/
usr
/
include
/
boost
/
math
/
distributions
/
/usr/include/boost/math/distributions
mkdir
upload
Name
Size
Mode
Actions
detail/
-
0755
rm
arcsine.hpp
18797
0644
edit
dl
rm
bernoulli.hpp
12143
0644
edit
dl
rm
beta.hpp
18807
0644
edit
dl
rm
binomial.hpp
28654
0644
edit
dl
rm
cauchy.hpp
12310
0644
edit
dl
rm
chi_squared.hpp
12242
0644
edit
dl
rm
complement.hpp
5978
0644
edit
dl
rm
empirical_cumulative_distribution_function.hpp
1886
0644
edit
dl
rm
exponential.hpp
8944
0644
edit
dl
rm
extreme_value.hpp
10491
0644
edit
dl
rm
find_location.hpp
6713
0644
edit
dl
rm
find_scale.hpp
9674
0644
edit
dl
rm
fisher_f.hpp
14391
0644
edit
dl
rm
fwd.hpp
5461
0644
edit
dl
rm
gamma.hpp
10660
0644
edit
dl
rm
geometric.hpp
21156
0644
edit
dl
rm
hyperexponential.hpp
21887
0644
edit
dl
rm
hypergeometric.hpp
12220
0644
edit
dl
rm
inverse_chi_squared.hpp
15202
0644
edit
dl
rm
inverse_gamma.hpp
15389
0644
edit
dl
rm
inverse_gaussian.hpp
19760
0644
edit
dl
rm
laplace.hpp
10580
0644
edit
dl
rm
logistic.hpp
11273
0644
edit
dl
rm
lognormal.hpp
11714
0644
edit
dl
rm
negative_binomial.hpp
26139
0644
edit
dl
rm
non_central_beta.hpp
35837
0644
edit
dl
rm
non_central_chi_squared.hpp
40704
0644
edit
dl
rm
non_central_f.hpp
15848
0644
edit
dl
rm
non_central_t.hpp
47973
0644
edit
dl
rm
normal.hpp
10768
0644
edit
dl
rm
pareto.hpp
15516
0644
edit
dl
rm
poisson.hpp
20267
0644
edit
dl
rm
rayleigh.hpp
10344
0644
edit
dl
rm
skew_normal.hpp
25646
0644
edit
dl
rm
students_t.hpp
18476
0644
edit
dl
rm
triangular.hpp
18407
0644
edit
dl
rm
uniform.hpp
12963
0644
edit
dl
rm
weibull.hpp
12081
0644
edit
dl
rm
Edit:
/usr/include/boost/math/distributions/complement.hpp
(5978B)
// (C) Copyright John Maddock 2006. // (C) Copyright Paul A. Bristow 2006. // Use, modification and distribution are subject to the // Boost Software License, Version 1.0. (See accompanying file // LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt) #ifndef BOOST_STATS_COMPLEMENT_HPP #define BOOST_STATS_COMPLEMENT_HPP // // This code really defines our own tuple type. // It would be nice to reuse boost::math::tuple // while retaining our own type safety, but it's // not clear if that's possible. In any case this // code is *very* lightweight. // namespace boost{ namespace math{ template <class Dist, class RealType> struct complemented2_type { complemented2_type( const Dist& d, const RealType& p1) : dist(d), param(p1) {} const Dist& dist; const RealType& param; private: complemented2_type& operator=(const complemented2_type&); }; template <class Dist, class RealType1, class RealType2> struct complemented3_type { complemented3_type( const Dist& d, const RealType1& p1, const RealType2& p2) : dist(d), param1(p1), param2(p2) {} const Dist& dist; const RealType1& param1; const RealType2& param2; private: complemented3_type& operator=(const complemented3_type&); }; template <class Dist, class RealType1, class RealType2, class RealType3> struct complemented4_type { complemented4_type( const Dist& d, const RealType1& p1, const RealType2& p2, const RealType3& p3) : dist(d), param1(p1), param2(p2), param3(p3) {} const Dist& dist; const RealType1& param1; const RealType2& param2; const RealType3& param3; private: complemented4_type& operator=(const complemented4_type&); }; template <class Dist, class RealType1, class RealType2, class RealType3, class RealType4> struct complemented5_type { complemented5_type( const Dist& d, const RealType1& p1, const RealType2& p2, const RealType3& p3, const RealType4& p4) : dist(d), param1(p1), param2(p2), param3(p3), param4(p4) {} const Dist& dist; const RealType1& param1; const RealType2& param2; const RealType3& param3; const RealType4& param4; private: complemented5_type& operator=(const complemented5_type&); }; template <class Dist, class RealType1, class RealType2, class RealType3, class RealType4, class RealType5> struct complemented6_type { complemented6_type( const Dist& d, const RealType1& p1, const RealType2& p2, const RealType3& p3, const RealType4& p4, const RealType5& p5) : dist(d), param1(p1), param2(p2), param3(p3), param4(p4), param5(p5) {} const Dist& dist; const RealType1& param1; const RealType2& param2; const RealType3& param3; const RealType4& param4; const RealType5& param5; private: complemented6_type& operator=(const complemented6_type&); }; template <class Dist, class RealType1, class RealType2, class RealType3, class RealType4, class RealType5, class RealType6> struct complemented7_type { complemented7_type( const Dist& d, const RealType1& p1, const RealType2& p2, const RealType3& p3, const RealType4& p4, const RealType5& p5, const RealType6& p6) : dist(d), param1(p1), param2(p2), param3(p3), param4(p4), param5(p5), param6(p6) {} const Dist& dist; const RealType1& param1; const RealType2& param2; const RealType3& param3; const RealType4& param4; const RealType5& param5; const RealType6& param6; private: complemented7_type& operator=(const complemented7_type&); }; template <class Dist, class RealType> inline complemented2_type<Dist, RealType> complement(const Dist& d, const RealType& r) { return complemented2_type<Dist, RealType>(d, r); } template <class Dist, class RealType1, class RealType2> inline complemented3_type<Dist, RealType1, RealType2> complement(const Dist& d, const RealType1& r1, const RealType2& r2) { return complemented3_type<Dist, RealType1, RealType2>(d, r1, r2); } template <class Dist, class RealType1, class RealType2, class RealType3> inline complemented4_type<Dist, RealType1, RealType2, RealType3> complement(const Dist& d, const RealType1& r1, const RealType2& r2, const RealType3& r3) { return complemented4_type<Dist, RealType1, RealType2, RealType3>(d, r1, r2, r3); } template <class Dist, class RealType1, class RealType2, class RealType3, class RealType4> inline complemented5_type<Dist, RealType1, RealType2, RealType3, RealType4> complement(const Dist& d, const RealType1& r1, const RealType2& r2, const RealType3& r3, const RealType4& r4) { return complemented5_type<Dist, RealType1, RealType2, RealType3, RealType4>(d, r1, r2, r3, r4); } template <class Dist, class RealType1, class RealType2, class RealType3, class RealType4, class RealType5> inline complemented6_type<Dist, RealType1, RealType2, RealType3, RealType4, RealType5> complement(const Dist& d, const RealType1& r1, const RealType2& r2, const RealType3& r3, const RealType4& r4, const RealType5& r5) { return complemented6_type<Dist, RealType1, RealType2, RealType3, RealType4, RealType5>(d, r1, r2, r3, r4, r5); } template <class Dist, class RealType1, class RealType2, class RealType3, class RealType4, class RealType5, class RealType6> inline complemented7_type<Dist, RealType1, RealType2, RealType3, RealType4, RealType5, RealType6> complement(const Dist& d, const RealType1& r1, const RealType2& r2, const RealType3& r3, const RealType4& r4, const RealType5& r5, const RealType6& r6) { return complemented7_type<Dist, RealType1, RealType2, RealType3, RealType4, RealType5, RealType6>(d, r1, r2, r3, r4, r5, r6); } } // namespace math } // namespace boost #endif // BOOST_STATS_COMPLEMENT_HPP
Save
cmd:
run