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source: trunk/HeuristicLab.ExtLibs/HeuristicLab.NativeInterpreter/0.1/NativeInterpreter-0.1/lib/vdt/tanh.h @ 18191

Last change on this file since 18191 was 16269, checked in by bburlacu, 6 years ago

#2958: Add C++ source code

File size: 2.5 KB
Line 
1/*
2 * tanh.h
3 * The basic idea is to exploit Pade polynomials.
4 * Implemented by Manuel Schiller for LHCb.
5 *
6 *  Created on: Sep 23, 2017
7 *      Author: Paul Seyfert, Manuel Schiller
8 */
9
10/*
11 * VDT is free software: you can redistribute it and/or modify
12 * it under the terms of the GNU Lesser Public License as published by
13 * the Free Software Foundation, either version 3 of the License, or
14 * (at your option) any later version.
15 *
16 * This program is distributed in the hope that it will be useful,
17 * but WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
19 * GNU Lesser Public License for more details.
20 *
21 * You should have received a copy of the GNU Lesser Public License
22 * along with this program.  If not, see <http://www.gnu.org/licenses/>.
23 */
24
25#ifndef TANH_H_
26#define TANH_H_
27
28#include "vdtcore_common.h"
29
30namespace vdt{
31
32
33
34
35/// Fast tanh implementation double precision
36inline double fast_tanh(double x){
37  // for very large |x| > 20, tanh(x) is x/|x| anyway (at least to double
38  // precision)
39  //
40  // NB: branch-free code takes longer to execute
41  if (std::abs(x) > 20.) return std::copysign(1., x);
42  // strategy for large arguments: tanh(2x) = 2 tanh(x)/(1 + tanh^2(x))
43  // idea is to use this "argument halving" a couple of times, and use a
44  // very short Padé approximation for the rest of the way
45  const auto xx = x * 0.125;
46  const auto xx2 = xx * xx;
47  const auto numer = 135135 + xx2 * (17325 + xx2 * ( 378 + xx2 *  1));
48  const auto denom = 135135 + xx2 * (62370 + xx2 * (3150 + xx2 * 28));
49
50  auto tanh = xx * numer / denom;
51  tanh = 2 * tanh / (tanh * tanh + 1);
52  tanh = 2 * tanh / (tanh * tanh + 1);
53  return 2 * tanh / (tanh * tanh + 1);
54}
55
56//------------------------------------------------------------------------------
57/// Fast tanh implementation single precision
58inline float fast_tanhf( float x ) {
59  // same strategy as double version above, but even shorter Padé
60  // approximation is sufficient for float
61  //
62  // NB: branch-free code takes longer to execute
63  if (std::abs(x) > 9.1f) return std::copysign(1.f, x);
64  const auto xx = x * 0.125f;
65  const auto xx2 = xx * xx;
66  auto tanh = xx * (xx2 + 15) / (6 * xx2 + 15);
67  tanh = 2 * tanh / (tanh * tanh + 1);
68  tanh = 2 * tanh / (tanh * tanh + 1);
69  return 2 * tanh / (tanh * tanh + 1);
70}
71
72//------------------------------------------------------------------------------
73// Vector signatures
74
75}// end of vdt
76
77#endif // end of tanh
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