///////////////////////////////////////////////////////////////////////////// // // (C) Copyright Olaf Krzikalla 2004-2006. // (C) Copyright Ion Gaztanaga 2006-2007. // // Distributed under the Boost Software License, Version 1.0. // (See accompanying file LICENSE_1_0.txt or copy at // http://www.boost.org/LICENSE_1_0.txt) // // See http://www.boost.org/libs/intrusive for documentation. // ///////////////////////////////////////////////////////////////////////////// #include #include #include #include "itestvalue.hpp" #include "smart_ptr.hpp" #include "common_functors.hpp" #include #include #include "test_macros.hpp" #include "test_container.hpp" using namespace boost::intrusive; template struct test_slist { typedef typename ValueTraits::value_type value_type; static void test_all (std::vector& values); static void test_front_back (std::vector& values); static void test_sort(std::vector& values); static void test_merge (std::vector& values); static void test_insert(std::vector& values); static void test_shift(std::vector& values); static void test_swap(std::vector& values); static void test_slow_insert (std::vector& values); static void test_clone (std::vector& values); }; template void test_slist ::test_all (std::vector& values) { typedef boost::intrusive::slist list_type; { list_type list(values.begin(), values.end()); test::test_container(list); list.clear(); list.insert(list.end(), values.begin(), values.end()); test::test_sequence_container(list, values); } test_front_back (values); test_sort(values); test_merge (values); test_insert(values); test_shift(values); test_slow_insert (values); test_swap(values); test_clone(values); } //test: push_front, pop_front, front, size, empty: template void test_slist ::test_front_back (std::vector& values) { typedef boost::intrusive::slist list_type; list_type testlist; BOOST_TEST (testlist.empty()); testlist.push_front (values[0]); BOOST_TEST (testlist.size() == 1); BOOST_TEST (&testlist.front() == &values[0]); testlist.push_front (values[1]); BOOST_TEST (testlist.size() == 2); BOOST_TEST (&testlist.front() == &values[1]); testlist.pop_front(); BOOST_TEST (testlist.size() == 1); BOOST_TEST (&testlist.front() == &values[0]); testlist.pop_front(); BOOST_TEST (testlist.empty()); } //test: merge due to error in merge implementation: template void test_slist ::test_merge (std::vector& values) { typedef typename ValueTraits::value_type testvalue_t; typedef boost::intrusive::slist list_type; list_type testlist1, testlist2; testlist1.push_front (values[0]); testlist2.push_front (values[4]); testlist2.push_front (values[3]); testlist2.push_front (values[2]); testlist1.merge (testlist2); int init_values [] = { 1, 3, 4, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist1.begin() ); } //test: constructor, iterator, sort, reverse: template void test_slist ::test_sort(std::vector& values) { typedef typename ValueTraits::value_type testvalue_t; typedef boost::intrusive::slist list_type; list_type testlist (values.begin(), values.end()); { int init_values [] = { 1, 2, 3, 4, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist.begin() ); } testlist.sort (even_odd()); { int init_values [] = { 2, 4, 1, 3, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist.begin() ); } testlist.reverse(); { int init_values [] = { 5, 3, 1, 4, 2, }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist.begin() ); } } //test: assign, insert_after, const_iterator, erase_after, iterator_to, previous: template void test_slist ::test_insert(std::vector& values) { typedef typename ValueTraits::value_type testvalue_t; typedef boost::intrusive::slist list_type; list_type testlist; testlist.assign (&values[0] + 2, &values[0] + 5); const list_type& const_testlist = testlist; { int init_values [] = { 3, 4, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, const_testlist.begin() ); } typename list_type::iterator i = ++testlist.begin(); BOOST_TEST (i->value_ == 4); testlist.insert_after (i, values[0]); { int init_values [] = { 3, 4, 1, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, const_testlist.begin() ); } i = testlist.iterator_to (values[4]); BOOST_TEST (&*i == &values[4]); i = testlist.previous (i); BOOST_TEST (&*i == &values[0]); testlist.erase_after (i); BOOST_TEST (&*i == &values[0]); { int init_values [] = { 3, 4, 1 }; TEST_INTRUSIVE_SEQUENCE( init_values, const_testlist.begin() ); } } //test: insert, const_iterator, erase, iterator_to: template void test_slist ::test_slow_insert (std::vector& values) { typedef typename ValueTraits::value_type testvalue_t; typedef boost::intrusive::slist list_type; list_type testlist; testlist.push_front (values[4]); testlist.insert (testlist.begin(), &values[0] + 2, &values[0] + 4); const list_type& const_testlist = testlist; { int init_values [] = { 3, 4, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, const_testlist.begin() ); } typename list_type::iterator i = ++testlist.begin(); BOOST_TEST (i->value_ == 4); testlist.insert (i, values[0]); { int init_values [] = { 3, 1, 4, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, const_testlist.begin() ); } i = testlist.iterator_to (values[4]); BOOST_TEST (&*i == &values[4]); i = testlist.erase (i); BOOST_TEST (i == testlist.end()); { int init_values [] = { 3, 1, 4 }; TEST_INTRUSIVE_SEQUENCE( init_values, const_testlist.begin() ); } testlist.erase (++testlist.begin(), testlist.end()); BOOST_TEST (testlist.size() == 1); BOOST_TEST (testlist.front().value_ == 3); } template void test_slist ::test_shift(std::vector& values) { typedef typename ValueTraits::value_type testvalue_t; typedef boost::intrusive::slist list_type; list_type testlist; const int num_values = (int)values.size(); std::vector expected_values(num_values); //Shift forward all possible positions 3 times for(int i = 0; i < num_values*3; ++i){ testlist.assign(values.begin(), values.end()); testlist.shift_forward(i); for(int j = 0; j < num_values; ++j){ expected_values[(j + num_values - i%num_values) % num_values] = (j + 1); } TEST_INTRUSIVE_SEQUENCE_EXPECTED(expected_values, testlist.begin()) testlist.clear(); } //Shift backwards all possible positions for(int i = 0; i < num_values*3; ++i){ testlist.assign(values.begin(), values.end()); testlist.shift_backwards(i); for(int j = 0; j < num_values; ++j){ expected_values[(j + i) % num_values] = (j + 1); } TEST_INTRUSIVE_SEQUENCE_EXPECTED(expected_values, testlist.begin()) testlist.clear(); } } //test: insert_after (seq-version), swap, splice_after: template void test_slist ::test_swap(std::vector& values) { typedef typename ValueTraits::value_type testvalue_t; typedef boost::intrusive::slist list_type; { list_type testlist1 (&values[0], &values[0] + 2); list_type testlist2; testlist2.insert_after (testlist2.end(), &values[0] + 2, &values[0] + 5); testlist1.swap(testlist2); { int init_values [] = { 3, 4, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist1.begin() ); } { int init_values [] = { 1, 2 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist2.begin() ); } testlist2.splice_after (testlist2.begin(), testlist1); { int init_values [] = { 1, 3, 4, 5, 2 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist2.begin() ); } BOOST_TEST (testlist1.empty()); testlist1.splice_after (testlist1.end(), testlist2, ++testlist2.begin()); { int init_values [] = { 4 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist1.begin() ); } { int init_values [] = { 1, 3, 5, 2 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist2.begin() ); } testlist1.splice_after (testlist1.begin(), testlist2, testlist2.end(), ++++testlist2.begin()); { int init_values [] = { 4, 1, 3, 5 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist1.begin() ); } { int init_values [] = { 2 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist2.begin() ); } } { list_type testlist1 (&values[0], &values[0] + 2); list_type testlist2 (&values[0] + 3, &values[0] + 5); values[0].swap_nodes(values[2]); { int init_values [] = { 3, 2 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist1.begin() ); } values[2].swap_nodes(values[4]); { int init_values [] = { 5, 2 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist1.begin() ); } { int init_values [] = { 4, 3 }; TEST_INTRUSIVE_SEQUENCE( init_values, testlist2.begin() ); } } } template void test_slist ::test_clone(std::vector& values) { typedef typename ValueTraits::value_type testvalue_t; typedef boost::intrusive::slist list_type; list_type testlist1 (&values[0], &values[0] + values.size()); list_type testlist2; testlist2.clone_from(testlist1, test::new_cloner(), test::delete_disposer()); BOOST_TEST (testlist2 == testlist1); testlist2.clear_and_dispose(test::delete_disposer()); BOOST_TEST (testlist2.empty()); } template class test_main_template { public: int operator()() { typedef testvalue testvalue_t; std::vector data (5); for (int i = 0; i < 5; ++i) data[i].value_ = i + 1; test_slist >::test_all(data); test_slist >::test_all(data); return 0; } }; template class test_main_template { public: int operator()() { typedef testvalue testvalue_t; std::vector data (5); for (int i = 0; i < 5; ++i) data[i].value_ = i + 1; test_slist >::test_all(data); test_slist >::test_all(data); test_slist >::test_all(data); test_slist >::test_all(data); return 0; } }; /* //Explicit instantiations of non-counted classes template class boost::intrusive::slist; template class boost::intrusive::slist; template class boost::intrusive::slist; template class boost::intrusive::slist; template class boost::intrusive::slist; template class boost::intrusive::slist; template class boost::intrusive::slist; template class boost::intrusive::slist; //Explicit instantiation of counted classes template class boost::intrusive::slist; template class boost::intrusive::slist; template class boost::intrusive::slist; template class boost::intrusive::slist; */ int main(int, char* []) { test_main_template()(); test_main_template, false>()(); test_main_template()(); test_main_template, true>()(); return boost::report_errors(); } #include