1 | /*
|
---|
2 | * Copyright (c) 2018 Jaroslav Jindrak
|
---|
3 | * All rights reserved.
|
---|
4 | *
|
---|
5 | * Redistribution and use in source and binary forms, with or without
|
---|
6 | * modification, are permitted provided that the following conditions
|
---|
7 | * are met:
|
---|
8 | *
|
---|
9 | * - Redistributions of source code must retain the above copyright
|
---|
10 | * notice, this list of conditions and the following disclaimer.
|
---|
11 | * - Redistributions in binary form must reproduce the above copyright
|
---|
12 | * notice, this list of conditions and the following disclaimer in the
|
---|
13 | * documentation and/or other materials provided with the distribution.
|
---|
14 | * - The name of the author may not be used to endorse or promote products
|
---|
15 | * derived from this software without specific prior written permission.
|
---|
16 | *
|
---|
17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
|
---|
18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
|
---|
19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
|
---|
20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
|
---|
21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
|
---|
22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
|
---|
23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
|
---|
24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
|
---|
25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
|
---|
26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
|
---|
27 | */
|
---|
28 |
|
---|
29 | #ifndef LIBCPP_QUEUE
|
---|
30 | #define LIBCPP_QUEUE
|
---|
31 |
|
---|
32 | #include <algorithm>
|
---|
33 | #include <deque>
|
---|
34 | #include <memory>
|
---|
35 | #include <type_traits>
|
---|
36 | #include <utility>
|
---|
37 | #include <vector>
|
---|
38 |
|
---|
39 | namespace std
|
---|
40 | {
|
---|
41 | /**
|
---|
42 | * 23.6.3, class template queue:
|
---|
43 | */
|
---|
44 |
|
---|
45 | template<class T, class Container = deque<T>>
|
---|
46 | class queue
|
---|
47 | {
|
---|
48 | public:
|
---|
49 | using value_type = typename Container::value_type;
|
---|
50 | using reference = typename Container::reference;
|
---|
51 | using const_reference = typename Container::const_reference;
|
---|
52 | using size_type = typename Container::size_type;
|
---|
53 | using container_type = Container;
|
---|
54 |
|
---|
55 | protected:
|
---|
56 | container_type c;
|
---|
57 |
|
---|
58 | public:
|
---|
59 | explicit queue(const container_type& cc)
|
---|
60 | : c{cc}
|
---|
61 | { /* DUMMY BODY */ }
|
---|
62 |
|
---|
63 | explicit queue(container_type&& cc = container_type{})
|
---|
64 | : c{move(cc)}
|
---|
65 | { /* DUMMY BODY */ }
|
---|
66 |
|
---|
67 | template<
|
---|
68 | class Alloc,
|
---|
69 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
70 | >
|
---|
71 | explicit queue(const Alloc& alloc)
|
---|
72 | : c{alloc}
|
---|
73 | { /* DUMMY BODY */}
|
---|
74 |
|
---|
75 | template<
|
---|
76 | class Alloc,
|
---|
77 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
78 | >
|
---|
79 | queue(const container_type& cc, const Alloc& alloc)
|
---|
80 | : c{cc, alloc}
|
---|
81 | { /* DUMMY BODY */}
|
---|
82 |
|
---|
83 | template<
|
---|
84 | class Alloc,
|
---|
85 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
86 | >
|
---|
87 | queue(container_type&& cc, const Alloc& alloc)
|
---|
88 | : c{move(cc), alloc}
|
---|
89 | { /* DUMMY BODY */}
|
---|
90 |
|
---|
91 | template<
|
---|
92 | class Alloc,
|
---|
93 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
94 | >
|
---|
95 | queue(const queue& other, const Alloc& alloc)
|
---|
96 | : c{other.c, alloc}
|
---|
97 | { /* DUMMY BODY */}
|
---|
98 |
|
---|
99 | template<
|
---|
100 | class Alloc,
|
---|
101 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
102 | >
|
---|
103 | queue(queue&& other, const Alloc& alloc)
|
---|
104 | : c{move(other.c), alloc}
|
---|
105 | { /* DUMMY BODY */}
|
---|
106 |
|
---|
107 | bool empty() const
|
---|
108 | {
|
---|
109 | return c.empty();
|
---|
110 | }
|
---|
111 |
|
---|
112 | size_type size() const
|
---|
113 | {
|
---|
114 | return c.size();
|
---|
115 | }
|
---|
116 |
|
---|
117 | reference front()
|
---|
118 | {
|
---|
119 | return c.front();
|
---|
120 | }
|
---|
121 |
|
---|
122 | const_reference front() const
|
---|
123 | {
|
---|
124 | return c.front();
|
---|
125 | }
|
---|
126 |
|
---|
127 | reference back()
|
---|
128 | {
|
---|
129 | return c.back();
|
---|
130 | }
|
---|
131 |
|
---|
132 | const_reference back() const
|
---|
133 | {
|
---|
134 | return c.back();
|
---|
135 | }
|
---|
136 |
|
---|
137 | void push(const value_type& val)
|
---|
138 | {
|
---|
139 | c.push_back(val);
|
---|
140 | }
|
---|
141 |
|
---|
142 | void push(value_type&& val)
|
---|
143 | {
|
---|
144 | c.push_back(forward<value_type>(val));
|
---|
145 | }
|
---|
146 |
|
---|
147 | template<class... Args>
|
---|
148 | void emplace(Args&&... args)
|
---|
149 | {
|
---|
150 | c.emplace_back(forward<Args>(args)...);
|
---|
151 | }
|
---|
152 |
|
---|
153 | void pop()
|
---|
154 | {
|
---|
155 | c.pop_front();
|
---|
156 | }
|
---|
157 |
|
---|
158 | void swap(queue& other)
|
---|
159 | noexcept(noexcept(swap(c, other.c)))
|
---|
160 | {
|
---|
161 | std::swap(c, other.c);
|
---|
162 | }
|
---|
163 |
|
---|
164 | private:
|
---|
165 | template<class U, class C>
|
---|
166 | friend bool operator==(const queue<U, C>&, const queue<U, C>&);
|
---|
167 |
|
---|
168 | template<class U, class C>
|
---|
169 | friend bool operator<(const queue<U, C>&, const queue<U, C>&);
|
---|
170 |
|
---|
171 | template<class U, class C>
|
---|
172 | friend bool operator!=(const queue<U, C>&, const queue<U, C>&);
|
---|
173 |
|
---|
174 | template<class U, class C>
|
---|
175 | friend bool operator>(const queue<U, C>&, const queue<U, C>&);
|
---|
176 |
|
---|
177 | template<class U, class C>
|
---|
178 | friend bool operator>=(const queue<U, C>&, const queue<U, C>&);
|
---|
179 |
|
---|
180 | template<class U, class C>
|
---|
181 | friend bool operator<=(const queue<U, C>&, const queue<U, C>&);
|
---|
182 | };
|
---|
183 |
|
---|
184 | template<class T, class Container, class Alloc>
|
---|
185 | struct uses_allocator<queue<T, Container>, Alloc>
|
---|
186 | : uses_allocator<Container, Alloc>
|
---|
187 | { /* DUMMY BODY */ };
|
---|
188 |
|
---|
189 | /**
|
---|
190 | * 23.6.4, class template priority_queue:
|
---|
191 | */
|
---|
192 |
|
---|
193 | template<
|
---|
194 | class T, class Container = vector<T>,
|
---|
195 | class Compare = less<typename Container::value_type>
|
---|
196 | >
|
---|
197 | class priority_queue
|
---|
198 | {
|
---|
199 | public:
|
---|
200 | using value_type = typename Container::value_type;
|
---|
201 | using reference = typename Container::reference;
|
---|
202 | using const_reference = typename Container::const_reference;
|
---|
203 | using size_type = typename Container::size_type;
|
---|
204 | using container_type = Container;
|
---|
205 |
|
---|
206 | /* protected: */
|
---|
207 | using compare_type = Compare;
|
---|
208 |
|
---|
209 | compare_type comp;
|
---|
210 | container_type c;
|
---|
211 |
|
---|
212 | public:
|
---|
213 | priority_queue(const compare_type& cmp, const container_type& cc)
|
---|
214 | : comp{cmp}, c{cc}
|
---|
215 | {
|
---|
216 | make_heap(c.begin(), c.end(), comp);
|
---|
217 | }
|
---|
218 |
|
---|
219 | explicit priority_queue(const compare_type& cmp = compare_type{},
|
---|
220 | container_type&& cc = container_type{})
|
---|
221 | : comp{cmp}, c{move(cc)}
|
---|
222 | {
|
---|
223 | make_heap(c.begin(), c.end(), comp);
|
---|
224 | }
|
---|
225 |
|
---|
226 | template<class InputIterator>
|
---|
227 | priority_queue(InputIterator first, InputIterator last,
|
---|
228 | const compare_type& cmp,
|
---|
229 | const container_type& cc)
|
---|
230 | : comp{cmp}, c{cc}
|
---|
231 | {
|
---|
232 | c.insert(c.end(), first, last);
|
---|
233 | make_heap(c.begin(), c.end(), comp);
|
---|
234 | }
|
---|
235 |
|
---|
236 | template<class InputIterator>
|
---|
237 | priority_queue(InputIterator first, InputIterator last,
|
---|
238 | const compare_type& cmp = compare_type{},
|
---|
239 | container_type&& cc = container_type{})
|
---|
240 | : comp{cmp}, c{move(cc)}
|
---|
241 | {
|
---|
242 | c.insert(c.end(), first, last);
|
---|
243 | make_heap(c.begin(), c.end(), comp);
|
---|
244 | }
|
---|
245 |
|
---|
246 | template<
|
---|
247 | class Alloc,
|
---|
248 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
249 | >
|
---|
250 | explicit priority_queue(const Alloc& alloc)
|
---|
251 | : comp{}, c{alloc}
|
---|
252 | { /* DUMMY BODY */ }
|
---|
253 |
|
---|
254 | template<
|
---|
255 | class Alloc,
|
---|
256 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
257 | >
|
---|
258 | priority_queue(const compare_type& cmp, const Alloc& alloc)
|
---|
259 | : comp{cmp}, c{alloc}
|
---|
260 | { /* DUMMY BODY */ }
|
---|
261 |
|
---|
262 | template<
|
---|
263 | class Alloc,
|
---|
264 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
265 | >
|
---|
266 | priority_queue(const compare_type& cmp, const container_type& cc,
|
---|
267 | const Alloc& alloc)
|
---|
268 | : comp{cmp}, c{cc, alloc}
|
---|
269 | { /* DUMMY BODY */ }
|
---|
270 |
|
---|
271 | template<
|
---|
272 | class Alloc,
|
---|
273 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
274 | >
|
---|
275 | priority_queue(const compare_type& cmp, container_type&& cc,
|
---|
276 | const Alloc& alloc)
|
---|
277 | : comp{cmp}, c{move(cc), alloc}
|
---|
278 | { /* DUMMY BODY */ }
|
---|
279 |
|
---|
280 | template<
|
---|
281 | class Alloc,
|
---|
282 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
283 | >
|
---|
284 | priority_queue(const priority_queue& other, const Alloc& alloc)
|
---|
285 | : comp{other.comp}, c{other.c, alloc}
|
---|
286 | { /* DUMMY BODY */ }
|
---|
287 |
|
---|
288 | template<
|
---|
289 | class Alloc,
|
---|
290 | class = enable_if_t<uses_allocator<container_type, Alloc>::value, void>
|
---|
291 | >
|
---|
292 | priority_queue(priority_queue&& other, const Alloc& alloc)
|
---|
293 | : comp{move(other.comp)}, c{move(other.c), alloc}
|
---|
294 | { /* DUMMY BODY */ }
|
---|
295 |
|
---|
296 | bool empty() const
|
---|
297 | {
|
---|
298 | return c.empty();
|
---|
299 | }
|
---|
300 |
|
---|
301 | size_type size() const
|
---|
302 | {
|
---|
303 | return c.size();
|
---|
304 | }
|
---|
305 |
|
---|
306 | const_reference top() const
|
---|
307 | {
|
---|
308 | return c.front();
|
---|
309 | }
|
---|
310 |
|
---|
311 | void push(const value_type& val)
|
---|
312 | {
|
---|
313 | c.push_back(val);
|
---|
314 | push_heap(c.begin(), c.end(), comp);
|
---|
315 | }
|
---|
316 |
|
---|
317 | void push(value_type&& val)
|
---|
318 | {
|
---|
319 | c.push_back(forward<value_type>(val));
|
---|
320 | push_heap(c.begin(), c.end(), comp);
|
---|
321 | }
|
---|
322 |
|
---|
323 | template<class... Args>
|
---|
324 | void emplace(Args&&... args)
|
---|
325 | {
|
---|
326 | c.emplace_back(forward<Args>(args)...);
|
---|
327 | push_heap(c.begin(), c.end(), comp);
|
---|
328 | }
|
---|
329 |
|
---|
330 | void pop()
|
---|
331 | {
|
---|
332 | pop_heap(c.begin(), c.end(), comp);
|
---|
333 | c.pop_back();
|
---|
334 | }
|
---|
335 |
|
---|
336 | void swap(priority_queue& other)
|
---|
337 | noexcept(noexcept(swap(c, other.c)) && noexcept(swap(comp, other.comp)))
|
---|
338 | {
|
---|
339 | std::swap(c, other.c);
|
---|
340 | std::swap(comp, other.comp);
|
---|
341 | }
|
---|
342 | };
|
---|
343 |
|
---|
344 | template<class T, class Container, class Compare, class Alloc>
|
---|
345 | struct uses_allocator<priority_queue<T, Container, Compare>, Alloc>
|
---|
346 | : uses_allocator<Container, Alloc>
|
---|
347 | { /* DUMMY BODY */ };
|
---|
348 |
|
---|
349 | template<class T, class Container>
|
---|
350 | bool operator==(const queue<T, Container>& lhs,
|
---|
351 | const queue<T, Container>& rhs)
|
---|
352 | {
|
---|
353 | return lhs.c == rhs.c;
|
---|
354 | }
|
---|
355 |
|
---|
356 | template<class T, class Container>
|
---|
357 | bool operator<(const queue<T, Container>& lhs,
|
---|
358 | const queue<T, Container>& rhs)
|
---|
359 | {
|
---|
360 | return lhs.c < rhs.c;
|
---|
361 | }
|
---|
362 |
|
---|
363 | template<class T, class Container>
|
---|
364 | bool operator!=(const queue<T, Container>& lhs,
|
---|
365 | const queue<T, Container>& rhs)
|
---|
366 | {
|
---|
367 | return lhs.c != rhs.c;
|
---|
368 | }
|
---|
369 |
|
---|
370 | template<class T, class Container>
|
---|
371 | bool operator>(const queue<T, Container>& lhs,
|
---|
372 | const queue<T, Container>& rhs)
|
---|
373 | {
|
---|
374 | return lhs.c > rhs.c;
|
---|
375 | }
|
---|
376 |
|
---|
377 | template<class T, class Container>
|
---|
378 | bool operator>=(const queue<T, Container>& lhs,
|
---|
379 | const queue<T, Container>& rhs)
|
---|
380 | {
|
---|
381 | return lhs.c >= rhs.c;
|
---|
382 | }
|
---|
383 |
|
---|
384 | template<class T, class Container>
|
---|
385 | bool operator<=(const queue<T, Container>& lhs,
|
---|
386 | const queue<T, Container>& rhs)
|
---|
387 | {
|
---|
388 | return lhs.c <= rhs.c;
|
---|
389 | }
|
---|
390 |
|
---|
391 | template<class T, class Container>
|
---|
392 | void swap(queue<T, Container>& lhs, queue<T, Container>& rhs)
|
---|
393 | noexcept(noexcept(lhs.swap(rhs)))
|
---|
394 | {
|
---|
395 | lhs.swap(rhs);
|
---|
396 | }
|
---|
397 |
|
---|
398 | template<class T, class Container, class Compare>
|
---|
399 | void swap(priority_queue<T, Container, Compare>& lhs,
|
---|
400 | priority_queue<T, Container, Compare>& rhs)
|
---|
401 | noexcept(noexcept(lhs.swap(rhs)))
|
---|
402 | {
|
---|
403 | lhs.swap(rhs);
|
---|
404 | }
|
---|
405 | }
|
---|
406 |
|
---|
407 | #endif
|
---|