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 // UNSUPPORTED: c++03, c++11, c++14
10
11 // <map>
12
13 // class multimap
14
15 // template <class C2>
16 // void merge(map<key_type, value_type, C2, allocator_type>& source);
17 // template <class C2>
18 // void merge(map<key_type, value_type, C2, allocator_type>&& source);
19 // template <class C2>
20 // void merge(multimap<key_type, value_type, C2, allocator_type>& source);
21 // template <class C2>
22 // void merge(multimap<key_type, value_type, C2, allocator_type>&& source);
23
24 #include <map>
25 #include <cassert>
26 #include "test_macros.h"
27 #include "Counter.h"
28
29 template <class Map>
map_equal(const Map & map,Map other)30 bool map_equal(const Map& map, Map other)
31 {
32 return map == other;
33 }
34
35 #ifndef TEST_HAS_NO_EXCEPTIONS
36 struct throw_comparator
37 {
38 bool& should_throw_;
39
throw_comparatorthrow_comparator40 throw_comparator(bool& should_throw) : should_throw_(should_throw) {}
41
42 template <class T>
operator ()throw_comparator43 bool operator()(const T& lhs, const T& rhs) const
44 {
45 if (should_throw_)
46 throw 0;
47 return lhs < rhs;
48 }
49 };
50 #endif
51
main(int,char **)52 int main(int, char**)
53 {
54 {
55 std::multimap<int, int> src{{1, 0}, {3, 0}, {5, 0}};
56 std::multimap<int, int> dst{{2, 0}, {4, 0}, {5, 0}};
57 dst.merge(src);
58 assert(map_equal(src, {}));
59 assert(map_equal(dst, {{1, 0}, {2, 0}, {3, 0}, {4, 0}, {5, 0}, {5, 0}}));
60 }
61
62 #ifndef TEST_HAS_NO_EXCEPTIONS
63 {
64 bool do_throw = false;
65 typedef std::multimap<Counter<int>, int, throw_comparator> map_type;
66 map_type src({{1, 0}, {3, 0}, {5, 0}}, throw_comparator(do_throw));
67 map_type dst({{2, 0}, {4, 0}, {5, 0}}, throw_comparator(do_throw));
68
69 assert(Counter_base::gConstructed == 6);
70
71 do_throw = true;
72 try
73 {
74 dst.merge(src);
75 }
76 catch (int)
77 {
78 do_throw = false;
79 }
80 assert(!do_throw);
81 assert(map_equal(src, map_type({{1, 0}, {3, 0}, {5, 0}}, throw_comparator(do_throw))));
82 assert(map_equal(dst, map_type({{2, 0}, {4, 0}, {5, 0}}, throw_comparator(do_throw))));
83 }
84 #endif
85 assert(Counter_base::gConstructed == 0);
86 struct comparator
87 {
88 comparator() = default;
89
90 bool operator()(const Counter<int>& lhs, const Counter<int>& rhs) const
91 {
92 return lhs < rhs;
93 }
94 };
95 {
96 typedef std::multimap<Counter<int>, int, std::less<Counter<int>>> first_map_type;
97 typedef std::multimap<Counter<int>, int, comparator> second_map_type;
98 typedef std::map<Counter<int>, int, comparator> third_map_type;
99
100 {
101 first_map_type first{{1, 0}, {2, 0}, {3, 0}};
102 second_map_type second{{2, 0}, {3, 0}, {4, 0}};
103 third_map_type third{{1, 0}, {3, 0}};
104
105 assert(Counter_base::gConstructed == 8);
106
107 first.merge(second);
108 first.merge(third);
109
110 assert(map_equal(first, {{1, 0}, {1, 0}, {2, 0}, {2, 0}, {3, 0}, {3, 0}, {3, 0}, {4, 0}}));
111 assert(map_equal(second, {}));
112 assert(map_equal(third, {}));
113
114 assert(Counter_base::gConstructed == 8);
115 }
116 assert(Counter_base::gConstructed == 0);
117 {
118 first_map_type first{{1, 0}, {2, 0}, {3, 0}};
119 second_map_type second{{2, 0}, {3, 0}, {4, 0}};
120 third_map_type third{{1, 0}, {3, 0}};
121
122 assert(Counter_base::gConstructed == 8);
123
124 first.merge(std::move(second));
125 first.merge(std::move(third));
126
127 assert(map_equal(first, {{1, 0}, {1, 0}, {2, 0}, {2, 0}, {3, 0}, {3, 0}, {3, 0}, {4, 0}}));
128 assert(map_equal(second, {}));
129 assert(map_equal(third, {}));
130
131 assert(Counter_base::gConstructed == 8);
132 }
133 assert(Counter_base::gConstructed == 0);
134 }
135 assert(Counter_base::gConstructed == 0);
136 {
137 std::multimap<int, int> first;
138 {
139 std::multimap<int, int> second;
140 first.merge(second);
141 first.merge(std::move(second));
142 }
143 {
144 std::multimap<int, int> second;
145 first.merge(second);
146 first.merge(std::move(second));
147 }
148 }
149 return 0;
150 }
151