* config/xtensa/xtensa.md (entry): Do not emit .frame directive.
[official-gcc.git] / libstdc++-v3 / include / std / std_valarray.h
blobd1f43b59268d1d1a0b6a95a6231cf4475b7ac0b1
1 // The template and inlines for the -*- C++ -*- valarray class.
3 // Copyright (C) 1997, 1998, 1999, 2000, 2001, 2002, 2004, 2005, 2006
4 // Free Software Foundation, Inc.
5 //
6 // This file is part of the GNU ISO C++ Library. This library is free
7 // software; you can redistribute it and/or modify it under the
8 // terms of the GNU General Public License as published by the
9 // Free Software Foundation; either version 2, or (at your option)
10 // any later version.
12 // This library is distributed in the hope that it will be useful,
13 // but WITHOUT ANY WARRANTY; without even the implied warranty of
14 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 // GNU General Public License for more details.
17 // You should have received a copy of the GNU General Public License along
18 // with this library; see the file COPYING. If not, write to the Free
19 // Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
20 // USA.
22 // As a special exception, you may use this file as part of a free software
23 // library without restriction. Specifically, if other files instantiate
24 // templates or use macros or inline functions from this file, or you compile
25 // this file and link it with other files to produce an executable, this
26 // file does not by itself cause the resulting executable to be covered by
27 // the GNU General Public License. This exception does not however
28 // invalidate any other reasons why the executable file might be covered by
29 // the GNU General Public License.
31 // Written by Gabriel Dos Reis <Gabriel.Dos-Reis@DPTMaths.ENS-Cachan.Fr>
33 /** @file valarray
34 * This is a Standard C++ Library header.
37 #ifndef _GLIBCXX_VALARRAY
38 #define _GLIBCXX_VALARRAY 1
40 #pragma GCC system_header
42 #include <bits/c++config.h>
43 #include <cstddef>
44 #include <cmath>
45 #include <cstdlib>
46 #include <numeric>
47 #include <algorithm>
48 #include <debug/debug.h>
50 _GLIBCXX_BEGIN_NAMESPACE(std)
52 template<class _Clos, typename _Tp>
53 class _Expr;
55 template<typename _Tp1, typename _Tp2>
56 class _ValArray;
58 template<class _Oper, template<class, class> class _Meta, class _Dom>
59 struct _UnClos;
61 template<class _Oper,
62 template<class, class> class _Meta1,
63 template<class, class> class _Meta2,
64 class _Dom1, class _Dom2>
65 class _BinClos;
67 template<template<class, class> class _Meta, class _Dom>
68 class _SClos;
70 template<template<class, class> class _Meta, class _Dom>
71 class _GClos;
73 template<template<class, class> class _Meta, class _Dom>
74 class _IClos;
76 template<template<class, class> class _Meta, class _Dom>
77 class _ValFunClos;
79 template<template<class, class> class _Meta, class _Dom>
80 class _RefFunClos;
82 template<class _Tp> class valarray; // An array of type _Tp
83 class slice; // BLAS-like slice out of an array
84 template<class _Tp> class slice_array;
85 class gslice; // generalized slice out of an array
86 template<class _Tp> class gslice_array;
87 template<class _Tp> class mask_array; // masked array
88 template<class _Tp> class indirect_array; // indirected array
90 _GLIBCXX_END_NAMESPACE
92 #include <bits/valarray_array.h>
93 #include <bits/valarray_before.h>
95 _GLIBCXX_BEGIN_NAMESPACE(std)
97 /**
98 * @brief Smart array designed to support numeric processing.
100 * A valarray is an array that provides constraints intended to allow for
101 * effective optimization of numeric array processing by reducing the
102 * aliasing that can result from pointer representations. It represents a
103 * one-dimensional array from which different multidimensional subsets can
104 * be accessed and modified.
106 * @param Tp Type of object in the array.
108 template<class _Tp>
109 class valarray
111 template<class _Op>
112 struct _UnaryOp
114 typedef typename __fun<_Op, _Tp>::result_type __rt;
115 typedef _Expr<_UnClos<_Op, _ValArray, _Tp>, __rt> _Rt;
117 public:
118 typedef _Tp value_type;
120 // _lib.valarray.cons_ construct/destroy:
121 /// Construct an empty array.
122 valarray();
124 /// Construct an array with @a n elements.
125 explicit valarray(size_t);
127 /// Construct an array with @a n elements initialized to @a t.
128 valarray(const _Tp&, size_t);
130 /// Construct an array initialized to the first @a n elements of @a t.
131 valarray(const _Tp* __restrict__, size_t);
133 /// Copy constructor.
134 valarray(const valarray&);
136 /// Construct an array with the same size and values in @a sa.
137 valarray(const slice_array<_Tp>&);
139 /// Construct an array with the same size and values in @a ga.
140 valarray(const gslice_array<_Tp>&);
142 /// Construct an array with the same size and values in @a ma.
143 valarray(const mask_array<_Tp>&);
145 /// Construct an array with the same size and values in @a ia.
146 valarray(const indirect_array<_Tp>&);
148 template<class _Dom>
149 valarray(const _Expr<_Dom, _Tp>& __e);
151 ~valarray();
153 // _lib.valarray.assign_ assignment:
155 * @brief Assign elements to an array.
157 * Assign elements of array to values in @a v. Results are undefined
158 * if @a v does not have the same size as this array.
160 * @param v Valarray to get values from.
162 valarray<_Tp>& operator=(const valarray<_Tp>&);
165 * @brief Assign elements to a value.
167 * Assign all elements of array to @a t.
169 * @param t Value for elements.
171 valarray<_Tp>& operator=(const _Tp&);
174 * @brief Assign elements to an array subset.
176 * Assign elements of array to values in @a sa. Results are undefined
177 * if @a sa does not have the same size as this array.
179 * @param sa Array slice to get values from.
181 valarray<_Tp>& operator=(const slice_array<_Tp>&);
184 * @brief Assign elements to an array subset.
186 * Assign elements of array to values in @a ga. Results are undefined
187 * if @a ga does not have the same size as this array.
189 * @param ga Array slice to get values from.
191 valarray<_Tp>& operator=(const gslice_array<_Tp>&);
194 * @brief Assign elements to an array subset.
196 * Assign elements of array to values in @a ma. Results are undefined
197 * if @a ma does not have the same size as this array.
199 * @param ma Array slice to get values from.
201 valarray<_Tp>& operator=(const mask_array<_Tp>&);
204 * @brief Assign elements to an array subset.
206 * Assign elements of array to values in @a ia. Results are undefined
207 * if @a ia does not have the same size as this array.
209 * @param ia Array slice to get values from.
211 valarray<_Tp>& operator=(const indirect_array<_Tp>&);
213 template<class _Dom> valarray<_Tp>&
214 operator= (const _Expr<_Dom, _Tp>&);
216 // _lib.valarray.access_ element access:
218 * Return a reference to the i'th array element.
220 * @param i Index of element to return.
221 * @return Reference to the i'th element.
223 _Tp& operator[](size_t);
225 // _GLIBCXX_RESOLVE_LIB_DEFECTS
226 // 389. Const overload of valarray::operator[] returns by value.
227 const _Tp& operator[](size_t) const;
229 // _lib.valarray.sub_ subset operations:
231 * @brief Return an array subset.
233 * Returns a new valarray containing the elements of the array
234 * indicated by the slice argument. The new valarray has the same size
235 * as the input slice. @see slice.
237 * @param s The source slice.
238 * @return New valarray containing elements in @a s.
240 _Expr<_SClos<_ValArray, _Tp>, _Tp> operator[](slice) const;
243 * @brief Return a reference to an array subset.
245 * Returns a new valarray containing the elements of the array
246 * indicated by the slice argument. The new valarray has the same size
247 * as the input slice. @see slice.
249 * @param s The source slice.
250 * @return New valarray containing elements in @a s.
252 slice_array<_Tp> operator[](slice);
255 * @brief Return an array subset.
257 * Returns a slice_array referencing the elements of the array
258 * indicated by the slice argument. @see gslice.
260 * @param s The source slice.
261 * @return Slice_array referencing elements indicated by @a s.
263 _Expr<_GClos<_ValArray, _Tp>, _Tp> operator[](const gslice&) const;
266 * @brief Return a reference to an array subset.
268 * Returns a new valarray containing the elements of the array
269 * indicated by the gslice argument. The new valarray has
270 * the same size as the input gslice. @see gslice.
272 * @param s The source gslice.
273 * @return New valarray containing elements in @a s.
275 gslice_array<_Tp> operator[](const gslice&);
278 * @brief Return an array subset.
280 * Returns a new valarray containing the elements of the array
281 * indicated by the argument. The input is a valarray of bool which
282 * represents a bitmask indicating which elements should be copied into
283 * the new valarray. Each element of the array is added to the return
284 * valarray if the corresponding element of the argument is true.
286 * @param m The valarray bitmask.
287 * @return New valarray containing elements indicated by @a m.
289 valarray<_Tp> operator[](const valarray<bool>&) const;
292 * @brief Return a reference to an array subset.
294 * Returns a new mask_array referencing the elements of the array
295 * indicated by the argument. The input is a valarray of bool which
296 * represents a bitmask indicating which elements are part of the
297 * subset. Elements of the array are part of the subset if the
298 * corresponding element of the argument is true.
300 * @param m The valarray bitmask.
301 * @return New valarray containing elements indicated by @a m.
303 mask_array<_Tp> operator[](const valarray<bool>&);
306 * @brief Return an array subset.
308 * Returns a new valarray containing the elements of the array
309 * indicated by the argument. The elements in the argument are
310 * interpreted as the indices of elements of this valarray to copy to
311 * the return valarray.
313 * @param i The valarray element index list.
314 * @return New valarray containing elements in @a s.
316 _Expr<_IClos<_ValArray, _Tp>, _Tp>
317 operator[](const valarray<size_t>&) const;
320 * @brief Return a reference to an array subset.
322 * Returns an indirect_array referencing the elements of the array
323 * indicated by the argument. The elements in the argument are
324 * interpreted as the indices of elements of this valarray to include
325 * in the subset. The returned indirect_array refers to these
326 * elements.
328 * @param i The valarray element index list.
329 * @return Indirect_array referencing elements in @a i.
331 indirect_array<_Tp> operator[](const valarray<size_t>&);
333 // _lib.valarray.unary_ unary operators:
334 /// Return a new valarray by applying unary + to each element.
335 typename _UnaryOp<__unary_plus>::_Rt operator+() const;
337 /// Return a new valarray by applying unary - to each element.
338 typename _UnaryOp<__negate>::_Rt operator-() const;
340 /// Return a new valarray by applying unary ~ to each element.
341 typename _UnaryOp<__bitwise_not>::_Rt operator~() const;
343 /// Return a new valarray by applying unary ! to each element.
344 typename _UnaryOp<__logical_not>::_Rt operator!() const;
346 // _lib.valarray.cassign_ computed assignment:
347 /// Multiply each element of array by @a t.
348 valarray<_Tp>& operator*=(const _Tp&);
350 /// Divide each element of array by @a t.
351 valarray<_Tp>& operator/=(const _Tp&);
353 /// Set each element e of array to e % @a t.
354 valarray<_Tp>& operator%=(const _Tp&);
356 /// Add @a t to each element of array.
357 valarray<_Tp>& operator+=(const _Tp&);
359 /// Subtract @a t to each element of array.
360 valarray<_Tp>& operator-=(const _Tp&);
362 /// Set each element e of array to e ^ @a t.
363 valarray<_Tp>& operator^=(const _Tp&);
365 /// Set each element e of array to e & @a t.
366 valarray<_Tp>& operator&=(const _Tp&);
368 /// Set each element e of array to e | @a t.
369 valarray<_Tp>& operator|=(const _Tp&);
371 /// Left shift each element e of array by @a t bits.
372 valarray<_Tp>& operator<<=(const _Tp&);
374 /// Right shift each element e of array by @a t bits.
375 valarray<_Tp>& operator>>=(const _Tp&);
377 /// Multiply elements of array by corresponding elements of @a v.
378 valarray<_Tp>& operator*=(const valarray<_Tp>&);
380 /// Divide elements of array by corresponding elements of @a v.
381 valarray<_Tp>& operator/=(const valarray<_Tp>&);
383 /// Modulo elements of array by corresponding elements of @a v.
384 valarray<_Tp>& operator%=(const valarray<_Tp>&);
386 /// Add corresponding elements of @a v to elements of array.
387 valarray<_Tp>& operator+=(const valarray<_Tp>&);
389 /// Subtract corresponding elements of @a v from elements of array.
390 valarray<_Tp>& operator-=(const valarray<_Tp>&);
392 /// Logical xor corresponding elements of @a v with elements of array.
393 valarray<_Tp>& operator^=(const valarray<_Tp>&);
395 /// Logical or corresponding elements of @a v with elements of array.
396 valarray<_Tp>& operator|=(const valarray<_Tp>&);
398 /// Logical and corresponding elements of @a v with elements of array.
399 valarray<_Tp>& operator&=(const valarray<_Tp>&);
401 /// Left shift elements of array by corresponding elements of @a v.
402 valarray<_Tp>& operator<<=(const valarray<_Tp>&);
404 /// Right shift elements of array by corresponding elements of @a v.
405 valarray<_Tp>& operator>>=(const valarray<_Tp>&);
407 template<class _Dom>
408 valarray<_Tp>& operator*=(const _Expr<_Dom, _Tp>&);
409 template<class _Dom>
410 valarray<_Tp>& operator/=(const _Expr<_Dom, _Tp>&);
411 template<class _Dom>
412 valarray<_Tp>& operator%=(const _Expr<_Dom, _Tp>&);
413 template<class _Dom>
414 valarray<_Tp>& operator+=(const _Expr<_Dom, _Tp>&);
415 template<class _Dom>
416 valarray<_Tp>& operator-=(const _Expr<_Dom, _Tp>&);
417 template<class _Dom>
418 valarray<_Tp>& operator^=(const _Expr<_Dom, _Tp>&);
419 template<class _Dom>
420 valarray<_Tp>& operator|=(const _Expr<_Dom, _Tp>&);
421 template<class _Dom>
422 valarray<_Tp>& operator&=(const _Expr<_Dom, _Tp>&);
423 template<class _Dom>
424 valarray<_Tp>& operator<<=(const _Expr<_Dom, _Tp>&);
425 template<class _Dom>
426 valarray<_Tp>& operator>>=(const _Expr<_Dom, _Tp>&);
428 // _lib.valarray.members_ member functions:
429 /// Return the number of elements in array.
430 size_t size() const;
433 * @brief Return the sum of all elements in the array.
435 * Accumulates the sum of all elements into a Tp using +=. The order
436 * of adding the elements is unspecified.
438 _Tp sum() const;
440 /// Return the minimum element using operator<().
441 _Tp min() const;
443 /// Return the maximum element using operator<().
444 _Tp max() const;
447 * @brief Return a shifted array.
449 * A new valarray is constructed as a copy of this array with elements
450 * in shifted positions. For an element with index i, the new position
451 * is i - n. The new valarray has the same size as the current one.
452 * New elements without a value are set to 0. Elements whose new
453 * position is outside the bounds of the array are discarded.
455 * Positive arguments shift toward index 0, discarding elements [0, n).
456 * Negative arguments discard elements from the top of the array.
458 * @param n Number of element positions to shift.
459 * @return New valarray with elements in shifted positions.
461 valarray<_Tp> shift (int) const;
464 * @brief Return a rotated array.
466 * A new valarray is constructed as a copy of this array with elements
467 * in shifted positions. For an element with index i, the new position
468 * is (i - n) % size(). The new valarray has the same size as the
469 * current one. Elements that are shifted beyond the array bounds are
470 * shifted into the other end of the array. No elements are lost.
472 * Positive arguments shift toward index 0, wrapping around the top.
473 * Negative arguments shift towards the top, wrapping around to 0.
475 * @param n Number of element positions to rotate.
476 * @return New valarray with elements in shifted positions.
478 valarray<_Tp> cshift(int) const;
481 * @brief Apply a function to the array.
483 * Returns a new valarray with elements assigned to the result of
484 * applying func to the corresponding element of this array. The new
485 * array has the same size as this one.
487 * @param func Function of Tp returning Tp to apply.
488 * @return New valarray with transformed elements.
490 _Expr<_ValFunClos<_ValArray, _Tp>, _Tp> apply(_Tp func(_Tp)) const;
493 * @brief Apply a function to the array.
495 * Returns a new valarray with elements assigned to the result of
496 * applying func to the corresponding element of this array. The new
497 * array has the same size as this one.
499 * @param func Function of const Tp& returning Tp to apply.
500 * @return New valarray with transformed elements.
502 _Expr<_RefFunClos<_ValArray, _Tp>, _Tp> apply(_Tp func(const _Tp&)) const;
505 * @brief Resize array.
507 * Resize this array to @a size and set all elements to @a c. All
508 * references and iterators are invalidated.
510 * @param size New array size.
511 * @param c New value for all elements.
513 void resize(size_t __size, _Tp __c = _Tp());
515 private:
516 size_t _M_size;
517 _Tp* __restrict__ _M_data;
519 friend class _Array<_Tp>;
522 template<typename _Tp>
523 inline const _Tp&
524 valarray<_Tp>::operator[](size_t __i) const
526 __glibcxx_requires_subscript(__i);
527 return _M_data[__i];
530 template<typename _Tp>
531 inline _Tp&
532 valarray<_Tp>::operator[](size_t __i)
534 __glibcxx_requires_subscript(__i);
535 return _M_data[__i];
538 _GLIBCXX_END_NAMESPACE
540 #include <bits/valarray_after.h>
541 #include <bits/slice_array.h>
542 #include <bits/gslice.h>
543 #include <bits/gslice_array.h>
544 #include <bits/mask_array.h>
545 #include <bits/indirect_array.h>
547 _GLIBCXX_BEGIN_NAMESPACE(std)
549 template<typename _Tp>
550 inline
551 valarray<_Tp>::valarray() : _M_size(0), _M_data(0) {}
553 template<typename _Tp>
554 inline
555 valarray<_Tp>::valarray(size_t __n)
556 : _M_size(__n), _M_data(__valarray_get_storage<_Tp>(__n))
557 { std::__valarray_default_construct(_M_data, _M_data + __n); }
559 template<typename _Tp>
560 inline
561 valarray<_Tp>::valarray(const _Tp& __t, size_t __n)
562 : _M_size(__n), _M_data(__valarray_get_storage<_Tp>(__n))
563 { std::__valarray_fill_construct(_M_data, _M_data + __n, __t); }
565 template<typename _Tp>
566 inline
567 valarray<_Tp>::valarray(const _Tp* __restrict__ __p, size_t __n)
568 : _M_size(__n), _M_data(__valarray_get_storage<_Tp>(__n))
570 _GLIBCXX_DEBUG_ASSERT(__p != 0 || __n == 0);
571 std::__valarray_copy_construct(__p, __p + __n, _M_data);
574 template<typename _Tp>
575 inline
576 valarray<_Tp>::valarray(const valarray<_Tp>& __v)
577 : _M_size(__v._M_size), _M_data(__valarray_get_storage<_Tp>(__v._M_size))
578 { std::__valarray_copy_construct(__v._M_data, __v._M_data + _M_size,
579 _M_data); }
581 template<typename _Tp>
582 inline
583 valarray<_Tp>::valarray(const slice_array<_Tp>& __sa)
584 : _M_size(__sa._M_sz), _M_data(__valarray_get_storage<_Tp>(__sa._M_sz))
586 std::__valarray_copy_construct
587 (__sa._M_array, __sa._M_sz, __sa._M_stride, _Array<_Tp>(_M_data));
590 template<typename _Tp>
591 inline
592 valarray<_Tp>::valarray(const gslice_array<_Tp>& __ga)
593 : _M_size(__ga._M_index.size()),
594 _M_data(__valarray_get_storage<_Tp>(_M_size))
596 std::__valarray_copy_construct
597 (__ga._M_array, _Array<size_t>(__ga._M_index),
598 _Array<_Tp>(_M_data), _M_size);
601 template<typename _Tp>
602 inline
603 valarray<_Tp>::valarray(const mask_array<_Tp>& __ma)
604 : _M_size(__ma._M_sz), _M_data(__valarray_get_storage<_Tp>(__ma._M_sz))
606 std::__valarray_copy_construct
607 (__ma._M_array, __ma._M_mask, _Array<_Tp>(_M_data), _M_size);
610 template<typename _Tp>
611 inline
612 valarray<_Tp>::valarray(const indirect_array<_Tp>& __ia)
613 : _M_size(__ia._M_sz), _M_data(__valarray_get_storage<_Tp>(__ia._M_sz))
615 std::__valarray_copy_construct
616 (__ia._M_array, __ia._M_index, _Array<_Tp>(_M_data), _M_size);
619 template<typename _Tp> template<class _Dom>
620 inline
621 valarray<_Tp>::valarray(const _Expr<_Dom, _Tp>& __e)
622 : _M_size(__e.size()), _M_data(__valarray_get_storage<_Tp>(_M_size))
623 { std::__valarray_copy_construct(__e, _M_size, _Array<_Tp>(_M_data)); }
625 template<typename _Tp>
626 inline
627 valarray<_Tp>::~valarray()
629 std::__valarray_destroy_elements(_M_data, _M_data + _M_size);
630 std::__valarray_release_memory(_M_data);
633 template<typename _Tp>
634 inline valarray<_Tp>&
635 valarray<_Tp>::operator=(const valarray<_Tp>& __v)
637 _GLIBCXX_DEBUG_ASSERT(_M_size == __v._M_size);
638 std::__valarray_copy(__v._M_data, _M_size, _M_data);
639 return *this;
642 template<typename _Tp>
643 inline valarray<_Tp>&
644 valarray<_Tp>::operator=(const _Tp& __t)
646 std::__valarray_fill(_M_data, _M_size, __t);
647 return *this;
650 template<typename _Tp>
651 inline valarray<_Tp>&
652 valarray<_Tp>::operator=(const slice_array<_Tp>& __sa)
654 _GLIBCXX_DEBUG_ASSERT(_M_size == __sa._M_sz);
655 std::__valarray_copy(__sa._M_array, __sa._M_sz,
656 __sa._M_stride, _Array<_Tp>(_M_data));
657 return *this;
660 template<typename _Tp>
661 inline valarray<_Tp>&
662 valarray<_Tp>::operator=(const gslice_array<_Tp>& __ga)
664 _GLIBCXX_DEBUG_ASSERT(_M_size == __ga._M_index.size());
665 std::__valarray_copy(__ga._M_array, _Array<size_t>(__ga._M_index),
666 _Array<_Tp>(_M_data), _M_size);
667 return *this;
670 template<typename _Tp>
671 inline valarray<_Tp>&
672 valarray<_Tp>::operator=(const mask_array<_Tp>& __ma)
674 _GLIBCXX_DEBUG_ASSERT(_M_size == __ma._M_sz);
675 std::__valarray_copy(__ma._M_array, __ma._M_mask,
676 _Array<_Tp>(_M_data), _M_size);
677 return *this;
680 template<typename _Tp>
681 inline valarray<_Tp>&
682 valarray<_Tp>::operator=(const indirect_array<_Tp>& __ia)
684 _GLIBCXX_DEBUG_ASSERT(_M_size == __ia._M_sz);
685 std::__valarray_copy(__ia._M_array, __ia._M_index,
686 _Array<_Tp>(_M_data), _M_size);
687 return *this;
690 template<typename _Tp> template<class _Dom>
691 inline valarray<_Tp>&
692 valarray<_Tp>::operator=(const _Expr<_Dom, _Tp>& __e)
694 _GLIBCXX_DEBUG_ASSERT(_M_size == __e.size());
695 std::__valarray_copy(__e, _M_size, _Array<_Tp>(_M_data));
696 return *this;
699 template<typename _Tp>
700 inline _Expr<_SClos<_ValArray,_Tp>, _Tp>
701 valarray<_Tp>::operator[](slice __s) const
703 typedef _SClos<_ValArray,_Tp> _Closure;
704 return _Expr<_Closure, _Tp>(_Closure (_Array<_Tp>(_M_data), __s));
707 template<typename _Tp>
708 inline slice_array<_Tp>
709 valarray<_Tp>::operator[](slice __s)
710 { return slice_array<_Tp>(_Array<_Tp>(_M_data), __s); }
712 template<typename _Tp>
713 inline _Expr<_GClos<_ValArray,_Tp>, _Tp>
714 valarray<_Tp>::operator[](const gslice& __gs) const
716 typedef _GClos<_ValArray,_Tp> _Closure;
717 return _Expr<_Closure, _Tp>
718 (_Closure(_Array<_Tp>(_M_data), __gs._M_index->_M_index));
721 template<typename _Tp>
722 inline gslice_array<_Tp>
723 valarray<_Tp>::operator[](const gslice& __gs)
725 return gslice_array<_Tp>
726 (_Array<_Tp>(_M_data), __gs._M_index->_M_index);
729 template<typename _Tp>
730 inline valarray<_Tp>
731 valarray<_Tp>::operator[](const valarray<bool>& __m) const
733 size_t __s = 0;
734 size_t __e = __m.size();
735 for (size_t __i=0; __i<__e; ++__i)
736 if (__m[__i]) ++__s;
737 return valarray<_Tp>(mask_array<_Tp>(_Array<_Tp>(_M_data), __s,
738 _Array<bool> (__m)));
741 template<typename _Tp>
742 inline mask_array<_Tp>
743 valarray<_Tp>::operator[](const valarray<bool>& __m)
745 size_t __s = 0;
746 size_t __e = __m.size();
747 for (size_t __i=0; __i<__e; ++__i)
748 if (__m[__i]) ++__s;
749 return mask_array<_Tp>(_Array<_Tp>(_M_data), __s, _Array<bool>(__m));
752 template<typename _Tp>
753 inline _Expr<_IClos<_ValArray,_Tp>, _Tp>
754 valarray<_Tp>::operator[](const valarray<size_t>& __i) const
756 typedef _IClos<_ValArray,_Tp> _Closure;
757 return _Expr<_Closure, _Tp>(_Closure(*this, __i));
760 template<typename _Tp>
761 inline indirect_array<_Tp>
762 valarray<_Tp>::operator[](const valarray<size_t>& __i)
764 return indirect_array<_Tp>(_Array<_Tp>(_M_data), __i.size(),
765 _Array<size_t>(__i));
768 template<class _Tp>
769 inline size_t
770 valarray<_Tp>::size() const
771 { return _M_size; }
773 template<class _Tp>
774 inline _Tp
775 valarray<_Tp>::sum() const
777 _GLIBCXX_DEBUG_ASSERT(_M_size > 0);
778 return std::__valarray_sum(_M_data, _M_data + _M_size);
781 template<class _Tp>
782 inline valarray<_Tp>
783 valarray<_Tp>::shift(int __n) const
785 valarray<_Tp> __ret;
786 _Tp* __restrict__ __tmp_M_data =
787 std::__valarray_get_storage<_Tp>(_M_size);
789 if (__n == 0) // no shift
790 std::__valarray_copy_construct(_M_data, _M_data + _M_size,
791 __tmp_M_data);
792 else if (__n > 0) // __n > 0: shift left
794 if (size_t(__n) > _M_size)
795 std::__valarray_default_construct(__tmp_M_data,
796 __tmp_M_data + __n);
797 else
799 std::__valarray_copy_construct(_M_data + __n,
800 _M_data + _M_size,
801 __tmp_M_data);
802 std::__valarray_default_construct(__tmp_M_data + _M_size - __n,
803 __tmp_M_data + _M_size);
806 else // __n < 0: shift right
808 std::__valarray_copy_construct(_M_data, _M_data + _M_size + __n,
809 __tmp_M_data - __n);
810 std::__valarray_default_construct(__tmp_M_data,
811 __tmp_M_data - __n);
814 __ret._M_size = _M_size;
815 __ret._M_data = __tmp_M_data;
816 return __ret;
819 template<class _Tp>
820 inline valarray<_Tp>
821 valarray<_Tp>::cshift(int __n) const
823 valarray<_Tp> __ret;
824 _Tp* __restrict__ __tmp_M_data =
825 std::__valarray_get_storage<_Tp>(_M_size);
827 if (__n == 0) // no cshift
828 std::__valarray_copy_construct(_M_data, _M_data + _M_size,
829 __tmp_M_data);
830 else if (__n > 0) // cshift left
832 std::__valarray_copy_construct(_M_data, _M_data + __n,
833 __tmp_M_data + _M_size - __n);
834 std::__valarray_copy_construct(_M_data + __n, _M_data + _M_size,
835 __tmp_M_data);
837 else // cshift right
839 std::__valarray_copy_construct
840 (_M_data + _M_size + __n, _M_data + _M_size, __tmp_M_data);
841 std::__valarray_copy_construct
842 (_M_data, _M_data + _M_size + __n, __tmp_M_data - __n);
845 __ret._M_size = _M_size;
846 __ret._M_data = __tmp_M_data;
847 return __ret;
850 template<class _Tp>
851 inline void
852 valarray<_Tp>::resize(size_t __n, _Tp __c)
854 // This complication is so to make valarray<valarray<T> > work
855 // even though it is not required by the standard. Nobody should
856 // be saying valarray<valarray<T> > anyway. See the specs.
857 std::__valarray_destroy_elements(_M_data, _M_data + _M_size);
858 if (_M_size != __n)
860 std::__valarray_release_memory(_M_data);
861 _M_size = __n;
862 _M_data = __valarray_get_storage<_Tp>(__n);
864 std::__valarray_fill_construct(_M_data, _M_data + __n, __c);
867 template<typename _Tp>
868 inline _Tp
869 valarray<_Tp>::min() const
871 _GLIBCXX_DEBUG_ASSERT(_M_size > 0);
872 return *std::min_element(_M_data, _M_data+_M_size);
875 template<typename _Tp>
876 inline _Tp
877 valarray<_Tp>::max() const
879 _GLIBCXX_DEBUG_ASSERT(_M_size > 0);
880 return *std::max_element(_M_data, _M_data+_M_size);
883 template<class _Tp>
884 inline _Expr<_ValFunClos<_ValArray, _Tp>, _Tp>
885 valarray<_Tp>::apply(_Tp func(_Tp)) const
887 typedef _ValFunClos<_ValArray, _Tp> _Closure;
888 return _Expr<_Closure, _Tp>(_Closure(*this, func));
891 template<class _Tp>
892 inline _Expr<_RefFunClos<_ValArray, _Tp>, _Tp>
893 valarray<_Tp>::apply(_Tp func(const _Tp &)) const
895 typedef _RefFunClos<_ValArray, _Tp> _Closure;
896 return _Expr<_Closure, _Tp>(_Closure(*this, func));
899 #define _DEFINE_VALARRAY_UNARY_OPERATOR(_Op, _Name) \
900 template<typename _Tp> \
901 inline typename valarray<_Tp>::template _UnaryOp<_Name>::_Rt \
902 valarray<_Tp>::operator _Op() const \
904 typedef _UnClos<_Name, _ValArray, _Tp> _Closure; \
905 typedef typename __fun<_Name, _Tp>::result_type _Rt; \
906 return _Expr<_Closure, _Rt>(_Closure(*this)); \
909 _DEFINE_VALARRAY_UNARY_OPERATOR(+, __unary_plus)
910 _DEFINE_VALARRAY_UNARY_OPERATOR(-, __negate)
911 _DEFINE_VALARRAY_UNARY_OPERATOR(~, __bitwise_not)
912 _DEFINE_VALARRAY_UNARY_OPERATOR (!, __logical_not)
914 #undef _DEFINE_VALARRAY_UNARY_OPERATOR
916 #define _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(_Op, _Name) \
917 template<class _Tp> \
918 inline valarray<_Tp>& \
919 valarray<_Tp>::operator _Op##=(const _Tp &__t) \
921 _Array_augmented_##_Name(_Array<_Tp>(_M_data), _M_size, __t); \
922 return *this; \
925 template<class _Tp> \
926 inline valarray<_Tp>& \
927 valarray<_Tp>::operator _Op##=(const valarray<_Tp> &__v) \
929 _GLIBCXX_DEBUG_ASSERT(_M_size == __v._M_size); \
930 _Array_augmented_##_Name(_Array<_Tp>(_M_data), _M_size, \
931 _Array<_Tp>(__v._M_data)); \
932 return *this; \
935 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(+, __plus)
936 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(-, __minus)
937 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(*, __multiplies)
938 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(/, __divides)
939 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(%, __modulus)
940 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(^, __bitwise_xor)
941 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(&, __bitwise_and)
942 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(|, __bitwise_or)
943 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(<<, __shift_left)
944 _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(>>, __shift_right)
946 #undef _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT
948 #define _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(_Op, _Name) \
949 template<class _Tp> template<class _Dom> \
950 inline valarray<_Tp>& \
951 valarray<_Tp>::operator _Op##=(const _Expr<_Dom, _Tp>& __e) \
953 _Array_augmented_##_Name(_Array<_Tp>(_M_data), __e, _M_size); \
954 return *this; \
957 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(+, __plus)
958 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(-, __minus)
959 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(*, __multiplies)
960 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(/, __divides)
961 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(%, __modulus)
962 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(^, __bitwise_xor)
963 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(&, __bitwise_and)
964 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(|, __bitwise_or)
965 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(<<, __shift_left)
966 _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(>>, __shift_right)
968 #undef _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT
971 #define _DEFINE_BINARY_OPERATOR(_Op, _Name) \
972 template<typename _Tp> \
973 inline _Expr<_BinClos<_Name, _ValArray, _ValArray, _Tp, _Tp>, \
974 typename __fun<_Name, _Tp>::result_type> \
975 operator _Op(const valarray<_Tp>& __v, const valarray<_Tp>& __w) \
977 _GLIBCXX_DEBUG_ASSERT(__v.size() == __w.size()); \
978 typedef _BinClos<_Name, _ValArray, _ValArray, _Tp, _Tp> _Closure; \
979 typedef typename __fun<_Name, _Tp>::result_type _Rt; \
980 return _Expr<_Closure, _Rt>(_Closure(__v, __w)); \
983 template<typename _Tp> \
984 inline _Expr<_BinClos<_Name, _ValArray,_Constant, _Tp, _Tp>, \
985 typename __fun<_Name, _Tp>::result_type> \
986 operator _Op(const valarray<_Tp>& __v, const _Tp& __t) \
988 typedef _BinClos<_Name, _ValArray, _Constant, _Tp, _Tp> _Closure; \
989 typedef typename __fun<_Name, _Tp>::result_type _Rt; \
990 return _Expr<_Closure, _Rt>(_Closure(__v, __t)); \
993 template<typename _Tp> \
994 inline _Expr<_BinClos<_Name, _Constant, _ValArray, _Tp, _Tp>, \
995 typename __fun<_Name, _Tp>::result_type> \
996 operator _Op(const _Tp& __t, const valarray<_Tp>& __v) \
998 typedef _BinClos<_Name, _Constant, _ValArray, _Tp, _Tp> _Closure; \
999 typedef typename __fun<_Name, _Tp>::result_type _Rt; \
1000 return _Expr<_Closure, _Tp>(_Closure(__t, __v)); \
1003 _DEFINE_BINARY_OPERATOR(+, __plus)
1004 _DEFINE_BINARY_OPERATOR(-, __minus)
1005 _DEFINE_BINARY_OPERATOR(*, __multiplies)
1006 _DEFINE_BINARY_OPERATOR(/, __divides)
1007 _DEFINE_BINARY_OPERATOR(%, __modulus)
1008 _DEFINE_BINARY_OPERATOR(^, __bitwise_xor)
1009 _DEFINE_BINARY_OPERATOR(&, __bitwise_and)
1010 _DEFINE_BINARY_OPERATOR(|, __bitwise_or)
1011 _DEFINE_BINARY_OPERATOR(<<, __shift_left)
1012 _DEFINE_BINARY_OPERATOR(>>, __shift_right)
1013 _DEFINE_BINARY_OPERATOR(&&, __logical_and)
1014 _DEFINE_BINARY_OPERATOR(||, __logical_or)
1015 _DEFINE_BINARY_OPERATOR(==, __equal_to)
1016 _DEFINE_BINARY_OPERATOR(!=, __not_equal_to)
1017 _DEFINE_BINARY_OPERATOR(<, __less)
1018 _DEFINE_BINARY_OPERATOR(>, __greater)
1019 _DEFINE_BINARY_OPERATOR(<=, __less_equal)
1020 _DEFINE_BINARY_OPERATOR(>=, __greater_equal)
1022 #undef _DEFINE_BINARY_OPERATOR
1024 _GLIBCXX_END_NAMESPACE
1026 #endif /* _GLIBCXX_VALARRAY */