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242 lines
6.0 KiB
242 lines
6.0 KiB
11 years ago
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/*
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*
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* Copyright 2008-2012 NVIDIA Corporation
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <thrust/random/normal_distribution.h>
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#include <thrust/random/uniform_real_distribution.h>
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#include <thrust/detail/cstdint.h>
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#include <thrust/detail/integer_traits.h>
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// for floating point infinity
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#if THRUST_DEVICE_COMPILER == THRUST_DEVICE_COMPILER_NVCC
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#include <math_constants.h>
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#else
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#include <limits>
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#endif
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namespace thrust
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{
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namespace random
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{
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template<typename RealType>
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normal_distribution<RealType>
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::normal_distribution(RealType a, RealType b)
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:super_t(),m_param(a,b)
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{
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} // end normal_distribution::normal_distribution()
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template<typename RealType>
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normal_distribution<RealType>
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::normal_distribution(const param_type &parm)
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:super_t(),m_param(parm)
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{
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} // end normal_distribution::normal_distribution()
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template<typename RealType>
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void normal_distribution<RealType>
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::reset(void)
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{
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super_t::reset();
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} // end normal_distribution::reset()
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template<typename RealType>
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template<typename UniformRandomNumberGenerator>
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typename normal_distribution<RealType>::result_type
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normal_distribution<RealType>
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::operator()(UniformRandomNumberGenerator &urng)
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{
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return operator()(urng, m_param);
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} // end normal_distribution::operator()()
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template<typename RealType>
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template<typename UniformRandomNumberGenerator>
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typename normal_distribution<RealType>::result_type
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normal_distribution<RealType>
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::operator()(UniformRandomNumberGenerator &urng,
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const param_type &parm)
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{
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return super_t::sample(urng, parm.first, parm.second);
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} // end normal_distribution::operator()()
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template<typename RealType>
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typename normal_distribution<RealType>::param_type
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normal_distribution<RealType>
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::param(void) const
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{
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return m_param;
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} // end normal_distribution::param()
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template<typename RealType>
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void normal_distribution<RealType>
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::param(const param_type &parm)
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{
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m_param = parm;
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} // end normal_distribution::param()
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template<typename RealType>
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typename normal_distribution<RealType>::result_type
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normal_distribution<RealType>
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::min THRUST_PREVENT_MACRO_SUBSTITUTION (void) const
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{
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return -this->max();
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} // end normal_distribution::min()
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template<typename RealType>
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typename normal_distribution<RealType>::result_type
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normal_distribution<RealType>
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::max THRUST_PREVENT_MACRO_SUBSTITUTION (void) const
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{
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// XXX this solution is pretty terrible
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// we can't use numeric_traits<RealType>::max because nvcc will
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// complain that it is a __host__ function
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union
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{
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thrust::detail::uint32_t inf_as_int;
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float result;
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} hack;
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hack.inf_as_int = 0x7f800000u;
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return hack.result;
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} // end normal_distribution::max()
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template<typename RealType>
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typename normal_distribution<RealType>::result_type
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normal_distribution<RealType>
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::mean(void) const
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{
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return m_param.first;
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} // end normal_distribution::mean()
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template<typename RealType>
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typename normal_distribution<RealType>::result_type
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normal_distribution<RealType>
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::stddev(void) const
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{
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return m_param.second;
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} // end normal_distribution::stddev()
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template<typename RealType>
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bool normal_distribution<RealType>
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::equal(const normal_distribution &rhs) const
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{
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return m_param == rhs.param();
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}
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template<typename RealType>
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template<typename CharT, typename Traits>
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std::basic_ostream<CharT,Traits>&
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normal_distribution<RealType>
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::stream_out(std::basic_ostream<CharT,Traits> &os) const
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{
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typedef std::basic_ostream<CharT,Traits> ostream_type;
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typedef typename ostream_type::ios_base ios_base;
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// save old flags and fill character
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const typename ios_base::fmtflags flags = os.flags();
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const CharT fill = os.fill();
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const CharT space = os.widen(' ');
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os.flags(ios_base::dec | ios_base::fixed | ios_base::left);
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os.fill(space);
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os << mean() << space << stddev();
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// restore old flags and fill character
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os.flags(flags);
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os.fill(fill);
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return os;
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}
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template<typename RealType>
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template<typename CharT, typename Traits>
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std::basic_istream<CharT,Traits>&
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normal_distribution<RealType>
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::stream_in(std::basic_istream<CharT,Traits> &is)
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{
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typedef std::basic_istream<CharT,Traits> istream_type;
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typedef typename istream_type::ios_base ios_base;
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// save old flags
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const typename ios_base::fmtflags flags = is.flags();
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is.flags(ios_base::skipws);
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is >> m_param.first >> m_param.second;
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// restore old flags
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is.flags(flags);
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return is;
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}
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template<typename RealType>
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bool operator==(const normal_distribution<RealType> &lhs,
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const normal_distribution<RealType> &rhs)
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{
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return thrust::random::detail::random_core_access::equal(lhs,rhs);
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}
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template<typename RealType>
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bool operator!=(const normal_distribution<RealType> &lhs,
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const normal_distribution<RealType> &rhs)
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{
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return !(lhs == rhs);
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}
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template<typename RealType,
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typename CharT, typename Traits>
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std::basic_ostream<CharT,Traits>&
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operator<<(std::basic_ostream<CharT,Traits> &os,
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const normal_distribution<RealType> &d)
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{
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return thrust::random::detail::random_core_access::stream_out(os,d);
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}
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template<typename RealType,
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typename CharT, typename Traits>
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std::basic_istream<CharT,Traits>&
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operator>>(std::basic_istream<CharT,Traits> &is,
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normal_distribution<RealType> &d)
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{
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return thrust::random::detail::random_core_access::stream_in(is,d);
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}
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} // end random
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} // end thrust
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