////////////////////////////////////////////////////////////////////////////// // // (C) Copyright Ion Gaztanaga 2025-2026. 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/container for documentation. // ////////////////////////////////////////////////////////////////////////////// #include #include #include "segmented_test_helper.hpp" #include using namespace boost::container; void test_remove_segmented() { test_detail::seg_vector sv; int a1[] = {1, 2, 3}; int a2[] = {2, 4, 2}; int a3[] = {5, 2}; sv.add_segment_range(a1, a1 + 3); sv.add_segment_range(a2, a2 + 3); sv.add_segment_range(a3, a3 + 2); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(sv.begin(), sv.end(), 2); int expected[] = {1, 3, 4, 5}; iter_t it = sv.begin(); for(int i = 0; i < 4; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST(it == new_end); } void test_remove_no_match() { test_detail::seg_vector sv; int a1[] = {1, 3, 5}; sv.add_segment_range(a1, a1 + 3); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(sv.begin(), sv.end(), 2); BOOST_TEST(new_end == sv.end()); } void test_remove_all_match() { test_detail::seg_vector sv; sv.add_segment(3, 2); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(sv.begin(), sv.end(), 2); BOOST_TEST(new_end == sv.begin()); } void test_remove_empty() { test_detail::seg_vector sv; typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(sv.begin(), sv.end(), 0); BOOST_TEST(new_end == sv.begin()); } void test_remove_non_segmented() { boost::container::vector v; v.push_back(1); v.push_back(2); v.push_back(3); v.push_back(2); v.push_back(4); boost::container::vector::iterator new_end = segmented_remove(v.begin(), v.end(), 2); BOOST_TEST_EQ(new_end - v.begin(), 3); BOOST_TEST_EQ(v[0], 1); BOOST_TEST_EQ(v[1], 3); BOOST_TEST_EQ(v[2], 4); } void test_remove_sentinel_segmented() { test_detail::seg_vector sv; int a1[] = {1, 2, 3}; int a2[] = {2, 4, 2}; int a3[] = {5, 2}; sv.add_segment_range(a1, a1 + 3); sv.add_segment_range(a2, a2 + 3); sv.add_segment_range(a3, a3 + 2); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(sv.begin(), test_detail::make_sentinel(sv.end()), 2); int expected[] = {1, 3, 4, 5}; iter_t it = sv.begin(); for(int i = 0; i < 4; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST(it == new_end); } void test_remove_sentinel_non_segmented() { boost::container::vector v; v.push_back(1); v.push_back(2); v.push_back(3); v.push_back(2); v.push_back(4); boost::container::vector::iterator new_end = segmented_remove(v.begin(), test_detail::make_sentinel(v.end()), 2); BOOST_TEST_EQ(new_end - v.begin(), 3); BOOST_TEST_EQ(v[0], 1); BOOST_TEST_EQ(v[1], 3); BOOST_TEST_EQ(v[2], 4); } void test_remove_seg2() { test_detail::seg2_vector sv2; int a1[] = {1, 2, 3}; int a2[] = {2, 4, 2}; int a3[] = {5, 2}; sv2.add_flat_segment_range(a1, a1 + 3); sv2.add_flat_segment_range(a2, a2 + 3); sv2.add_flat_segment_range(a3, a3 + 2); typedef test_detail::seg2_vector::iterator iter_t; iter_t new_end = segmented_remove(sv2.begin(), sv2.end(), 2); int expected[] = {1, 3, 4, 5}; iter_t it = sv2.begin(); for(int i = 0; i < 4; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST(it == new_end); } void test_remove_movable_seg() { typedef test_detail::movable_int mi; test_detail::seg_vector sv; int a1[] = {1, 2, 3}; int a2[] = {2, 4, 2}; int a3[] = {5, 2}; sv.add_segment_from_ints(a1, a1 + 3); sv.add_segment_from_ints(a2, a2 + 3); sv.add_segment_from_ints(a3, a3 + 2); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(sv.begin(), sv.end(), mi(2)); int expected[] = {1, 3, 4, 5}; iter_t it = sv.begin(); for(int i = 0; i < 4; ++i, ++it) BOOST_TEST_EQ(it->value(), expected[i]); BOOST_TEST(it == new_end); } void test_remove_movable_seg2() { typedef test_detail::movable_int mi; test_detail::seg2_vector sv2; int a1[] = {1, 2, 3}; int a2[] = {2, 4, 2}; int a3[] = {5, 2}; sv2.add_flat_segment_from_ints(a1, a1 + 3); sv2.add_flat_segment_from_ints(a2, a2 + 3); sv2.add_flat_segment_from_ints(a3, a3 + 2); typedef test_detail::seg2_vector::iterator iter_t; iter_t new_end = segmented_remove(sv2.begin(), sv2.end(), mi(2)); int expected[] = {1, 3, 4, 5}; iter_t it = sv2.begin(); for(int i = 0; i < 4; ++i, ++it) BOOST_TEST_EQ(it->value(), expected[i]); BOOST_TEST(it == new_end); } void test_remove_single_segment_interior() { test_detail::seg_vector sv; int a[] = {100, 1, 2, 3, 2, 5, 200}; sv.add_segment_range(a, a + 7); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(test_detail::iter_at(sv, 1), test_detail::iter_at(sv, 6), 2); BOOST_TEST(new_end == test_detail::iter_at(sv, 4)); int expected[] = {1, 3, 5}; iter_t it = test_detail::iter_at(sv, 1); for(int i = 0; i < 3; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST_EQ(*test_detail::iter_at(sv, 0), 100); BOOST_TEST_EQ(*test_detail::iter_at(sv, 6), 200); } void test_remove_single_segment_first_element() { test_detail::seg_vector sv; int a[] = {100, 2, 1, 3, 5, 200}; sv.add_segment_range(a, a + 6); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(test_detail::iter_at(sv, 1), test_detail::iter_at(sv, 5), 2); BOOST_TEST(new_end == test_detail::iter_at(sv, 4)); int expected[] = {1, 3, 5}; iter_t it = test_detail::iter_at(sv, 1); for(int i = 0; i < 3; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST_EQ(*test_detail::iter_at(sv, 0), 100); BOOST_TEST_EQ(*test_detail::iter_at(sv, 5), 200); } void test_remove_single_segment_last_element() { test_detail::seg_vector sv; int a[] = {100, 1, 3, 5, 2, 200}; sv.add_segment_range(a, a + 6); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(test_detail::iter_at(sv, 1), test_detail::iter_at(sv, 5), 2); BOOST_TEST(new_end == test_detail::iter_at(sv, 4)); int expected[] = {1, 3, 5}; iter_t it = test_detail::iter_at(sv, 1); for(int i = 0; i < 3; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST_EQ(*test_detail::iter_at(sv, 0), 100); BOOST_TEST_EQ(*test_detail::iter_at(sv, 5), 200); } void test_remove_single_segment_no_match() { test_detail::seg_vector sv; int a[] = {100, 1, 3, 5, 7, 200}; sv.add_segment_range(a, a + 6); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(test_detail::iter_at(sv, 1), test_detail::iter_at(sv, 5), 2); BOOST_TEST(new_end == test_detail::iter_at(sv, 5)); iter_t it = sv.begin(); for(int i = 0; i < 6; ++i, ++it) BOOST_TEST_EQ(*it, a[i]); } void test_remove_single_segment_empty_mid() { test_detail::seg_vector sv; int a[] = {1, 2, 3, 2, 5, 6}; sv.add_segment_range(a, a + 6); typedef test_detail::seg_vector::iterator iter_t; iter_t mid = test_detail::iter_at(sv, 3); iter_t new_end = segmented_remove(mid, mid, 2); BOOST_TEST(new_end == mid); iter_t it = sv.begin(); for(int i = 0; i < 6; ++i, ++it) BOOST_TEST_EQ(*it, a[i]); } void test_remove_single_segment_sentinel() { test_detail::seg_vector sv; int a[] = {100, 1, 2, 3, 2, 5, 200}; sv.add_segment_range(a, a + 7); typedef test_detail::seg_vector::iterator iter_t; iter_t new_end = segmented_remove(test_detail::iter_at(sv, 1), test_detail::make_sentinel(test_detail::iter_at(sv, 6)), 2); BOOST_TEST(new_end == test_detail::iter_at(sv, 4)); int expected[] = {1, 3, 5}; iter_t it = test_detail::iter_at(sv, 1); for(int i = 0; i < 3; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST_EQ(*test_detail::iter_at(sv, 0), 100); BOOST_TEST_EQ(*test_detail::iter_at(sv, 6), 200); } void test_remove_single_segment_seg2_outer() { test_detail::seg2_vector sv2; test_detail::seg_vector inner; int a1[] = {100, 1, 2}; int a2[] = {3, 2}; int a3[] = {5, 200}; inner.add_segment_range(a1, a1 + 3); inner.add_segment_range(a2, a2 + 2); inner.add_segment_range(a3, a3 + 2); sv2.add_segment(inner); typedef test_detail::seg2_vector::iterator iter_t; iter_t new_end = segmented_remove(test_detail::iter_at(sv2, 1), test_detail::iter_at(sv2, 6), 2); BOOST_TEST(new_end == test_detail::iter_at(sv2, 4)); int expected[] = {1, 3, 5}; iter_t it = test_detail::iter_at(sv2, 1); for(int i = 0; i < 3; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST_EQ(*test_detail::iter_at(sv2, 0), 100); BOOST_TEST_EQ(*test_detail::iter_at(sv2, 6), 200); } void test_remove_single_segment_seg2_both() { test_detail::seg2_vector sv2; test_detail::seg_vector inner; int a[] = {100, 1, 2, 3, 2, 5, 200}; inner.add_segment_range(a, a + 7); sv2.add_segment(inner); typedef test_detail::seg2_vector::iterator iter_t; iter_t new_end = segmented_remove(test_detail::iter_at(sv2, 1), test_detail::iter_at(sv2, 6), 2); BOOST_TEST(new_end == test_detail::iter_at(sv2, 4)); int expected[] = {1, 3, 5}; iter_t it = test_detail::iter_at(sv2, 1); for(int i = 0; i < 3; ++i, ++it) BOOST_TEST_EQ(*it, expected[i]); BOOST_TEST_EQ(*test_detail::iter_at(sv2, 0), 100); BOOST_TEST_EQ(*test_detail::iter_at(sv2, 6), 200); } ////////////////////////////////////////////////////////////////////////////// // Shape matrix. // // segmented_remove is in place, so there is only one range and // for_each_shape_all is the right combinator: the twelve branch specs over // both segmentation depths, the 'e' ones carrying empty segments. // // What can be asserted after the call is the returned new logical end, the // surviving prefix in front of it, and the guard just past the end of the // range. The elements between the new end and the old one are left in a // valid-but-unspecified state by definition, so nothing is asserted about // them. The reference is filtered out of flatten_n_ints over the logical // range, not flatten_all_ints, which deliberately includes the guard. ////////////////////////////////////////////////////////////////////////////// const int shape_removed = 2; // the value handed to segmented_remove const int shape_filler = -999; // guard just past the end of the range struct remove_shape_check { template void operator()(C& c, std::size_t n, const char* spec) const { typedef typename C::iterator iter_t; const boost::container::vector in = test_detail::flatten_n_ints(c, n); boost::container::vector ref; for(std::size_t i = 0; i != n; ++i) if(in[i] != shape_removed) ref.push_back(in[i]); const iter_t new_end = segmented_remove(c.begin(), test_detail::iter_at(c, n), shape_removed); BOOST_TEST(new_end == test_detail::iter_at(c, ref.size())); BOOST_TEST(test_detail::filler_intact(c, n, shape_filler)); const boost::container::vector got = test_detail::flatten_n_ints(c, ref.size()); BOOST_TEST_EQ(got.size(), ref.size()); for(std::size_t i = 0; i != ref.size(); ++i) BOOST_TEST_EQ(got[i], ref[i]); BOOST_TEST(spec != 0); } }; void test_remove_shape_matrix() { // Interleaved removals, a leading and a trailing removal, nothing removed // and everything removed, so the empty and the full answer are both in. static const int mixed[] = {1, 2, 3, 2, 4, 2, 5, 6, 2, 7}; static const int edges[] = {2, 1, 3, 4, 5, 2}; static const int none[] = {1, 3, 5, 7, 9, 11}; static const int all_rm[] = {2, 2, 2, 2, 2, 2}; static const int* const sets[] = {mixed, edges, none, all_rm}; static const std::size_t set_len[] = {10u, 6u, 6u, 6u}; static const std::size_t sizes[] = {0u, 1u, 2u, 3u, 5u, 6u, 10u}; for(std::size_t s = 0; s != sizeof(sets)/sizeof(sets[0]); ++s) { for(std::size_t i = 0; i != sizeof(sizes)/sizeof(sizes[0]); ++i) { const std::size_t n = sizes[i]; if(n > set_len[s]) continue; test_detail::for_each_shape_all (sets[s], n, shape_filler, remove_shape_check()); } } } int main() { test_remove_segmented(); test_remove_no_match(); test_remove_all_match(); test_remove_single_segment_interior(); test_remove_single_segment_first_element(); test_remove_single_segment_last_element(); test_remove_single_segment_no_match(); test_remove_single_segment_empty_mid(); test_remove_single_segment_sentinel(); test_remove_single_segment_seg2_outer(); test_remove_single_segment_seg2_both(); test_remove_empty(); test_remove_non_segmented(); test_remove_sentinel_segmented(); test_remove_sentinel_non_segmented(); test_remove_seg2(); test_remove_movable_seg(); test_remove_movable_seg2(); test_remove_shape_matrix(); return boost::report_errors(); }