//===----------------------------------------------------------------------===// // // The LLVM Compiler Infrastructure // // This file is dual licensed under the MIT and the University of Illinois Open // Source Licenses. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// // UNSUPPORTED: c++98, c++03, c++11, c++14 // <map> // class map // template <class C2> // void merge(map<key_type, value_type, C2, allocator_type>& source); // template <class C2> // void merge(map<key_type, value_type, C2, allocator_type>&& source); // template <class C2> // void merge(multimap<key_type, value_type, C2, allocator_type>& source); // template <class C2> // void merge(multimap<key_type, value_type, C2, allocator_type>&& source); #include <map> #include <cassert> #include "test_macros.h" #include "Counter.h" template <class Map> bool map_equal(const Map& map, Map other) { return map == other; } #ifndef TEST_HAS_NO_EXCEPTIONS struct throw_comparator { bool& should_throw_; throw_comparator(bool& should_throw) : should_throw_(should_throw) {} template <class T> bool operator()(const T& lhs, const T& rhs) const { if (should_throw_) throw 0; return lhs < rhs; } }; #endif int main() { { std::map<int, int> src{{1, 0}, {3, 0}, {5, 0}}; std::map<int, int> dst{{2, 0}, {4, 0}, {5, 0}}; dst.merge(src); assert(map_equal(src, {{5,0}})); assert(map_equal(dst, {{1, 0}, {2, 0}, {3, 0}, {4, 0}, {5, 0}})); } #ifndef TEST_HAS_NO_EXCEPTIONS { bool do_throw = false; typedef std::map<Counter<int>, int, throw_comparator> map_type; map_type src({{1, 0}, {3, 0}, {5, 0}}, throw_comparator(do_throw)); map_type dst({{2, 0}, {4, 0}, {5, 0}}, throw_comparator(do_throw)); assert(Counter_base::gConstructed == 6); do_throw = true; try { dst.merge(src); } catch (int) { do_throw = false; } assert(!do_throw); assert(map_equal(src, map_type({{1, 0}, {3, 0}, {5, 0}}, throw_comparator(do_throw)))); assert(map_equal(dst, map_type({{2, 0}, {4, 0}, {5, 0}}, throw_comparator(do_throw)))); } #endif assert(Counter_base::gConstructed == 0); struct comparator { comparator() = default; bool operator()(const Counter<int>& lhs, const Counter<int>& rhs) const { return lhs < rhs; } }; { typedef std::map<Counter<int>, int, std::less<Counter<int>>> first_map_type; typedef std::map<Counter<int>, int, comparator> second_map_type; typedef std::multimap<Counter<int>, int, comparator> third_map_type; { first_map_type first{{1, 0}, {2, 0}, {3, 0}}; second_map_type second{{2, 0}, {3, 0}, {4, 0}}; third_map_type third{{1, 0}, {3, 0}}; assert(Counter_base::gConstructed == 8); first.merge(second); first.merge(third); assert(map_equal(first, {{1, 0}, {2, 0}, {3, 0}, {4, 0}})); assert(map_equal(second, {{2, 0}, {3, 0}})); assert(map_equal(third, {{1, 0}, {3, 0}})); assert(Counter_base::gConstructed == 8); } assert(Counter_base::gConstructed == 0); { first_map_type first{{1, 0}, {2, 0}, {3, 0}}; second_map_type second{{2, 0}, {3, 0}, {4, 0}}; third_map_type third{{1, 0}, {3, 0}}; assert(Counter_base::gConstructed == 8); first.merge(std::move(second)); first.merge(std::move(third)); assert(map_equal(first, {{1, 0}, {2, 0}, {3, 0}, {4, 0}})); assert(map_equal(second, {{2, 0}, {3, 0}})); assert(map_equal(third, {{1, 0}, {3, 0}})); assert(Counter_base::gConstructed == 8); } assert(Counter_base::gConstructed == 0); } assert(Counter_base::gConstructed == 0); { std::map<int, int> first; { std::map<int, int> second; first.merge(second); first.merge(std::move(second)); } { std::multimap<int, int> second; first.merge(second); first.merge(std::move(second)); } } }