X7ROOT File Manager
Current Path:
/usr/include/c++/4.8.2/bits
usr
/
include
/
c++
/
4.8.2
/
bits
/
📁
..
📄
algorithmfwd.h
(20.66 KB)
📄
alloc_traits.h
(17.66 KB)
📄
allocator.h
(6.1 KB)
📄
atomic_base.h
(24.99 KB)
📄
atomic_lockfree_defines.h
(2.2 KB)
📄
basic_ios.h
(14.76 KB)
📄
basic_ios.tcc
(5.89 KB)
📄
basic_string.h
(109.49 KB)
📄
basic_string.tcc
(38.43 KB)
📄
boost_concept_check.h
(26.41 KB)
📄
c++0x_warning.h
(1.47 KB)
📄
char_traits.h
(16.95 KB)
📄
codecvt.h
(16.23 KB)
📄
concept_check.h
(3.26 KB)
📄
cpp_type_traits.h
(9.56 KB)
📄
cxxabi_forced.h
(1.77 KB)
📄
deque.tcc
(31.91 KB)
📄
exception_defines.h
(1.6 KB)
📄
exception_ptr.h
(5.29 KB)
📄
forward_list.h
(46.72 KB)
📄
forward_list.tcc
(15.17 KB)
📄
fstream.tcc
(28.3 KB)
📄
functexcept.h
(3.04 KB)
📄
functional_hash.h
(6.05 KB)
📄
gslice.h
(5.39 KB)
📄
gslice_array.h
(7.59 KB)
📄
hash_bytes.h
(2.1 KB)
📄
hashtable.h
(61.05 KB)
📄
hashtable_policy.h
(52.72 KB)
📄
indirect_array.h
(7.68 KB)
📄
ios_base.h
(27.85 KB)
📄
istream.tcc
(30.36 KB)
📄
list.tcc
(12.2 KB)
📄
locale_classes.h
(22.45 KB)
📄
locale_classes.tcc
(8.18 KB)
📄
locale_facets.h
(88.84 KB)
📄
locale_facets.tcc
(38.02 KB)
📄
locale_facets_nonio.h
(63.51 KB)
📄
locale_facets_nonio.tcc
(40.85 KB)
📄
localefwd.h
(5.1 KB)
📄
mask_array.h
(7.41 KB)
📄
memoryfwd.h
(2.36 KB)
📄
move.h
(5.67 KB)
📄
nested_exception.h
(4.58 KB)
📄
ostream.tcc
(12.03 KB)
📄
ostream_insert.h
(3.91 KB)
📄
postypes.h
(8.02 KB)
📄
ptr_traits.h
(5.17 KB)
📄
random.h
(173.19 KB)
📄
random.tcc
(106.59 KB)
📄
range_access.h
(3.06 KB)
📄
regex.h
(83.49 KB)
📄
regex_compiler.h
(27.68 KB)
📄
regex_constants.h
(10.81 KB)
📄
regex_cursor.h
(2.7 KB)
📄
regex_error.h
(4.5 KB)
📄
regex_grep_matcher.h
(4.23 KB)
📄
regex_grep_matcher.tcc
(5.41 KB)
📄
regex_nfa.h
(10.65 KB)
📄
regex_nfa.tcc
(4.85 KB)
📄
shared_ptr.h
(18.97 KB)
📄
shared_ptr_base.h
(40.65 KB)
📄
slice_array.h
(9.12 KB)
📄
sstream.tcc
(9.27 KB)
📄
stl_algo.h
(212.55 KB)
📄
stl_algobase.h
(41.41 KB)
📄
stl_bvector.h
(28.98 KB)
📄
stl_construct.h
(5.05 KB)
📄
stl_deque.h
(66.41 KB)
📄
stl_function.h
(22.06 KB)
📄
stl_heap.h
(19.99 KB)
📄
stl_iterator.h
(35.77 KB)
📄
stl_iterator_base_funcs.h
(6.8 KB)
📄
stl_iterator_base_types.h
(8.19 KB)
📄
stl_list.h
(52.83 KB)
📄
stl_map.h
(36.78 KB)
📄
stl_multimap.h
(33.94 KB)
📄
stl_multiset.h
(28.37 KB)
📄
stl_numeric.h
(13.5 KB)
📄
stl_pair.h
(9.63 KB)
📄
stl_queue.h
(18.21 KB)
📄
stl_raw_storage_iter.h
(3.37 KB)
📄
stl_relops.h
(4.49 KB)
📄
stl_set.h
(28.61 KB)
📄
stl_stack.h
(9.65 KB)
📄
stl_tempbuf.h
(8.15 KB)
📄
stl_tree.h
(53.56 KB)
📄
stl_uninitialized.h
(19.95 KB)
📄
stl_vector.h
(48.64 KB)
📄
stream_iterator.h
(6.44 KB)
📄
streambuf.tcc
(4.81 KB)
📄
streambuf_iterator.h
(12.33 KB)
📄
stringfwd.h
(2.37 KB)
📄
unique_ptr.h
(17.19 KB)
📄
unordered_map.h
(47.76 KB)
📄
unordered_set.h
(43.25 KB)
📄
uses_allocator.h
(3.49 KB)
📄
valarray_after.h
(22.12 KB)
📄
valarray_array.h
(21.23 KB)
📄
valarray_array.tcc
(7.08 KB)
📄
valarray_before.h
(18.08 KB)
📄
vector.tcc
(25.55 KB)
Editing: gslice_array.h
// The template and inlines for the -*- C++ -*- gslice_array class. // Copyright (C) 1997-2013 Free Software Foundation, Inc. // // This file is part of the GNU ISO C++ Library. This library is free // software; you can redistribute it and/or modify it under the // terms of the GNU General Public License as published by the // Free Software Foundation; either version 3, or (at your option) // any later version. // This library is distributed in the hope that it will be useful, // but WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the // GNU General Public License for more details. // Under Section 7 of GPL version 3, you are granted additional // permissions described in the GCC Runtime Library Exception, version // 3.1, as published by the Free Software Foundation. // You should have received a copy of the GNU General Public License and // a copy of the GCC Runtime Library Exception along with this program; // see the files COPYING3 and COPYING.RUNTIME respectively. If not, see // <http://www.gnu.org/licenses/>. /** @file bits/gslice_array.h * This is an internal header file, included by other library headers. * Do not attempt to use it directly. @headername{valarray} */ // Written by Gabriel Dos Reis <Gabriel.Dos-Reis@DPTMaths.ENS-Cachan.Fr> #ifndef _GSLICE_ARRAY_H #define _GSLICE_ARRAY_H 1 #pragma GCC system_header namespace std _GLIBCXX_VISIBILITY(default) { _GLIBCXX_BEGIN_NAMESPACE_VERSION /** * @addtogroup numeric_arrays * @{ */ /** * @brief Reference to multi-dimensional subset of an array. * * A gslice_array is a reference to the actual elements of an array * specified by a gslice. The way to get a gslice_array is to call * operator[](gslice) on a valarray. The returned gslice_array then * permits carrying operations out on the referenced subset of elements in * the original valarray. For example, operator+=(valarray) will add * values to the subset of elements in the underlying valarray this * gslice_array refers to. * * @param Tp Element type. */ template<typename _Tp> class gslice_array { public: typedef _Tp value_type; // _GLIBCXX_RESOLVE_LIB_DEFECTS // 253. valarray helper functions are almost entirely useless /// Copy constructor. Both slices refer to the same underlying array. gslice_array(const gslice_array&); /// Assignment operator. Assigns slice elements to corresponding /// elements of @a a. gslice_array& operator=(const gslice_array&); /// Assign slice elements to corresponding elements of @a v. void operator=(const valarray<_Tp>&) const; /// Multiply slice elements by corresponding elements of @a v. void operator*=(const valarray<_Tp>&) const; /// Divide slice elements by corresponding elements of @a v. void operator/=(const valarray<_Tp>&) const; /// Modulo slice elements by corresponding elements of @a v. void operator%=(const valarray<_Tp>&) const; /// Add corresponding elements of @a v to slice elements. void operator+=(const valarray<_Tp>&) const; /// Subtract corresponding elements of @a v from slice elements. void operator-=(const valarray<_Tp>&) const; /// Logical xor slice elements with corresponding elements of @a v. void operator^=(const valarray<_Tp>&) const; /// Logical and slice elements with corresponding elements of @a v. void operator&=(const valarray<_Tp>&) const; /// Logical or slice elements with corresponding elements of @a v. void operator|=(const valarray<_Tp>&) const; /// Left shift slice elements by corresponding elements of @a v. void operator<<=(const valarray<_Tp>&) const; /// Right shift slice elements by corresponding elements of @a v. void operator>>=(const valarray<_Tp>&) const; /// Assign all slice elements to @a t. void operator=(const _Tp&) const; template<class _Dom> void operator=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator*=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator/=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator%=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator+=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator-=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator^=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator&=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator|=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator<<=(const _Expr<_Dom, _Tp>&) const; template<class _Dom> void operator>>=(const _Expr<_Dom, _Tp>&) const; private: _Array<_Tp> _M_array; const valarray<size_t>& _M_index; friend class valarray<_Tp>; gslice_array(_Array<_Tp>, const valarray<size_t>&); // not implemented gslice_array(); }; template<typename _Tp> inline gslice_array<_Tp>::gslice_array(_Array<_Tp> __a, const valarray<size_t>& __i) : _M_array(__a), _M_index(__i) {} template<typename _Tp> inline gslice_array<_Tp>::gslice_array(const gslice_array<_Tp>& __a) : _M_array(__a._M_array), _M_index(__a._M_index) {} template<typename _Tp> inline gslice_array<_Tp>& gslice_array<_Tp>::operator=(const gslice_array<_Tp>& __a) { std::__valarray_copy(_Array<_Tp>(__a._M_array), _Array<size_t>(__a._M_index), _M_index.size(), _M_array, _Array<size_t>(_M_index)); return *this; } template<typename _Tp> inline void gslice_array<_Tp>::operator=(const _Tp& __t) const { std::__valarray_fill(_M_array, _Array<size_t>(_M_index), _M_index.size(), __t); } template<typename _Tp> inline void gslice_array<_Tp>::operator=(const valarray<_Tp>& __v) const { std::__valarray_copy(_Array<_Tp>(__v), __v.size(), _M_array, _Array<size_t>(_M_index)); } template<typename _Tp> template<class _Dom> inline void gslice_array<_Tp>::operator=(const _Expr<_Dom, _Tp>& __e) const { std::__valarray_copy (__e, _M_index.size(), _M_array, _Array<size_t>(_M_index)); } #undef _DEFINE_VALARRAY_OPERATOR #define _DEFINE_VALARRAY_OPERATOR(_Op, _Name) \ template<typename _Tp> \ inline void \ gslice_array<_Tp>::operator _Op##=(const valarray<_Tp>& __v) const \ { \ _Array_augmented_##_Name(_M_array, _Array<size_t>(_M_index), \ _Array<_Tp>(__v), __v.size()); \ } \ \ template<typename _Tp> \ template<class _Dom> \ inline void \ gslice_array<_Tp>::operator _Op##= (const _Expr<_Dom, _Tp>& __e) const\ { \ _Array_augmented_##_Name(_M_array, _Array<size_t>(_M_index), __e,\ _M_index.size()); \ } _DEFINE_VALARRAY_OPERATOR(*, __multiplies) _DEFINE_VALARRAY_OPERATOR(/, __divides) _DEFINE_VALARRAY_OPERATOR(%, __modulus) _DEFINE_VALARRAY_OPERATOR(+, __plus) _DEFINE_VALARRAY_OPERATOR(-, __minus) _DEFINE_VALARRAY_OPERATOR(^, __bitwise_xor) _DEFINE_VALARRAY_OPERATOR(&, __bitwise_and) _DEFINE_VALARRAY_OPERATOR(|, __bitwise_or) _DEFINE_VALARRAY_OPERATOR(<<, __shift_left) _DEFINE_VALARRAY_OPERATOR(>>, __shift_right) #undef _DEFINE_VALARRAY_OPERATOR // @} group numeric_arrays _GLIBCXX_END_NAMESPACE_VERSION } // namespace #endif /* _GSLICE_ARRAY_H */
Upload File
Create Folder