]> git.proxmox.com Git - ceph.git/blame - ceph/src/boost/libs/math/include/boost/math/distributions/laplace.hpp
bump version to 12.2.2-pve1
[ceph.git] / ceph / src / boost / libs / math / include / boost / math / distributions / laplace.hpp
CommitLineData
7c673cae
FG
1// Copyright Thijs van den Berg, 2008.
2// Copyright John Maddock 2008.
3// Copyright Paul A. Bristow 2008, 2014.
4
5// Use, modification and distribution are subject to the
6// Boost Software License, Version 1.0. (See accompanying file
7// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
8
9// This module implements the Laplace distribution.
10// Weisstein, Eric W. "Laplace Distribution." From MathWorld--A Wolfram Web Resource.
11// http://mathworld.wolfram.com/LaplaceDistribution.html
12// http://en.wikipedia.org/wiki/Laplace_distribution
13//
14// Abramowitz and Stegun 1972, p 930
15// http://www.math.sfu.ca/~cbm/aands/page_930.htm
16
17#ifndef BOOST_STATS_LAPLACE_HPP
18#define BOOST_STATS_LAPLACE_HPP
19
20#include <boost/math/distributions/detail/common_error_handling.hpp>
21#include <boost/math/distributions/complement.hpp>
22#include <boost/math/constants/constants.hpp>
23#include <limits>
24
25namespace boost{ namespace math{
26
27#ifdef BOOST_MSVC
28# pragma warning(push)
29# pragma warning(disable:4127) // conditional expression is constant
30#endif
31
32template <class RealType = double, class Policy = policies::policy<> >
33class laplace_distribution
34{
35public:
36 // ----------------------------------
37 // public Types
38 // ----------------------------------
39 typedef RealType value_type;
40 typedef Policy policy_type;
41
42 // ----------------------------------
43 // Constructor(s)
44 // ----------------------------------
45 laplace_distribution(RealType l_location = 0, RealType l_scale = 1)
46 : m_location(l_location), m_scale(l_scale)
47 {
48 RealType result;
49 check_parameters("boost::math::laplace_distribution<%1%>::laplace_distribution()", &result);
50 }
51
52
53 // ----------------------------------
54 // Public functions
55 // ----------------------------------
56
57 RealType location() const
58 {
59 return m_location;
60 }
61
62 RealType scale() const
63 {
64 return m_scale;
65 }
66
67 bool check_parameters(const char* function, RealType* result) const
68 {
69 if(false == detail::check_scale(function, m_scale, result, Policy())) return false;
70 if(false == detail::check_location(function, m_location, result, Policy())) return false;
71 return true;
72 }
73
74private:
75 RealType m_location;
76 RealType m_scale;
77}; // class laplace_distribution
78
79//
80// Convenient type synonym for double.
81typedef laplace_distribution<double> laplace;
82
83//
84// Non-member functions.
85template <class RealType, class Policy>
86inline const std::pair<RealType, RealType> range(const laplace_distribution<RealType, Policy>&)
87{
88 if (std::numeric_limits<RealType>::has_infinity)
89 { // Can use infinity.
90 return std::pair<RealType, RealType>(-std::numeric_limits<RealType>::infinity(), std::numeric_limits<RealType>::infinity()); // - to + infinity.
91 }
92 else
93 { // Can only use max_value.
94 using boost::math::tools::max_value;
95 return std::pair<RealType, RealType>(-max_value<RealType>(), max_value<RealType>()); // - to + max value.
96 }
97
98}
99
100template <class RealType, class Policy>
101inline const std::pair<RealType, RealType> support(const laplace_distribution<RealType, Policy>&)
102{
103 if (std::numeric_limits<RealType>::has_infinity)
104 { // Can Use infinity.
105 return std::pair<RealType, RealType>(-std::numeric_limits<RealType>::infinity(), std::numeric_limits<RealType>::infinity()); // - to + infinity.
106 }
107 else
108 { // Can only use max_value.
109 using boost::math::tools::max_value;
110 return std::pair<RealType, RealType>(-max_value<RealType>(), max_value<RealType>()); // - to + max value.
111 }
112}
113
114template <class RealType, class Policy>
115inline RealType pdf(const laplace_distribution<RealType, Policy>& dist, const RealType& x)
116{
117 BOOST_MATH_STD_USING // for ADL of std functions
118
119 // Checking function argument
120 RealType result = 0;
121 const char* function = "boost::math::pdf(const laplace_distribution<%1%>&, %1%))";
122
123 // Check scale and location.
124 if (false == dist.check_parameters(function, &result)) return result;
125 // Special pdf values.
126 if((boost::math::isinf)(x))
127 {
128 return 0; // pdf + and - infinity is zero.
129 }
130 if (false == detail::check_x(function, x, &result, Policy())) return result;
131
132 // General case
133 RealType scale( dist.scale() );
134 RealType location( dist.location() );
135
136 RealType exponent = x - location;
137 if (exponent>0) exponent = -exponent;
138 exponent /= scale;
139
140 result = exp(exponent);
141 result /= 2 * scale;
142
143 return result;
144} // pdf
145
146template <class RealType, class Policy>
147inline RealType cdf(const laplace_distribution<RealType, Policy>& dist, const RealType& x)
148{
149 BOOST_MATH_STD_USING // For ADL of std functions.
150
151 RealType result = 0;
152 // Checking function argument.
153 const char* function = "boost::math::cdf(const laplace_distribution<%1%>&, %1%)";
154 // Check scale and location.
155 if (false == dist.check_parameters(function, &result)) return result;
156
157 // Special cdf values:
158 if((boost::math::isinf)(x))
159 {
160 if(x < 0) return 0; // -infinity.
161 return 1; // + infinity.
162 }
163 if (false == detail::check_x(function, x, &result, Policy())) return result;
164
165 // General cdf values
166 RealType scale( dist.scale() );
167 RealType location( dist.location() );
168
169 if (x < location)
170 {
171 result = exp( (x-location)/scale )/2;
172 }
173 else
174 {
175 result = 1 - exp( (location-x)/scale )/2;
176 }
177 return result;
178} // cdf
179
180
181template <class RealType, class Policy>
182inline RealType quantile(const laplace_distribution<RealType, Policy>& dist, const RealType& p)
183{
184 BOOST_MATH_STD_USING // for ADL of std functions.
185
186 // Checking function argument
187 RealType result = 0;
188 const char* function = "boost::math::quantile(const laplace_distribution<%1%>&, %1%)";
189 if (false == dist.check_parameters(function, &result)) return result;
190 if(false == detail::check_probability(function, p, &result, Policy())) return result;
191
192 // Extreme values of p:
193 if(p == 0)
194 {
195 result = policies::raise_overflow_error<RealType>(function,
196 "probability parameter is 0, but must be > 0!", Policy());
197 return -result; // -std::numeric_limits<RealType>::infinity();
198 }
199
200 if(p == 1)
201 {
202 result = policies::raise_overflow_error<RealType>(function,
203 "probability parameter is 1, but must be < 1!", Policy());
204 return result; // std::numeric_limits<RealType>::infinity();
205 }
206 // Calculate Quantile
207 RealType scale( dist.scale() );
208 RealType location( dist.location() );
209
210 if (p - 0.5 < 0.0)
211 result = location + scale*log( static_cast<RealType>(p*2) );
212 else
213 result = location - scale*log( static_cast<RealType>(-p*2 + 2) );
214
215 return result;
216} // quantile
217
218
219template <class RealType, class Policy>
220inline RealType cdf(const complemented2_type<laplace_distribution<RealType, Policy>, RealType>& c)
221{
222 // Calculate complement of cdf.
223 BOOST_MATH_STD_USING // for ADL of std functions
224
225 RealType scale = c.dist.scale();
226 RealType location = c.dist.location();
227 RealType x = c.param;
228 RealType result = 0;
229
230 // Checking function argument.
231 const char* function = "boost::math::cdf(const complemented2_type<laplace_distribution<%1%>, %1%>&)";
232
233 // Check scale and location.
234 //if(false == detail::check_scale(function, scale, result, Policy())) return false;
235 //if(false == detail::check_location(function, location, result, Policy())) return false;
236 if (false == c.dist.check_parameters(function, &result)) return result;
237
238 // Special cdf values.
239 if((boost::math::isinf)(x))
240 {
241 if(x < 0) return 1; // cdf complement -infinity is unity.
242 return 0; // cdf complement +infinity is zero.
243 }
244 if(false == detail::check_x(function, x, &result, Policy()))return result;
245
246 // Cdf interval value.
247 if (-x < -location)
248 {
249 result = exp( (-x+location)/scale )/2;
250 }
251 else
252 {
253 result = 1 - exp( (-location+x)/scale )/2;
254 }
255 return result;
256} // cdf complement
257
258
259template <class RealType, class Policy>
260inline RealType quantile(const complemented2_type<laplace_distribution<RealType, Policy>, RealType>& c)
261{
262 BOOST_MATH_STD_USING // for ADL of std functions.
263
264 // Calculate quantile.
265 RealType scale = c.dist.scale();
266 RealType location = c.dist.location();
267 RealType q = c.param;
268 RealType result = 0;
269
270 // Checking function argument.
271 const char* function = "quantile(const complemented2_type<laplace_distribution<%1%>, %1%>&)";
272 if (false == c.dist.check_parameters(function, &result)) return result;
273
274 // Extreme values.
275 if(q == 0)
276 {
277 return std::numeric_limits<RealType>::infinity();
278 }
279 if(q == 1)
280 {
281 return -std::numeric_limits<RealType>::infinity();
282 }
283 if(false == detail::check_probability(function, q, &result, Policy())) return result;
284
285 if (0.5 - q < 0.0)
286 result = location + scale*log( static_cast<RealType>(-q*2 + 2) );
287 else
288 result = location - scale*log( static_cast<RealType>(q*2) );
289
290
291 return result;
292} // quantile
293
294template <class RealType, class Policy>
295inline RealType mean(const laplace_distribution<RealType, Policy>& dist)
296{
297 return dist.location();
298}
299
300template <class RealType, class Policy>
301inline RealType standard_deviation(const laplace_distribution<RealType, Policy>& dist)
302{
303 return constants::root_two<RealType>() * dist.scale();
304}
305
306template <class RealType, class Policy>
307inline RealType mode(const laplace_distribution<RealType, Policy>& dist)
308{
309 return dist.location();
310}
311
312template <class RealType, class Policy>
313inline RealType median(const laplace_distribution<RealType, Policy>& dist)
314{
315 return dist.location();
316}
317
318template <class RealType, class Policy>
319inline RealType skewness(const laplace_distribution<RealType, Policy>& /*dist*/)
320{
321 return 0;
322}
323
324template <class RealType, class Policy>
325inline RealType kurtosis(const laplace_distribution<RealType, Policy>& /*dist*/)
326{
327 return 6;
328}
329
330template <class RealType, class Policy>
331inline RealType kurtosis_excess(const laplace_distribution<RealType, Policy>& /*dist*/)
332{
333 return 3;
334}
335
336#ifdef BOOST_MSVC
337# pragma warning(pop)
338#endif
339
340} // namespace math
341} // namespace boost
342
343// This include must be at the end, *after* the accessors
344// for this distribution have been defined, in order to
345// keep compilers that support two-phase lookup happy.
346#include <boost/math/distributions/detail/derived_accessors.hpp>
347
348#endif // BOOST_STATS_LAPLACE_HPP
349
350