/usr/include/boost/random
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detail/-0755rm
additive_combine.hpp88260644editdlrm
bernoulli_distribution.hpp56080644editdlrm
beta_distribution.hpp59000644editdlrm
binomial_distribution.hpp129850644editdlrm
cauchy_distribution.hpp65280644editdlrm
chi_squared_distribution.hpp63220644editdlrm
discard_block.hpp79910644editdlrm
discrete_distribution.hpp211370644editdlrm
exponential_distribution.hpp208950644editdlrm
extreme_value_distribution.hpp56110644editdlrm
faure.hpp114740644editdlrm
fisher_f_distribution.hpp59240644editdlrm
gamma_distribution.hpp91660644editdlrm
generate_canonical.hpp29540644editdlrm
geometric_distribution.hpp73390644editdlrm
hyperexponential_distribution.hpp369800644editdlrm
independent_bits.hpp91170644editdlrm
inversive_congruential.hpp95500644editdlrm
lagged_fibonacci.hpp182560644editdlrm
laplace_distribution.hpp57430644editdlrm
linear_congruential.hpp162140644editdlrm
linear_feedback_shift.hpp71620644editdlrm
lognormal_distribution.hpp80510644editdlrm
mersenne_twister.hpp240940644editdlrm
negative_binomial_distribution.hpp69110644editdlrm
niederreiter_base2.hpp117360644editdlrm
non_central_chi_squared_distribution.hpp77240644editdlrm
normal_distribution.hpp174410644editdlrm
piecewise_constant_distribution.hpp171860644editdlrm
piecewise_linear_distribution.hpp188020644editdlrm
poisson_distribution.hpp101450644editdlrm
random_device.hpp50320644editdlrm
random_number_generator.hpp19580644editdlrm
ranlux.hpp32920644editdlrm
seed_seq.hpp37920644editdlrm
shuffle_order.hpp91810644editdlrm
shuffle_output.hpp13520644editdlrm
sobol.hpp77040644editdlrm
student_t_distribution.hpp56330644editdlrm
subtract_with_carry.hpp215900644editdlrm
taus88.hpp11640644editdlrm
traits.hpp41650644editdlrm
triangle_distribution.hpp70330644editdlrm
uniform_01.hpp75380644editdlrm
uniform_int.hpp29090644editdlrm
uniform_int_distribution.hpp161990644editdlrm
uniform_on_sphere.hpp88120644editdlrm
uniform_real.hpp24490644editdlrm
uniform_real_distribution.hpp77260644editdlrm
uniform_smallint.hpp122300644editdlrm
variate_generator.hpp37080644editdlrm
weibull_distribution.hpp55240644editdlrm
xor_combine.hpp70490644editdlrm
Edit: /usr/include/boost/random/traits.hpp (4165B)
/* boost random/traits.hpp header file * * Copyright John Maddock 2015 * Distributed under 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) * * See http://www.boost.org for most recent version including documentation. * * These traits classes serve two purposes: they are designed to mostly * work out of the box for multiprecision types (ie number types that are * C++ class types and not integers or floats from type-traits point of view), * they are also a potential point of specialization for user-defined * number types. * * $Id$ */ #ifndef BOOST_RANDOM_TRAITS_HPP #define BOOST_RANDOM_TRAITS_HPP #include #include #include #include #include namespace boost { namespace random { namespace traits { // \cond show_private template struct make_unsigned_imp { typedef typename boost::make_unsigned::type type; }; template struct make_unsigned_imp { BOOST_STATIC_ASSERT(std::numeric_limits::is_specialized); BOOST_STATIC_ASSERT(std::numeric_limits::is_signed == false); BOOST_STATIC_ASSERT(std::numeric_limits::is_integer == true); typedef T type; }; // \endcond /** \brief Converts the argument type T to an unsigned type. * * This trait has a single member `type` which is the unsigned type corresponding to T. * Note that * if T is signed, then member `type` *should define a type with one more bit precision than T*. For built-in * types this trait defaults to `boost::make_unsigned::type`. For user defined types it simply asserts that * the argument type T is an unsigned integer (using std::numeric_limits). * User defined specializations may be provided for other cases. */ template struct make_unsigned // \cond show_private : public make_unsigned_imp < T, boost::is_integral::value > // \endcond {}; // \cond show_private template struct make_unsigned_or_unbounded_imp { typedef typename boost::make_unsigned::type type; }; template struct make_unsigned_or_unbounded_imp { BOOST_STATIC_ASSERT(std::numeric_limits::is_specialized); BOOST_STATIC_ASSERT((std::numeric_limits::is_signed == false) || (std::numeric_limits::is_bounded == false)); BOOST_STATIC_ASSERT(std::numeric_limits::is_integer == true); typedef T type; }; // \endcond /** \brief Converts the argument type T to either an unsigned type or an unbounded integer type. * * This trait has a single member `type` which is either the unsigned type corresponding to T or an unbounded * integer type. This trait is used to generate types suitable for the calculation of a range: as a result * if T is signed, then member `type` *should define a type with one more bit precision than T*. For built-in * types this trait defaults to `boost::make_unsigned::type`. For user defined types it simply asserts that * the argument type T is either an unbounded integer, or an unsigned one (using std::numeric_limits). * User defined specializations may be provided for other cases. */ template struct make_unsigned_or_unbounded // \cond show_private : public make_unsigned_or_unbounded_imp < T, boost::is_integral::value > // \endcond {}; /** \brief Traits class that indicates whether type T is an integer */ template struct is_integral : public mpl::bool_::value || (std::numeric_limits::is_integer)> {}; /** \brief Traits class that indicates whether type T is a signed integer */ template struct is_signed : public mpl::bool_ < boost::is_signed::value || (std::numeric_limits::is_specialized && std::numeric_limits::is_integer && std::numeric_limits::is_signed)> {}; } } } #endif