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algorithmfwd.h
24.17
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align.h
3.62
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alloc_traits.h
29.53
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allocated_ptr.h
3.25
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allocator.h
8.66
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atomic_base.h
58.7
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atomic_futex.h
12.08
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atomic_lockfree_defines.h
2.3
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atomic_timed_wait.h
13.18
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atomic_wait.h
12.41
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basic_ios.h
15.75
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basic_ios.tcc
5.67
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basic_string.h
156.46
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basic_string.tcc
30.3
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boost_concept_check.h
29.13
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c++0x_warning.h
1.44
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char_traits.h
29.05
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charconv.h
3.58
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chrono.h
47.06
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chrono_io.h
76.97
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codecvt.h
24.9
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2025-12-18 20:59
concept_check.h
3.32
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2025-12-18 20:59
cow_string.h
130.97
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2025-12-18 20:59
cpp_type_traits.h
14.51
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2025-12-18 20:59
cxxabi_forced.h
1.77
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2025-12-18 20:59
cxxabi_init_exception.h
2.17
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deque.tcc
41.38
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2025-12-18 20:59
enable_special_members.h
12.16
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erase_if.h
2.09
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exception.h
2.41
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exception_defines.h
1.61
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exception_ptr.h
8.05
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forward_list.h
49.92
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forward_list.tcc
13.71
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fs_dir.h
17.26
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fs_fwd.h
10.66
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fs_ops.h
10.49
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fs_path.h
41.47
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fstream.tcc
32.64
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functexcept.h
4.02
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functional_hash.h
8.79
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gslice.h
5.39
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gslice_array.h
7.71
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hash_bytes.h
2.1
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hashtable.h
88.71
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hashtable_policy.h
63.92
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indirect_array.h
7.72
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invoke.h
6.08
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ios_base.h
31.51
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istream.tcc
31.79
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iterator_concepts.h
33.72
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list.tcc
17.63
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locale_classes.h
24.79
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locale_classes.tcc
10.61
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locale_conv.h
18.74
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locale_facets.h
91.72
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locale_facets.tcc
40.42
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locale_facets_nonio.h
69.1
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locale_facets_nonio.tcc
55.69
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localefwd.h
5.8
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mask_array.h
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max_size_type.h
22
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memory_resource.h
15.73
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memoryfwd.h
2.47
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mofunc_impl.h
7.45
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move.h
6.51
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move_only_function.h
6.12
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nested_exception.h
7.51
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new_allocator.h
7.27
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2025-12-18 20:59
node_handle.h
11.08
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2025-12-18 20:59
ostream.tcc
11.83
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2025-12-18 20:59
ostream_insert.h
3.98
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2025-12-18 20:59
parse_numbers.h
7.8
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postypes.h
7.33
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2025-12-18 20:59
predefined_ops.h
9.94
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2025-12-18 20:59
ptr_traits.h
8.29
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2025-12-18 20:59
quoted_string.h
5.01
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2025-12-18 20:59
random.h
178.84
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2025-12-18 20:59
random.tcc
103.48
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2025-12-18 20:59
range_access.h
11.67
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2025-12-18 20:59
ranges_algo.h
128.65
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2025-12-18 20:59
ranges_algobase.h
18.37
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ranges_base.h
28.82
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ranges_cmp.h
5.9
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2025-12-18 20:59
ranges_uninitialized.h
17.71
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2025-12-18 20:59
ranges_util.h
24.96
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2025-12-18 20:59
refwrap.h
13.27
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2025-12-18 20:59
regex.h
104.32
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2025-12-18 20:59
regex.tcc
16.1
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2025-12-18 20:59
regex_automaton.h
10.55
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regex_automaton.tcc
7.6
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regex_compiler.h
15.92
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regex_compiler.tcc
18.48
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regex_constants.h
14.54
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regex_error.h
5.35
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regex_executor.h
8.81
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regex_executor.tcc
18.49
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regex_scanner.h
6.88
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regex_scanner.tcc
14.59
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requires_hosted.h
1.36
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semaphore_base.h
7.7
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shared_ptr.h
38.14
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2025-12-18 20:59
shared_ptr_atomic.h
22.79
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shared_ptr_base.h
65.18
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slice_array.h
9.39
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specfun.h
46.07
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sstream.tcc
9.91
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std_abs.h
4.63
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std_function.h
23.12
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std_mutex.h
6.69
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std_thread.h
9.84
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stl_algo.h
212.39
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stl_algobase.h
74.97
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stl_bvector.h
41.58
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stl_construct.h
8.47
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stl_deque.h
76.34
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stl_function.h
43.97
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stl_heap.h
20.31
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stl_iterator.h
92.81
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stl_iterator_base_funcs.h
8.75
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stl_iterator_base_types.h
9.48
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stl_list.h
70.62
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stl_map.h
54.86
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stl_multimap.h
42.71
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stl_multiset.h
36.87
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stl_numeric.h
14.25
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stl_pair.h
36.43
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stl_queue.h
28.06
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stl_raw_storage_iter.h
3.91
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stl_relops.h
4.47
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stl_set.h
37.13
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stl_stack.h
13.71
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stl_tempbuf.h
8.67
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stl_tree.h
72.06
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stl_uninitialized.h
35.63
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stl_vector.h
68.88
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stream_iterator.h
8.2
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streambuf.tcc
4.58
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streambuf_iterator.h
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string_view.tcc
7
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stringfwd.h
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this_thread_sleep.h
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uniform_int_dist.h
13
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unique_lock.h
6.16
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unique_ptr.h
35.62
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unordered_map.h
75.11
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unordered_set.h
61.7
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uses_allocator.h
6.91
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uses_allocator_args.h
8.53
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utility.h
8.12
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valarray_after.h
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valarray_array.h
20.8
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valarray_array.tcc
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valarray_before.h
18.69
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vector.tcc
31.5
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Save
Rename
// Numeric functions implementation -*- C++ -*- // Copyright (C) 2001-2023 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/>. /* * * Copyright (c) 1994 * Hewlett-Packard Company * * Permission to use, copy, modify, distribute and sell this software * and its documentation for any purpose is hereby granted without fee, * provided that the above copyright notice appear in all copies and * that both that copyright notice and this permission notice appear * in supporting documentation. Hewlett-Packard Company makes no * representations about the suitability of this software for any * purpose. It is provided "as is" without express or implied warranty. * * * Copyright (c) 1996,1997 * Silicon Graphics Computer Systems, Inc. * * Permission to use, copy, modify, distribute and sell this software * and its documentation for any purpose is hereby granted without fee, * provided that the above copyright notice appear in all copies and * that both that copyright notice and this permission notice appear * in supporting documentation. Silicon Graphics makes no * representations about the suitability of this software for any * purpose. It is provided "as is" without express or implied warranty. */ /** @file bits/stl_numeric.h * This is an internal header file, included by other library headers. * Do not attempt to use it directly. @headername{numeric} */ #ifndef _STL_NUMERIC_H #define _STL_NUMERIC_H 1 #include <bits/concept_check.h> #include <debug/debug.h> #include <bits/move.h> // For _GLIBCXX_MOVE namespace std _GLIBCXX_VISIBILITY(default) { _GLIBCXX_BEGIN_NAMESPACE_VERSION /** @defgroup numeric_ops Generalized Numeric operations * @ingroup algorithms */ #if __cplusplus >= 201103L /** * @brief Create a range of sequentially increasing values. * * For each element in the range @p [first,last) assigns @p value and * increments @p value as if by @p ++value. * * @param __first Start of range. * @param __last End of range. * @param __value Starting value. * @return Nothing. * @ingroup numeric_ops */ template<typename _ForwardIterator, typename _Tp> _GLIBCXX20_CONSTEXPR void iota(_ForwardIterator __first, _ForwardIterator __last, _Tp __value) { // concept requirements __glibcxx_function_requires(_Mutable_ForwardIteratorConcept< _ForwardIterator>) __glibcxx_function_requires(_ConvertibleConcept<_Tp, typename iterator_traits<_ForwardIterator>::value_type>) __glibcxx_requires_valid_range(__first, __last); for (; __first != __last; ++__first) { *__first = __value; ++__value; } } #endif _GLIBCXX_END_NAMESPACE_VERSION _GLIBCXX_BEGIN_NAMESPACE_ALGO #if __cplusplus > 201703L // _GLIBCXX_RESOLVE_LIB_DEFECTS // DR 2055. std::move in std::accumulate and other algorithms # define _GLIBCXX_MOVE_IF_20(_E) std::move(_E) #else # define _GLIBCXX_MOVE_IF_20(_E) _E #endif /// @addtogroup numeric_ops /// @{ /** * @brief Accumulate values in a range. * * Accumulates the values in the range [first,last) using operator+(). The * initial value is @a init. The values are processed in order. * * @param __first Start of range. * @param __last End of range. * @param __init Starting value to add other values to. * @return The final sum. */ template<typename _InputIterator, typename _Tp> _GLIBCXX20_CONSTEXPR inline _Tp accumulate(_InputIterator __first, _InputIterator __last, _Tp __init) { // concept requirements __glibcxx_function_requires(_InputIteratorConcept<_InputIterator>) __glibcxx_requires_valid_range(__first, __last); for (; __first != __last; ++__first) __init = _GLIBCXX_MOVE_IF_20(__init) + *__first; return __init; } /** * @brief Accumulate values in a range with operation. * * Accumulates the values in the range `[first,last)` using the function * object `__binary_op`. The initial value is `__init`. The values are * processed in order. * * @param __first Start of range. * @param __last End of range. * @param __init Starting value to add other values to. * @param __binary_op Function object to accumulate with. * @return The final sum. */ template<typename _InputIterator, typename _Tp, typename _BinaryOperation> _GLIBCXX20_CONSTEXPR inline _Tp accumulate(_InputIterator __first, _InputIterator __last, _Tp __init, _BinaryOperation __binary_op) { // concept requirements __glibcxx_function_requires(_InputIteratorConcept<_InputIterator>) __glibcxx_requires_valid_range(__first, __last); for (; __first != __last; ++__first) __init = __binary_op(_GLIBCXX_MOVE_IF_20(__init), *__first); return __init; } /** * @brief Compute inner product of two ranges. * * Starting with an initial value of @p __init, multiplies successive * elements from the two ranges and adds each product into the accumulated * value using operator+(). The values in the ranges are processed in * order. * * @param __first1 Start of range 1. * @param __last1 End of range 1. * @param __first2 Start of range 2. * @param __init Starting value to add other values to. * @return The final inner product. */ template<typename _InputIterator1, typename _InputIterator2, typename _Tp> _GLIBCXX20_CONSTEXPR inline _Tp inner_product(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _Tp __init) { // concept requirements __glibcxx_function_requires(_InputIteratorConcept<_InputIterator1>) __glibcxx_function_requires(_InputIteratorConcept<_InputIterator2>) __glibcxx_requires_valid_range(__first1, __last1); for (; __first1 != __last1; ++__first1, (void)++__first2) __init = _GLIBCXX_MOVE_IF_20(__init) + (*__first1 * *__first2); return __init; } /** * @brief Compute inner product of two ranges. * * Starting with an initial value of @p __init, applies @p __binary_op2 to * successive elements from the two ranges and accumulates each result into * the accumulated value using @p __binary_op1. The values in the ranges are * processed in order. * * @param __first1 Start of range 1. * @param __last1 End of range 1. * @param __first2 Start of range 2. * @param __init Starting value to add other values to. * @param __binary_op1 Function object to accumulate with. * @param __binary_op2 Function object to apply to pairs of input values. * @return The final inner product. */ template<typename _InputIterator1, typename _InputIterator2, typename _Tp, typename _BinaryOperation1, typename _BinaryOperation2> _GLIBCXX20_CONSTEXPR inline _Tp inner_product(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _Tp __init, _BinaryOperation1 __binary_op1, _BinaryOperation2 __binary_op2) { // concept requirements __glibcxx_function_requires(_InputIteratorConcept<_InputIterator1>) __glibcxx_function_requires(_InputIteratorConcept<_InputIterator2>) __glibcxx_requires_valid_range(__first1, __last1); for (; __first1 != __last1; ++__first1, (void)++__first2) __init = __binary_op1(_GLIBCXX_MOVE_IF_20(__init), __binary_op2(*__first1, *__first2)); return __init; } /** * @brief Return list of partial sums * * Accumulates the values in the range [first,last) using the @c + operator. * As each successive input value is added into the total, that partial sum * is written to @p __result. Therefore, the first value in @p __result is * the first value of the input, the second value in @p __result is the sum * of the first and second input values, and so on. * * @param __first Start of input range. * @param __last End of input range. * @param __result Output sum. * @return Iterator pointing just beyond the values written to __result. */ template<typename _InputIterator, typename _OutputIterator> _GLIBCXX20_CONSTEXPR _OutputIterator partial_sum(_InputIterator __first, _InputIterator __last, _OutputIterator __result) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; // concept requirements __glibcxx_function_requires(_InputIteratorConcept<_InputIterator>) __glibcxx_function_requires(_OutputIteratorConcept<_OutputIterator, _ValueType>) __glibcxx_requires_valid_range(__first, __last); if (__first == __last) return __result; _ValueType __value = *__first; *__result = __value; while (++__first != __last) { __value = _GLIBCXX_MOVE_IF_20(__value) + *__first; *++__result = __value; } return ++__result; } /** * @brief Return list of partial sums * * Accumulates the values in the range [first,last) using @p __binary_op. * As each successive input value is added into the total, that partial sum * is written to @p __result. Therefore, the first value in @p __result is * the first value of the input, the second value in @p __result is the sum * of the first and second input values, and so on. * * @param __first Start of input range. * @param __last End of input range. * @param __result Output sum. * @param __binary_op Function object. * @return Iterator pointing just beyond the values written to __result. */ template<typename _InputIterator, typename _OutputIterator, typename _BinaryOperation> _GLIBCXX20_CONSTEXPR _OutputIterator partial_sum(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _BinaryOperation __binary_op) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; // concept requirements __glibcxx_function_requires(_InputIteratorConcept<_InputIterator>) __glibcxx_function_requires(_OutputIteratorConcept<_OutputIterator, _ValueType>) __glibcxx_requires_valid_range(__first, __last); if (__first == __last) return __result; _ValueType __value = *__first; *__result = __value; while (++__first != __last) { __value = __binary_op(_GLIBCXX_MOVE_IF_20(__value), *__first); *++__result = __value; } return ++__result; } /** * @brief Return differences between adjacent values. * * Computes the difference between adjacent values in the range * [first,last) using operator-() and writes the result to @p __result. * * @param __first Start of input range. * @param __last End of input range. * @param __result Output sums. * @return Iterator pointing just beyond the values written to result. */ // _GLIBCXX_RESOLVE_LIB_DEFECTS // DR 539. partial_sum and adjacent_difference should mention requirements template<typename _InputIterator, typename _OutputIterator> _GLIBCXX20_CONSTEXPR _OutputIterator adjacent_difference(_InputIterator __first, _InputIterator __last, _OutputIterator __result) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; // concept requirements __glibcxx_function_requires(_InputIteratorConcept<_InputIterator>) __glibcxx_function_requires(_OutputIteratorConcept<_OutputIterator, _ValueType>) __glibcxx_requires_valid_range(__first, __last); if (__first == __last) return __result; _ValueType __value = *__first; *__result = __value; while (++__first != __last) { _ValueType __tmp = *__first; *++__result = __tmp - _GLIBCXX_MOVE_IF_20(__value); __value = _GLIBCXX_MOVE(__tmp); } return ++__result; } /** * @brief Return differences between adjacent values. * * Computes the difference between adjacent values in the range * [__first,__last) using the function object @p __binary_op and writes the * result to @p __result. * * @param __first Start of input range. * @param __last End of input range. * @param __result Output sum. * @param __binary_op Function object. * @return Iterator pointing just beyond the values written to result. */ // _GLIBCXX_RESOLVE_LIB_DEFECTS // DR 539. partial_sum and adjacent_difference should mention requirements template<typename _InputIterator, typename _OutputIterator, typename _BinaryOperation> _GLIBCXX20_CONSTEXPR _OutputIterator adjacent_difference(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _BinaryOperation __binary_op) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; // concept requirements __glibcxx_function_requires(_InputIteratorConcept<_InputIterator>) __glibcxx_function_requires(_OutputIteratorConcept<_OutputIterator, _ValueType>) __glibcxx_requires_valid_range(__first, __last); if (__first == __last) return __result; _ValueType __value = *__first; *__result = __value; while (++__first != __last) { _ValueType __tmp = *__first; *++__result = __binary_op(__tmp, _GLIBCXX_MOVE_IF_20(__value)); __value = _GLIBCXX_MOVE(__tmp); } return ++__result; } /// @} group numeric_ops #undef _GLIBCXX_MOVE_IF_20 _GLIBCXX_END_NAMESPACE_ALGO } // namespace std #endif /* _STL_NUMERIC_H */