1 //===----------------------------------------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 // <queue> 10 // UNSUPPORTED: c++03, c++11, c++14 11 12 // template<class Compare, class Container> 13 // priority_queue(Compare, Container) 14 // -> priority_queue<typename Container::value_type, Container, Compare>; 15 // 16 // template<class InputIterator, 17 // class Compare = less<typename iterator_traits<InputIterator>::value_type>, 18 // class Container = vector<typename iterator_traits<InputIterator>::value_type>> 19 // priority_queue(InputIterator, InputIterator, Compare = Compare(), Container = Container()) 20 // -> priority_queue<typename iterator_traits<InputIterator>::value_type, Container, Compare>; 21 // 22 // template<class Compare, class Container, class Allocator> 23 // priority_queue(Compare, Container, Allocator) 24 // -> priority_queue<typename Container::value_type, Container, Compare>; 25 26 27 #include <queue> 28 #include <vector> 29 #include <iterator> 30 #include <cassert> 31 #include <cstddef> 32 #include <climits> // INT_MAX 33 34 #include "deduction_guides_sfinae_checks.h" 35 #include "test_macros.h" 36 #include "test_iterators.h" 37 #include "test_allocator.h" 38 39 struct A {}; 40 41 int main(int, char**) 42 { 43 44 // Test the explicit deduction guides 45 { 46 std::vector<int> v{0, 1, 2, 3, 4, 5, 6, 7, 8, 9 }; 47 std::priority_queue pri(std::greater<int>(), v); // priority_queue(Compare, Container) 48 49 static_assert(std::is_same_v<decltype(pri), std::priority_queue<int, std::vector<int>, std::greater<int>>>, ""); 50 assert(pri.size() == v.size()); 51 assert(pri.top() == 0); 52 } 53 54 { 55 std::vector<long, test_allocator<long>> v{10, 11, 12, 13, 14, 15, 16, 17, 18, 19 }; 56 std::priority_queue pri(std::greater<long>(), v, test_allocator<long>(2)); // priority_queue(Compare, Container, Allocator) 57 58 static_assert(std::is_same_v<decltype(pri), 59 std::priority_queue<long, std::vector<long, test_allocator<long>>, std::greater<long>>>, ""); 60 assert(pri.size() == v.size()); 61 assert(pri.top() == 10); 62 } 63 64 { 65 std::vector<short> v{10, 11, 12, 13, 14, 15, 28, 17, 18, 19 }; 66 std::priority_queue pri(v.begin(), v.end()); // priority_queue(Iter, Iter) 67 68 static_assert(std::is_same_v<decltype(pri), std::priority_queue<short>>, ""); 69 assert(pri.size() == v.size()); 70 assert(pri.top() == 28); 71 } 72 73 { 74 std::vector<double> v{10, 11, 12, 13, 6, 15, 28, 17, 18, 19 }; 75 std::priority_queue pri(v.begin(), v.end(), std::greater<double>()); // priority_queue(Iter, Iter, Comp) 76 77 static_assert(std::is_same_v<decltype(pri), std::priority_queue<double, std::vector<double>, std::greater<double>>>, ""); 78 assert(pri.size() == v.size()); 79 assert(pri.top() == 6); 80 } 81 82 { 83 std::vector<double> v{10, 6, 15, 28, 4, 18, 19 }; 84 std::deque<double> deq; 85 std::priority_queue pri(v.begin(), v.end(), std::greater<double>(), deq); // priority_queue(Iter, Iter, Comp, Container) 86 87 static_assert(std::is_same_v<decltype(pri), std::priority_queue<double, std::deque<double>, std::greater<double>>>, ""); 88 assert(pri.size() == v.size()); 89 assert(pri.top() == 4); 90 } 91 92 // Test the implicit deduction guides 93 { 94 // We don't expect this one to work - no way to implicitly get value_type 95 // std::priority_queue pri(std::allocator<int>()); // queue (allocator &) 96 } 97 98 { 99 std::priority_queue<float> source; 100 std::priority_queue pri(source); // priority_queue(priority_queue &) 101 static_assert(std::is_same_v<decltype(pri)::value_type, float>, ""); 102 static_assert(std::is_same_v<decltype(pri)::container_type, std::vector<float>>, ""); 103 assert(pri.size() == 0); 104 } 105 106 { 107 typedef short T; 108 typedef std::greater<T> Comp; 109 typedef test_allocator<T> Alloc; 110 typedef std::deque<T, Alloc> Cont; 111 typedef test_allocator<int> ConvertibleToAlloc; 112 static_assert(std::uses_allocator_v<Cont, ConvertibleToAlloc> && 113 !std::is_same_v<typename Cont::allocator_type, ConvertibleToAlloc>); 114 115 { 116 Comp comp; 117 Cont cont; 118 std::priority_queue pri(comp, cont, Alloc(2)); 119 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 120 } 121 122 { 123 Comp comp; 124 Cont cont; 125 std::priority_queue pri(comp, cont, ConvertibleToAlloc(2)); 126 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 127 } 128 129 { 130 Comp comp; 131 Cont cont; 132 std::priority_queue pri(comp, std::move(cont), Alloc(2)); 133 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 134 } 135 136 { 137 Comp comp; 138 Cont cont; 139 std::priority_queue pri(comp, std::move(cont), ConvertibleToAlloc(2)); 140 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 141 } 142 } 143 144 { 145 typedef short T; 146 typedef signed char ConvertibleToT; 147 typedef std::greater<T> Comp; 148 typedef test_allocator<T> Alloc; 149 typedef std::deque<T, Alloc> Cont; 150 typedef test_allocator<int> ConvertibleToAlloc; 151 static_assert(std::uses_allocator_v<Cont, ConvertibleToAlloc> && 152 !std::is_same_v<typename Cont::allocator_type, ConvertibleToAlloc>); 153 154 { 155 std::priority_queue<T, Cont, Comp> source; 156 std::priority_queue pri(source, Alloc(2)); 157 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 158 } 159 160 { 161 std::priority_queue<T, Cont, Comp> source; 162 std::priority_queue pri(source, ConvertibleToAlloc(2)); 163 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 164 } 165 166 { 167 std::priority_queue<T, Cont, Comp> source; 168 std::priority_queue pri(std::move(source), Alloc(2)); 169 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 170 } 171 172 { 173 std::priority_queue<T, Cont, Comp> source; 174 std::priority_queue pri(std::move(source), ConvertibleToAlloc(2)); 175 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 176 } 177 178 { 179 Cont cont; 180 std::priority_queue pri(Comp(), cont, Alloc(2)); 181 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 182 } 183 184 { 185 Cont cont; 186 std::priority_queue pri(Comp(), cont, ConvertibleToAlloc(2)); 187 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 188 } 189 190 { 191 Cont cont; 192 std::priority_queue pri(Comp(), std::move(cont), Alloc(2)); 193 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 194 } 195 196 { 197 Cont cont; 198 std::priority_queue pri(Comp(), std::move(cont), ConvertibleToAlloc(2)); 199 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 200 } 201 202 { 203 T a[2] = {}; 204 std::priority_queue pri(a, a+2, Alloc(2)); 205 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, std::vector<T, Alloc>>>); 206 } 207 208 { 209 T a[2] = {}; 210 std::priority_queue pri(a, a+2, Comp(), Alloc(2)); 211 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, std::vector<T, Alloc>, Comp>>); 212 } 213 214 { 215 Cont cont; 216 ConvertibleToT a[2] = {}; 217 std::priority_queue pri(a, a+2, Comp(), cont, Alloc(2)); 218 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 219 } 220 221 { 222 Cont cont; 223 ConvertibleToT a[2] = {}; 224 std::priority_queue pri(a, a+2, Comp(), cont, ConvertibleToAlloc(2)); 225 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 226 } 227 228 { 229 Cont cont; 230 ConvertibleToT a[2] = {}; 231 std::priority_queue pri(a, a+2, Comp(), std::move(cont), Alloc(2)); 232 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 233 } 234 235 { 236 Cont cont; 237 ConvertibleToT a[2] = {}; 238 std::priority_queue pri(a, a+2, Comp(), std::move(cont), ConvertibleToAlloc(2)); 239 static_assert(std::is_same_v<decltype(pri), std::priority_queue<T, Cont, Comp>>); 240 } 241 } 242 243 // Deduction guides should be SFINAE'd away when given: 244 // - "bad" input iterators (that is, a type not qualifying as an input 245 // iterator); 246 // - a bad allocator; 247 // - an allocator instead of a comparator; 248 // - an allocator instead of a container; 249 // - an allocator and a container that uses a different allocator. 250 { 251 using Comp = std::less<int>; 252 using Cont = std::vector<int>; 253 using Alloc = std::allocator<int>; 254 using Iter = int*; 255 256 // The only requirement in the Standard is that integral types cannot be 257 // considered input iterators, beyond that it is unspecified. 258 using BadIter = int; 259 #ifdef _LIBCPP_VERSION 260 struct OutputIter { 261 using iterator_category = std::output_iterator_tag; 262 using value_type = void; 263 using difference_type = void; 264 using pointer = void; 265 using reference = void; 266 267 const OutputIter& operator*() const { return *this; } 268 const OutputIter& operator++() { return *this; } 269 OutputIter operator++(int) const { return *this; } 270 }; 271 #endif // _LIBCPP_VERSION 272 273 struct BadAlloc {}; 274 using AllocAsComp = Alloc; 275 using AllocAsCont = Alloc; 276 using DiffAlloc = test_allocator<int>; 277 278 // (iter, iter) 279 // 280 // Cannot deduce from (BAD_iter, BAD_iter) 281 static_assert(SFINAEs_away<std::priority_queue, BadIter, BadIter>); 282 // Note: (OutputIter, OutputIter) is interpreted as (comp, cont) and fails on accessing 283 // non-existent typedefs in `OutputIter` (as if it were a container). There is no 284 // requirement to SFINAE away bad containers. 285 286 // (iter, iter, comp) 287 // 288 // Cannot deduce from (BAD_iter, BAD_iter, comp) 289 static_assert(SFINAEs_away<std::priority_queue, BadIter, BadIter, Comp>); 290 LIBCPP_STATIC_ASSERT(SFINAEs_away<std::priority_queue, OutputIter, OutputIter, Comp>); 291 // Note: (iter, iter, ALLOC_as_comp) is allowed -- it just calls (iter, iter, alloc). 292 293 // (iter, iter, comp, cont) 294 // 295 // Cannot deduce from (BAD_iter, BAD_iter, comp, cont) 296 static_assert(SFINAEs_away<std::priority_queue, BadIter, BadIter, Comp, Cont>); 297 LIBCPP_STATIC_ASSERT(SFINAEs_away<std::priority_queue, OutputIter, OutputIter, Comp, Cont>); 298 // Cannot deduce from (iter, iter, ALLOC_as_comp, cont) 299 static_assert(SFINAEs_away<std::priority_queue, Iter, Iter, AllocAsComp, Cont>); 300 // Note: (iter, iter, comp, ALLOC_as_cont) is allowed -- it just calls (iter, iter, comp, 301 // alloc). 302 303 // (iter, iter, alloc) 304 // 305 // Cannot deduce from (BAD_iter, BAD_iter, alloc) 306 static_assert(SFINAEs_away<std::priority_queue, BadIter, BadIter, Alloc>); 307 LIBCPP_STATIC_ASSERT(SFINAEs_away<std::priority_queue, OutputIter, OutputIter, Alloc>); 308 // Note: (iter, iter, BAD_alloc) is interpreted as (iter, iter, comp) instead and fails upon 309 // instantiation. There is no requirement to SFINAE away bad comparators. 310 311 // (iter, iter, comp, alloc) 312 // 313 // Cannot deduce from (iter, iter, ALLOC_as_comp, alloc) 314 static_assert(SFINAEs_away<std::priority_queue, Iter, Iter, AllocAsComp, Alloc>); 315 // Note: (iter, iter, comp, BAD_alloc) is interpreted as (iter, iter, comp, cont) instead 316 // and fails upon instantiation. There is no requirement to SFINAE away bad containers. 317 318 // (iter, iter, comp, cont, alloc) 319 // 320 // Cannot deduce from (BAD_iter, BAD_iter, comp, cont, alloc) 321 static_assert(SFINAEs_away<std::priority_queue, BadIter, BadIter, Comp, Cont, Alloc>); 322 LIBCPP_STATIC_ASSERT( 323 SFINAEs_away<std::priority_queue, OutputIter, OutputIter, Comp, Cont, Alloc>); 324 // Cannot deduce from (iter, iter, ALLOC_as_comp, cont, alloc) 325 static_assert(SFINAEs_away<std::priority_queue, Iter, Iter, AllocAsComp, Cont, Alloc>); 326 // Cannot deduce from (iter, iter, comp, ALLOC_as_cont, alloc) 327 static_assert(SFINAEs_away<std::priority_queue, Iter, Iter, Comp, AllocAsCont, Alloc>); 328 // Cannot deduce from (iter, iter, comp, cont, BAD_alloc) 329 static_assert(SFINAEs_away<std::priority_queue, Iter, Iter, Comp, Cont, BadAlloc>); 330 // Cannot deduce from (iter, iter, comp, cont, DIFFERENT_alloc) 331 static_assert(SFINAEs_away<std::priority_queue, Iter, Iter, Comp, Cont, DiffAlloc>); 332 333 // (comp, alloc) 334 // 335 // Cannot deduce from (ALLOC_as_comp, alloc) 336 static_assert(SFINAEs_away<std::priority_queue, AllocAsComp, Alloc>); 337 // Cannot deduce from (comp, BAD_alloc) 338 static_assert(SFINAEs_away<std::priority_queue, Comp, BadAlloc>); 339 340 // (comp, cont, alloc) 341 // 342 // Cannot deduce from (ALLOC_as_comp, cont, alloc) 343 static_assert(SFINAEs_away<std::priority_queue, AllocAsComp, Cont, Alloc>); 344 // Cannot deduce from (comp, ALLOC_as_cont, alloc) 345 static_assert(SFINAEs_away<std::priority_queue, Comp, AllocAsCont, Alloc>); 346 // Cannot deduce from (comp, cont, BAD_alloc) 347 static_assert(SFINAEs_away<std::priority_queue, Comp, Cont, BadAlloc>); 348 // Cannot deduce from (comp, cont, DIFFERENT_alloc) 349 static_assert(SFINAEs_away<std::priority_queue, Comp, Cont, DiffAlloc>); 350 351 // (comp, cont) 352 // 353 // Cannot deduce from (ALLOC_as_comp, cont) 354 static_assert(SFINAEs_away<std::priority_queue, AllocAsComp, Cont>); 355 // Cannot deduce from (comp, ALLOC_as_cont) 356 static_assert(SFINAEs_away<std::priority_queue, Comp, AllocAsCont>); 357 } 358 359 return 0; 360 } 361