/
usr
/
include
/
c++
/
11
/
bits
/
/usr/include/c++/11/bits
mkdir
upload
Name
Size
Mode
Actions
algorithmfwd.h
24547
0644
edit
dl
rm
align.h
3711
0644
edit
dl
rm
allocated_ptr.h
3329
0644
edit
dl
rm
allocator.h
9737
0644
edit
dl
rm
alloc_traits.h
27632
0644
edit
dl
rm
atomic_base.h
57414
0644
edit
dl
rm
atomic_futex.h
12394
0644
edit
dl
rm
atomic_lockfree_defines.h
2353
0644
edit
dl
rm
atomic_timed_wait.h
13530
0644
edit
dl
rm
atomic_wait.h
12557
0644
edit
dl
rm
basic_ios.h
16080
0644
edit
dl
rm
basic_ios.tcc
6083
0644
edit
dl
rm
basic_string.h
251944
0644
edit
dl
rm
basic_string.tcc
54189
0644
edit
dl
rm
boost_concept_check.h
27182
0644
edit
dl
rm
c++0x_warning.h
1474
0644
edit
dl
rm
charconv.h
3435
0644
edit
dl
rm
char_traits.h
29350
0644
edit
dl
rm
codecvt.h
25500
0644
edit
dl
rm
concept_check.h
3423
0644
edit
dl
rm
cpp_type_traits.h
14003
0644
edit
dl
rm
cxxabi_forced.h
1811
0644
edit
dl
rm
cxxabi_init_exception.h
2220
0644
edit
dl
rm
deque.tcc
42361
0644
edit
dl
rm
enable_special_members.h
12452
0644
edit
dl
rm
erase_if.h
2066
0644
edit
dl
rm
exception.h
2504
0644
edit
dl
rm
exception_defines.h
1645
0644
edit
dl
rm
exception_ptr.h
7640
0644
edit
dl
rm
forward_list.h
50387
0644
edit
dl
rm
forward_list.tcc
14035
0644
edit
dl
rm
fstream.tcc
33672
0644
edit
dl
rm
fs_dir.h
16409
0644
edit
dl
rm
fs_fwd.h
10771
0644
edit
dl
rm
fs_ops.h
10739
0644
edit
dl
rm
fs_path.h
39745
0644
edit
dl
rm
functexcept.h
3509
0644
edit
dl
rm
functional_hash.h
8591
0644
edit
dl
rm
gslice.h
5519
0644
edit
dl
rm
gslice_array.h
7892
0644
edit
dl
rm
hashtable.h
84951
0644
edit
dl
rm
hashtable_policy.h
62156
0644
edit
dl
rm
hash_bytes.h
2146
0644
edit
dl
rm
indirect_array.h
7902
0644
edit
dl
rm
invoke.h
6059
0644
edit
dl
rm
ios_base.h
31934
0644
edit
dl
rm
istream.tcc
31595
0644
edit
dl
rm
iterator_concepts.h
33335
0644
edit
dl
rm
list.tcc
17201
0644
edit
dl
rm
localefwd.h
5943
0644
edit
dl
rm
locale_classes.h
25044
0644
edit
dl
rm
locale_classes.tcc
8375
0644
edit
dl
rm
locale_conv.h
18822
0644
edit
dl
rm
locale_facets.h
93655
0644
edit
dl
rm
locale_facets.tcc
40463
0644
edit
dl
rm
locale_facets_nonio.h
69704
0644
edit
dl
rm
locale_facets_nonio.tcc
47533
0644
edit
dl
rm
mask_array.h
7716
0644
edit
dl
rm
max_size_type.h
22715
0644
edit
dl
rm
memoryfwd.h
2504
0644
edit
dl
rm
move.h
6798
0644
edit
dl
rm
nested_exception.h
4887
0644
edit
dl
rm
node_handle.h
10920
0644
edit
dl
rm
ostream.tcc
12315
0644
edit
dl
rm
ostream_insert.h
4038
0644
edit
dl
rm
parse_numbers.h
7980
0644
edit
dl
rm
postypes.h
8465
0644
edit
dl
rm
predefined_ops.h
10177
0644
edit
dl
rm
ptr_traits.h
6708
0644
edit
dl
rm
quoted_string.h
5053
0644
edit
dl
rm
random.h
178359
0644
edit
dl
rm
random.tcc
105688
0644
edit
dl
rm
ranges_algo.h
116831
0644
edit
dl
rm
ranges_algobase.h
18871
0644
edit
dl
rm
ranges_base.h
24392
0644
edit
dl
rm
ranges_cmp.h
6017
0644
edit
dl
rm
ranges_uninitialized.h
18130
0644
edit
dl
rm
ranges_util.h
20591
0644
edit
dl
rm
range_access.h
10707
0644
edit
dl
rm
refwrap.h
13208
0644
edit
dl
rm
regex.h
103969
0644
edit
dl
rm
regex.tcc
16492
0644
edit
dl
rm
regex_automaton.h
10788
0644
edit
dl
rm
regex_automaton.tcc
7722
0644
edit
dl
rm
regex_compiler.h
16219
0644
edit
dl
rm
regex_compiler.tcc
19158
0644
edit
dl
rm
regex_constants.h
15549
0644
edit
dl
rm
regex_error.h
5015
0644
edit
dl
rm
regex_executor.h
8852
0644
edit
dl
rm
regex_executor.tcc
18837
0644
edit
dl
rm
regex_scanner.h
7047
0644
edit
dl
rm
regex_scanner.tcc
15249
0644
edit
dl
rm
semaphore_base.h
7936
0644
edit
dl
rm
shared_ptr.h
30981
0644
edit
dl
rm
shared_ptr_atomic.h
9874
0644
edit
dl
rm
shared_ptr_base.h
54907
0644
edit
dl
rm
slice_array.h
9619
0644
edit
dl
rm
specfun.h
47240
0644
edit
dl
rm
sstream.tcc
10148
0644
edit
dl
rm
std_abs.h
3384
0644
edit
dl
rm
std_function.h
22863
0644
edit
dl
rm
std_mutex.h
6443
0644
edit
dl
rm
std_thread.h
8589
0644
edit
dl
rm
stl_algo.h
214703
0644
edit
dl
rm
stl_algobase.h
76254
0644
edit
dl
rm
stl_bvector.h
35574
0644
edit
dl
rm
stl_construct.h
8800
0644
edit
dl
rm
stl_deque.h
76970
0644
edit
dl
rm
stl_function.h
43897
0644
edit
dl
rm
stl_heap.h
20756
0644
edit
dl
rm
stl_iterator.h
78851
0644
edit
dl
rm
stl_iterator_base_funcs.h
8178
0644
edit
dl
rm
stl_iterator_base_types.h
9662
0644
edit
dl
rm
stl_list.h
69779
0644
edit
dl
rm
stl_map.h
54693
0644
edit
dl
rm
stl_multimap.h
43534
0644
edit
dl
rm
stl_multiset.h
37675
0644
edit
dl
rm
stl_numeric.h
14601
0644
edit
dl
rm
stl_pair.h
20135
0644
edit
dl
rm
stl_queue.h
25036
0644
edit
dl
rm
stl_raw_storage_iter.h
3830
0644
edit
dl
rm
stl_relops.h
4594
0644
edit
dl
rm
stl_set.h
37939
0644
edit
dl
rm
stl_stack.h
12684
0644
edit
dl
rm
stl_tempbuf.h
8655
0644
edit
dl
rm
stl_tree.h
73922
0644
edit
dl
rm
stl_uninitialized.h
34013
0644
edit
dl
rm
stl_vector.h
65919
0644
edit
dl
rm
streambuf.tcc
4929
0644
edit
dl
rm
streambuf_iterator.h
15532
0644
edit
dl
rm
stream_iterator.h
7697
0644
edit
dl
rm
stringfwd.h
2690
0644
edit
dl
rm
string_view.tcc
7167
0644
edit
dl
rm
this_thread_sleep.h
3307
0644
edit
dl
rm
uniform_int_dist.h
13052
0644
edit
dl
rm
unique_lock.h
6143
0644
edit
dl
rm
unique_ptr.h
32537
0644
edit
dl
rm
unordered_map.h
76669
0644
edit
dl
rm
unordered_set.h
62934
0644
edit
dl
rm
uses_allocator.h
6906
0644
edit
dl
rm
uses_allocator_args.h
7562
0644
edit
dl
rm
valarray_after.h
23283
0644
edit
dl
rm
valarray_array.h
21295
0644
edit
dl
rm
valarray_array.tcc
7254
0644
edit
dl
rm
valarray_before.h
19142
0644
edit
dl
rm
vector.tcc
30985
0644
edit
dl
rm
Edit:
/usr/include/c++/11/bits/valarray_before.h
(19142B)
// The template and inlines for the -*- C++ -*- internal _Meta class. // Copyright (C) 1997-2021 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/valarray_before.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@cmla.ens-cachan.fr> #ifndef _VALARRAY_BEFORE_H #define _VALARRAY_BEFORE_H 1 #pragma GCC system_header #include <bits/slice_array.h> namespace std _GLIBCXX_VISIBILITY(default) { _GLIBCXX_BEGIN_NAMESPACE_VERSION // // Implementing a loosened valarray return value is tricky. // First we need to meet 26.3.1/3: we should not add more than // two levels of template nesting. Therefore we resort to template // template to "flatten" loosened return value types. // At some point we use partial specialization to remove one level // template nesting due to _Expr<> // // This class is NOT defined. It doesn't need to. template<typename _Tp1, typename _Tp2> class _Constant; // Implementations of unary functions applied to valarray<>s. // I use hard-coded object functions here instead of a generic // approach like pointers to function: // 1) correctness: some functions take references, others values. // we can't deduce the correct type afterwards. // 2) efficiency -- object functions can be easily inlined // 3) be Koenig-lookup-friendly struct _Abs { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return abs(__t); } }; struct _Cos { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return cos(__t); } }; struct _Acos { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return acos(__t); } }; struct _Cosh { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return cosh(__t); } }; struct _Sin { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return sin(__t); } }; struct _Asin { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return asin(__t); } }; struct _Sinh { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return sinh(__t); } }; struct _Tan { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return tan(__t); } }; struct _Atan { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return atan(__t); } }; struct _Tanh { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return tanh(__t); } }; struct _Exp { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return exp(__t); } }; struct _Log { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return log(__t); } }; struct _Log10 { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return log10(__t); } }; struct _Sqrt { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return sqrt(__t); } }; // In the past, we used to tailor operator applications semantics // to the specialization of standard function objects (i.e. plus<>, etc.) // That is incorrect. Therefore we provide our own surrogates. struct __unary_plus { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return +__t; } }; struct __negate { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return -__t; } }; struct __bitwise_not { template<typename _Tp> _Tp operator()(const _Tp& __t) const { return ~__t; } }; struct __plus { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x + __y; } }; struct __minus { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x - __y; } }; struct __multiplies { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x * __y; } }; struct __divides { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x / __y; } }; struct __modulus { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x % __y; } }; struct __bitwise_xor { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x ^ __y; } }; struct __bitwise_and { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x & __y; } }; struct __bitwise_or { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x | __y; } }; struct __shift_left { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x << __y; } }; struct __shift_right { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x >> __y; } }; struct __logical_and { template<typename _Tp> bool operator()(const _Tp& __x, const _Tp& __y) const { return __x && __y; } }; struct __logical_or { template<typename _Tp> bool operator()(const _Tp& __x, const _Tp& __y) const { return __x || __y; } }; struct __logical_not { template<typename _Tp> bool operator()(const _Tp& __x) const { return !__x; } }; struct __equal_to { template<typename _Tp> bool operator()(const _Tp& __x, const _Tp& __y) const { return __x == __y; } }; struct __not_equal_to { template<typename _Tp> bool operator()(const _Tp& __x, const _Tp& __y) const { return __x != __y; } }; struct __less { template<typename _Tp> bool operator()(const _Tp& __x, const _Tp& __y) const { return __x < __y; } }; struct __greater { template<typename _Tp> bool operator()(const _Tp& __x, const _Tp& __y) const { return __x > __y; } }; struct __less_equal { template<typename _Tp> bool operator()(const _Tp& __x, const _Tp& __y) const { return __x <= __y; } }; struct __greater_equal { template<typename _Tp> bool operator()(const _Tp& __x, const _Tp& __y) const { return __x >= __y; } }; // The few binary functions we miss. struct _Atan2 { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return atan2(__x, __y); } }; struct _Pow { template<typename _Tp> _Tp operator()(const _Tp& __x, const _Tp& __y) const { return pow(__x, __y); } }; template<typename _Tp, bool _IsValidValarrayValue = !__is_abstract(_Tp)> struct __fun_with_valarray { typedef _Tp result_type; }; template<typename _Tp> struct __fun_with_valarray<_Tp, false> { // No result type defined for invalid value types. }; // We need these bits in order to recover the return type of // some functions/operators now that we're no longer using // function templates. template<typename, typename _Tp> struct __fun : __fun_with_valarray<_Tp> { }; // several specializations for relational operators. template<typename _Tp> struct __fun<__logical_not, _Tp> { typedef bool result_type; }; template<typename _Tp> struct __fun<__logical_and, _Tp> { typedef bool result_type; }; template<typename _Tp> struct __fun<__logical_or, _Tp> { typedef bool result_type; }; template<typename _Tp> struct __fun<__less, _Tp> { typedef bool result_type; }; template<typename _Tp> struct __fun<__greater, _Tp> { typedef bool result_type; }; template<typename _Tp> struct __fun<__less_equal, _Tp> { typedef bool result_type; }; template<typename _Tp> struct __fun<__greater_equal, _Tp> { typedef bool result_type; }; template<typename _Tp> struct __fun<__equal_to, _Tp> { typedef bool result_type; }; template<typename _Tp> struct __fun<__not_equal_to, _Tp> { typedef bool result_type; }; namespace __detail { // Closure types already have reference semantics and are often short-lived, // so store them by value to avoid (some cases of) dangling references to // out-of-scope temporaries. template<typename _Tp> struct _ValArrayRef { typedef const _Tp __type; }; // Use real references for std::valarray objects. template<typename _Tp> struct _ValArrayRef< valarray<_Tp> > { typedef const valarray<_Tp>& __type; }; // // Apply function taking a value/const reference closure // template<typename _Dom, typename _Arg> class _FunBase { public: typedef typename _Dom::value_type value_type; _FunBase(const _Dom& __e, value_type __f(_Arg)) : _M_expr(__e), _M_func(__f) {} value_type operator[](size_t __i) const { return _M_func (_M_expr[__i]); } size_t size() const { return _M_expr.size ();} private: typename _ValArrayRef<_Dom>::__type _M_expr; value_type (*_M_func)(_Arg); }; template<class _Dom> struct _ValFunClos<_Expr,_Dom> : _FunBase<_Dom, typename _Dom::value_type> { typedef _FunBase<_Dom, typename _Dom::value_type> _Base; typedef typename _Base::value_type value_type; typedef value_type _Tp; _ValFunClos(const _Dom& __e, _Tp __f(_Tp)) : _Base(__e, __f) {} }; template<typename _Tp> struct _ValFunClos<_ValArray,_Tp> : _FunBase<valarray<_Tp>, _Tp> { typedef _FunBase<valarray<_Tp>, _Tp> _Base; typedef _Tp value_type; _ValFunClos(const valarray<_Tp>& __v, _Tp __f(_Tp)) : _Base(__v, __f) {} }; template<class _Dom> struct _RefFunClos<_Expr, _Dom> : _FunBase<_Dom, const typename _Dom::value_type&> { typedef _FunBase<_Dom, const typename _Dom::value_type&> _Base; typedef typename _Base::value_type value_type; typedef value_type _Tp; _RefFunClos(const _Dom& __e, _Tp __f(const _Tp&)) : _Base(__e, __f) {} }; template<typename _Tp> struct _RefFunClos<_ValArray, _Tp> : _FunBase<valarray<_Tp>, const _Tp&> { typedef _FunBase<valarray<_Tp>, const _Tp&> _Base; typedef _Tp value_type; _RefFunClos(const valarray<_Tp>& __v, _Tp __f(const _Tp&)) : _Base(__v, __f) {} }; // // Unary expression closure. // template<class _Oper, class _Arg> class _UnBase { public: typedef typename _Arg::value_type _Vt; typedef typename __fun<_Oper, _Vt>::result_type value_type; _UnBase(const _Arg& __e) : _M_expr(__e) {} value_type operator[](size_t __i) const { return _Oper()(_M_expr[__i]); } size_t size() const { return _M_expr.size(); } private: typename _ValArrayRef<_Arg>::__type _M_expr; }; template<class _Oper, class _Dom> struct _UnClos<_Oper, _Expr, _Dom> : _UnBase<_Oper, _Dom> { typedef _Dom _Arg; typedef _UnBase<_Oper, _Dom> _Base; typedef typename _Base::value_type value_type; _UnClos(const _Arg& __e) : _Base(__e) {} }; template<class _Oper, typename _Tp> struct _UnClos<_Oper, _ValArray, _Tp> : _UnBase<_Oper, valarray<_Tp> > { typedef valarray<_Tp> _Arg; typedef _UnBase<_Oper, valarray<_Tp> > _Base; typedef typename _Base::value_type value_type; _UnClos(const _Arg& __e) : _Base(__e) {} }; // // Binary expression closure. // template<class _Oper, class _FirstArg, class _SecondArg> class _BinBase { public: typedef typename _FirstArg::value_type _Vt; typedef typename __fun<_Oper, _Vt>::result_type value_type; _BinBase(const _FirstArg& __e1, const _SecondArg& __e2) : _M_expr1(__e1), _M_expr2(__e2) {} value_type operator[](size_t __i) const { return _Oper()(_M_expr1[__i], _M_expr2[__i]); } size_t size() const { return _M_expr1.size(); } private: typename _ValArrayRef<_FirstArg>::__type _M_expr1; typename _ValArrayRef<_SecondArg>::__type _M_expr2; }; template<class _Oper, class _Clos> class _BinBase2 { public: typedef typename _Clos::value_type _Vt; typedef typename __fun<_Oper, _Vt>::result_type value_type; _BinBase2(const _Clos& __e, const _Vt& __t) : _M_expr1(__e), _M_expr2(__t) {} value_type operator[](size_t __i) const { return _Oper()(_M_expr1[__i], _M_expr2); } size_t size() const { return _M_expr1.size(); } private: typename _ValArrayRef<_Clos>::__type _M_expr1; _Vt _M_expr2; }; template<class _Oper, class _Clos> class _BinBase1 { public: typedef typename _Clos::value_type _Vt; typedef typename __fun<_Oper, _Vt>::result_type value_type; _BinBase1(const _Vt& __t, const _Clos& __e) : _M_expr1(__t), _M_expr2(__e) {} value_type operator[](size_t __i) const { return _Oper()(_M_expr1, _M_expr2[__i]); } size_t size() const { return _M_expr2.size(); } private: _Vt _M_expr1; typename _ValArrayRef<_Clos>::__type _M_expr2; }; template<class _Oper, class _Dom1, class _Dom2> struct _BinClos<_Oper, _Expr, _Expr, _Dom1, _Dom2> : _BinBase<_Oper, _Dom1, _Dom2> { typedef _BinBase<_Oper, _Dom1, _Dom2> _Base; typedef typename _Base::value_type value_type; _BinClos(const _Dom1& __e1, const _Dom2& __e2) : _Base(__e1, __e2) {} }; template<class _Oper, typename _Tp> struct _BinClos<_Oper, _ValArray, _ValArray, _Tp, _Tp> : _BinBase<_Oper, valarray<_Tp>, valarray<_Tp> > { typedef _BinBase<_Oper, valarray<_Tp>, valarray<_Tp> > _Base; typedef typename _Base::value_type value_type; _BinClos(const valarray<_Tp>& __v, const valarray<_Tp>& __w) : _Base(__v, __w) {} }; template<class _Oper, class _Dom> struct _BinClos<_Oper, _Expr, _ValArray, _Dom, typename _Dom::value_type> : _BinBase<_Oper, _Dom, valarray<typename _Dom::value_type> > { typedef typename _Dom::value_type _Tp; typedef _BinBase<_Oper,_Dom,valarray<_Tp> > _Base; typedef typename _Base::value_type value_type; _BinClos(const _Dom& __e1, const valarray<_Tp>& __e2) : _Base(__e1, __e2) {} }; template<class _Oper, class _Dom> struct _BinClos<_Oper, _ValArray, _Expr, typename _Dom::value_type, _Dom> : _BinBase<_Oper, valarray<typename _Dom::value_type>,_Dom> { typedef typename _Dom::value_type _Tp; typedef _BinBase<_Oper, valarray<_Tp>, _Dom> _Base; typedef typename _Base::value_type value_type; _BinClos(const valarray<_Tp>& __e1, const _Dom& __e2) : _Base(__e1, __e2) {} }; template<class _Oper, class _Dom> struct _BinClos<_Oper, _Expr, _Constant, _Dom, typename _Dom::value_type> : _BinBase2<_Oper, _Dom> { typedef typename _Dom::value_type _Tp; typedef _BinBase2<_Oper,_Dom> _Base; typedef typename _Base::value_type value_type; _BinClos(const _Dom& __e1, const _Tp& __e2) : _Base(__e1, __e2) {} }; template<class _Oper, class _Dom> struct _BinClos<_Oper, _Constant, _Expr, typename _Dom::value_type, _Dom> : _BinBase1<_Oper, _Dom> { typedef typename _Dom::value_type _Tp; typedef _BinBase1<_Oper, _Dom> _Base; typedef typename _Base::value_type value_type; _BinClos(const _Tp& __e1, const _Dom& __e2) : _Base(__e1, __e2) {} }; template<class _Oper, typename _Tp> struct _BinClos<_Oper, _ValArray, _Constant, _Tp, _Tp> : _BinBase2<_Oper, valarray<_Tp> > { typedef _BinBase2<_Oper,valarray<_Tp> > _Base; typedef typename _Base::value_type value_type; _BinClos(const valarray<_Tp>& __v, const _Tp& __t) : _Base(__v, __t) {} }; template<class _Oper, typename _Tp> struct _BinClos<_Oper, _Constant, _ValArray, _Tp, _Tp> : _BinBase1<_Oper, valarray<_Tp> > { typedef _BinBase1<_Oper, valarray<_Tp> > _Base; typedef typename _Base::value_type value_type; _BinClos(const _Tp& __t, const valarray<_Tp>& __v) : _Base(__t, __v) {} }; // // slice_array closure. // template<typename _Dom> class _SBase { public: typedef typename _Dom::value_type value_type; _SBase (const _Dom& __e, const slice& __s) : _M_expr (__e), _M_slice (__s) {} value_type operator[] (size_t __i) const { return _M_expr[_M_slice.start () + __i * _M_slice.stride ()]; } size_t size() const { return _M_slice.size (); } private: typename _ValArrayRef<_Dom>::__type _M_expr; const slice& _M_slice; }; template<typename _Tp> class _SBase<_Array<_Tp> > { public: typedef _Tp value_type; _SBase (_Array<_Tp> __a, const slice& __s) : _M_array (__a._M_data+__s.start()), _M_size (__s.size()), _M_stride (__s.stride()) {} value_type operator[] (size_t __i) const { return _M_array._M_data[__i * _M_stride]; } size_t size() const { return _M_size; } private: const _Array<_Tp> _M_array; const size_t _M_size; const size_t _M_stride; }; template<class _Dom> struct _SClos<_Expr, _Dom> : _SBase<_Dom> { typedef _SBase<_Dom> _Base; typedef typename _Base::value_type value_type; _SClos (const _Dom& __e, const slice& __s) : _Base (__e, __s) {} }; template<typename _Tp> struct _SClos<_ValArray, _Tp> : _SBase<_Array<_Tp> > { typedef _SBase<_Array<_Tp> > _Base; typedef _Tp value_type; _SClos (_Array<_Tp> __a, const slice& __s) : _Base (__a, __s) {} }; } // namespace __detail _GLIBCXX_END_NAMESPACE_VERSION } // namespace #endif /* _CPP_VALARRAY_BEFORE_H */
Save
cmd:
run