This reverts commit 68c04b0ae62d8431d72d8b47fc13008002ee4387. This disables the IWYU mapping that caused the failure, since the headers aren't reachable for now. This is the first part of the "Freezing C++03 headers" proposal explained in https://discourse.llvm.org/t/rfc-freezing-c-03-headers-in-libc/77319/58. This patch mechanically copies the headers as of the LLVM 19.1 release into a subdirectory of libc++ so that we can start using these headers when building in C++03 mode. We are going to be backporting important changes to that copy of the headers until the LLVM 21 release. After the LLVM 21 release, only critical bugfixes will be fixed in the C++03 copy of the headers. This patch only performs a copy of the headers -- these headers are still unused by the rest of the codebase.
177 lines
6.1 KiB
C++
177 lines
6.1 KiB
C++
//===----------------------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#ifndef _LIBCPP___RANDOM_NORMAL_DISTRIBUTION_H
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#define _LIBCPP___RANDOM_NORMAL_DISTRIBUTION_H
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#include <__config>
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#include <__random/is_valid.h>
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#include <__random/uniform_real_distribution.h>
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#include <cmath>
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#include <iosfwd>
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#include <limits>
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#if !defined(_LIBCPP_HAS_NO_PRAGMA_SYSTEM_HEADER)
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# pragma GCC system_header
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#endif
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_LIBCPP_PUSH_MACROS
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#include <__undef_macros>
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_LIBCPP_BEGIN_NAMESPACE_STD
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template <class _RealType = double>
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class _LIBCPP_TEMPLATE_VIS normal_distribution {
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static_assert(__libcpp_random_is_valid_realtype<_RealType>::value,
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"RealType must be a supported floating-point type");
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public:
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// types
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typedef _RealType result_type;
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class _LIBCPP_TEMPLATE_VIS param_type {
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result_type __mean_;
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result_type __stddev_;
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public:
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typedef normal_distribution distribution_type;
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_LIBCPP_HIDE_FROM_ABI explicit param_type(result_type __mean = 0, result_type __stddev = 1)
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: __mean_(__mean), __stddev_(__stddev) {}
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_LIBCPP_HIDE_FROM_ABI result_type mean() const { return __mean_; }
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_LIBCPP_HIDE_FROM_ABI result_type stddev() const { return __stddev_; }
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friend _LIBCPP_HIDE_FROM_ABI bool operator==(const param_type& __x, const param_type& __y) {
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return __x.__mean_ == __y.__mean_ && __x.__stddev_ == __y.__stddev_;
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}
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friend _LIBCPP_HIDE_FROM_ABI bool operator!=(const param_type& __x, const param_type& __y) { return !(__x == __y); }
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};
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private:
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param_type __p_;
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result_type __v_;
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bool __v_hot_;
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public:
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// constructors and reset functions
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#ifndef _LIBCPP_CXX03_LANG
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_LIBCPP_HIDE_FROM_ABI normal_distribution() : normal_distribution(0) {}
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_LIBCPP_HIDE_FROM_ABI explicit normal_distribution(result_type __mean, result_type __stddev = 1)
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: __p_(param_type(__mean, __stddev)), __v_hot_(false) {}
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#else
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_LIBCPP_HIDE_FROM_ABI explicit normal_distribution(result_type __mean = 0, result_type __stddev = 1)
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: __p_(param_type(__mean, __stddev)), __v_hot_(false) {}
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#endif
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_LIBCPP_HIDE_FROM_ABI explicit normal_distribution(const param_type& __p) : __p_(__p), __v_hot_(false) {}
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_LIBCPP_HIDE_FROM_ABI void reset() { __v_hot_ = false; }
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// generating functions
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template <class _URNG>
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_LIBCPP_HIDE_FROM_ABI result_type operator()(_URNG& __g) {
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return (*this)(__g, __p_);
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}
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template <class _URNG>
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_LIBCPP_HIDE_FROM_ABI result_type operator()(_URNG& __g, const param_type& __p);
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// property functions
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_LIBCPP_HIDE_FROM_ABI result_type mean() const { return __p_.mean(); }
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_LIBCPP_HIDE_FROM_ABI result_type stddev() const { return __p_.stddev(); }
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_LIBCPP_HIDE_FROM_ABI param_type param() const { return __p_; }
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_LIBCPP_HIDE_FROM_ABI void param(const param_type& __p) { __p_ = __p; }
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_LIBCPP_HIDE_FROM_ABI result_type min() const { return -numeric_limits<result_type>::infinity(); }
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_LIBCPP_HIDE_FROM_ABI result_type max() const { return numeric_limits<result_type>::infinity(); }
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friend _LIBCPP_HIDE_FROM_ABI bool operator==(const normal_distribution& __x, const normal_distribution& __y) {
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return __x.__p_ == __y.__p_ && __x.__v_hot_ == __y.__v_hot_ && (!__x.__v_hot_ || __x.__v_ == __y.__v_);
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}
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friend _LIBCPP_HIDE_FROM_ABI bool operator!=(const normal_distribution& __x, const normal_distribution& __y) {
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return !(__x == __y);
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}
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template <class _CharT, class _Traits, class _RT>
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friend basic_ostream<_CharT, _Traits>&
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operator<<(basic_ostream<_CharT, _Traits>& __os, const normal_distribution<_RT>& __x);
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template <class _CharT, class _Traits, class _RT>
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friend basic_istream<_CharT, _Traits>&
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operator>>(basic_istream<_CharT, _Traits>& __is, normal_distribution<_RT>& __x);
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};
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template <class _RealType>
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template <class _URNG>
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_RealType normal_distribution<_RealType>::operator()(_URNG& __g, const param_type& __p) {
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static_assert(__libcpp_random_is_valid_urng<_URNG>::value, "");
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result_type __up;
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if (__v_hot_) {
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__v_hot_ = false;
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__up = __v_;
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} else {
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uniform_real_distribution<result_type> __uni(-1, 1);
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result_type __u;
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result_type __v;
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result_type __s;
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do {
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__u = __uni(__g);
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__v = __uni(__g);
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__s = __u * __u + __v * __v;
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} while (__s > 1 || __s == 0);
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result_type __fp = std::sqrt(-2 * std::log(__s) / __s);
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__v_ = __v * __fp;
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__v_hot_ = true;
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__up = __u * __fp;
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}
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return __up * __p.stddev() + __p.mean();
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}
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template <class _CharT, class _Traits, class _RT>
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_LIBCPP_HIDE_FROM_ABI basic_ostream<_CharT, _Traits>&
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operator<<(basic_ostream<_CharT, _Traits>& __os, const normal_distribution<_RT>& __x) {
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__save_flags<_CharT, _Traits> __lx(__os);
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typedef basic_ostream<_CharT, _Traits> _OStream;
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__os.flags(_OStream::dec | _OStream::left | _OStream::fixed | _OStream::scientific);
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_CharT __sp = __os.widen(' ');
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__os.fill(__sp);
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__os << __x.mean() << __sp << __x.stddev() << __sp << __x.__v_hot_;
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if (__x.__v_hot_)
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__os << __sp << __x.__v_;
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return __os;
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}
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template <class _CharT, class _Traits, class _RT>
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_LIBCPP_HIDE_FROM_ABI basic_istream<_CharT, _Traits>&
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operator>>(basic_istream<_CharT, _Traits>& __is, normal_distribution<_RT>& __x) {
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typedef normal_distribution<_RT> _Eng;
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typedef typename _Eng::result_type result_type;
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typedef typename _Eng::param_type param_type;
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__save_flags<_CharT, _Traits> __lx(__is);
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typedef basic_istream<_CharT, _Traits> _Istream;
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__is.flags(_Istream::dec | _Istream::skipws);
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result_type __mean;
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result_type __stddev;
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result_type __vp = 0;
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bool __v_hot = false;
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__is >> __mean >> __stddev >> __v_hot;
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if (__v_hot)
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__is >> __vp;
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if (!__is.fail()) {
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__x.param(param_type(__mean, __stddev));
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__x.__v_hot_ = __v_hot;
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__x.__v_ = __vp;
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}
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return __is;
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}
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_LIBCPP_END_NAMESPACE_STD
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_LIBCPP_POP_MACROS
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#endif // _LIBCPP___RANDOM_NORMAL_DISTRIBUTION_H
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