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// -*- C++ -*- |
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|
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// Copyright (C) 2007-2021 Free Software Foundation, Inc. |
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// |
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// This file is part of the GNU ISO C++ Library. This library is free |
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// software; you can redistribute it and/or modify it under the terms |
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// of the GNU General Public License as published by the Free Software |
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// Foundation; either version 3, or (at your option) any later |
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// version. |
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|
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// This library is distributed in the hope that it will be useful, but |
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// WITHOUT ANY WARRANTY; without even the implied warranty of |
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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// General Public License for more details. |
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|
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// Under Section 7 of GPL version 3, you are granted additional |
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// permissions described in the GCC Runtime Library Exception, version |
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// 3.1, as published by the Free Software Foundation. |
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|
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// You should have received a copy of the GNU General Public License and |
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// a copy of the GCC Runtime Library Exception along with this program; |
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// see the files COPYING3 and COPYING.RUNTIME respectively. If not, see |
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// <http://www.gnu.org/licenses/>. |
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|
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/** @file parallel/losertree.h |
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* @brief Many generic loser tree variants. |
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* This file is a GNU parallel extension to the Standard C++ Library. |
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*/ |
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|
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// Written by Johannes Singler. |
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|
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#ifndef _GLIBCXX_PARALLEL_LOSERTREE_H |
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#define _GLIBCXX_PARALLEL_LOSERTREE_H 1 |
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|
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#include <bits/stl_algobase.h> |
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#include <bits/stl_function.h> |
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#include <parallel/features.h> |
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#include <parallel/base.h> |
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|
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namespace __gnu_parallel |
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{ |
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/** |
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* @brief Guarded loser/tournament tree. |
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* |
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* The smallest element is at the top. |
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* |
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* Guarding is done explicitly through one flag _M_sup per element, |
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* inf is not needed due to a better initialization routine. This |
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* is a well-performing variant. |
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* |
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* @param _Tp the element type |
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* @param _Compare the comparator to use, defaults to std::less<_Tp> |
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*/ |
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template<typename _Tp, typename _Compare> |
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class _LoserTreeBase |
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{ |
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protected: |
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/** @brief Internal representation of a _LoserTree element. */ |
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struct _Loser |
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{ |
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/** @brief flag, true iff this is a "maximum" __sentinel. */ |
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bool _M_sup; |
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/** @brief __index of the __source __sequence. */ |
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int _M_source; |
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/** @brief _M_key of the element in the _LoserTree. */ |
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_Tp _M_key; |
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}; |
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|
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unsigned int _M_ik, _M_k, _M_offset; |
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|
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/** log_2{_M_k} */ |
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unsigned int _M_log_k; |
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|
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/** @brief _LoserTree __elements. */ |
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_Loser* _M_losers; |
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|
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/** @brief _Compare to use. */ |
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_Compare _M_comp; |
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|
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/** |
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* @brief State flag that determines whether the _LoserTree is empty. |
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* |
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* Only used for building the _LoserTree. |
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*/ |
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bool _M_first_insert; |
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|
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public: |
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/** |
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* @brief The constructor. |
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* |
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* @param __k The number of sequences to merge. |
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* @param __comp The comparator to use. |
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*/ |
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_LoserTreeBase(unsigned int __k, _Compare __comp) |
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: _M_comp(__comp) |
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{ |
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_M_ik = __k; |
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|
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// Compute log_2{_M_k} for the _Loser Tree |
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_M_log_k = __rd_log2(_M_ik - 1) + 1; |
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|
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// Next greater power of 2. |
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_M_k = 1 << _M_log_k; |
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_M_offset = _M_k; |
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|
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// Avoid default-constructing _M_losers[]._M_key |
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_M_losers = static_cast<_Loser*>(::operator new(2 * _M_k |
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* sizeof(_Loser))); |
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for (unsigned int __i = _M_ik - 1; __i < _M_k; ++__i) |
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_M_losers[__i + _M_k]._M_sup = true; |
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|
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_M_first_insert = true; |
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} |
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|
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/** |
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* @brief The destructor. |
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*/ |
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~_LoserTreeBase() |
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{ |
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for (unsigned int __i = 0; __i < (2 * _M_k); ++__i) |
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_M_losers[__i].~_Loser(); |
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::operator delete(_M_losers); |
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} |
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|
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/** |
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* @brief Initializes the sequence "_M_source" with the element "__key". |
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* |
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* @param __key the element to insert |
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* @param __source __index of the __source __sequence |
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* @param __sup flag that determines whether the value to insert is an |
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* explicit __supremum. |
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*/ |
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void |
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__insert_start(const _Tp& __key, int __source, bool __sup) |
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{ |
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unsigned int __pos = _M_k + __source; |
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|
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if (_M_first_insert) |
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{ |
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// Construct all keys, so we can easily destruct them. |
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for (unsigned int __i = 0; __i < (2 * _M_k); ++__i) |
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::new(&(_M_losers[__i]._M_key)) _Tp(__key); |
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_M_first_insert = false; |
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} |
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else |
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_M_losers[__pos]._M_key = __key; |
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|
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_M_losers[__pos]._M_sup = __sup; |
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_M_losers[__pos]._M_source = __source; |
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} |
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|
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/** |
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* @return the index of the sequence with the smallest element. |
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*/ |
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int __get_min_source() |
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{ return _M_losers[0]._M_source; } |
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}; |
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|
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/** |
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* @brief Stable _LoserTree variant. |
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* |
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* Provides the stable implementations of insert_start, __init_winner, |
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* __init and __delete_min_insert. |
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* |
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* Unstable variant is done using partial specialisation below. |
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*/ |
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template<bool __stable/* default == true */, typename _Tp, |
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typename _Compare> |
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class _LoserTree |
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: public _LoserTreeBase<_Tp, _Compare> |
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{ |
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typedef _LoserTreeBase<_Tp, _Compare> _Base; |
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using _Base::_M_k; |
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using _Base::_M_comp; |
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using _Base::_M_losers; |
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using _Base::_M_first_insert; |
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|
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public: |
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_LoserTree(unsigned int __k, _Compare __comp) |
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: _Base::_LoserTreeBase(__k, __comp) |
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{ } |
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|
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unsigned int |
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__init_winner(unsigned int __root) |
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{ |
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if (__root >= _M_k) |
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return __root; |
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else |
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{ |
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unsigned int __left = __init_winner(2 * __root); |
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unsigned int __right = __init_winner(2 * __root + 1); |
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if (_M_losers[__right]._M_sup |
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|| (!_M_losers[__left]._M_sup |
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&& !_M_comp(_M_losers[__right]._M_key, |
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_M_losers[__left]._M_key))) |
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{ |
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// Left one is less or equal. |
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_M_losers[__root] = _M_losers[__right]; |
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return __left; |
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} |
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else |
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{ |
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// Right one is less. |
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_M_losers[__root] = _M_losers[__left]; |
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return __right; |
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} |
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} |
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} |
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|
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void __init() |
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{ _M_losers[0] = _M_losers[__init_winner(1)]; } |
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|
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/** |
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* @brief Delete the smallest element and insert a new element from |
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* the previously smallest element's sequence. |
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* |
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* This implementation is stable. |
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*/ |
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// Do not pass a const reference since __key will be used as |
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// local variable. |
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void |
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__delete_min_insert(_Tp __key, bool __sup) |
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{ |
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using std::swap; |
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#if _GLIBCXX_PARALLEL_ASSERTIONS |
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// no dummy sequence can ever be at the top! |
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_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
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#endif |
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|
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int __source = _M_losers[0]._M_source; |
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for (unsigned int __pos = (_M_k + __source) / 2; __pos > 0; |
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__pos /= 2) |
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{ |
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// The smaller one gets promoted, ties are broken by _M_source. |
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if ((__sup && (!_M_losers[__pos]._M_sup |
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|| _M_losers[__pos]._M_source < __source)) |
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|| (!__sup && !_M_losers[__pos]._M_sup |
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&& ((_M_comp(_M_losers[__pos]._M_key, __key)) |
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|| (!_M_comp(__key, _M_losers[__pos]._M_key) |
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&& _M_losers[__pos]._M_source < __source)))) |
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{ |
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// The other one is smaller. |
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std::swap(_M_losers[__pos]._M_sup, __sup); |
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std::swap(_M_losers[__pos]._M_source, __source); |
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swap(_M_losers[__pos]._M_key, __key); |
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} |
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} |
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|
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_M_losers[0]._M_sup = __sup; |
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_M_losers[0]._M_source = __source; |
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_M_losers[0]._M_key = __key; |
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} |
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}; |
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|
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/** |
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* @brief Unstable _LoserTree variant. |
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* |
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* Stability (non-stable here) is selected with partial specialization. |
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*/ |
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template<typename _Tp, typename _Compare> |
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class _LoserTree</* __stable == */false, _Tp, _Compare> |
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: public _LoserTreeBase<_Tp, _Compare> |
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{ |
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typedef _LoserTreeBase<_Tp, _Compare> _Base; |
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using _Base::_M_log_k; |
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using _Base::_M_k; |
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using _Base::_M_comp; |
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using _Base::_M_losers; |
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using _Base::_M_first_insert; |
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|
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public: |
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_LoserTree(unsigned int __k, _Compare __comp) |
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: _Base::_LoserTreeBase(__k, __comp) |
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{ } |
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|
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/** |
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* Computes the winner of the competition at position "__root". |
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* |
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* Called recursively (starting at 0) to build the initial tree. |
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* |
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* @param __root __index of the "game" to start. |
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*/ |
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unsigned int |
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__init_winner(unsigned int __root) |
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{ |
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if (__root >= _M_k) |
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return __root; |
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else |
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{ |
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unsigned int __left = __init_winner(2 * __root); |
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unsigned int __right = __init_winner(2 * __root + 1); |
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if (_M_losers[__right]._M_sup |
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|| (!_M_losers[__left]._M_sup |
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&& !_M_comp(_M_losers[__right]._M_key, |
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_M_losers[__left]._M_key))) |
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{ |
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// Left one is less or equal. |
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_M_losers[__root] = _M_losers[__right]; |
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return __left; |
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} |
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else |
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{ |
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// Right one is less. |
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_M_losers[__root] = _M_losers[__left]; |
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return __right; |
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} |
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} |
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} |
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|
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void |
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__init() |
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{ _M_losers[0] = _M_losers[__init_winner(1)]; } |
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|
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/** |
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* Delete the _M_key smallest element and insert the element __key |
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* instead. |
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* |
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* @param __key the _M_key to insert |
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* @param __sup true iff __key is an explicitly marked supremum |
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*/ |
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// Do not pass a const reference since __key will be used as local |
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// variable. |
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void |
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__delete_min_insert(_Tp __key, bool __sup) |
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{ |
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using std::swap; |
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#if _GLIBCXX_PARALLEL_ASSERTIONS |
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// no dummy sequence can ever be at the top! |
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_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
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#endif |
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|
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int __source = _M_losers[0]._M_source; |
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for (unsigned int __pos = (_M_k + __source) / 2; __pos > 0; |
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__pos /= 2) |
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{ |
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// The smaller one gets promoted. |
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if (__sup || (!_M_losers[__pos]._M_sup |
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&& _M_comp(_M_losers[__pos]._M_key, __key))) |
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{ |
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// The other one is smaller. |
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std::swap(_M_losers[__pos]._M_sup, __sup); |
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std::swap(_M_losers[__pos]._M_source, __source); |
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swap(_M_losers[__pos]._M_key, __key); |
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} |
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} |
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|
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_M_losers[0]._M_sup = __sup; |
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_M_losers[0]._M_source = __source; |
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_M_losers[0]._M_key = __key; |
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} |
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}; |
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|
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/** |
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* @brief Base class of _Loser Tree implementation using pointers. |
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*/ |
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template<typename _Tp, typename _Compare> |
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class _LoserTreePointerBase |
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{ |
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protected: |
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/** @brief Internal representation of _LoserTree __elements. */ |
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struct _Loser |
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{ |
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bool _M_sup; |
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int _M_source; |
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const _Tp* _M_keyp; |
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}; |
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|
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unsigned int _M_ik, _M_k, _M_offset; |
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_Loser* _M_losers; |
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_Compare _M_comp; |
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|
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public: |
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_LoserTreePointerBase(unsigned int __k, |
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_Compare __comp = std::less<_Tp>()) |
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: _M_comp(__comp) |
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{ |
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_M_ik = __k; |
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|
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// Next greater power of 2. |
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_M_k = 1 << (__rd_log2(_M_ik - 1) + 1); |
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_M_offset = _M_k; |
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_M_losers = new _Loser[_M_k * 2]; |
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for (unsigned int __i = _M_ik - 1; __i < _M_k; __i++) |
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_M_losers[__i + _M_k]._M_sup = true; |
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} |
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|
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~_LoserTreePointerBase() |
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{ delete[] _M_losers; } |
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|
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int __get_min_source() |
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{ return _M_losers[0]._M_source; } |
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|
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void __insert_start(const _Tp& __key, int __source, bool __sup) |
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{ |
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unsigned int __pos = _M_k + __source; |
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|
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_M_losers[__pos]._M_sup = __sup; |
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_M_losers[__pos]._M_source = __source; |
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_M_losers[__pos]._M_keyp = &__key; |
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} |
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}; |
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|
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/** |
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* @brief Stable _LoserTree implementation. |
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* |
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* The unstable variant is implemented using partial instantiation below. |
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*/ |
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template<bool __stable/* default == true */, typename _Tp, typename _Compare> |
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class _LoserTreePointer |
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: public _LoserTreePointerBase<_Tp, _Compare> |
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{ |
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typedef _LoserTreePointerBase<_Tp, _Compare> _Base; |
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using _Base::_M_k; |
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using _Base::_M_comp; |
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using _Base::_M_losers; |
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|
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public: |
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_LoserTreePointer(unsigned int __k, _Compare __comp = std::less<_Tp>()) |
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: _Base::_LoserTreePointerBase(__k, __comp) |
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{ } |
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|
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unsigned int |
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__init_winner(unsigned int __root) |
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{ |
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if (__root >= _M_k) |
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return __root; |
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else |
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{ |
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unsigned int __left = __init_winner(2 * __root); |
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unsigned int __right = __init_winner(2 * __root + 1); |
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if (_M_losers[__right]._M_sup |
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|| (!_M_losers[__left]._M_sup |
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&& !_M_comp(*_M_losers[__right]._M_keyp, |
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*_M_losers[__left]._M_keyp))) |
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{ |
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// Left one is less or equal. |
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_M_losers[__root] = _M_losers[__right]; |
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return __left; |
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} |
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else |
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{ |
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// Right one is less. |
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_M_losers[__root] = _M_losers[__left]; |
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return __right; |
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} |
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} |
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} |
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|
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void __init() |
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{ _M_losers[0] = _M_losers[__init_winner(1)]; } |
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|
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void __delete_min_insert(const _Tp& __key, bool __sup) |
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{ |
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#if _GLIBCXX_PARALLEL_ASSERTIONS |
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// no dummy sequence can ever be at the top! |
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_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 457 |
#endif |
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|
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const _Tp* __keyp = &__key; |
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int __source = _M_losers[0]._M_source; |
| 461 |
for (unsigned int __pos = (_M_k + __source) / 2; __pos > 0; |
| 462 |
__pos /= 2) |
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{ |
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// The smaller one gets promoted, ties are broken by __source. |
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if ((__sup && (!_M_losers[__pos]._M_sup |
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|| _M_losers[__pos]._M_source < __source)) |
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|| (!__sup && !_M_losers[__pos]._M_sup && |
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((_M_comp(*_M_losers[__pos]._M_keyp, *__keyp)) |
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|| (!_M_comp(*__keyp, *_M_losers[__pos]._M_keyp) |
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&& _M_losers[__pos]._M_source < __source)))) |
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{ |
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// The other one is smaller. |
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std::swap(_M_losers[__pos]._M_sup, __sup); |
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std::swap(_M_losers[__pos]._M_source, __source); |
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std::swap(_M_losers[__pos]._M_keyp, __keyp); |
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} |
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} |
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|
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_M_losers[0]._M_sup = __sup; |
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_M_losers[0]._M_source = __source; |
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_M_losers[0]._M_keyp = __keyp; |
| 482 |
} |
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}; |
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|
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/** |
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* @brief Unstable _LoserTree implementation. |
| 487 |
* |
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* The stable variant is above. |
| 489 |
*/ |
| 490 |
template<typename _Tp, typename _Compare> |
| 491 |
class _LoserTreePointer</* __stable == */false, _Tp, _Compare> |
| 492 |
: public _LoserTreePointerBase<_Tp, _Compare> |
| 493 |
{ |
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typedef _LoserTreePointerBase<_Tp, _Compare> _Base; |
| 495 |
using _Base::_M_k; |
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using _Base::_M_comp; |
| 497 |
using _Base::_M_losers; |
| 498 |
|
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public: |
| 500 |
_LoserTreePointer(unsigned int __k, _Compare __comp = std::less<_Tp>()) |
| 501 |
: _Base::_LoserTreePointerBase(__k, __comp) |
| 502 |
{ } |
| 503 |
|
| 504 |
unsigned int |
| 505 |
__init_winner(unsigned int __root) |
| 506 |
{ |
| 507 |
if (__root >= _M_k) |
| 508 |
return __root; |
| 509 |
else |
| 510 |
{ |
| 511 |
unsigned int __left = __init_winner(2 * __root); |
| 512 |
unsigned int __right = __init_winner(2 * __root + 1); |
| 513 |
if (_M_losers[__right]._M_sup |
| 514 |
|| (!_M_losers[__left]._M_sup |
| 515 |
&& !_M_comp(*_M_losers[__right]._M_keyp, |
| 516 |
*_M_losers[__left]._M_keyp))) |
| 517 |
{ |
| 518 |
// Left one is less or equal. |
| 519 |
_M_losers[__root] = _M_losers[__right]; |
| 520 |
return __left; |
| 521 |
} |
| 522 |
else |
| 523 |
{ |
| 524 |
// Right one is less. |
| 525 |
_M_losers[__root] = _M_losers[__left]; |
| 526 |
return __right; |
| 527 |
} |
| 528 |
} |
| 529 |
} |
| 530 |
|
| 531 |
void __init() |
| 532 |
{ _M_losers[0] = _M_losers[__init_winner(1)]; } |
| 533 |
|
| 534 |
void __delete_min_insert(const _Tp& __key, bool __sup) |
| 535 |
{ |
| 536 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 537 |
// no dummy sequence can ever be at the top! |
| 538 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 539 |
#endif |
| 540 |
|
| 541 |
const _Tp* __keyp = &__key; |
| 542 |
int __source = _M_losers[0]._M_source; |
| 543 |
for (unsigned int __pos = (_M_k + __source) / 2; __pos > 0; |
| 544 |
__pos /= 2) |
| 545 |
{ |
| 546 |
// The smaller one gets promoted. |
| 547 |
if (__sup || (!_M_losers[__pos]._M_sup |
| 548 |
&& _M_comp(*_M_losers[__pos]._M_keyp, *__keyp))) |
| 549 |
{ |
| 550 |
// The other one is smaller. |
| 551 |
std::swap(_M_losers[__pos]._M_sup, __sup); |
| 552 |
std::swap(_M_losers[__pos]._M_source, __source); |
| 553 |
std::swap(_M_losers[__pos]._M_keyp, __keyp); |
| 554 |
} |
| 555 |
} |
| 556 |
|
| 557 |
_M_losers[0]._M_sup = __sup; |
| 558 |
_M_losers[0]._M_source = __source; |
| 559 |
_M_losers[0]._M_keyp = __keyp; |
| 560 |
} |
| 561 |
}; |
| 562 |
|
| 563 |
/** @brief Base class for unguarded _LoserTree implementation. |
| 564 |
* |
| 565 |
* The whole element is copied into the tree structure. |
| 566 |
* |
| 567 |
* No guarding is done, therefore not a single input sequence must |
| 568 |
* run empty. Unused __sequence heads are marked with a sentinel which |
| 569 |
* is > all elements that are to be merged. |
| 570 |
* |
| 571 |
* This is a very fast variant. |
| 572 |
*/ |
| 573 |
template<typename _Tp, typename _Compare> |
| 574 |
class _LoserTreeUnguardedBase |
| 575 |
{ |
| 576 |
protected: |
| 577 |
struct _Loser |
| 578 |
{ |
| 579 |
int _M_source; |
| 580 |
_Tp _M_key; |
| 581 |
}; |
| 582 |
|
| 583 |
unsigned int _M_ik, _M_k, _M_offset; |
| 584 |
_Loser* _M_losers; |
| 585 |
_Compare _M_comp; |
| 586 |
|
| 587 |
public: |
| 588 |
_LoserTreeUnguardedBase(unsigned int __k, const _Tp& __sentinel, |
| 589 |
_Compare __comp = std::less<_Tp>()) |
| 590 |
: _M_comp(__comp) |
| 591 |
{ |
| 592 |
_M_ik = __k; |
| 593 |
|
| 594 |
// Next greater power of 2. |
| 595 |
_M_k = 1 << (__rd_log2(_M_ik - 1) + 1); |
| 596 |
_M_offset = _M_k; |
| 597 |
// Avoid default-constructing _M_losers[]._M_key |
| 598 |
_M_losers = static_cast<_Loser*>(::operator new(2 * _M_k |
| 599 |
* sizeof(_Loser))); |
| 600 |
|
| 601 |
for (unsigned int __i = 0; __i < _M_k; ++__i) |
| 602 |
{ |
| 603 |
::new(&(_M_losers[__i]._M_key)) _Tp(__sentinel); |
| 604 |
_M_losers[__i]._M_source = -1; |
| 605 |
} |
| 606 |
for (unsigned int __i = _M_k + _M_ik - 1; __i < (2 * _M_k); ++__i) |
| 607 |
{ |
| 608 |
::new(&(_M_losers[__i]._M_key)) _Tp(__sentinel); |
| 609 |
_M_losers[__i]._M_source = -1; |
| 610 |
} |
| 611 |
} |
| 612 |
|
| 613 |
~_LoserTreeUnguardedBase() |
| 614 |
{ |
| 615 |
for (unsigned int __i = 0; __i < (2 * _M_k); ++__i) |
| 616 |
_M_losers[__i].~_Loser(); |
| 617 |
::operator delete(_M_losers); |
| 618 |
} |
| 619 |
|
| 620 |
int |
| 621 |
__get_min_source() |
| 622 |
{ |
| 623 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 624 |
// no dummy sequence can ever be at the top! |
| 625 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 626 |
#endif |
| 627 |
return _M_losers[0]._M_source; |
| 628 |
} |
| 629 |
|
| 630 |
void |
| 631 |
__insert_start(const _Tp& __key, int __source, bool) |
| 632 |
{ |
| 633 |
unsigned int __pos = _M_k + __source; |
| 634 |
|
| 635 |
::new(&(_M_losers[__pos]._M_key)) _Tp(__key); |
| 636 |
_M_losers[__pos]._M_source = __source; |
| 637 |
} |
| 638 |
}; |
| 639 |
|
| 640 |
/** |
| 641 |
* @brief Stable implementation of unguarded _LoserTree. |
| 642 |
* |
| 643 |
* Unstable variant is selected below with partial specialization. |
| 644 |
*/ |
| 645 |
template<bool __stable/* default == true */, typename _Tp, typename _Compare> |
| 646 |
class _LoserTreeUnguarded |
| 647 |
: public _LoserTreeUnguardedBase<_Tp, _Compare> |
| 648 |
{ |
| 649 |
typedef _LoserTreeUnguardedBase<_Tp, _Compare> _Base; |
| 650 |
using _Base::_M_k; |
| 651 |
using _Base::_M_comp; |
| 652 |
using _Base::_M_losers; |
| 653 |
|
| 654 |
public: |
| 655 |
_LoserTreeUnguarded(unsigned int __k, const _Tp& __sentinel, |
| 656 |
_Compare __comp = std::less<_Tp>()) |
| 657 |
: _Base::_LoserTreeUnguardedBase(__k, __sentinel, __comp) |
| 658 |
{ } |
| 659 |
|
| 660 |
unsigned int |
| 661 |
__init_winner(unsigned int __root) |
| 662 |
{ |
| 663 |
if (__root >= _M_k) |
| 664 |
return __root; |
| 665 |
else |
| 666 |
{ |
| 667 |
unsigned int __left = __init_winner(2 * __root); |
| 668 |
unsigned int __right = __init_winner(2 * __root + 1); |
| 669 |
if (!_M_comp(_M_losers[__right]._M_key, |
| 670 |
_M_losers[__left]._M_key)) |
| 671 |
{ |
| 672 |
// Left one is less or equal. |
| 673 |
_M_losers[__root] = _M_losers[__right]; |
| 674 |
return __left; |
| 675 |
} |
| 676 |
else |
| 677 |
{ |
| 678 |
// Right one is less. |
| 679 |
_M_losers[__root] = _M_losers[__left]; |
| 680 |
return __right; |
| 681 |
} |
| 682 |
} |
| 683 |
} |
| 684 |
|
| 685 |
void |
| 686 |
__init() |
| 687 |
{ |
| 688 |
_M_losers[0] = _M_losers[__init_winner(1)]; |
| 689 |
|
| 690 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 691 |
// no dummy sequence can ever be at the top at the beginning |
| 692 |
// (0 sequences!) |
| 693 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 694 |
#endif |
| 695 |
} |
| 696 |
|
| 697 |
// Do not pass a const reference since __key will be used as |
| 698 |
// local variable. |
| 699 |
void |
| 700 |
__delete_min_insert(_Tp __key, bool) |
| 701 |
{ |
| 702 |
using std::swap; |
| 703 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 704 |
// no dummy sequence can ever be at the top! |
| 705 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 706 |
#endif |
| 707 |
|
| 708 |
int __source = _M_losers[0]._M_source; |
| 709 |
for (unsigned int __pos = (_M_k + __source) / 2; __pos > 0; |
| 710 |
__pos /= 2) |
| 711 |
{ |
| 712 |
// The smaller one gets promoted, ties are broken by _M_source. |
| 713 |
if (_M_comp(_M_losers[__pos]._M_key, __key) |
| 714 |
|| (!_M_comp(__key, _M_losers[__pos]._M_key) |
| 715 |
&& _M_losers[__pos]._M_source < __source)) |
| 716 |
{ |
| 717 |
// The other one is smaller. |
| 718 |
std::swap(_M_losers[__pos]._M_source, __source); |
| 719 |
swap(_M_losers[__pos]._M_key, __key); |
| 720 |
} |
| 721 |
} |
| 722 |
|
| 723 |
_M_losers[0]._M_source = __source; |
| 724 |
_M_losers[0]._M_key = __key; |
| 725 |
} |
| 726 |
}; |
| 727 |
|
| 728 |
/** |
| 729 |
* @brief Non-Stable implementation of unguarded _LoserTree. |
| 730 |
* |
| 731 |
* Stable implementation is above. |
| 732 |
*/ |
| 733 |
template<typename _Tp, typename _Compare> |
| 734 |
class _LoserTreeUnguarded</* __stable == */false, _Tp, _Compare> |
| 735 |
: public _LoserTreeUnguardedBase<_Tp, _Compare> |
| 736 |
{ |
| 737 |
typedef _LoserTreeUnguardedBase<_Tp, _Compare> _Base; |
| 738 |
using _Base::_M_k; |
| 739 |
using _Base::_M_comp; |
| 740 |
using _Base::_M_losers; |
| 741 |
|
| 742 |
public: |
| 743 |
_LoserTreeUnguarded(unsigned int __k, const _Tp& __sentinel, |
| 744 |
_Compare __comp = std::less<_Tp>()) |
| 745 |
: _Base::_LoserTreeUnguardedBase(__k, __sentinel, __comp) |
| 746 |
{ } |
| 747 |
|
| 748 |
unsigned int |
| 749 |
__init_winner(unsigned int __root) |
| 750 |
{ |
| 751 |
if (__root >= _M_k) |
| 752 |
return __root; |
| 753 |
else |
| 754 |
{ |
| 755 |
unsigned int __left = __init_winner(2 * __root); |
| 756 |
unsigned int __right = __init_winner(2 * __root + 1); |
| 757 |
|
| 758 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 759 |
// If __left one is sentinel then __right one must be, too. |
| 760 |
if (_M_losers[__left]._M_source == -1) |
| 761 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[__right]._M_source == -1); |
| 762 |
#endif |
| 763 |
|
| 764 |
if (!_M_comp(_M_losers[__right]._M_key, |
| 765 |
_M_losers[__left]._M_key)) |
| 766 |
{ |
| 767 |
// Left one is less or equal. |
| 768 |
_M_losers[__root] = _M_losers[__right]; |
| 769 |
return __left; |
| 770 |
} |
| 771 |
else |
| 772 |
{ |
| 773 |
// Right one is less. |
| 774 |
_M_losers[__root] = _M_losers[__left]; |
| 775 |
return __right; |
| 776 |
} |
| 777 |
} |
| 778 |
} |
| 779 |
|
| 780 |
void |
| 781 |
__init() |
| 782 |
{ |
| 783 |
_M_losers[0] = _M_losers[__init_winner(1)]; |
| 784 |
|
| 785 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 786 |
// no dummy sequence can ever be at the top at the beginning |
| 787 |
// (0 sequences!) |
| 788 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 789 |
#endif |
| 790 |
} |
| 791 |
|
| 792 |
// Do not pass a const reference since __key will be used as |
| 793 |
// local variable. |
| 794 |
void |
| 795 |
__delete_min_insert(_Tp __key, bool) |
| 796 |
{ |
| 797 |
using std::swap; |
| 798 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 799 |
// no dummy sequence can ever be at the top! |
| 800 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 801 |
#endif |
| 802 |
|
| 803 |
int __source = _M_losers[0]._M_source; |
| 804 |
for (unsigned int __pos = (_M_k + __source) / 2; __pos > 0; |
| 805 |
__pos /= 2) |
| 806 |
{ |
| 807 |
// The smaller one gets promoted. |
| 808 |
if (_M_comp(_M_losers[__pos]._M_key, __key)) |
| 809 |
{ |
| 810 |
// The other one is smaller. |
| 811 |
std::swap(_M_losers[__pos]._M_source, __source); |
| 812 |
swap(_M_losers[__pos]._M_key, __key); |
| 813 |
} |
| 814 |
} |
| 815 |
|
| 816 |
_M_losers[0]._M_source = __source; |
| 817 |
_M_losers[0]._M_key = __key; |
| 818 |
} |
| 819 |
}; |
| 820 |
|
| 821 |
/** @brief Unguarded loser tree, keeping only pointers to the |
| 822 |
* elements in the tree structure. |
| 823 |
* |
| 824 |
* No guarding is done, therefore not a single input sequence must |
| 825 |
* run empty. This is a very fast variant. |
| 826 |
*/ |
| 827 |
template<typename _Tp, typename _Compare> |
| 828 |
class _LoserTreePointerUnguardedBase |
| 829 |
{ |
| 830 |
protected: |
| 831 |
struct _Loser |
| 832 |
{ |
| 833 |
int _M_source; |
| 834 |
const _Tp* _M_keyp; |
| 835 |
}; |
| 836 |
|
| 837 |
unsigned int _M_ik, _M_k, _M_offset; |
| 838 |
_Loser* _M_losers; |
| 839 |
_Compare _M_comp; |
| 840 |
|
| 841 |
public: |
| 842 |
|
| 843 |
_LoserTreePointerUnguardedBase(unsigned int __k, const _Tp& __sentinel, |
| 844 |
_Compare __comp = std::less<_Tp>()) |
| 845 |
: _M_comp(__comp) |
| 846 |
{ |
| 847 |
_M_ik = __k; |
| 848 |
|
| 849 |
// Next greater power of 2. |
| 850 |
_M_k = 1 << (__rd_log2(_M_ik - 1) + 1); |
| 851 |
_M_offset = _M_k; |
| 852 |
// Avoid default-constructing _M_losers[]._M_key |
| 853 |
_M_losers = new _Loser[2 * _M_k]; |
| 854 |
|
| 855 |
for (unsigned int __i = _M_k + _M_ik - 1; __i < (2 * _M_k); ++__i) |
| 856 |
{ |
| 857 |
_M_losers[__i]._M_keyp = &__sentinel; |
| 858 |
_M_losers[__i]._M_source = -1; |
| 859 |
} |
| 860 |
} |
| 861 |
|
| 862 |
~_LoserTreePointerUnguardedBase() |
| 863 |
{ delete[] _M_losers; } |
| 864 |
|
| 865 |
int |
| 866 |
__get_min_source() |
| 867 |
{ |
| 868 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 869 |
// no dummy sequence can ever be at the top! |
| 870 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 871 |
#endif |
| 872 |
return _M_losers[0]._M_source; |
| 873 |
} |
| 874 |
|
| 875 |
void |
| 876 |
__insert_start(const _Tp& __key, int __source, bool) |
| 877 |
{ |
| 878 |
unsigned int __pos = _M_k + __source; |
| 879 |
|
| 880 |
_M_losers[__pos]._M_keyp = &__key; |
| 881 |
_M_losers[__pos]._M_source = __source; |
| 882 |
} |
| 883 |
}; |
| 884 |
|
| 885 |
/** |
| 886 |
* @brief Stable unguarded _LoserTree variant storing pointers. |
| 887 |
* |
| 888 |
* Unstable variant is implemented below using partial specialization. |
| 889 |
*/ |
| 890 |
template<bool __stable/* default == true */, typename _Tp, typename _Compare> |
| 891 |
class _LoserTreePointerUnguarded |
| 892 |
: public _LoserTreePointerUnguardedBase<_Tp, _Compare> |
| 893 |
{ |
| 894 |
typedef _LoserTreePointerUnguardedBase<_Tp, _Compare> _Base; |
| 895 |
using _Base::_M_k; |
| 896 |
using _Base::_M_comp; |
| 897 |
using _Base::_M_losers; |
| 898 |
|
| 899 |
public: |
| 900 |
_LoserTreePointerUnguarded(unsigned int __k, const _Tp& __sentinel, |
| 901 |
_Compare __comp = std::less<_Tp>()) |
| 902 |
: _Base::_LoserTreePointerUnguardedBase(__k, __sentinel, __comp) |
| 903 |
{ } |
| 904 |
|
| 905 |
unsigned int |
| 906 |
__init_winner(unsigned int __root) |
| 907 |
{ |
| 908 |
if (__root >= _M_k) |
| 909 |
return __root; |
| 910 |
else |
| 911 |
{ |
| 912 |
unsigned int __left = __init_winner(2 * __root); |
| 913 |
unsigned int __right = __init_winner(2 * __root + 1); |
| 914 |
if (!_M_comp(*_M_losers[__right]._M_keyp, |
| 915 |
*_M_losers[__left]._M_keyp)) |
| 916 |
{ |
| 917 |
// Left one is less or equal. |
| 918 |
_M_losers[__root] = _M_losers[__right]; |
| 919 |
return __left; |
| 920 |
} |
| 921 |
else |
| 922 |
{ |
| 923 |
// Right one is less. |
| 924 |
_M_losers[__root] = _M_losers[__left]; |
| 925 |
return __right; |
| 926 |
} |
| 927 |
} |
| 928 |
} |
| 929 |
|
| 930 |
void |
| 931 |
__init() |
| 932 |
{ |
| 933 |
_M_losers[0] = _M_losers[__init_winner(1)]; |
| 934 |
|
| 935 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 936 |
// no dummy sequence can ever be at the top at the beginning |
| 937 |
// (0 sequences!) |
| 938 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 939 |
#endif |
| 940 |
} |
| 941 |
|
| 942 |
void |
| 943 |
__delete_min_insert(const _Tp& __key, bool __sup) |
| 944 |
{ |
| 945 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 946 |
// no dummy sequence can ever be at the top! |
| 947 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 948 |
#endif |
| 949 |
|
| 950 |
const _Tp* __keyp = &__key; |
| 951 |
int __source = _M_losers[0]._M_source; |
| 952 |
for (unsigned int __pos = (_M_k + __source) / 2; __pos > 0; |
| 953 |
__pos /= 2) |
| 954 |
{ |
| 955 |
// The smaller one gets promoted, ties are broken by _M_source. |
| 956 |
if (_M_comp(*_M_losers[__pos]._M_keyp, *__keyp) |
| 957 |
|| (!_M_comp(*__keyp, *_M_losers[__pos]._M_keyp) |
| 958 |
&& _M_losers[__pos]._M_source < __source)) |
| 959 |
{ |
| 960 |
// The other one is smaller. |
| 961 |
std::swap(_M_losers[__pos]._M_source, __source); |
| 962 |
std::swap(_M_losers[__pos]._M_keyp, __keyp); |
| 963 |
} |
| 964 |
} |
| 965 |
|
| 966 |
_M_losers[0]._M_source = __source; |
| 967 |
_M_losers[0]._M_keyp = __keyp; |
| 968 |
} |
| 969 |
}; |
| 970 |
|
| 971 |
/** |
| 972 |
* @brief Unstable unguarded _LoserTree variant storing pointers. |
| 973 |
* |
| 974 |
* Stable variant is above. |
| 975 |
*/ |
| 976 |
template<typename _Tp, typename _Compare> |
| 977 |
class _LoserTreePointerUnguarded</* __stable == */false, _Tp, _Compare> |
| 978 |
: public _LoserTreePointerUnguardedBase<_Tp, _Compare> |
| 979 |
{ |
| 980 |
typedef _LoserTreePointerUnguardedBase<_Tp, _Compare> _Base; |
| 981 |
using _Base::_M_k; |
| 982 |
using _Base::_M_comp; |
| 983 |
using _Base::_M_losers; |
| 984 |
|
| 985 |
public: |
| 986 |
_LoserTreePointerUnguarded(unsigned int __k, const _Tp& __sentinel, |
| 987 |
_Compare __comp = std::less<_Tp>()) |
| 988 |
: _Base::_LoserTreePointerUnguardedBase(__k, __sentinel, __comp) |
| 989 |
{ } |
| 990 |
|
| 991 |
unsigned int |
| 992 |
__init_winner(unsigned int __root) |
| 993 |
{ |
| 994 |
if (__root >= _M_k) |
| 995 |
return __root; |
| 996 |
else |
| 997 |
{ |
| 998 |
unsigned int __left = __init_winner(2 * __root); |
| 999 |
unsigned int __right = __init_winner(2 * __root + 1); |
| 1000 |
|
| 1001 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 1002 |
// If __left one is sentinel then __right one must be, too. |
| 1003 |
if (_M_losers[__left]._M_source == -1) |
| 1004 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[__right]._M_source == -1); |
| 1005 |
#endif |
| 1006 |
|
| 1007 |
if (!_M_comp(*_M_losers[__right]._M_keyp, |
| 1008 |
*_M_losers[__left]._M_keyp)) |
| 1009 |
{ |
| 1010 |
// Left one is less or equal. |
| 1011 |
_M_losers[__root] = _M_losers[__right]; |
| 1012 |
return __left; |
| 1013 |
} |
| 1014 |
else |
| 1015 |
{ |
| 1016 |
// Right one is less. |
| 1017 |
_M_losers[__root] = _M_losers[__left]; |
| 1018 |
return __right; |
| 1019 |
} |
| 1020 |
} |
| 1021 |
} |
| 1022 |
|
| 1023 |
void |
| 1024 |
__init() |
| 1025 |
{ |
| 1026 |
_M_losers[0] = _M_losers[__init_winner(1)]; |
| 1027 |
|
| 1028 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 1029 |
// no dummy sequence can ever be at the top at the beginning |
| 1030 |
// (0 sequences!) |
| 1031 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 1032 |
#endif |
| 1033 |
} |
| 1034 |
|
| 1035 |
void |
| 1036 |
__delete_min_insert(const _Tp& __key, bool __sup) |
| 1037 |
{ |
| 1038 |
#if _GLIBCXX_PARALLEL_ASSERTIONS |
| 1039 |
// no dummy sequence can ever be at the top! |
| 1040 |
_GLIBCXX_PARALLEL_ASSERT(_M_losers[0]._M_source != -1); |
| 1041 |
#endif |
| 1042 |
|
| 1043 |
const _Tp* __keyp = &__key; |
| 1044 |
int __source = _M_losers[0]._M_source; |
| 1045 |
for (unsigned int __pos = (_M_k + __source) / 2; __pos > 0; |
| 1046 |
__pos /= 2) |
| 1047 |
{ |
| 1048 |
// The smaller one gets promoted. |
| 1049 |
if (_M_comp(*(_M_losers[__pos]._M_keyp), *__keyp)) |
| 1050 |
{ |
| 1051 |
// The other one is smaller. |
| 1052 |
std::swap(_M_losers[__pos]._M_source, __source); |
| 1053 |
std::swap(_M_losers[__pos]._M_keyp, __keyp); |
| 1054 |
} |
| 1055 |
} |
| 1056 |
|
| 1057 |
_M_losers[0]._M_source = __source; |
| 1058 |
_M_losers[0]._M_keyp = __keyp; |
| 1059 |
} |
| 1060 |
}; |
| 1061 |
} // namespace __gnu_parallel |
| 1062 |
|
| 1063 |
#endif /* _GLIBCXX_PARALLEL_LOSERTREE_H */ |