search_pred.pass.cpp 5.5 KB

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  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. // <algorithm>
  9. // template<ForwardIterator Iter1, ForwardIterator Iter2>
  10. // requires HasEqualTo<Iter1::value_type, Iter2::value_type>
  11. // constexpr Iter1 // constexpr after C++17
  12. // search(Iter1 first1, Iter1 last1, Iter2 first2, Iter2 last2);
  13. #include <algorithm>
  14. #include <cassert>
  15. #include "test_macros.h"
  16. #include "test_iterators.h"
  17. #if TEST_STD_VER > 17
  18. TEST_CONSTEXPR bool eq(int a, int b) { return a == b; }
  19. TEST_CONSTEXPR bool test_constexpr() {
  20. int ia[] = {0, 1, 2, 3};
  21. int ib[] = {0, 1, 5, 3};
  22. int ic[] = {0, 1, 2, 0, 1, 2, 3, 0, 1, 2, 3, 4};
  23. return (std::search(std::begin(ic), std::end(ic), std::begin(ia), std::end(ia), eq) == ic+3)
  24. && (std::search(std::begin(ic), std::end(ic), std::begin(ib), std::end(ib), eq) == std::end(ic))
  25. ;
  26. }
  27. #endif
  28. struct count_equal
  29. {
  30. static unsigned count;
  31. template <class T>
  32. bool operator()(const T& x, const T& y)
  33. {++count; return x == y;}
  34. };
  35. unsigned count_equal::count = 0;
  36. template <class Iter1, class Iter2>
  37. void
  38. test()
  39. {
  40. int ia[] = {0, 1, 2, 3, 4, 5};
  41. const unsigned sa = sizeof(ia)/sizeof(ia[0]);
  42. count_equal::count = 0;
  43. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia), Iter2(ia), count_equal()) == Iter1(ia));
  44. assert(count_equal::count <= 0);
  45. count_equal::count = 0;
  46. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia), Iter2(ia+1), count_equal()) == Iter1(ia));
  47. assert(count_equal::count <= sa);
  48. count_equal::count = 0;
  49. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia+1), Iter2(ia+2), count_equal()) == Iter1(ia+1));
  50. assert(count_equal::count <= sa);
  51. count_equal::count = 0;
  52. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia+2), Iter2(ia+2), count_equal()) == Iter1(ia));
  53. assert(count_equal::count <= 0);
  54. count_equal::count = 0;
  55. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia+2), Iter2(ia+3), count_equal()) == Iter1(ia+2));
  56. assert(count_equal::count <= sa);
  57. count_equal::count = 0;
  58. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia+2), Iter2(ia+3), count_equal()) == Iter1(ia+2));
  59. assert(count_equal::count <= sa);
  60. count_equal::count = 0;
  61. assert(std::search(Iter1(ia), Iter1(ia), Iter2(ia+2), Iter2(ia+3), count_equal()) == Iter1(ia));
  62. assert(count_equal::count <= 0);
  63. count_equal::count = 0;
  64. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia+sa-1), Iter2(ia+sa), count_equal()) == Iter1(ia+sa-1));
  65. assert(count_equal::count <= sa);
  66. count_equal::count = 0;
  67. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia+sa-3), Iter2(ia+sa), count_equal()) == Iter1(ia+sa-3));
  68. assert(count_equal::count <= sa*3);
  69. count_equal::count = 0;
  70. assert(std::search(Iter1(ia), Iter1(ia+sa), Iter2(ia), Iter2(ia+sa), count_equal()) == Iter1(ia));
  71. assert(count_equal::count <= sa*sa);
  72. count_equal::count = 0;
  73. assert(std::search(Iter1(ia), Iter1(ia+sa-1), Iter2(ia), Iter2(ia+sa), count_equal()) == Iter1(ia+sa-1));
  74. assert(count_equal::count <= (sa-1)*sa);
  75. count_equal::count = 0;
  76. assert(std::search(Iter1(ia), Iter1(ia+1), Iter2(ia), Iter2(ia+sa), count_equal()) == Iter1(ia+1));
  77. assert(count_equal::count <= sa);
  78. count_equal::count = 0;
  79. int ib[] = {0, 1, 2, 0, 1, 2, 3, 0, 1, 2, 3, 4};
  80. const unsigned sb = sizeof(ib)/sizeof(ib[0]);
  81. int ic[] = {1};
  82. assert(std::search(Iter1(ib), Iter1(ib+sb), Iter2(ic), Iter2(ic+1), count_equal()) == Iter1(ib+1));
  83. assert(count_equal::count <= sb);
  84. count_equal::count = 0;
  85. int id[] = {1, 2};
  86. assert(std::search(Iter1(ib), Iter1(ib+sb), Iter2(id), Iter2(id+2), count_equal()) == Iter1(ib+1));
  87. assert(count_equal::count <= sb*2);
  88. count_equal::count = 0;
  89. int ie[] = {1, 2, 3};
  90. assert(std::search(Iter1(ib), Iter1(ib+sb), Iter2(ie), Iter2(ie+3), count_equal()) == Iter1(ib+4));
  91. assert(count_equal::count <= sb*3);
  92. count_equal::count = 0;
  93. int ig[] = {1, 2, 3, 4};
  94. assert(std::search(Iter1(ib), Iter1(ib+sb), Iter2(ig), Iter2(ig+4), count_equal()) == Iter1(ib+8));
  95. assert(count_equal::count <= sb*4);
  96. count_equal::count = 0;
  97. int ih[] = {0, 1, 1, 1, 1, 2, 3, 0, 1, 2, 3, 4};
  98. const unsigned sh = sizeof(ih)/sizeof(ih[0]);
  99. int ii[] = {1, 1, 2};
  100. assert(std::search(Iter1(ih), Iter1(ih+sh), Iter2(ii), Iter2(ii+3), count_equal()) == Iter1(ih+3));
  101. assert(count_equal::count <= sh*3);
  102. }
  103. int main(int, char**)
  104. {
  105. test<forward_iterator<const int*>, forward_iterator<const int*> >();
  106. test<forward_iterator<const int*>, bidirectional_iterator<const int*> >();
  107. test<forward_iterator<const int*>, random_access_iterator<const int*> >();
  108. test<bidirectional_iterator<const int*>, forward_iterator<const int*> >();
  109. test<bidirectional_iterator<const int*>, bidirectional_iterator<const int*> >();
  110. test<bidirectional_iterator<const int*>, random_access_iterator<const int*> >();
  111. test<random_access_iterator<const int*>, forward_iterator<const int*> >();
  112. test<random_access_iterator<const int*>, bidirectional_iterator<const int*> >();
  113. test<random_access_iterator<const int*>, random_access_iterator<const int*> >();
  114. #if TEST_STD_VER > 17
  115. static_assert(test_constexpr());
  116. #endif
  117. return 0;
  118. }