Ice 3.7 C++98 API Reference
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Optional.h
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1//
2// Copyright (c) ZeroC, Inc. All rights reserved.
3//
4
5//
6// Ice::optional is a placeholder for std::optional:
7// http://en.cppreference.com/w/cpp/utility/optional/optional
8//
9// This implementation is a slighly modified version of Optional.hpp,
10// published at https://github.com/akrzemi1/Optional
11// commit 25713110f55813b2c5619ec1230edf8d3b00bdde
12
13// Copyright (C) 2011-2016 Andrzej Krzemienski
14//
15// Distributed under the Boost Software License, Version 1.0
16// (see accompanying file LICENSE_1_0.txt or a copy at
17// http://www.boost.org/LICENSE_1_0.txt)
18//
19// The idea and interface is based on Boost.Optional library
20// authored by Fernando Luis Cacciola Carballal
21
22#ifndef ICE_OPTIONAL_H
23#define ICE_OPTIONAL_H
24
25#ifdef ICE_CPP11_MAPPING
26
27# include <utility>
28# include <type_traits>
29# include <initializer_list>
30# include <cassert>
31# include <functional>
32# include <string>
33# include <stdexcept>
34
35# define TR2_OPTIONAL_REQUIRES(...) typename enable_if<__VA_ARGS__::value, bool>::type = false
36
37# if defined __GNUC__ // NOTE: GNUC is also defined for Clang
38# if (__GNUC__ == 4) && (__GNUC_MINOR__ >= 8)
39# define TR2_OPTIONAL_GCC_4_8_AND_HIGHER___
40# elif (__GNUC__ > 4)
41# define TR2_OPTIONAL_GCC_4_8_AND_HIGHER___
42# endif
43#
44# if (__GNUC__ == 4) && (__GNUC_MINOR__ >= 7)
45# define TR2_OPTIONAL_GCC_4_7_AND_HIGHER___
46# elif (__GNUC__ > 4)
47# define TR2_OPTIONAL_GCC_4_7_AND_HIGHER___
48# endif
49#
50# if (__GNUC__ == 4) && (__GNUC_MINOR__ == 8) && (__GNUC_PATCHLEVEL__ >= 1)
51# define TR2_OPTIONAL_GCC_4_8_1_AND_HIGHER___
52# elif (__GNUC__ == 4) && (__GNUC_MINOR__ >= 9)
53# define TR2_OPTIONAL_GCC_4_8_1_AND_HIGHER___
54# elif (__GNUC__ > 4)
55# define TR2_OPTIONAL_GCC_4_8_1_AND_HIGHER___
56# endif
57# endif
58#
59# if defined __clang_major__
60# if (__clang_major__ == 3 && __clang_minor__ >= 5)
61# define TR2_OPTIONAL_CLANG_3_5_AND_HIGHTER_
62# elif (__clang_major__ > 3)
63# define TR2_OPTIONAL_CLANG_3_5_AND_HIGHTER_
64# endif
65# if defined TR2_OPTIONAL_CLANG_3_5_AND_HIGHTER_
66# define TR2_OPTIONAL_CLANG_3_4_2_AND_HIGHER_
67# elif (__clang_major__ == 3 && __clang_minor__ == 4 && __clang_patchlevel__ >= 2)
68# define TR2_OPTIONAL_CLANG_3_4_2_AND_HIGHER_
69# endif
70# endif
71#
72# if defined _MSC_VER
73# if (_MSC_VER >= 1900)
74# define TR2_OPTIONAL_MSVC_2015_AND_HIGHER___
75# endif
76# endif
77
78# if defined __clang__
79# if (__clang_major__ > 2) || (__clang_major__ == 2) && (__clang_minor__ >= 9)
80# define OPTIONAL_HAS_THIS_RVALUE_REFS 1
81# else
82# define OPTIONAL_HAS_THIS_RVALUE_REFS 0
83# endif
84# elif defined TR2_OPTIONAL_GCC_4_8_1_AND_HIGHER___
85# define OPTIONAL_HAS_THIS_RVALUE_REFS 1
86# elif defined TR2_OPTIONAL_MSVC_2015_AND_HIGHER___
87# define OPTIONAL_HAS_THIS_RVALUE_REFS 1
88# else
89# define OPTIONAL_HAS_THIS_RVALUE_REFS 0
90# endif
91
92# if defined TR2_OPTIONAL_GCC_4_8_1_AND_HIGHER___
93# define OPTIONAL_HAS_CONSTEXPR_INIT_LIST 1
94# define OPTIONAL_CONSTEXPR_INIT_LIST constexpr
95# else
96# define OPTIONAL_HAS_CONSTEXPR_INIT_LIST 0
97# define OPTIONAL_CONSTEXPR_INIT_LIST
98# endif
99
100# if defined TR2_OPTIONAL_CLANG_3_5_AND_HIGHTER_ && (defined __cplusplus) && (__cplusplus != 201103L)
101# define OPTIONAL_HAS_MOVE_ACCESSORS 1
102# else
103# define OPTIONAL_HAS_MOVE_ACCESSORS 0
104# endif
105
106# // In C++11 constexpr implies const, so we need to make non-const members also non-constexpr
107# if (defined __cplusplus) && (__cplusplus == 201103L)
108# define OPTIONAL_MUTABLE_CONSTEXPR
109# else
110# define OPTIONAL_MUTABLE_CONSTEXPR constexpr
111# endif
112
113namespace std{
114
115namespace experimental{
116
117//
118// Add namespace Ice to avoid conflict with other std::experimental::optional
119// implementation
120//
121namespace Ice{
122
123// BEGIN workaround for missing is_trivially_destructible
124# if defined TR2_OPTIONAL_GCC_4_8_AND_HIGHER___
125 // leave it: it is already there
126# elif defined TR2_OPTIONAL_CLANG_3_4_2_AND_HIGHER_
127 // leave it: it is already there
128# elif defined TR2_OPTIONAL_MSVC_2015_AND_HIGHER___
129 // leave it: it is already there
130# elif defined TR2_OPTIONAL_DISABLE_EMULATION_OF_TYPE_TRAITS
131 // leave it: the user doesn't want it
132# else
133 template <typename T>
134 using is_trivially_destructible = std::has_trivial_destructor<T>;
135# endif
136// END workaround for missing is_trivially_destructible
137
138# if (defined TR2_OPTIONAL_GCC_4_7_AND_HIGHER___)
139 // leave it; our metafunctions are already defined.
140# elif defined TR2_OPTIONAL_CLANG_3_4_2_AND_HIGHER_
141 // leave it; our metafunctions are already defined.
142# elif defined TR2_OPTIONAL_MSVC_2015_AND_HIGHER___
143 // leave it: it is already there
144# elif defined TR2_OPTIONAL_DISABLE_EMULATION_OF_TYPE_TRAITS
145 // leave it: the user doesn't want it
146# else
147
148// workaround for missing traits in GCC and CLANG
149template <class T>
150struct is_nothrow_move_constructible
151{
152 constexpr static bool value = std::is_nothrow_constructible<T, T&&>::value;
153};
154
155template <class T, class U>
156struct is_assignable
157{
158 template <class X, class Y>
159 constexpr static bool has_assign(...) { return false; }
160
161 template <class X, class Y, size_t S = sizeof((std::declval<X>() = std::declval<Y>(), true)) >
162 // the comma operator is necessary for the cases where operator= returns void
163 constexpr static bool has_assign(bool) { return true; }
164
165 constexpr static bool value = has_assign<T, U>(true);
166};
167
168template <class T>
169struct is_nothrow_move_assignable
170{
171 template <class X, bool has_any_move_assign>
172 struct has_nothrow_move_assign {
173 constexpr static bool value = false;
174 };
175
176 template <class X>
177 struct has_nothrow_move_assign<X, true> {
178 constexpr static bool value = noexcept( std::declval<X&>() = std::declval<X&&>() );
179 };
180
181 constexpr static bool value = has_nothrow_move_assign<T, is_assignable<T&, T&&>::value>::value;
182};
183// end workaround
184
185# endif
186
187// 20.5.4, optional for object types
188template <class T> class optional;
189
190// 20.5.5, optional for lvalue reference types
191template <class T> class optional<T&>;
192
193// workaround: std utility functions aren't constexpr yet
194template <class T> inline constexpr T&& constexpr_forward(typename std::remove_reference<T>::type& t) noexcept
195{
196 return static_cast<T&&>(t);
197}
198
199template <class T> inline constexpr T&& constexpr_forward(typename std::remove_reference<T>::type&& t) noexcept
200{
201 static_assert(!std::is_lvalue_reference<T>::value, "!!");
202 return static_cast<T&&>(t);
203}
204
205template <class T> inline constexpr typename std::remove_reference<T>::type&& constexpr_move(T&& t) noexcept
206{
207 return static_cast<typename std::remove_reference<T>::type&&>(t);
208}
209
210#if defined NDEBUG
211# define TR2_OPTIONAL_ASSERTED_EXPRESSION(CHECK, EXPR) (EXPR)
212#else
213# define TR2_OPTIONAL_ASSERTED_EXPRESSION(CHECK, EXPR) ((CHECK) ? (EXPR) : ([]{assert(false && #CHECK);}(), (EXPR)))
214#endif
215
216namespace detail_
217{
218
219// static_addressof: a constexpr version of addressof
220template <typename T>
221struct has_overloaded_addressof
222{
223 template <class X>
224 constexpr static bool has_overload(...) { return false; }
225
226 template <class X, size_t S = sizeof(std::declval<X&>().operator&()) >
227 constexpr static bool has_overload(bool) { return true; }
228
229 constexpr static bool value = has_overload<T>(true);
230};
231
232template <typename T, TR2_OPTIONAL_REQUIRES(!has_overloaded_addressof<T>)>
233constexpr T* static_addressof(T& ref)
234{
235 return &ref;
236}
237
238template <typename T, TR2_OPTIONAL_REQUIRES(has_overloaded_addressof<T>)>
239T* static_addressof(T& ref)
240{
241 return std::addressof(ref);
242}
243
244// the call to convert<A>(b) has return type A and converts b to type A iff b decltype(b) is implicitly convertible to A
245template <class U>
246constexpr U convert(U v) { return v; }
247
248} // namespace detail
249
250constexpr struct trivial_init_t{} trivial_init{};
251
252// 20.5.6, In-place construction
253constexpr struct in_place_t{} in_place{};
254
255// 20.5.7, Disengaged state indicator
256struct nullopt_t
257{
258 struct init{};
259 constexpr explicit nullopt_t(init){}
260};
261constexpr nullopt_t nullopt{nullopt_t::init()};
262
263// 20.5.8, class bad_optional_access
264class bad_optional_access : public logic_error {
265public:
266 explicit bad_optional_access(const string& what_arg) : logic_error{what_arg} {}
267 explicit bad_optional_access(const char* what_arg) : logic_error{what_arg} {}
268};
269
270template <class T>
271union storage_t
272{
273 unsigned char dummy_;
274 T value_;
275
276 constexpr storage_t( trivial_init_t ) noexcept : dummy_() {}
277
278 template <class... Args>
279 constexpr storage_t( Args&&... args ) : value_(constexpr_forward<Args>(args)...) {}
280
281 ~storage_t(){}
282};
283
284template <class T>
285union constexpr_storage_t
286{
287 unsigned char dummy_;
288 T value_;
289
290 constexpr constexpr_storage_t( trivial_init_t ) noexcept : dummy_() {}
291
292 template <class... Args>
293 constexpr constexpr_storage_t( Args&&... args ) : value_(constexpr_forward<Args>(args)...) {}
294
295 ~constexpr_storage_t() = default;
296};
297
298template <class T>
299struct optional_base
300{
301 bool init_;
302 storage_t<T> storage_;
303
304 constexpr optional_base() noexcept : init_(false), storage_(trivial_init) {}
305
306 explicit constexpr optional_base(const T& v) : init_(true), storage_(v) {}
307
308 explicit constexpr optional_base(T&& v) : init_(true), storage_(constexpr_move(v)) {}
309
310 template <class... Args> explicit optional_base(in_place_t, Args&&... args)
311 : init_(true), storage_(constexpr_forward<Args>(args)...) {}
312
313 template <class U, class... Args, TR2_OPTIONAL_REQUIRES(is_constructible<T, std::initializer_list<U>>)>
314 explicit optional_base(in_place_t, std::initializer_list<U> il, Args&&... args)
315 : init_(true), storage_(il, std::forward<Args>(args)...) {}
316
317 ~optional_base() { if (init_) storage_.value_.T::~T(); }
318};
319
320template <class T>
321struct constexpr_optional_base
322{
323 bool init_;
324 constexpr_storage_t<T> storage_;
325
326 constexpr constexpr_optional_base() noexcept : init_(false), storage_(trivial_init) {}
327
328 explicit constexpr constexpr_optional_base(const T& v) : init_(true), storage_(v) {}
329
330 explicit constexpr constexpr_optional_base(T&& v) : init_(true), storage_(constexpr_move(v)) {}
331
332 template <class... Args> explicit constexpr constexpr_optional_base(in_place_t, Args&&... args)
333 : init_(true), storage_(constexpr_forward<Args>(args)...) {}
334
335 template <class U, class... Args, TR2_OPTIONAL_REQUIRES(is_constructible<T, std::initializer_list<U>>)>
336 OPTIONAL_CONSTEXPR_INIT_LIST explicit constexpr_optional_base(in_place_t, std::initializer_list<U> il, Args&&... args)
337 : init_(true), storage_(il, std::forward<Args>(args)...) {}
338
339 ~constexpr_optional_base() = default;
340};
341
342template <class T>
343using OptionalBase = typename std::conditional<
344 is_trivially_destructible<T>::value, // if possible
345 constexpr_optional_base<typename std::remove_const<T>::type>, // use base with trivial destructor
346 optional_base<typename std::remove_const<T>::type>
347>::type;
348
349template <class T>
350class optional : private OptionalBase<T>
351{
352 static_assert( !std::is_same<typename std::decay<T>::type, nullopt_t>::value, "bad T" );
353 static_assert( !std::is_same<typename std::decay<T>::type, in_place_t>::value, "bad T" );
354
355 constexpr bool initialized() const noexcept { return OptionalBase<T>::init_; }
356 typename std::remove_const<T>::type* dataptr() { return std::addressof(OptionalBase<T>::storage_.value_); }
357 constexpr const T* dataptr() const { return detail_::static_addressof(OptionalBase<T>::storage_.value_); }
358
359# if OPTIONAL_HAS_THIS_RVALUE_REFS == 1
360 constexpr const T& contained_val() const& { return OptionalBase<T>::storage_.value_; }
361# if OPTIONAL_HAS_MOVE_ACCESSORS == 1
362 OPTIONAL_MUTABLE_CONSTEXPR T&& contained_val() && { return std::move(OptionalBase<T>::storage_.value_); }
363 OPTIONAL_MUTABLE_CONSTEXPR T& contained_val() & { return OptionalBase<T>::storage_.value_; }
364# else
365 T& contained_val() & { return OptionalBase<T>::storage_.value_; }
366 T&& contained_val() && { return std::move(OptionalBase<T>::storage_.value_); }
367# endif
368# else
369 constexpr const T& contained_val() const { return OptionalBase<T>::storage_.value_; }
370 T& contained_val() { return OptionalBase<T>::storage_.value_; }
371# endif
372
373 void clear() noexcept {
374 if (initialized()) dataptr()->T::~T();
375 OptionalBase<T>::init_ = false;
376 }
377
378 template <class... Args>
379 void initialize(Args&&... args) noexcept(noexcept(T(std::forward<Args>(args)...)))
380 {
381 assert(!OptionalBase<T>::init_);
382 ::new (static_cast<void*>(dataptr())) T(std::forward<Args>(args)...);
383 OptionalBase<T>::init_ = true;
384 }
385
386 template <class U, class... Args>
387 void initialize(std::initializer_list<U> il, Args&&... args) noexcept(noexcept(T(il, std::forward<Args>(args)...)))
388 {
389 assert(!OptionalBase<T>::init_);
390 ::new (static_cast<void*>(dataptr())) T(il, std::forward<Args>(args)...);
391 OptionalBase<T>::init_ = true;
392 }
393
394public:
395 typedef T value_type;
396
397 // 20.5.5.1, constructors
398 constexpr optional() noexcept : OptionalBase<T>() {}
399 constexpr optional(nullopt_t) noexcept : OptionalBase<T>() {}
400
401 optional(const optional& rhs)
402 : OptionalBase<T>()
403 {
404 if (rhs.initialized()) {
405 ::new (static_cast<void*>(dataptr())) T(*rhs);
406 OptionalBase<T>::init_ = true;
407 }
408 }
409
410 optional(optional&& rhs) noexcept(is_nothrow_move_constructible<T>::value)
411 : OptionalBase<T>()
412 {
413 if (rhs.initialized()) {
414 ::new (static_cast<void*>(dataptr())) T(std::move(*rhs));
415 OptionalBase<T>::init_ = true;
416 }
417 }
418
419 constexpr optional(const T& v) : OptionalBase<T>(v) {}
420
421 constexpr optional(T&& v) : OptionalBase<T>(constexpr_move(v)) {}
422
423 template <class... Args>
424 explicit constexpr optional(in_place_t, Args&&... args)
425 : OptionalBase<T>(in_place_t{}, constexpr_forward<Args>(args)...) {}
426
427 template <class U, class... Args, TR2_OPTIONAL_REQUIRES(is_constructible<T, std::initializer_list<U>>)>
428 OPTIONAL_CONSTEXPR_INIT_LIST explicit optional(in_place_t, std::initializer_list<U> il, Args&&... args)
429 : OptionalBase<T>(in_place_t{}, il, constexpr_forward<Args>(args)...) {}
430
431 // 20.5.4.2, Destructor
432 ~optional() = default;
433
434 // 20.5.4.3, assignment
435 optional& operator=(nullopt_t) noexcept
436 {
437 clear();
438 return *this;
439 }
440
441 optional& operator=(const optional& rhs)
442 {
443 if (initialized() == true && rhs.initialized() == false) clear();
444 else if (initialized() == false && rhs.initialized() == true) initialize(*rhs);
445 else if (initialized() == true && rhs.initialized() == true) contained_val() = *rhs;
446 return *this;
447 }
448
449 optional& operator=(optional&& rhs)
450 noexcept(is_nothrow_move_assignable<T>::value && is_nothrow_move_constructible<T>::value)
451 {
452 if (initialized() == true && rhs.initialized() == false) clear();
453 else if (initialized() == false && rhs.initialized() == true) initialize(std::move(*rhs));
454 else if (initialized() == true && rhs.initialized() == true) contained_val() = std::move(*rhs);
455 return *this;
456 }
457
458 template <class U>
459 auto operator=(U&& v)
460 -> typename enable_if
461 <
462 is_same<typename decay<U>::type, T>::value,
463 optional&
464 >::type
465 {
466 if (initialized()) { contained_val() = std::forward<U>(v); }
467 else { initialize(std::forward<U>(v)); }
468 return *this;
469 }
470
471 template <class... Args>
472 void emplace(Args&&... args)
473 {
474 clear();
475 initialize(std::forward<Args>(args)...);
476 }
477
478 template <class U, class... Args>
479 void emplace(initializer_list<U> il, Args&&... args)
480 {
481 clear();
482 initialize<U, Args...>(il, std::forward<Args>(args)...);
483 }
484
485 // 20.5.4.4, Swap
486 void swap(optional<T>& rhs) noexcept(is_nothrow_move_constructible<T>::value && noexcept(swap(declval<T&>(), declval<T&>())))
487 {
488 if (initialized() == true && rhs.initialized() == false) { rhs.initialize(std::move(**this)); clear(); }
489 else if (initialized() == false && rhs.initialized() == true) { initialize(std::move(*rhs)); rhs.clear(); }
490 else if (initialized() == true && rhs.initialized() == true) { using std::swap; swap(**this, *rhs); }
491 }
492
493 // 20.5.4.5, Observers
494
495 explicit constexpr operator bool() const noexcept { return initialized(); }
496 constexpr bool has_value() const noexcept { return initialized(); }
497
498 constexpr T const* operator ->() const {
499 return TR2_OPTIONAL_ASSERTED_EXPRESSION(initialized(), dataptr());
500 }
501
502# if OPTIONAL_HAS_MOVE_ACCESSORS == 1
503
504 OPTIONAL_MUTABLE_CONSTEXPR T* operator ->() {
505 assert (initialized());
506 return dataptr();
507 }
508
509 constexpr T const& operator *() const& {
510 return TR2_OPTIONAL_ASSERTED_EXPRESSION(initialized(), contained_val());
511 }
512
513 OPTIONAL_MUTABLE_CONSTEXPR T& operator *() & {
514 assert (initialized());
515 return contained_val();
516 }
517
518 OPTIONAL_MUTABLE_CONSTEXPR T&& operator *() && {
519 assert (initialized());
520 return constexpr_move(contained_val());
521 }
522
523 constexpr T const& value() const& {
524 return initialized() ? contained_val() : (throw bad_optional_access("bad optional access"), contained_val());
525 }
526
527 OPTIONAL_MUTABLE_CONSTEXPR T& value() & {
528 return initialized() ? contained_val() : (throw bad_optional_access("bad optional access"), contained_val());
529 }
530
531 OPTIONAL_MUTABLE_CONSTEXPR T&& value() && {
532 if (!initialized()) throw bad_optional_access("bad optional access");
533 return std::move(contained_val());
534 }
535
536# else
537
538 T* operator ->() {
539 assert (initialized());
540 return dataptr();
541 }
542
543 //
544 // WORKAROUND error: implicit conversion turns string literal into bool
545 //
546#if defined(__clang__)
547# pragma clang diagnostic push
548# pragma clang diagnostic ignored "-Wconversion"
549#endif
550 constexpr T const& operator *() const {
551 return TR2_OPTIONAL_ASSERTED_EXPRESSION(initialized(), contained_val());
552 }
553
554#if defined(__clang__)
555# pragma clang diagnostic pop
556#endif
557
558 T& operator *() {
559 assert (initialized());
560 return contained_val();
561 }
562
563#ifdef _MSC_VER
564# pragma warning(push)
565# pragma warning(disable:4702) // unreachable code
566#endif
567 constexpr T const& value() const {
568 return initialized() ? contained_val() : (throw bad_optional_access("bad optional access"), contained_val());
569 }
570
571 T& value() {
572 return initialized() ? contained_val() : (throw bad_optional_access("bad optional access"), contained_val());
573 }
574
575#ifdef _MSC_VER
576# pragma warning(pop)
577#endif
578
579# endif
580
581# if OPTIONAL_HAS_THIS_RVALUE_REFS == 1
582
583 template <class V>
584 constexpr T value_or(V&& v) const&
585 {
586 return *this ? **this : detail_::convert<T>(constexpr_forward<V>(v));
587 }
588
589# if OPTIONAL_HAS_MOVE_ACCESSORS == 1
590
591 template <class V>
592 OPTIONAL_MUTABLE_CONSTEXPR T value_or(V&& v) &&
593 {
594 return *this ? constexpr_move(const_cast<optional<T>&>(*this).contained_val()) : detail_::convert<T>(constexpr_forward<V>(v));
595 }
596
597# else
598
599 template <class V>
600 T value_or(V&& v) &&
601 {
602 return *this ? constexpr_move(const_cast<optional<T>&>(*this).contained_val()) : detail_::convert<T>(constexpr_forward<V>(v));
603 }
604
605# endif
606
607# else
608
609 template <class V>
610 constexpr T value_or(V&& v) const
611 {
612 return *this ? **this : detail_::convert<T>(constexpr_forward<V>(v));
613 }
614
615# endif
616
617 // 20.6.3.6, modifiers
618 void reset() noexcept { clear(); }
619};
620
621template <class T>
622class optional<T&>
623{
624 static_assert( !std::is_same<T, nullopt_t>::value, "bad T" );
625 static_assert( !std::is_same<T, in_place_t>::value, "bad T" );
626 T* ref;
627
628public:
629
630 // 20.5.5.1, construction/destruction
631 constexpr optional() noexcept : ref(nullptr) {}
632
633 constexpr optional(nullopt_t) noexcept : ref(nullptr) {}
634
635 constexpr optional(T& v) noexcept : ref(detail_::static_addressof(v)) {}
636
637 optional(T&&) = delete;
638
639 constexpr optional(const optional& rhs) noexcept : ref(rhs.ref) {}
640
641 explicit constexpr optional(in_place_t, T& v) noexcept : ref(detail_::static_addressof(v)) {}
642
643 explicit optional(in_place_t, T&&) = delete;
644
645 ~optional() = default;
646
647 // 20.5.5.2, mutation
648 optional& operator=(nullopt_t) noexcept {
649 ref = nullptr;
650 return *this;
651 }
652
653 // optional& operator=(const optional& rhs) noexcept {
654 // ref = rhs.ref;
655 // return *this;
656 // }
657
658 // optional& operator=(optional&& rhs) noexcept {
659 // ref = rhs.ref;
660 // return *this;
661 // }
662
663 template <typename U>
664 auto operator=(U&& rhs) noexcept
665 -> typename enable_if
666 <
667 is_same<typename decay<U>::type, optional<T&>>::value,
668 optional&
669 >::type
670 {
671 ref = rhs.ref;
672 return *this;
673 }
674
675 template <typename U>
676 auto operator=(U&& rhs) noexcept
677 -> typename enable_if
678 <
679 !is_same<typename decay<U>::type, optional<T&>>::value,
680 optional&
681 >::type
682 = delete;
683
684 void emplace(T& v) noexcept {
685 ref = detail_::static_addressof(v);
686 }
687
688 void emplace(T&&) = delete;
689
690 void swap(optional<T&>& rhs) noexcept
691 {
692 std::swap(ref, rhs.ref);
693 }
694
695 // 20.5.5.3, observers
696 constexpr T* operator->() const {
697 return TR2_OPTIONAL_ASSERTED_EXPRESSION(ref, ref);
698 }
699
700 constexpr T& operator*() const {
701 return TR2_OPTIONAL_ASSERTED_EXPRESSION(ref, *ref);
702 }
703
704 constexpr T& value() const {
705 return ref ? *ref : (throw bad_optional_access("bad optional access"), *ref);
706 }
707
708 explicit constexpr operator bool() const noexcept {
709 return ref != nullptr;
710 }
711
712 constexpr bool has_value() const noexcept {
713 return ref != nullptr;
714 }
715
716 template <class V>
717 constexpr typename decay<T>::type value_or(V&& v) const
718 {
719 return *this ? **this : detail_::convert<typename decay<T>::type>(constexpr_forward<V>(v));
720 }
721
722 // x.x.x.x, modifiers
723 void reset() noexcept { ref = nullptr; }
724};
725
726template <class T>
727class optional<T&&>
728{
729 static_assert( sizeof(T) == 0, "optional rvalue references disallowed" );
730};
731
732// 20.5.8, Relational operators
733template <class T> constexpr bool operator==(const optional<T>& x, const optional<T>& y)
734{
735 return bool(x) != bool(y) ? false : bool(x) == false ? true : *x == *y;
736}
737
738template <class T> constexpr bool operator!=(const optional<T>& x, const optional<T>& y)
739{
740 return !(x == y);
741}
742
743template <class T> constexpr bool operator<(const optional<T>& x, const optional<T>& y)
744{
745 return (!y) ? false : (!x) ? true : *x < *y;
746}
747
748template <class T> constexpr bool operator>(const optional<T>& x, const optional<T>& y)
749{
750 return (y < x);
751}
752
753template <class T> constexpr bool operator<=(const optional<T>& x, const optional<T>& y)
754{
755 return !(y < x);
756}
757
758template <class T> constexpr bool operator>=(const optional<T>& x, const optional<T>& y)
759{
760 return !(x < y);
761}
762
763// 20.5.9, Comparison with nullopt
764template <class T> constexpr bool operator==(const optional<T>& x, nullopt_t) noexcept
765{
766 return (!x);
767}
768
769template <class T> constexpr bool operator==(nullopt_t, const optional<T>& x) noexcept
770{
771 return (!x);
772}
773
774template <class T> constexpr bool operator!=(const optional<T>& x, nullopt_t) noexcept
775{
776 return bool(x);
777}
778
779template <class T> constexpr bool operator!=(nullopt_t, const optional<T>& x) noexcept
780{
781 return bool(x);
782}
783
784template <class T> constexpr bool operator<(const optional<T>&, nullopt_t) noexcept
785{
786 return false;
787}
788
789template <class T> constexpr bool operator<(nullopt_t, const optional<T>& x) noexcept
790{
791 return bool(x);
792}
793
794template <class T> constexpr bool operator<=(const optional<T>& x, nullopt_t) noexcept
795{
796 return (!x);
797}
798
799template <class T> constexpr bool operator<=(nullopt_t, const optional<T>&) noexcept
800{
801 return true;
802}
803
804template <class T> constexpr bool operator>(const optional<T>& x, nullopt_t) noexcept
805{
806 return bool(x);
807}
808
809template <class T> constexpr bool operator>(nullopt_t, const optional<T>&) noexcept
810{
811 return false;
812}
813
814template <class T> constexpr bool operator>=(const optional<T>&, nullopt_t) noexcept
815{
816 return true;
817}
818
819template <class T> constexpr bool operator>=(nullopt_t, const optional<T>& x) noexcept
820{
821 return (!x);
822}
823
824// 20.5.10, Comparison with T
825template <class T> constexpr bool operator==(const optional<T>& x, const T& v)
826{
827 return bool(x) ? *x == v : false;
828}
829
830template <class T> constexpr bool operator==(const T& v, const optional<T>& x)
831{
832 return bool(x) ? v == *x : false;
833}
834
835template <class T> constexpr bool operator!=(const optional<T>& x, const T& v)
836{
837 return bool(x) ? *x != v : true;
838}
839
840template <class T> constexpr bool operator!=(const T& v, const optional<T>& x)
841{
842 return bool(x) ? v != *x : true;
843}
844
845template <class T> constexpr bool operator<(const optional<T>& x, const T& v)
846{
847 return bool(x) ? *x < v : true;
848}
849
850template <class T> constexpr bool operator>(const T& v, const optional<T>& x)
851{
852 return bool(x) ? v > *x : true;
853}
854
855template <class T> constexpr bool operator>(const optional<T>& x, const T& v)
856{
857 return bool(x) ? *x > v : false;
858}
859
860template <class T> constexpr bool operator<(const T& v, const optional<T>& x)
861{
862 return bool(x) ? v < *x : false;
863}
864
865template <class T> constexpr bool operator>=(const optional<T>& x, const T& v)
866{
867 return bool(x) ? *x >= v : false;
868}
869
870template <class T> constexpr bool operator<=(const T& v, const optional<T>& x)
871{
872 return bool(x) ? v <= *x : false;
873}
874
875template <class T> constexpr bool operator<=(const optional<T>& x, const T& v)
876{
877 return bool(x) ? *x <= v : true;
878}
879
880template <class T> constexpr bool operator>=(const T& v, const optional<T>& x)
881{
882 return bool(x) ? v >= *x : true;
883}
884
885// Comparison of optional<T&> with T
886template <class T> constexpr bool operator==(const optional<T&>& x, const T& v)
887{
888 return bool(x) ? *x == v : false;
889}
890
891template <class T> constexpr bool operator==(const T& v, const optional<T&>& x)
892{
893 return bool(x) ? v == *x : false;
894}
895
896template <class T> constexpr bool operator!=(const optional<T&>& x, const T& v)
897{
898 return bool(x) ? *x != v : true;
899}
900
901template <class T> constexpr bool operator!=(const T& v, const optional<T&>& x)
902{
903 return bool(x) ? v != *x : true;
904}
905
906template <class T> constexpr bool operator<(const optional<T&>& x, const T& v)
907{
908 return bool(x) ? *x < v : true;
909}
910
911template <class T> constexpr bool operator>(const T& v, const optional<T&>& x)
912{
913 return bool(x) ? v > *x : true;
914}
915
916template <class T> constexpr bool operator>(const optional<T&>& x, const T& v)
917{
918 return bool(x) ? *x > v : false;
919}
920
921template <class T> constexpr bool operator<(const T& v, const optional<T&>& x)
922{
923 return bool(x) ? v < *x : false;
924}
925
926template <class T> constexpr bool operator>=(const optional<T&>& x, const T& v)
927{
928 return bool(x) ? *x >= v : false;
929}
930
931template <class T> constexpr bool operator<=(const T& v, const optional<T&>& x)
932{
933 return bool(x) ? v <= *x : false;
934}
935
936template <class T> constexpr bool operator<=(const optional<T&>& x, const T& v)
937{
938 return bool(x) ? *x <= v : true;
939}
940
941template <class T> constexpr bool operator>=(const T& v, const optional<T&>& x)
942{
943 return bool(x) ? v >= *x : true;
944}
945
946// Comparison of optional<T const&> with T
947template <class T> constexpr bool operator==(const optional<const T&>& x, const T& v)
948{
949 return bool(x) ? *x == v : false;
950}
951
952template <class T> constexpr bool operator==(const T& v, const optional<const T&>& x)
953{
954 return bool(x) ? v == *x : false;
955}
956
957template <class T> constexpr bool operator!=(const optional<const T&>& x, const T& v)
958{
959 return bool(x) ? *x != v : true;
960}
961
962template <class T> constexpr bool operator!=(const T& v, const optional<const T&>& x)
963{
964 return bool(x) ? v != *x : true;
965}
966
967template <class T> constexpr bool operator<(const optional<const T&>& x, const T& v)
968{
969 return bool(x) ? *x < v : true;
970}
971
972template <class T> constexpr bool operator>(const T& v, const optional<const T&>& x)
973{
974 return bool(x) ? v > *x : true;
975}
976
977template <class T> constexpr bool operator>(const optional<const T&>& x, const T& v)
978{
979 return bool(x) ? *x > v : false;
980}
981
982template <class T> constexpr bool operator<(const T& v, const optional<const T&>& x)
983{
984 return bool(x) ? v < *x : false;
985}
986
987template <class T> constexpr bool operator>=(const optional<const T&>& x, const T& v)
988{
989 return bool(x) ? *x >= v : false;
990}
991
992template <class T> constexpr bool operator<=(const T& v, const optional<const T&>& x)
993{
994 return bool(x) ? v <= *x : false;
995}
996
997template <class T> constexpr bool operator<=(const optional<const T&>& x, const T& v)
998{
999 return bool(x) ? *x <= v : true;
1000}
1001
1002template <class T> constexpr bool operator>=(const T& v, const optional<const T&>& x)
1003{
1004 return bool(x) ? v >= *x : true;
1005}
1006
1007// 20.5.12, Specialized algorithms
1008template <class T>
1009void swap(optional<T>& x, optional<T>& y) noexcept(noexcept(x.swap(y)))
1010{
1011 x.swap(y);
1012}
1013
1014template <class T>
1015constexpr optional<typename decay<T>::type> make_optional(T&& v)
1016{
1017 return optional<typename decay<T>::type>(constexpr_forward<T>(v));
1018}
1019
1020template <class X>
1021constexpr optional<X&> make_optional(reference_wrapper<X> v)
1022{
1023 return optional<X&>(v.get());
1024}
1025
1026} // namespace Ice
1027} // namespace experimental
1028} // namespace std
1029
1030namespace std
1031{
1032 template <typename T>
1033 struct hash<std::experimental::Ice::optional<T>>
1034 {
1035 typedef typename hash<T>::result_type result_type;
1036 typedef std::experimental::Ice::optional<T> argument_type;
1037
1038 constexpr result_type operator()(argument_type const& arg) const {
1039 return arg ? std::hash<T>{}(*arg) : result_type{};
1040 }
1041 };
1042
1043 template <typename T>
1044 struct hash<std::experimental::Ice::optional<T&>>
1045 {
1046 typedef typename hash<T>::result_type result_type;
1047 typedef std::experimental::Ice::optional<T&> argument_type;
1048
1049 constexpr result_type operator()(argument_type const& arg) const {
1050 return arg ? std::hash<T>{}(*arg) : result_type{};
1051 }
1052 };
1053}
1054
1055# undef TR2_OPTIONAL_REQUIRES
1056# undef TR2_OPTIONAL_ASSERTED_EXPRESSION
1057
1058namespace Ice
1059{
1060
1065template<class T> using optional = std::experimental::Ice::optional<T>;
1066
1067using std::experimental::Ice::operator==;
1068using std::experimental::Ice::operator!=;
1069using std::experimental::Ice::operator<;
1070using std::experimental::Ice::operator<=;
1071using std::experimental::Ice::operator>;
1072using std::experimental::Ice::operator>=;
1073
1075using std::experimental::Ice::make_optional;
1077using std::experimental::Ice::swap;
1078
1080using nullopt_t = std::experimental::Ice::nullopt_t;
1082using std::experimental::Ice::nullopt;
1083
1085using bad_optional_access = std::experimental::Ice::bad_optional_access;
1086
1088using in_place_t = std::experimental::Ice::in_place_t;
1090using std::experimental::Ice::in_place;
1091
1092}
1093
1094namespace IceUtil
1095{
1096
1100template<class T> using Optional = std::experimental::Ice::optional<T>;
1104constexpr std::experimental::Ice::nullopt_t None{std::experimental::Ice::nullopt_t::init()};
1105
1106}
1107
1108#else // C++98 mapping
1109
1110# include <IceUtil/Optional.h>
1111
1112#endif
1113
1114#endif
const IceUtilInternal::NoneType None
A sentinel value used to indicate that no optional value was provided.
Definition Optional.h:25
CommunicatorPtr initialize(int &argc, const char *argv[], const InitializationData &initData=InitializationData(), int version=30711)
Initializes a new communicator.