits<Scalar>::HasGammaSampleDerAlpha
96  };
97 };
98 
104 template <typename Scalar>
105 struct scalar_igammac_op : binary_op_base<Scalar, Scalar> {
106  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& a, const Scalar& x) const {
107  using numext::igammac;
108  return igammac(a, x);
109  }
110  template <typename Packet>
111  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet& a, const Packet& x) const {
112  return internal::pigammac(a, x);
113  }
114 };
115 template <typename Scalar>
116 struct functor_traits<scalar_igammac_op<Scalar> > {
117  enum {
118  // Guesstimate
119  Cost = 20 * NumTraits<Scalar>::MulCost + 10 * NumTraits<Scalar>::AddCost,
120  PacketAccess = packet_traits<Scalar>::HasIGammac
121  };
122 };
123 
128 template <typename Scalar>
129 struct scalar_betainc_op {
130  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& x, const Scalar& a,
131  const Scalar& b) const {
132  using numext::betainc;
133  return betainc(x, a, b);
134  }
135  template <typename Packet>
136  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Packet packetOp(const Packet& x, const Packet& a, const Packet& b) const {
137  return internal::pbetainc(x, a, b);
138  }
139 };
140 template <typename Scalar>
141 struct functor_traits<scalar_betainc_op<Scalar> > {
142  enum {
143  // Guesstimate
144  Cost = 400 * NumTraits<Scalar>::MulCost + 400 * NumTraits<Scalar>::AddCost,
145  PacketAccess = packet_traits<Scalar>::HasBetaInc
146  };
147 };
148 
154 template <typename Scalar>
155 struct scalar_lgamma_op {
156  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& a) const {
157  using numext::lgamma;
158  return lgamma(a);
159  }
160  typedef typename packet_traits<Scalar>::type Packet;
161  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet& a) const { return internal::plgamma(a); }
162 };
163 template <typename Scalar>
164 struct functor_traits<scalar_lgamma_op<Scalar> > {
165  enum {
166  // Guesstimate
167  Cost = 10 * NumTraits<Scalar>::MulCost + 5 * NumTraits<Scalar>::AddCost,
168  PacketAccess = packet_traits<Scalar>::HasLGamma
169  };
170 };
171 
176 template <typename Scalar>
177 struct scalar_digamma_op {
178  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& a) const {
179  using numext::digamma;
180  return digamma(a);
181  }
182  typedef typename packet_traits<Scalar>::type Packet;
183  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet& a) const { return internal::pdigamma(a); }
184 };
185 template <typename Scalar>
186 struct functor_traits<scalar_digamma_op<Scalar> > {
187  enum {
188  // Guesstimate
189  Cost = 10 * NumTraits<Scalar>::MulCost + 5 * NumTraits<Scalar>::AddCost,
190  PacketAccess = packet_traits<Scalar>::HasDiGamma
191  };
192 };
193 
198 template <typename Scalar>
199 struct scalar_zeta_op {
200  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& x, const Scalar& q) const {
201  using numext::zeta;
202  return zeta(x, q);
203  }
204  typedef typename packet_traits<Scalar>::type Packet;
205  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet& x, const Packet& q) const {
206  return internal::pzeta(x, q);
207  }
208 };
209 template <typename Scalar>
210 struct functor_traits<scalar_zeta_op<Scalar> > {
211  enum {
212  // Guesstimate
213  Cost = 10 * NumTraits<Scalar>::MulCost + 5 * NumTraits<Scalar>::AddCost,
214  PacketAccess = packet_traits<Scalar>::HasZeta
215  };
216 };
217 
222 template <typename Scalar>
223 struct scalar_polygamma_op {
224  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& n, const Scalar& x) const {
225  using numext::polygamma;
226  return polygamma(n, x);
227  }
228  typedef typename packet_traits<Scalar>::type Packet;
229  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet& n, const Packet& x) const {
230  return internal::ppolygamma(n, x);
231  }
232 };
233 template <typename Scalar>
234 struct functor_traits<scalar_polygamma_op<Scalar> > {
235  enum {
236  // Guesstimate
237  Cost = 10 * NumTraits<Scalar>::MulCost + 5 * NumTraits<Scalar>::AddCost,
238  PacketAccess = packet_traits<Scalar>::HasPolygamma
239  };
240 };
241 
246 template <typename Scalar>
247 struct scalar_erf_op {
248  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& a) const { return numext::erf(a); }
249  template <typename Packet>
250  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet& x) const {
251  return perf(x);
252  }
253 };
254 template <typename Scalar>
255 struct functor_traits<scalar_erf_op<Scalar> > {
256  enum {
257  PacketAccess = packet_traits<Scalar>::HasErf,
258  Cost = (PacketAccess
259 #ifdef EIGEN_VECTORIZE_FMA
260  // TODO(rmlarsen): Move the FMA cost model to a central location.
261  // Haswell can issue 2 add/mul/madd per cycle.
262  // 10 pmadd, 2 pmul, 1 div, 2 other
263  ? (2 * NumTraits<Scalar>::AddCost + 7 * NumTraits<Scalar>::MulCost +
264  scalar_div_cost<Scalar, packet_traits<Scalar>::HasDiv>::value)
265 #else
266  ? (12 * NumTraits<Scalar>::AddCost + 12 * NumTraits<Scalar>::MulCost +
267  scalar_div_cost<Scalar, packet_traits<Scalar>::HasDiv>::value)
268 #endif
269  // Assume for simplicity that this is as expensive as an exp().
270  : (functor_traits<scalar_exp_op<Scalar> >::Cost))
271  };
272 };
273 
279 template <typename Scalar>
280 struct scalar_erfc_op {
281  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& a) const {
282  using numext::erfc;
283  return erfc(a);
284  }
285  typedef typename packet_traits<Scalar>::type Packet;
286  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet& a) const { return internal::perfc(a); }
287 };
288 template <typename Scalar>
289 struct functor_traits<scalar_erfc_op<Scalar> > {
290  enum {
291  // Guesstimate
292  Cost = 10 * NumTraits<Scalar>::MulCost + 5 * NumTraits<Scalar>::AddCost,
293  PacketAccess = packet_traits<Scalar>::HasErfc
294  };
295 };
296 
302 template <typename Scalar>
303 struct scalar_ndtri_op {
304  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Scalar operator()(const Scalar& a) const {
305  using numext::ndtri;
306  return ndtri(a);
307  }
308  typedef typename packet_traits<Scalar>::type Packet;
309  EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Packet packetOp(const Packet& a) const { return internal::pndtri(a); }
310 };
311 template <typename Scalar>
312 struct functor_traits<scalar_ndtri_op<Scalar> > {
313  enum {
314  // On average, We are evaluating rational functions with degree N=9 in the
315  // numerator and denominator. This results in 2*N additions and 2*N
316  // multiplications.
317  Cost = 18 * NumTraits<Scalar>::MulCost + 18 * NumTraits<Scalar>::AddCost,
318  PacketAccess = packet_traits<Scalar>::HasNdtri
319  };
320 };
321 
322 } // end namespace internal
323 
324 } // end namespace Eigen
325 
326 #endif // EIGEN_SPECIALFUNCTIONS_FUNCTORS_H
const Eigen::CwiseBinaryOp< Eigen::internal::scalar_igamma_der_a_op< typename Derived::Scalar >, const Derived, const ExponentDerived > igamma_der_a(const Eigen::ArrayBase< Derived > &a, const Eigen::ArrayBase< ExponentDerived > &x)
Definition: SpecialFunctionsArrayAPI.h:52
Namespace containing all symbols from the Eigen library.
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_ndtri_op< typename Derived::Scalar >, const Derived > ndtri(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_lgamma_op< typename Derived::Scalar >, const Derived > lgamma(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseBinaryOp< Eigen::internal::scalar_igammac_op< typename Derived::Scalar >, const Derived, const ExponentDerived > igammac(const Eigen::ArrayBase< Derived > &a, const Eigen::ArrayBase< ExponentDerived > &x)
Definition: SpecialFunctionsArrayAPI.h:93
const Eigen::CwiseBinaryOp< Eigen::internal::scalar_igamma_op< typename Derived::Scalar >, const Derived, const ExponentDerived > igamma(const Eigen::ArrayBase< Derived > &a, const Eigen::ArrayBase< ExponentDerived > &x)
Definition: SpecialFunctionsArrayAPI.h:31
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_erfc_op< typename Derived::Scalar >, const Derived > erfc(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseBinaryOp< Eigen::internal::scalar_gamma_sample_der_alpha_op< typename AlphaDerived::Scalar >, const AlphaDerived, const SampleDerived > gamma_sample_der_alpha(const Eigen::ArrayBase< AlphaDerived > &alpha, const Eigen::ArrayBase< SampleDerived > &sample)
Definition: SpecialFunctionsArrayAPI.h:75
const TensorCwiseTernaryOp< internal::scalar_betainc_op< typename XDerived::Scalar >, const ADerived, const BDerived, const XDerived > betainc(const Eigen::TensorBase< ADerived, ReadOnlyAccessors > &a, const Eigen::TensorBase< BDerived, ReadOnlyAccessors > &b, const Eigen::TensorBase< XDerived, ReadOnlyAccessors > &x)
Definition: TensorGlobalFunctions.h:26
const Eigen::CwiseUnaryOp< Eigen::internal::scalar_digamma_op< typename Derived::Scalar >, const Derived > digamma(const Eigen::ArrayBase< Derived > &x)
const Eigen::CwiseBinaryOp< Eigen::internal::scalar_zeta_op< typename DerivedX::Scalar >, const DerivedX, const DerivedQ > zeta(const Eigen::ArrayBase< DerivedX > &x, const Eigen::ArrayBase< DerivedQ > &q)
Definition: SpecialFunctionsArrayAPI.h:152
const Eigen::CwiseBinaryOp< Eigen::internal::scalar_polygamma_op< typename DerivedX::Scalar >, const DerivedN, const DerivedX > polygamma(const Eigen::ArrayBase< DerivedN > &n, const Eigen::ArrayBase< DerivedX > &x)
Definition: SpecialFunctionsArrayAPI.h:113