//===----------------------------------------------------------------------===// // // 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. // //===----------------------------------------------------------------------===// // // basic_string& // assign(basic_string_view sv); #include #include #include #include "test_macros.h" #include "min_allocator.h" #include "test_allocator.h" template void test(S s, SV sv, S expected) { s.assign(sv); LIBCPP_ASSERT(s.__invariants()); assert(s == expected); } template void testAlloc(S s, SV sv, const typename S::allocator_type& a) { s.assign(sv); LIBCPP_ASSERT(s.__invariants()); assert(s == sv); assert(s.get_allocator() == a); } int main() { { typedef std::string S; typedef std::string_view SV; test(S(), SV(), S()); test(S(), SV("12345"), S("12345")); test(S(), SV("1234567890"), S("1234567890")); test(S(), SV("12345678901234567890"), S("12345678901234567890")); test(S("12345"), SV(), S()); test(S("12345"), SV("12345"), S("12345")); test(S("12345"), SV("1234567890"), S("1234567890")); test(S("12345"), SV("12345678901234567890"), S("12345678901234567890")); test(S("1234567890"), SV(), S()); test(S("1234567890"), SV("12345"), S("12345")); test(S("1234567890"), SV("1234567890"), S("1234567890")); test(S("1234567890"), SV("12345678901234567890"), S("12345678901234567890")); test(S("12345678901234567890"), SV(), S()); test(S("12345678901234567890"), SV("12345"), S("12345")); test(S("12345678901234567890"), SV("1234567890"), S("1234567890")); test(S("12345678901234567890"), SV("12345678901234567890"), S("12345678901234567890")); testAlloc(S(), SV(), std::allocator()); testAlloc(S(), SV("12345"), std::allocator()); testAlloc(S(), SV("1234567890"), std::allocator()); testAlloc(S(), SV("12345678901234567890"), std::allocator()); } #if TEST_STD_VER >= 11 { typedef std::basic_string , min_allocator> S; typedef std::basic_string_view > SV; test(S(), SV(), S()); test(S(), SV("12345"), S("12345")); test(S(), SV("1234567890"), S("1234567890")); test(S(), SV("12345678901234567890"), S("12345678901234567890")); test(S("12345"), SV(), S()); test(S("12345"), SV("12345"), S("12345")); test(S("12345"), SV("1234567890"), S("1234567890")); test(S("12345"), SV("12345678901234567890"), S("12345678901234567890")); test(S("1234567890"), SV(), S()); test(S("1234567890"), SV("12345"), S("12345")); test(S("1234567890"), SV("1234567890"), S("1234567890")); test(S("1234567890"), SV("12345678901234567890"), S("12345678901234567890")); test(S("12345678901234567890"), SV(), S()); test(S("12345678901234567890"), SV("12345"), S("12345")); test(S("12345678901234567890"), SV("1234567890"), S("1234567890")); test(S("12345678901234567890"), SV("12345678901234567890"), S("12345678901234567890")); testAlloc(S(), SV(), min_allocator()); testAlloc(S(), SV("12345"), min_allocator()); testAlloc(S(), SV("1234567890"), min_allocator()); testAlloc(S(), SV("12345678901234567890"), min_allocator()); } #endif }