tests/test_list.cpp

Sun, 09 Apr 2023 19:03:58 +0200

author
Mike Becker <universe@uap-core.de>
date
Sun, 09 Apr 2023 19:03:58 +0200
changeset 677
b09aae58bba4
parent 672
55d8fdd38ca4
child 679
022fbd4bc057
permissions
-rw-r--r--

refactoring of collections to make use of destructors in map implementations

universe@390 1 /*
universe@390 2 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS HEADER.
universe@390 3 *
universe@390 4 * Copyright 2021 Mike Becker, Olaf Wintermann All rights reserved.
universe@390 5 *
universe@390 6 * Redistribution and use in source and binary forms, with or without
universe@390 7 * modification, are permitted provided that the following conditions are met:
universe@390 8 *
universe@390 9 * 1. Redistributions of source code must retain the above copyright
universe@390 10 * notice, this list of conditions and the following disclaimer.
universe@390 11 *
universe@390 12 * 2. Redistributions in binary form must reproduce the above copyright
universe@390 13 * notice, this list of conditions and the following disclaimer in the
universe@390 14 * documentation and/or other materials provided with the distribution.
universe@390 15 *
universe@390 16 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
universe@390 17 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
universe@390 18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
universe@390 19 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
universe@390 20 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
universe@390 21 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
universe@390 22 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
universe@390 23 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
universe@390 24 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
universe@390 25 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
universe@390 26 * POSSIBILITY OF SUCH DAMAGE.
universe@390 27 */
universe@390 28
universe@398 29 #include "cx/linked_list.h"
universe@606 30 #include "cx/array_list.h"
universe@509 31 #include "cx/utils.h"
universe@602 32 #include "cx/compare.h"
universe@422 33 #include "util_allocator.h"
universe@398 34
universe@517 35 #include <gtest/gtest.h>
universe@517 36 #include <array>
universe@517 37 #include <vector>
universe@517 38 #include <unordered_set>
universe@517 39 #include <algorithm>
universe@517 40
universe@486 41 struct node {
universe@517 42 node *next = nullptr;
universe@517 43 node *prev = nullptr;
universe@517 44 int data = 0;
universe@486 45 };
universe@486 46
universe@486 47 const ptrdiff_t loc_prev = offsetof(struct node, prev);
universe@486 48 const ptrdiff_t loc_next = offsetof(struct node, next);
universe@486 49 const ptrdiff_t loc_data = offsetof(struct node, data);
universe@486 50
universe@517 51 struct node_test_data {
universe@520 52 node *begin = nullptr;
universe@517 53
universe@520 54 explicit node_test_data(node *begin) : begin(begin) {
universe@520 55 auto n = begin;
universe@520 56 while (n != nullptr) {
universe@520 57 nodes.push_back(n);
universe@520 58 n = n->next;
universe@520 59 }
universe@520 60 }
universe@520 61
universe@520 62 node_test_data(node_test_data &) = delete;
universe@520 63
universe@520 64 node_test_data(node_test_data &&) = default;
universe@517 65
universe@517 66 ~node_test_data() {
universe@520 67 for (auto &&n: nodes) delete n;
universe@486 68 }
universe@520 69
universe@520 70 private:
universe@520 71 std::vector<node *> nodes;
universe@517 72 };
universe@517 73
universe@517 74 static node_test_data create_nodes_test_data(size_t len) {
universe@517 75 if (len == 0) return node_test_data{nullptr};
universe@517 76 auto begin = new node;
universe@517 77 auto prev = begin;
universe@517 78 for (size_t i = 1; i < len; i++) {
universe@517 79 auto n = new node;
universe@517 80 cx_linked_list_link(prev, n, loc_prev, loc_next);
universe@517 81 prev = n;
universe@517 82 }
universe@517 83 return node_test_data{begin};
universe@486 84 }
universe@486 85
universe@517 86 template<typename InputIter>
universe@528 87 static node_test_data create_nodes_test_data(
universe@528 88 InputIter begin,
universe@528 89 InputIter end
universe@528 90 ) {
universe@517 91 if (begin == end) return node_test_data{nullptr};
universe@517 92 node *first = new node;
universe@517 93 first->data = *begin;
universe@517 94 node *prev = first;
universe@517 95 begin++;
universe@517 96 for (; begin != end; begin++) {
universe@517 97 auto n = new node;
universe@517 98 n->data = *begin;
universe@517 99 cx_linked_list_link(prev, n, loc_prev, loc_next);
universe@517 100 prev = n;
universe@486 101 }
universe@517 102 return node_test_data{first};
universe@486 103 }
universe@486 104
universe@517 105 static node_test_data create_nodes_test_data(std::initializer_list<int> data) {
universe@517 106 return create_nodes_test_data(data.begin(), data.end());
universe@509 107 }
universe@509 108
universe@517 109 template<size_t N>
universe@517 110 struct int_test_data {
universe@517 111 std::array<int, N> data;
universe@482 112
universe@517 113 int_test_data() {
universe@517 114 cx_for_n (i, N) data[i] = ::rand(); // NOLINT(cert-msc50-cpp)
universe@517 115 }
universe@517 116 };
universe@517 117
universe@517 118 TEST(LinkedList_LowLevel, link_unlink) {
universe@517 119 node a, b, c;
universe@482 120
universe@482 121 cx_linked_list_link(&a, &b, loc_prev, loc_next);
universe@517 122 EXPECT_EQ(a.prev, nullptr);
universe@517 123 EXPECT_EQ(a.next, &b);
universe@517 124 EXPECT_EQ(b.prev, &a);
universe@517 125 EXPECT_EQ(b.next, nullptr);
universe@482 126
universe@482 127 cx_linked_list_unlink(&a, &b, loc_prev, loc_next);
universe@517 128 EXPECT_EQ(a.prev, nullptr);
universe@517 129 EXPECT_EQ(a.next, nullptr);
universe@517 130 EXPECT_EQ(b.prev, nullptr);
universe@517 131 EXPECT_EQ(b.next, nullptr);
universe@482 132
universe@482 133 cx_linked_list_link(&b, &c, loc_prev, loc_next);
universe@482 134 cx_linked_list_link(&a, &b, loc_prev, loc_next);
universe@482 135 cx_linked_list_unlink(&b, &c, loc_prev, loc_next);
universe@517 136 EXPECT_EQ(a.prev, nullptr);
universe@517 137 EXPECT_EQ(a.next, &b);
universe@517 138 EXPECT_EQ(b.prev, &a);
universe@517 139 EXPECT_EQ(b.next, nullptr);
universe@517 140 EXPECT_EQ(c.prev, nullptr);
universe@517 141 EXPECT_EQ(c.next, nullptr);
universe@482 142 }
universe@482 143
universe@517 144 TEST(LinkedList_LowLevel, cx_linked_list_at) {
universe@517 145 node a, b, c, d;
universe@486 146 cx_linked_list_link(&a, &b, loc_prev, loc_next);
universe@486 147 cx_linked_list_link(&b, &c, loc_prev, loc_next);
universe@486 148 cx_linked_list_link(&c, &d, loc_prev, loc_next);
universe@438 149
universe@517 150 EXPECT_EQ(cx_linked_list_at(&a, 0, loc_next, 0), &a);
universe@517 151 EXPECT_EQ(cx_linked_list_at(&a, 0, loc_next, 1), &b);
universe@517 152 EXPECT_EQ(cx_linked_list_at(&a, 0, loc_next, 2), &c);
universe@517 153 EXPECT_EQ(cx_linked_list_at(&a, 0, loc_next, 3), &d);
universe@517 154 EXPECT_EQ(cx_linked_list_at(&a, 0, loc_next, 4), nullptr);
universe@438 155
universe@517 156 EXPECT_EQ(cx_linked_list_at(&b, 1, loc_prev, 0), &a);
universe@517 157 EXPECT_EQ(cx_linked_list_at(&b, 1, loc_next, 1), &b);
universe@517 158 EXPECT_EQ(cx_linked_list_at(&b, 1, loc_next, 2), &c);
universe@517 159 EXPECT_EQ(cx_linked_list_at(&b, 1, loc_next, 3), &d);
universe@517 160 EXPECT_EQ(cx_linked_list_at(&b, 1, loc_next, 4), nullptr);
universe@438 161
universe@517 162 EXPECT_EQ(cx_linked_list_at(&d, 3, loc_prev, 0), &a);
universe@517 163 EXPECT_EQ(cx_linked_list_at(&d, 3, loc_prev, 1), &b);
universe@438 164 }
universe@438 165
universe@517 166 TEST(LinkedList_LowLevel, cx_linked_list_find) {
universe@517 167 auto testdata = create_nodes_test_data({2, 4, 6, 8});
universe@517 168 auto list = testdata.begin;
universe@487 169 int s;
universe@487 170
universe@487 171 s = 2;
universe@639 172 EXPECT_EQ(cx_linked_list_find(list, loc_next, loc_data, cx_cmp_int, &s), 0);
universe@487 173 s = 4;
universe@639 174 EXPECT_EQ(cx_linked_list_find(list, loc_next, loc_data, cx_cmp_int, &s), 1);
universe@487 175 s = 6;
universe@639 176 EXPECT_EQ(cx_linked_list_find(list, loc_next, loc_data, cx_cmp_int, &s), 2);
universe@487 177 s = 8;
universe@639 178 EXPECT_EQ(cx_linked_list_find(list, loc_next, loc_data, cx_cmp_int, &s), 3);
universe@487 179 s = 10;
universe@639 180 EXPECT_EQ(cx_linked_list_find(list, loc_next, loc_data, cx_cmp_int, &s), 4);
universe@487 181 s = -2;
universe@639 182 EXPECT_EQ(cx_linked_list_find(list, loc_next, loc_data, cx_cmp_int, &s), 4);
universe@487 183 }
universe@487 184
universe@517 185 TEST(LinkedList_LowLevel, cx_linked_list_compare) {
universe@517 186 auto ta = create_nodes_test_data({2, 4, 6, 8});
universe@517 187 auto tb = create_nodes_test_data({2, 4, 6});
universe@517 188 auto tc = create_nodes_test_data({2, 4, 6, 9});
universe@517 189 auto la = ta.begin, lb = tb.begin, lc = tc.begin;
universe@486 190
universe@639 191 EXPECT_GT(cx_linked_list_compare(la, lb, loc_next, loc_data, cx_cmp_int), 0);
universe@639 192 EXPECT_LT(cx_linked_list_compare(lb, la, loc_next, loc_data, cx_cmp_int), 0);
universe@639 193 EXPECT_GT(cx_linked_list_compare(lc, la, loc_next, loc_data, cx_cmp_int), 0);
universe@639 194 EXPECT_LT(cx_linked_list_compare(la, lc, loc_next, loc_data, cx_cmp_int), 0);
universe@639 195 EXPECT_EQ(cx_linked_list_compare(la, la, loc_next, loc_data, cx_cmp_int), 0);
universe@486 196 }
universe@486 197
universe@517 198 TEST(LinkedList_LowLevel, cx_linked_list_add) {
universe@517 199 // test with begin, end / prev, next
universe@517 200 {
universe@517 201 node nodes[4];
universe@517 202 void *begin = nullptr, *end = nullptr;
universe@449 203
universe@517 204 cx_linked_list_add(&begin, &end, loc_prev, loc_next, &nodes[0]);
universe@517 205 EXPECT_EQ(begin, &nodes[0]);
universe@517 206 EXPECT_EQ(end, &nodes[0]);
universe@517 207 EXPECT_EQ(nodes[0].prev, nullptr);
universe@517 208 EXPECT_EQ(nodes[0].next, nullptr);
universe@449 209
universe@517 210 cx_linked_list_add(&begin, &end, loc_prev, loc_next, &nodes[1]);
universe@517 211 EXPECT_EQ(begin, &nodes[0]);
universe@517 212 EXPECT_EQ(end, &nodes[1]);
universe@517 213 EXPECT_EQ(nodes[0].next, &nodes[1]);
universe@517 214 EXPECT_EQ(nodes[1].prev, &nodes[0]);
universe@517 215 }
universe@449 216
olaf@442 217 // test with begin only / prev, next
universe@517 218 {
universe@517 219 node nodes[4];
universe@517 220 void *begin = nullptr;
universe@449 221
universe@517 222 cx_linked_list_add(&begin, nullptr, loc_prev, loc_next, &nodes[0]);
universe@517 223 EXPECT_EQ(begin, &nodes[0]);
universe@517 224 cx_linked_list_add(&begin, nullptr, loc_prev, loc_next, &nodes[1]);
universe@517 225 EXPECT_EQ(begin, &nodes[0]);
universe@517 226 EXPECT_EQ(nodes[0].next, &nodes[1]);
universe@517 227 EXPECT_EQ(nodes[1].prev, &nodes[0]);
universe@449 228
universe@517 229 cx_linked_list_add(&begin, nullptr, loc_prev, loc_next, &nodes[2]);
universe@517 230 EXPECT_EQ(nodes[1].next, &nodes[2]);
universe@517 231 EXPECT_EQ(nodes[2].prev, &nodes[1]);
universe@517 232 }
universe@449 233
universe@475 234 // test with end only / prev, next
universe@517 235 {
universe@517 236 node nodes[4];
universe@517 237 void *end = nullptr;
universe@475 238
universe@517 239 cx_linked_list_add(nullptr, &end, loc_prev, loc_next, &nodes[0]);
universe@517 240 EXPECT_EQ(end, &nodes[0]);
universe@517 241 cx_linked_list_add(nullptr, &end, loc_prev, loc_next, &nodes[1]);
universe@517 242 EXPECT_EQ(end, &nodes[1]);
universe@517 243 EXPECT_EQ(nodes[0].next, &nodes[1]);
universe@517 244 EXPECT_EQ(nodes[1].prev, &nodes[0]);
universe@475 245
universe@517 246 cx_linked_list_add(nullptr, &end, loc_prev, loc_next, &nodes[2]);
universe@517 247 EXPECT_EQ(end, &nodes[2]);
universe@517 248 EXPECT_EQ(nodes[1].next, &nodes[2]);
universe@517 249 EXPECT_EQ(nodes[2].prev, &nodes[1]);
universe@517 250 }
universe@475 251
olaf@442 252 // test with begin, end / next
universe@517 253 {
universe@517 254 node nodes[4];
universe@517 255 void *begin = nullptr, *end = nullptr;
universe@449 256
universe@517 257 cx_linked_list_add(&begin, &end, -1, loc_next, &nodes[0]);
universe@517 258 EXPECT_EQ(begin, &nodes[0]);
universe@517 259 EXPECT_EQ(end, &nodes[0]);
universe@517 260 cx_linked_list_add(&begin, &end, -1, loc_next, &nodes[1]);
universe@517 261 EXPECT_EQ(end, &nodes[1]);
universe@517 262 EXPECT_EQ(nodes[0].next, &nodes[1]);
universe@517 263 EXPECT_EQ(nodes[1].prev, nullptr);
universe@517 264 }
olaf@442 265 }
olaf@442 266
universe@517 267 TEST(LinkedList_LowLevel, cx_linked_list_prepend) {
universe@517 268 // test with begin, end / prev, next
universe@517 269 {
universe@517 270 node nodes[4];
universe@517 271 void *begin = nullptr, *end = nullptr;
universe@475 272
universe@517 273 cx_linked_list_prepend(&begin, &end, loc_prev, loc_next, &nodes[0]);
universe@517 274 EXPECT_EQ(begin, &nodes[0]);
universe@517 275 EXPECT_EQ(end, &nodes[0]);
universe@517 276 EXPECT_EQ(nodes[0].prev, nullptr);
universe@517 277 EXPECT_EQ(nodes[0].next, nullptr);
universe@475 278
universe@517 279 cx_linked_list_prepend(&begin, &end, loc_prev, loc_next, &nodes[1]);
universe@517 280 EXPECT_EQ(begin, &nodes[1]);
universe@517 281 EXPECT_EQ(end, &nodes[0]);
universe@517 282 EXPECT_EQ(nodes[1].next, &nodes[0]);
universe@517 283 EXPECT_EQ(nodes[0].prev, &nodes[1]);
universe@517 284 }
universe@475 285
universe@475 286 // test with begin only / prev, next
universe@517 287 {
universe@517 288 node nodes[4];
universe@517 289 void *begin = nullptr;
universe@475 290
universe@517 291 cx_linked_list_prepend(&begin, nullptr, loc_prev, loc_next, &nodes[0]);
universe@517 292 EXPECT_EQ(begin, &nodes[0]);
universe@517 293 cx_linked_list_prepend(&begin, nullptr, loc_prev, loc_next, &nodes[1]);
universe@517 294 EXPECT_EQ(begin, &nodes[1]);
universe@517 295 EXPECT_EQ(nodes[1].next, &nodes[0]);
universe@517 296 EXPECT_EQ(nodes[0].prev, &nodes[1]);
universe@475 297
universe@517 298 cx_linked_list_prepend(&begin, nullptr, loc_prev, loc_next, &nodes[2]);
universe@517 299 EXPECT_EQ(begin, &nodes[2]);
universe@517 300 EXPECT_EQ(nodes[2].next, &nodes[1]);
universe@517 301 EXPECT_EQ(nodes[1].prev, &nodes[2]);
universe@517 302 }
universe@475 303
universe@475 304 // test with end only / prev, next
universe@517 305 {
universe@517 306 node nodes[4];
universe@517 307 void *end = nullptr;
universe@475 308
universe@517 309 cx_linked_list_prepend(nullptr, &end, loc_prev, loc_next, &nodes[0]);
universe@517 310 EXPECT_EQ(end, &nodes[0]);
universe@517 311 cx_linked_list_prepend(nullptr, &end, loc_prev, loc_next, &nodes[1]);
universe@517 312 EXPECT_EQ(end, &nodes[0]);
universe@517 313 EXPECT_EQ(nodes[1].next, &nodes[0]);
universe@517 314 EXPECT_EQ(nodes[0].prev, &nodes[1]);
universe@475 315
universe@517 316 cx_linked_list_prepend(nullptr, &end, loc_prev, loc_next, &nodes[2]);
universe@517 317 EXPECT_EQ(end, &nodes[0]);
universe@517 318 EXPECT_EQ(nodes[2].next, &nodes[1]);
universe@517 319 EXPECT_EQ(nodes[1].prev, &nodes[2]);
universe@517 320 }
universe@475 321
universe@475 322 // test with begin, end / next
universe@517 323 {
universe@517 324 node nodes[4];
universe@517 325 void *begin = nullptr, *end = nullptr;
universe@475 326
universe@517 327 cx_linked_list_prepend(&begin, &end, -1, loc_next, &nodes[0]);
universe@517 328 EXPECT_EQ(begin, &nodes[0]);
universe@517 329 EXPECT_EQ(end, &nodes[0]);
universe@517 330 cx_linked_list_prepend(&begin, &end, -1, loc_next, &nodes[1]);
universe@517 331 cx_linked_list_prepend(&begin, &end, -1, loc_next, &nodes[2]);
universe@517 332 EXPECT_EQ(begin, &nodes[2]);
universe@517 333 EXPECT_EQ(end, &nodes[0]);
universe@517 334 EXPECT_EQ(nodes[1].next, &nodes[0]);
universe@517 335 EXPECT_EQ(nodes[2].next, &nodes[1]);
universe@517 336 EXPECT_EQ(nodes[1].prev, nullptr);
universe@517 337 EXPECT_EQ(nodes[0].prev, nullptr);
universe@517 338 }
universe@475 339 }
universe@475 340
universe@517 341 TEST(LinkedList_LowLevel, cx_linked_list_insert) {
universe@517 342 // insert mid list
universe@517 343 {
universe@517 344 node nodes[4];
universe@517 345 void *begin = &nodes[0], *end = &nodes[2];
universe@482 346
universe@517 347 cx_linked_list_link(&nodes[0], &nodes[1], loc_prev, loc_next);
universe@517 348 cx_linked_list_link(&nodes[1], &nodes[2], loc_prev, loc_next);
universe@482 349
universe@517 350 cx_linked_list_insert(&begin, &end, loc_prev, loc_next, &nodes[1], &nodes[3]);
universe@517 351 EXPECT_EQ(begin, &nodes[0]);
universe@517 352 EXPECT_EQ(end, &nodes[2]);
universe@517 353 EXPECT_EQ(nodes[1].next, &nodes[3]);
universe@517 354 EXPECT_EQ(nodes[2].prev, &nodes[3]);
universe@517 355 EXPECT_EQ(nodes[3].prev, &nodes[1]);
universe@517 356 EXPECT_EQ(nodes[3].next, &nodes[2]);
universe@517 357 }
universe@482 358
universe@482 359 // insert end
universe@517 360 {
universe@517 361 node nodes[4];
universe@517 362 void *begin = &nodes[0], *end = &nodes[2];
universe@482 363
universe@517 364 cx_linked_list_link(&nodes[0], &nodes[1], loc_prev, loc_next);
universe@517 365 cx_linked_list_link(&nodes[1], &nodes[2], loc_prev, loc_next);
universe@482 366
universe@517 367 cx_linked_list_insert(&begin, &end, loc_prev, loc_next, &nodes[2], &nodes[3]);
universe@517 368 EXPECT_EQ(begin, &nodes[0]);
universe@517 369 EXPECT_EQ(end, &nodes[3]);
universe@517 370 EXPECT_EQ(nodes[2].next, &nodes[3]);
universe@517 371 EXPECT_EQ(nodes[3].prev, &nodes[2]);
universe@517 372 EXPECT_EQ(nodes[3].next, nullptr);
universe@517 373 }
universe@482 374
universe@482 375 // insert begin
universe@517 376 {
universe@517 377 node nodes[4];
universe@517 378 void *begin = &nodes[0], *end = &nodes[2];
universe@482 379
universe@517 380 cx_linked_list_link(&nodes[0], &nodes[1], loc_prev, loc_next);
universe@517 381 cx_linked_list_link(&nodes[1], &nodes[2], loc_prev, loc_next);
universe@482 382
universe@517 383 cx_linked_list_insert(&begin, &end, loc_prev, loc_next, nullptr, &nodes[3]);
universe@517 384 EXPECT_EQ(begin, &nodes[3]);
universe@517 385 EXPECT_EQ(end, &nodes[2]);
universe@517 386 EXPECT_EQ(nodes[0].prev, &nodes[3]);
universe@517 387 EXPECT_EQ(nodes[3].prev, nullptr);
universe@517 388 EXPECT_EQ(nodes[3].next, &nodes[0]);
universe@517 389 }
universe@482 390 }
universe@482 391
universe@517 392 TEST(LinkedList_LowLevel, cx_linked_list_insert_chain) {
universe@517 393 // insert mid list
universe@517 394 {
universe@517 395 node nodes[5];
universe@517 396 void *begin = &nodes[0], *end = &nodes[2];
universe@482 397
universe@517 398 cx_linked_list_link(&nodes[0], &nodes[1], loc_prev, loc_next);
universe@517 399 cx_linked_list_link(&nodes[1], &nodes[2], loc_prev, loc_next);
universe@517 400 cx_linked_list_link(&nodes[3], &nodes[4], loc_prev, loc_next);
universe@482 401
universe@517 402 cx_linked_list_insert_chain(&begin, &end, loc_prev, loc_next, &nodes[1], &nodes[3], nullptr);
universe@517 403 EXPECT_EQ(begin, &nodes[0]);
universe@517 404 EXPECT_EQ(end, &nodes[2]);
universe@517 405 EXPECT_EQ(nodes[1].next, &nodes[3]);
universe@517 406 EXPECT_EQ(nodes[2].prev, &nodes[4]);
universe@517 407 EXPECT_EQ(nodes[3].prev, &nodes[1]);
universe@517 408 EXPECT_EQ(nodes[4].next, &nodes[2]);
universe@517 409 }
universe@482 410
universe@482 411 // insert end
universe@517 412 {
universe@517 413 node nodes[5];
universe@517 414 void *begin = &nodes[0], *end = &nodes[2];
universe@482 415
universe@517 416 cx_linked_list_link(&nodes[0], &nodes[1], loc_prev, loc_next);
universe@517 417 cx_linked_list_link(&nodes[1], &nodes[2], loc_prev, loc_next);
universe@517 418 cx_linked_list_link(&nodes[3], &nodes[4], loc_prev, loc_next);
universe@482 419
universe@517 420 cx_linked_list_insert_chain(&begin, &end, loc_prev, loc_next, &nodes[2], &nodes[3], nullptr);
universe@517 421 EXPECT_EQ(begin, &nodes[0]);
universe@517 422 EXPECT_EQ(end, &nodes[4]);
universe@517 423 EXPECT_EQ(nodes[2].next, &nodes[3]);
universe@517 424 EXPECT_EQ(nodes[3].prev, &nodes[2]);
universe@517 425 EXPECT_EQ(nodes[4].next, nullptr);
universe@517 426 }
universe@482 427
universe@482 428 // insert begin
universe@517 429 {
universe@517 430 node nodes[5];
universe@517 431 void *begin = &nodes[0], *end = &nodes[2];
universe@482 432
universe@517 433 cx_linked_list_link(&nodes[0], &nodes[1], loc_prev, loc_next);
universe@517 434 cx_linked_list_link(&nodes[1], &nodes[2], loc_prev, loc_next);
universe@517 435 cx_linked_list_link(&nodes[3], &nodes[4], loc_prev, loc_next);
universe@482 436
universe@517 437 cx_linked_list_insert_chain(&begin, &end, loc_prev, loc_next, nullptr, &nodes[3], nullptr);
universe@517 438 EXPECT_EQ(begin, &nodes[3]);
universe@517 439 EXPECT_EQ(end, &nodes[2]);
universe@517 440 EXPECT_EQ(nodes[0].prev, &nodes[4]);
universe@517 441 EXPECT_EQ(nodes[3].prev, nullptr);
universe@517 442 EXPECT_EQ(nodes[4].next, &nodes[0]);
universe@517 443 }
universe@482 444 }
universe@482 445
universe@517 446 TEST(LinkedList_LowLevel, cx_linked_list_first) {
universe@517 447 auto testdata = create_nodes_test_data(3);
universe@517 448 auto begin = testdata.begin;
universe@517 449 EXPECT_EQ(cx_linked_list_first(begin, loc_prev), begin);
universe@517 450 EXPECT_EQ(cx_linked_list_first(begin->next, loc_prev), begin);
universe@517 451 EXPECT_EQ(cx_linked_list_first(begin->next->next, loc_prev), begin);
universe@475 452 }
universe@475 453
universe@517 454 TEST(LinkedList_LowLevel, cx_linked_list_last) {
universe@517 455 auto testdata = create_nodes_test_data(3);
universe@517 456 auto begin = testdata.begin;
universe@517 457 auto end = begin->next->next;
universe@517 458 EXPECT_EQ(cx_linked_list_last(begin, loc_next), end);
universe@517 459 EXPECT_EQ(cx_linked_list_last(begin->next, loc_next), end);
universe@517 460 EXPECT_EQ(cx_linked_list_last(begin->next->next, loc_next), end);
universe@456 461 }
universe@456 462
universe@517 463 TEST(LinkedList_LowLevel, cx_linked_list_prev) {
universe@517 464 auto testdata = create_nodes_test_data(3);
universe@517 465 auto begin = testdata.begin;
universe@517 466 EXPECT_EQ(cx_linked_list_prev(begin, loc_next, begin), nullptr);
universe@517 467 EXPECT_EQ(cx_linked_list_prev(begin, loc_next, begin->next), begin);
universe@517 468 EXPECT_EQ(cx_linked_list_prev(begin, loc_next, begin->next->next), begin->next);
universe@473 469 }
universe@473 470
universe@517 471 TEST(LinkedList_LowLevel, cx_linked_list_remove) {
universe@517 472 auto testdata = create_nodes_test_data({2, 4, 6});
universe@517 473 auto begin = reinterpret_cast<void *>(testdata.begin);
universe@517 474 auto first = testdata.begin;
universe@517 475 auto second = first->next;
universe@517 476 auto third = second->next;
universe@517 477 auto end = reinterpret_cast<void *>(third);
universe@473 478
universe@486 479 cx_linked_list_remove(&begin, &end, loc_prev, loc_next, second);
universe@517 480 EXPECT_EQ(begin, first);
universe@517 481 EXPECT_EQ(end, third);
universe@517 482 EXPECT_EQ(first->prev, nullptr);
universe@517 483 EXPECT_EQ(first->next, third);
universe@517 484 EXPECT_EQ(third->prev, first);
universe@517 485 EXPECT_EQ(third->next, nullptr);
universe@473 486
universe@486 487 cx_linked_list_remove(&begin, &end, loc_prev, loc_next, third);
universe@517 488 EXPECT_EQ(begin, first);
universe@517 489 EXPECT_EQ(end, first);
universe@517 490 EXPECT_EQ(first->prev, nullptr);
universe@517 491 EXPECT_EQ(first->next, nullptr);
universe@473 492
universe@486 493 cx_linked_list_remove(&begin, &end, loc_prev, loc_next, first);
universe@517 494 EXPECT_EQ(begin, nullptr);
universe@517 495 EXPECT_EQ(end, nullptr);
universe@473 496 }
universe@473 497
universe@517 498 TEST(LinkedList_LowLevel, cx_linked_list_size) {
universe@517 499 EXPECT_EQ(cx_linked_list_size(nullptr, loc_next), 0);
universe@468 500
universe@517 501 {
universe@517 502 auto testdata = create_nodes_test_data(5);
universe@517 503 EXPECT_EQ(cx_linked_list_size(testdata.begin, loc_next), 5);
universe@517 504 }
universe@468 505
universe@517 506 {
universe@517 507 auto testdata = create_nodes_test_data(13);
universe@517 508 EXPECT_EQ(cx_linked_list_size(testdata.begin, loc_next), 13);
universe@517 509 }
universe@468 510 }
universe@468 511
universe@517 512 TEST(LinkedList_LowLevel, cx_linked_list_sort) {
universe@521 513 int_test_data<1500> testdata;
universe@521 514 std::array<int, 1500> sorted{};
universe@517 515 std::partial_sort_copy(testdata.data.begin(), testdata.data.end(), sorted.begin(), sorted.end());
universe@468 516
universe@517 517 auto scrambled = create_nodes_test_data(testdata.data.begin(), testdata.data.end());
universe@517 518 void *begin = scrambled.begin;
universe@486 519 void *end = cx_linked_list_last(begin, loc_next);
universe@468 520
universe@639 521 cx_linked_list_sort(&begin, &end, loc_prev, loc_next, loc_data, cx_cmp_int);
universe@468 522
universe@517 523 node *check = reinterpret_cast<node *>(begin);
universe@517 524 node *check_last = nullptr;
universe@517 525 cx_for_n (i, sorted.size()) {
universe@517 526 EXPECT_EQ(check->data, sorted[i]);
universe@517 527 EXPECT_EQ(check->prev, check_last);
universe@517 528 if (i < sorted.size() - 1) {
universe@517 529 ASSERT_NE(check->next, nullptr);
universe@468 530 }
universe@468 531 check_last = check;
universe@468 532 check = check->next;
universe@468 533 }
universe@517 534 EXPECT_EQ(check, nullptr);
universe@517 535 EXPECT_EQ(end, check_last);
universe@468 536 }
universe@468 537
universe@517 538 TEST(LinkedList_LowLevel, cx_linked_list_reverse) {
universe@517 539 auto testdata = create_nodes_test_data({2, 4, 6, 8});
universe@517 540 auto expected = create_nodes_test_data({8, 6, 4, 2});
universe@473 541
universe@517 542 auto begin = reinterpret_cast<void *>(testdata.begin);
universe@517 543 auto end = cx_linked_list_last(begin, loc_next);
universe@517 544 auto orig_begin = begin, orig_end = end;
universe@473 545
universe@486 546 cx_linked_list_reverse(&begin, &end, loc_prev, loc_next);
universe@517 547 EXPECT_EQ(end, orig_begin);
universe@517 548 EXPECT_EQ(begin, orig_end);
universe@639 549 EXPECT_EQ(cx_linked_list_compare(begin, expected.begin, loc_next, loc_data, cx_cmp_int), 0);
universe@473 550 }
universe@456 551
universe@517 552 class HighLevelTest : public ::testing::Test {
universe@517 553 mutable std::unordered_set<CxList *> lists;
universe@517 554 protected:
universe@518 555 CxTestingAllocator testingAllocator;
universe@455 556
universe@517 557 void TearDown() override {
universe@517 558 for (auto &&l: lists) cxListDestroy(l);
universe@518 559 EXPECT_TRUE(testingAllocator.verify());
universe@517 560 }
universe@517 561
universe@517 562 static constexpr size_t testdata_len = 250;
universe@517 563 int_test_data<testdata_len> testdata;
universe@517 564
universe@517 565 auto autofree(CxList *list) const -> CxList * {
universe@606 566 if (list != nullptr) lists.insert(list);
universe@517 567 return list;
universe@517 568 }
universe@517 569
universe@517 570 auto linkedListFromTestData() const -> CxList * {
universe@629 571 auto list = autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, sizeof(int)));
universe@629 572 cxListAddArray(list, testdata.data.data(), testdata_len);
universe@629 573 return list;
universe@517 574 }
universe@517 575
universe@641 576 auto pointerLinkedListFromTestData() const -> CxList * {
universe@667 577 auto list = autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, CX_STORE_POINTERS));
universe@641 578 // note: cannot use cxListAddArray() because we don't have a list of pointers
universe@641 579 cx_for_n(i, testdata_len) cxListAdd(list, &testdata.data[i]);
universe@641 580 return list;
universe@641 581 }
universe@641 582
universe@606 583 auto arrayListFromTestData() const -> CxList * {
universe@606 584 auto list = autofree(cxArrayListCreate(&testingAllocator, cx_cmp_int, sizeof(int), testdata_len));
universe@629 585 cxListAddArray(list, testdata.data.data(), testdata_len);
universe@606 586 return list;
universe@606 587 }
universe@606 588
universe@528 589 void verifyAdd(
universe@528 590 CxList *list,
universe@606 591 bool as_pointer
universe@528 592 ) {
universe@517 593 auto len = testdata_len;
universe@517 594 cx_for_n (i, len) EXPECT_EQ(cxListAdd(list, &testdata.data[i]), 0);
universe@677 595 EXPECT_EQ(cxListSize(list), len);
universe@517 596 cx_for_n (i, len) EXPECT_EQ(*(int *) cxListAt(list, i), testdata.data[i]);
universe@517 597 cx_for_n (i, len) ++testdata.data[i];
universe@606 598 if (as_pointer) {
universe@517 599 cx_for_n (i, len) EXPECT_EQ(*(int *) cxListAt(list, i), testdata.data[i]);
universe@517 600 } else {
universe@517 601 cx_for_n (i, len) EXPECT_EQ(*(int *) cxListAt(list, i), testdata.data[i] - 1);
universe@517 602 }
universe@517 603 }
universe@517 604
universe@517 605 static void verifyInsert(CxList *list) {
universe@517 606 int a = 5, b = 47, c = 13, d = 42;
universe@517 607
universe@517 608 EXPECT_NE(cxListInsert(list, 1, &a), 0);
universe@677 609 EXPECT_EQ(cxListSize(list), 0);
universe@517 610 EXPECT_EQ(cxListInsert(list, 0, &a), 0);
universe@677 611 EXPECT_EQ(cxListSize(list), 1);
universe@517 612 EXPECT_EQ(cxListInsert(list, 0, &b), 0);
universe@677 613 EXPECT_EQ(cxListSize(list), 2);
universe@517 614 EXPECT_EQ(cxListInsert(list, 1, &c), 0);
universe@677 615 EXPECT_EQ(cxListSize(list), 3);
universe@517 616 EXPECT_EQ(cxListInsert(list, 3, &d), 0);
universe@517 617
universe@677 618 ASSERT_EQ(cxListSize(list), 4);
universe@517 619
universe@517 620 EXPECT_EQ(*(int *) cxListAt(list, 0), 47);
universe@517 621 EXPECT_EQ(*(int *) cxListAt(list, 1), 13);
universe@517 622 EXPECT_EQ(*(int *) cxListAt(list, 2), 5);
universe@517 623 EXPECT_EQ(*(int *) cxListAt(list, 3), 42);
universe@517 624 }
universe@517 625
universe@641 626 static void verifyInsertArray(
universe@641 627 CxList *list,
universe@641 628 bool pointers = false
universe@641 629 ) {
universe@638 630 int a[5] = {5, 47, 11, 13, 42};
universe@638 631 int b[5] = {9, 18, 72, 50, 7};
universe@641 632 int *aptr[5];
universe@641 633 int *bptr[5];
universe@641 634 cx_for_n(i, 5) {
universe@641 635 aptr[i] = &a[i];
universe@641 636 bptr[i] = &b[i];
universe@641 637 }
universe@638 638
universe@638 639 size_t inserted;
universe@638 640
universe@641 641 if (pointers) {
universe@641 642 inserted = cxListInsertArray(list, 0, aptr, 5);
universe@641 643 } else {
universe@641 644 inserted = cxListInsertArray(list, 0, a, 5);
universe@641 645 }
universe@638 646 EXPECT_EQ(inserted, 5);
universe@638 647 EXPECT_EQ(*(int *) cxListAt(list, 0), 5);
universe@638 648 EXPECT_EQ(*(int *) cxListAt(list, 1), 47);
universe@638 649 EXPECT_EQ(*(int *) cxListAt(list, 2), 11);
universe@638 650 EXPECT_EQ(*(int *) cxListAt(list, 3), 13);
universe@638 651 EXPECT_EQ(*(int *) cxListAt(list, 4), 42);
universe@641 652 if (pointers) {
universe@641 653 inserted = cxListInsertArray(list, 3, bptr, 5);
universe@641 654 } else {
universe@641 655 inserted = cxListInsertArray(list, 3, b, 5);
universe@641 656 }
universe@638 657 EXPECT_EQ(inserted, 5);
universe@638 658 EXPECT_EQ(*(int *) cxListAt(list, 0), 5);
universe@638 659 EXPECT_EQ(*(int *) cxListAt(list, 1), 47);
universe@638 660 EXPECT_EQ(*(int *) cxListAt(list, 2), 11);
universe@638 661 EXPECT_EQ(*(int *) cxListAt(list, 3), 9);
universe@638 662 EXPECT_EQ(*(int *) cxListAt(list, 4), 18);
universe@638 663 EXPECT_EQ(*(int *) cxListAt(list, 5), 72);
universe@638 664 EXPECT_EQ(*(int *) cxListAt(list, 6), 50);
universe@638 665 EXPECT_EQ(*(int *) cxListAt(list, 7), 7);
universe@638 666 EXPECT_EQ(*(int *) cxListAt(list, 8), 13);
universe@638 667 EXPECT_EQ(*(int *) cxListAt(list, 9), 42);
universe@638 668 }
universe@638 669
universe@517 670 void verifyRemove(CxList *list) const {
universe@517 671 EXPECT_EQ(cxListRemove(list, 2), 0);
universe@517 672 EXPECT_EQ(cxListRemove(list, 4), 0);
universe@677 673 EXPECT_EQ(cxListSize(list), testdata_len - 2);
universe@517 674 EXPECT_EQ(*(int *) cxListAt(list, 0), testdata.data[0]);
universe@517 675 EXPECT_EQ(*(int *) cxListAt(list, 1), testdata.data[1]);
universe@517 676 EXPECT_EQ(*(int *) cxListAt(list, 2), testdata.data[3]);
universe@517 677 EXPECT_EQ(*(int *) cxListAt(list, 3), testdata.data[4]);
universe@517 678 EXPECT_EQ(*(int *) cxListAt(list, 4), testdata.data[6]);
universe@517 679
universe@517 680 EXPECT_EQ(cxListRemove(list, 0), 0);
universe@677 681 EXPECT_EQ(cxListSize(list), testdata_len - 3);
universe@517 682 EXPECT_EQ(*(int *) cxListAt(list, 0), testdata.data[1]);
universe@517 683 EXPECT_EQ(*(int *) cxListAt(list, 1), testdata.data[3]);
universe@517 684
universe@517 685 EXPECT_NE(cxListRemove(list, testdata_len), 0);
universe@517 686 }
universe@517 687
universe@672 688 static void verifyClear(CxList *list) {
universe@672 689 cxListClear(list);
universe@677 690 EXPECT_EQ(0, cxListSize(list));
universe@672 691 }
universe@666 692
universe@672 693 static unsigned destr_test_ctr;
universe@672 694 static int destr_last_value;
universe@672 695
universe@672 696 static void simple_destr_test_fun(void *data) {
universe@672 697 auto ptr = (int *) data;
universe@672 698 destr_last_value = *ptr;
universe@672 699 *ptr = destr_last_value + 1;
universe@672 700 destr_test_ctr++;
universe@672 701 }
universe@672 702
universe@672 703 static void advanced_destr_test_fun(
universe@672 704 [[maybe_unused]] void *u,
universe@672 705 void *data
universe@672 706 ) {
universe@672 707 simple_destr_test_fun(data);
universe@672 708 }
universe@672 709
universe@672 710 void verifyAnyDestructor(CxList *list) {
universe@672 711 int off = cxListIsStoringPointers(list) ? 1 : 0;
universe@672 712
universe@672 713 cxListRemove(list, 15);
universe@672 714 EXPECT_EQ(1, destr_test_ctr);
universe@672 715 EXPECT_EQ(testdata.data[15], destr_last_value + off);
universe@677 716 EXPECT_EQ(testdata_len - destr_test_ctr, cxListSize(list));
universe@672 717 cxListRemove(list, 47);
universe@672 718 EXPECT_EQ(2, destr_test_ctr);
universe@672 719 EXPECT_EQ(testdata.data[48], destr_last_value + off);
universe@677 720 EXPECT_EQ(testdata_len - destr_test_ctr, cxListSize(list));
universe@672 721
universe@672 722 auto iter = cxListMutIteratorAt(list, 7);
universe@672 723 cxIteratorNext(iter);
universe@672 724 EXPECT_EQ(2, destr_test_ctr);
universe@672 725 EXPECT_EQ(testdata.data[48], destr_last_value + off);
universe@677 726 EXPECT_EQ(testdata_len - destr_test_ctr, cxListSize(list));
universe@672 727 cxIteratorFlagRemoval(iter);
universe@672 728 cxIteratorNext(iter);
universe@672 729 EXPECT_EQ(3, destr_test_ctr);
universe@672 730 EXPECT_EQ(testdata.data[8], destr_last_value + off);
universe@677 731 EXPECT_EQ(testdata_len - destr_test_ctr, cxListSize(list));
universe@672 732
universe@672 733 iter = cxListMutBackwardsIteratorAt(list, 5);
universe@672 734 cxIteratorNext(iter);
universe@672 735 EXPECT_EQ(3, destr_test_ctr);
universe@672 736 EXPECT_EQ(testdata.data[8], destr_last_value + off);
universe@677 737 EXPECT_EQ(testdata_len - destr_test_ctr, cxListSize(list));
universe@672 738 cxIteratorFlagRemoval(iter);
universe@672 739 cxIteratorNext(iter);
universe@672 740 EXPECT_EQ(4, destr_test_ctr);
universe@672 741 EXPECT_EQ(testdata.data[4], destr_last_value + off);
universe@677 742 EXPECT_EQ(testdata_len - destr_test_ctr, cxListSize(list));
universe@666 743
universe@666 744 cxListClear(list);
universe@672 745 EXPECT_EQ(testdata_len, destr_test_ctr);
universe@672 746 EXPECT_EQ(testdata.data[testdata_len - 1], destr_last_value + off);
universe@672 747
universe@672 748
universe@672 749 }
universe@672 750
universe@672 751 void verifySimpleDestructor(CxList *list) {
universe@672 752 destr_test_ctr = 0;
universe@672 753 list->simple_destructor = simple_destr_test_fun;
universe@672 754 verifyAnyDestructor(list);
universe@672 755 }
universe@672 756
universe@672 757 void verifyAdvancedDestructor(CxList *list) {
universe@672 758 destr_test_ctr = 0;
universe@677 759 list->advanced_destructor = advanced_destr_test_fun;
universe@672 760 verifyAnyDestructor(list);
universe@666 761 }
universe@666 762
universe@647 763 static void verifySwap(CxList *list) {
universe@677 764 ASSERT_EQ(cxListSize(list), 0);
universe@647 765
universe@647 766 int original[16] = {0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15};
universe@647 767 int swapped[16] = {8, 4, 14, 3, 1, 5, 9, 12, 0, 6, 11, 10, 7, 15, 2, 13};
universe@647 768
universe@647 769 // we have to add the items one by one, because it could be a pointer list
universe@647 770 cx_for_n(i, 16) {
universe@647 771 cxListAdd(list, &original[i]);
universe@647 772 }
universe@647 773
universe@647 774 int result;
universe@647 775
universe@647 776 // execute the test two times with different item sizes
universe@647 777 result = cxListSwap(list, 1, 4);
universe@647 778 EXPECT_EQ(0, result);
universe@647 779 result = cxListSwap(list, 2, 14);
universe@647 780 EXPECT_EQ(0, result);
universe@647 781 result = cxListSwap(list, 9, 6);
universe@647 782 EXPECT_EQ(0, result);
universe@647 783 result = cxListSwap(list, 3, 3);
universe@647 784 EXPECT_EQ(0, result);
universe@647 785 result = cxListSwap(list, 10, 11);
universe@647 786 EXPECT_EQ(0, result);
universe@647 787 result = cxListSwap(list, 8, 0);
universe@647 788 EXPECT_EQ(0, result);
universe@647 789 result = cxListSwap(list, 7, 12);
universe@647 790 EXPECT_EQ(0, result);
universe@647 791 result = cxListSwap(list, 13, 15);
universe@647 792 EXPECT_EQ(0, result);
universe@647 793
universe@647 794 result = cxListSwap(list, 5, 16);
universe@647 795 EXPECT_NE(0, result);
universe@647 796 result = cxListSwap(list, 16, 6);
universe@647 797 EXPECT_NE(0, result);
universe@647 798 result = cxListSwap(list, 16, 17);
universe@647 799 EXPECT_NE(0, result);
universe@647 800
universe@655 801 auto iter = cxListIterator(list);
universe@647 802 cx_foreach(int*, e, iter) {
universe@647 803 EXPECT_EQ(*e, swapped[iter.index]);
universe@647 804 }
universe@655 805 iter = cxListBackwardsIterator(list);
universe@655 806 cx_foreach(int*, e, iter) {
universe@655 807 EXPECT_EQ(*e, swapped[iter.index]);
universe@647 808 }
universe@647 809 }
universe@647 810
universe@517 811 void verifyAt(CxList *list) const {
universe@517 812 auto len = testdata_len;
universe@677 813 EXPECT_EQ(cxListSize(list), len);
universe@521 814 cx_for_n (i, len) {
universe@521 815 EXPECT_EQ(*(int *) cxListAt(list, i), testdata.data[i]);
universe@521 816 }
universe@677 817 EXPECT_EQ(cxListAt(list, cxListSize(list)), nullptr);
universe@517 818 }
universe@517 819
universe@517 820 void verifyFind(CxList *list) const {
universe@517 821 cx_for_n (attempt, 25) {
universe@517 822 size_t exp = rand() % testdata_len; // NOLINT(cert-msc50-cpp)
universe@517 823 int val = testdata.data[exp];
universe@517 824 // randomly picked number could occur earlier in list - find first position
universe@517 825 cx_for_n (i, exp) {
universe@517 826 if (testdata.data[i] == val) {
universe@517 827 exp = i;
universe@517 828 break;
universe@517 829 }
universe@517 830 }
universe@517 831 EXPECT_EQ(cxListFind(list, &val), exp);
universe@517 832 }
universe@672 833
universe@672 834 int notinlist = -1;
universe@677 835 EXPECT_EQ(cxListSize(list), cxListFind(list, &notinlist));
universe@517 836 }
universe@517 837
universe@517 838 void verifySort(CxList *list) const {
universe@517 839 std::array<int, testdata_len> expected{};
universe@517 840 std::partial_sort_copy(testdata.data.begin(), testdata.data.end(), expected.begin(), expected.end());
universe@517 841 cxListSort(list);
universe@517 842 cx_for_n (i, testdata_len) ASSERT_EQ(*(int *) cxListAt(list, i), expected[i]);
universe@517 843 }
universe@517 844
universe@517 845 void verifyIterator(CxList *list) const {
universe@655 846 auto iter = cxListIterator(list);
universe@655 847 size_t i = 0;
universe@517 848 cx_foreach(int*, x, iter) {
universe@655 849 ASSERT_EQ(i, iter.index);
universe@655 850 EXPECT_EQ(*x, testdata.data[iter.index]);
universe@517 851 i++;
universe@517 852 }
universe@677 853 ASSERT_EQ(i, cxListSize(list));
universe@655 854 iter = cxListBackwardsIterator(list);
universe@655 855 cx_foreach(int*, x, iter) {
universe@655 856 ASSERT_EQ(i - 1, iter.index);
universe@655 857 EXPECT_EQ(*x, testdata.data[iter.index]);
universe@655 858 i--;
universe@655 859 }
universe@655 860 ASSERT_EQ(i, 0);
universe@517 861 auto len = testdata_len;
universe@655 862 i = len / 2;
universe@655 863 auto mut_iter = cxListMutIteratorAt(list, i);
universe@655 864 size_t j = 0;
universe@655 865 cx_foreach(int*, x, mut_iter) {
universe@655 866 ASSERT_EQ(mut_iter.index, len / 2 + j / 2);
universe@655 867 ASSERT_EQ(*x, testdata.data[i]);
universe@655 868 if (i % 2 == 1) cxIteratorFlagRemoval(mut_iter);
universe@655 869 i++;
universe@655 870 j++;
universe@655 871 }
universe@655 872 ASSERT_EQ(i, len);
universe@655 873 i = len / 2;
universe@655 874 j = 0;
universe@655 875 mut_iter = cxListMutBackwardsIteratorAt(list, i - 1);
universe@655 876 cx_foreach(int*, x, mut_iter) {
universe@655 877 ASSERT_EQ(mut_iter.index, len / 2 - 1 - j);
universe@655 878 ASSERT_EQ(*x, testdata.data[i - 1]);
universe@655 879 if (i % 2 == 0) cxIteratorFlagRemoval(mut_iter);
universe@655 880 i--;
universe@655 881 j++;
universe@655 882 }
universe@655 883 ASSERT_EQ(i, 0);
universe@677 884 ASSERT_EQ(cxListSize(list), len / 2);
universe@517 885 cx_for_n(j, len / 2) ASSERT_EQ(*(int *) cxListAt(list, j), testdata.data[j * 2]);
universe@517 886 }
universe@517 887
universe@517 888 static void verifyInsertViaIterator(CxList *list) {
universe@517 889 int newdata[] = {10, 20, 30, 40, 50};
universe@517 890
universe@655 891 auto iter = cxListMutIteratorAt(list, 2);
universe@630 892 EXPECT_TRUE(cxIteratorValid(iter));
universe@517 893 EXPECT_EQ(iter.index, 2);
universe@630 894 EXPECT_EQ(*(int *) cxIteratorCurrent(iter), 2);
universe@517 895 cxListInsertAfter(&iter, &newdata[0]);
universe@630 896 EXPECT_TRUE(cxIteratorValid(iter));
universe@517 897 EXPECT_EQ(iter.index, 2);
universe@630 898 EXPECT_EQ(*(int *) cxIteratorCurrent(iter), 2);
universe@517 899 cxListInsertBefore(&iter, &newdata[1]);
universe@630 900 EXPECT_TRUE(cxIteratorValid(iter));
universe@517 901 EXPECT_EQ(iter.index, 3);
universe@630 902 EXPECT_EQ(*(int *) cxIteratorCurrent(iter), 2);
universe@517 903
universe@655 904 iter = cxListMutIterator(list);
universe@517 905 cxListInsertBefore(&iter, &newdata[2]);
universe@630 906 EXPECT_TRUE(cxIteratorValid(iter));
universe@517 907 EXPECT_EQ(iter.index, 1);
universe@630 908 EXPECT_EQ(*(int *) cxIteratorCurrent(iter), 0);
universe@677 909 iter = cxListMutIteratorAt(list, cxListSize(list));
universe@517 910 cxListInsertBefore(&iter, &newdata[3]);
universe@630 911 EXPECT_FALSE(cxIteratorValid(iter));
universe@517 912 EXPECT_EQ(iter.index, 9);
universe@677 913 iter = cxListMutIteratorAt(list, cxListSize(list));
universe@517 914 cxListInsertAfter(&iter, &newdata[4]);
universe@630 915 EXPECT_FALSE(cxIteratorValid(iter));
universe@517 916 EXPECT_EQ(iter.index, 10);
universe@517 917
universe@517 918 int expdata[] = {30, 0, 1, 20, 2, 10, 3, 4, 40, 50};
universe@517 919 cx_for_n (j, 10) EXPECT_EQ(*(int *) cxListAt(list, j), expdata[j]);
universe@517 920 }
universe@521 921
universe@521 922 void verifyReverse(CxList *list) const {
universe@521 923 cxListReverse(list);
universe@521 924 cx_for_n(i, testdata_len) {
universe@521 925 ASSERT_EQ(*(int *) cxListAt(list, i), testdata.data[testdata_len - 1 - i]);
universe@521 926 }
universe@521 927 }
universe@521 928
universe@528 929 static void verifyCompare(
universe@528 930 CxList *left,
universe@528 931 CxList *right
universe@528 932 ) {
universe@521 933 EXPECT_EQ(cxListCompare(left, right), 0);
universe@521 934 int x = 42;
universe@521 935 cxListAdd(left, &x);
universe@677 936 ASSERT_GT(cxListSize(left), cxListSize(right));
universe@521 937 EXPECT_GT(cxListCompare(left, right), 0);
universe@521 938 EXPECT_LT(cxListCompare(right, left), 0);
universe@521 939 cxListAdd(right, &x);
universe@677 940 ASSERT_EQ(cxListSize(left), cxListSize(right));
universe@521 941 EXPECT_EQ(cxListCompare(left, right), 0);
universe@521 942 int a = 5, b = 10;
universe@521 943 cxListInsert(left, 15, &a);
universe@521 944 cxListInsert(right, 15, &b);
universe@677 945 ASSERT_EQ(cxListSize(left), cxListSize(right));
universe@521 946 EXPECT_LT(cxListCompare(left, right), 0);
universe@521 947 EXPECT_GT(cxListCompare(right, left), 0);
universe@528 948 *(int *) cxListAt(left, 15) = 10;
universe@521 949 EXPECT_EQ(cxListCompare(left, right), 0);
universe@521 950 }
universe@517 951 };
universe@517 952
universe@672 953 unsigned HighLevelTest::destr_test_ctr = 0;
universe@672 954 int HighLevelTest::destr_last_value = 0;
universe@672 955
universe@517 956 class LinkedList : public HighLevelTest {
universe@517 957 };
universe@517 958
universe@641 959 class PointerLinkedList : public HighLevelTest {
universe@641 960 };
universe@641 961
universe@606 962 class ArrayList : public HighLevelTest {
universe@606 963 };
universe@606 964
universe@641 965 TEST_F(PointerLinkedList, cxListStorePointers) {
universe@641 966 auto list = autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, 47));
universe@641 967 EXPECT_FALSE(cxListIsStoringPointers(list));
universe@641 968 cxListStorePointers(list);
universe@677 969 EXPECT_EQ(list->item_size, sizeof(void *));
universe@641 970 EXPECT_NE(list->cl, nullptr);
universe@641 971 EXPECT_NE(list->climpl, nullptr);
universe@641 972 EXPECT_TRUE(cxListIsStoringPointers(list));
universe@641 973 cxListStoreObjects(list);
universe@641 974 EXPECT_NE(list->cl, nullptr);
universe@641 975 EXPECT_EQ(list->climpl, nullptr);
universe@641 976 EXPECT_FALSE(cxListIsStoringPointers(list));
universe@641 977 }
universe@641 978
universe@517 979 TEST_F(LinkedList, cxLinkedListCreate) {
universe@602 980 CxList *list = autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, sizeof(int)));
universe@606 981 ASSERT_NE(list, nullptr);
universe@677 982 EXPECT_EQ(list->item_size, sizeof(int));
universe@677 983 EXPECT_EQ(list->simple_destructor, nullptr);
universe@677 984 EXPECT_EQ(list->advanced_destructor, nullptr);
universe@677 985 EXPECT_EQ(list->destructor_data, nullptr);
universe@677 986 EXPECT_EQ(cxListSize(list), 0);
universe@672 987 EXPECT_EQ(list->allocator, &testingAllocator);
universe@672 988 EXPECT_EQ(list->cmpfunc, cx_cmp_int);
universe@672 989 EXPECT_FALSE(cxListIsStoringPointers(list));
universe@506 990 }
universe@506 991
universe@662 992 TEST_F(LinkedList, cxLinkedListCreateSimple) {
universe@662 993 CxList *list = autofree(cxLinkedListCreateSimple(sizeof(int)));
universe@662 994 ASSERT_NE(list, nullptr);
universe@677 995 EXPECT_EQ(list->item_size, sizeof(int));
universe@662 996 EXPECT_EQ(list->cmpfunc, nullptr);
universe@662 997 EXPECT_EQ(list->allocator, cxDefaultAllocator);
universe@677 998 EXPECT_EQ(list->simple_destructor, nullptr);
universe@677 999 EXPECT_EQ(list->advanced_destructor, nullptr);
universe@677 1000 EXPECT_EQ(list->destructor_data, nullptr);
universe@677 1001 EXPECT_EQ(cxListSize(list), 0);
universe@672 1002 EXPECT_FALSE(cxListIsStoringPointers(list));
universe@672 1003 }
universe@672 1004
universe@672 1005 TEST_F(LinkedList, cxLinkedListCreateSimpleForPointers) {
universe@672 1006 CxList *list = autofree(cxLinkedListCreateSimple(CX_STORE_POINTERS));
universe@672 1007 ASSERT_NE(list, nullptr);
universe@677 1008 EXPECT_EQ(list->item_size, sizeof(void *));
universe@672 1009 EXPECT_EQ(list->cmpfunc, nullptr);
universe@672 1010 EXPECT_EQ(list->allocator, cxDefaultAllocator);
universe@677 1011 EXPECT_EQ(list->simple_destructor, nullptr);
universe@677 1012 EXPECT_EQ(list->advanced_destructor, nullptr);
universe@677 1013 EXPECT_EQ(list->destructor_data, nullptr);
universe@677 1014 EXPECT_EQ(cxListSize(list), 0);
universe@672 1015 EXPECT_TRUE(cxListIsStoringPointers(list));
universe@662 1016 }
universe@662 1017
universe@606 1018 TEST_F(ArrayList, cxArrayListCreate) {
universe@606 1019 CxList *list = autofree(cxArrayListCreate(&testingAllocator, cx_cmp_int, sizeof(int), 8));
universe@606 1020 ASSERT_NE(list, nullptr);
universe@677 1021 EXPECT_EQ(list->item_size, sizeof(int));
universe@677 1022 EXPECT_EQ(list->simple_destructor, nullptr);
universe@677 1023 EXPECT_EQ(list->advanced_destructor, nullptr);
universe@677 1024 EXPECT_EQ(list->destructor_data, nullptr);
universe@677 1025 EXPECT_EQ(cxListSize(list), 0);
universe@672 1026 EXPECT_EQ(list->allocator, &testingAllocator);
universe@672 1027 EXPECT_EQ(list->cmpfunc, cx_cmp_int);
universe@672 1028 EXPECT_FALSE(cxListIsStoringPointers(list));
universe@606 1029 }
universe@606 1030
universe@662 1031 TEST_F(ArrayList, cxArrayListCreateSimple) {
universe@662 1032 CxList *list = autofree(cxArrayListCreateSimple(sizeof(int), 8));
universe@662 1033 ASSERT_NE(list, nullptr);
universe@662 1034 EXPECT_EQ(list->cmpfunc, nullptr);
universe@662 1035 EXPECT_EQ(list->allocator, cxDefaultAllocator);
universe@677 1036 EXPECT_EQ(list->item_size, sizeof(int));
universe@677 1037 EXPECT_EQ(list->simple_destructor, nullptr);
universe@677 1038 EXPECT_EQ(list->advanced_destructor, nullptr);
universe@677 1039 EXPECT_EQ(list->destructor_data, nullptr);
universe@677 1040 EXPECT_EQ(cxListSize(list), 0);
universe@672 1041 EXPECT_FALSE(cxListIsStoringPointers(list));
universe@672 1042 }
universe@672 1043
universe@672 1044 TEST_F(ArrayList, cxArrayListCreateSimpleForPointers) {
universe@672 1045 CxList *list = autofree(cxArrayListCreateSimple(CX_STORE_POINTERS, 8));
universe@672 1046 ASSERT_NE(list, nullptr);
universe@672 1047 EXPECT_EQ(list->cmpfunc, nullptr);
universe@672 1048 EXPECT_EQ(list->allocator, cxDefaultAllocator);
universe@677 1049 EXPECT_EQ(list->item_size, sizeof(void *));
universe@672 1050 EXPECT_TRUE(cxListIsStoringPointers(list));
universe@662 1051 }
universe@662 1052
universe@517 1053 TEST_F(LinkedList, cxListAdd) {
universe@641 1054 auto list = autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, sizeof(int)));
universe@517 1055 verifyAdd(list, false);
universe@488 1056 }
universe@488 1057
universe@641 1058 TEST_F(PointerLinkedList, cxListAdd) {
universe@667 1059 auto list = autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, CX_STORE_POINTERS));
universe@641 1060 verifyAdd(list, true);
universe@641 1061 }
universe@641 1062
universe@606 1063 TEST_F(ArrayList, cxListAdd) {
universe@641 1064 auto list = autofree(cxArrayListCreate(&testingAllocator, cx_cmp_int, sizeof(int), 8));
universe@606 1065 verifyAdd(list, false);
universe@606 1066 }
universe@606 1067
universe@517 1068 TEST_F(LinkedList, cxListInsert) {
universe@602 1069 verifyInsert(autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, sizeof(int))));
universe@459 1070 }
universe@459 1071
universe@641 1072 TEST_F(PointerLinkedList, cxListInsert) {
universe@667 1073 verifyInsert(autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, CX_STORE_POINTERS)));
universe@641 1074 }
universe@641 1075
universe@606 1076 TEST_F(ArrayList, cxListInsert) {
universe@606 1077 verifyInsert(autofree(cxArrayListCreate(&testingAllocator, cx_cmp_int, sizeof(int), 2)));
universe@606 1078 }
universe@606 1079
universe@638 1080 TEST_F(LinkedList, cxListInsertArray) {
universe@638 1081 verifyInsertArray(autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, sizeof(int))));
universe@638 1082 }
universe@638 1083
universe@641 1084 TEST_F(PointerLinkedList, cxListInsertArray) {
universe@667 1085 verifyInsertArray(autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, CX_STORE_POINTERS)), true);
universe@641 1086 }
universe@641 1087
universe@638 1088 TEST_F(ArrayList, cxListInsertArray) {
universe@638 1089 verifyInsertArray(autofree(cxArrayListCreate(&testingAllocator, cx_cmp_int, sizeof(int), 4)));
universe@638 1090 }
universe@638 1091
universe@517 1092 TEST_F(LinkedList, cxListRemove) {
universe@517 1093 verifyRemove(linkedListFromTestData());
universe@498 1094 }
universe@498 1095
universe@641 1096 TEST_F(PointerLinkedList, cxListRemove) {
universe@641 1097 verifyRemove(pointerLinkedListFromTestData());
universe@641 1098 }
universe@641 1099
universe@606 1100 TEST_F(ArrayList, cxListRemove) {
universe@606 1101 verifyRemove(arrayListFromTestData());
universe@606 1102 }
universe@606 1103
universe@666 1104 TEST_F(LinkedList, cxListClear) {
universe@672 1105 verifyClear(linkedListFromTestData());
universe@666 1106 }
universe@666 1107
universe@666 1108 TEST_F(PointerLinkedList, cxListClear) {
universe@672 1109 verifyClear(pointerLinkedListFromTestData());
universe@666 1110 }
universe@666 1111
universe@666 1112 TEST_F(ArrayList, cxListClear) {
universe@672 1113 verifyClear(arrayListFromTestData());
universe@666 1114 }
universe@666 1115
universe@647 1116 TEST_F(LinkedList, cxListSwap) {
universe@647 1117 verifySwap(autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, sizeof(int))));
universe@647 1118 }
universe@647 1119
universe@647 1120 TEST_F(PointerLinkedList, cxListSwap) {
universe@667 1121 verifySwap(autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, CX_STORE_POINTERS)));
universe@647 1122 }
universe@647 1123
universe@647 1124 TEST_F(ArrayList, cxListSwap) {
universe@647 1125 verifySwap(autofree(cxArrayListCreate(&testingAllocator, cx_cmp_int, sizeof(int), 16)));
universe@647 1126 }
universe@647 1127
universe@647 1128 TEST_F(LinkedList, cxListSwapNoSBO) {
universe@647 1129 CX_DISABLE_LINKED_LIST_SWAP_SBO = true;
universe@647 1130 verifySwap(autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, sizeof(int))));
universe@647 1131 CX_DISABLE_LINKED_LIST_SWAP_SBO = false;
universe@647 1132 }
universe@647 1133
universe@647 1134 TEST_F(PointerLinkedList, cxListSwapNoSBO) {
universe@647 1135 CX_DISABLE_LINKED_LIST_SWAP_SBO = true;
universe@667 1136 verifySwap(autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, CX_STORE_POINTERS)));
universe@647 1137 CX_DISABLE_LINKED_LIST_SWAP_SBO = false;
universe@647 1138 }
universe@647 1139
universe@647 1140 TEST_F(ArrayList, cxListSwapNoSBO) {
universe@647 1141 CX_DISABLE_LINKED_LIST_SWAP_SBO = true;
universe@647 1142 verifySwap(autofree(cxArrayListCreate(&testingAllocator, cx_cmp_int, sizeof(int), 16)));
universe@647 1143 CX_DISABLE_LINKED_LIST_SWAP_SBO = false;
universe@647 1144 }
universe@647 1145
universe@517 1146 TEST_F(LinkedList, cxListAt) {
universe@517 1147 verifyAt(linkedListFromTestData());
universe@509 1148 }
universe@509 1149
universe@641 1150 TEST_F(PointerLinkedList, cxListAt) {
universe@641 1151 verifyAt(pointerLinkedListFromTestData());
universe@641 1152 }
universe@641 1153
universe@606 1154 TEST_F(ArrayList, cxListAt) {
universe@606 1155 verifyAt(arrayListFromTestData());
universe@606 1156 }
universe@606 1157
universe@517 1158 TEST_F(LinkedList, cxListFind) {
universe@517 1159 verifyFind(linkedListFromTestData());
universe@509 1160 }
universe@509 1161
universe@641 1162 TEST_F(PointerLinkedList, cxListFind) {
universe@641 1163 verifyFind(pointerLinkedListFromTestData());
universe@641 1164 }
universe@641 1165
universe@606 1166 TEST_F(ArrayList, cxListFind) {
universe@606 1167 verifyFind(arrayListFromTestData());
universe@606 1168 }
universe@606 1169
universe@517 1170 TEST_F(LinkedList, cxListSort) {
universe@517 1171 verifySort(linkedListFromTestData());
universe@498 1172 }
universe@498 1173
universe@641 1174 TEST_F(PointerLinkedList, cxListSort) {
universe@641 1175 verifySort(pointerLinkedListFromTestData());
universe@641 1176 }
universe@641 1177
universe@606 1178 TEST_F(ArrayList, cxListSort) {
universe@606 1179 verifySort(arrayListFromTestData());
universe@606 1180 }
universe@606 1181
universe@517 1182 TEST_F(LinkedList, Iterator) {
universe@517 1183 verifyIterator(linkedListFromTestData());
universe@509 1184 }
universe@498 1185
universe@641 1186 TEST_F(PointerLinkedList, Iterator) {
universe@641 1187 verifyIterator(pointerLinkedListFromTestData());
universe@641 1188 }
universe@641 1189
universe@606 1190 TEST_F(ArrayList, Iterator) {
universe@606 1191 verifyIterator(arrayListFromTestData());
universe@606 1192 }
universe@606 1193
universe@517 1194 TEST_F(LinkedList, InsertViaIterator) {
universe@517 1195 int fivenums[] = {0, 1, 2, 3, 4, 5};
universe@629 1196 CxList *list = autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, sizeof(int)));
universe@629 1197 cxListAddArray(list, fivenums, 5);
universe@517 1198 verifyInsertViaIterator(list);
universe@459 1199 }
universe@459 1200
universe@641 1201 TEST_F(PointerLinkedList, InsertViaIterator) {
universe@641 1202 int fivenums[] = {0, 1, 2, 3, 4, 5};
universe@667 1203 auto list = autofree(cxLinkedListCreate(&testingAllocator, cx_cmp_int, CX_STORE_POINTERS));
universe@641 1204 // note: cannot use cxListAddArray() because we don't have a list of pointers
universe@641 1205 cx_for_n(i, 5) cxListAdd(list, &fivenums[i]);
universe@641 1206 verifyInsertViaIterator(list);
universe@641 1207 }
universe@641 1208
universe@606 1209 TEST_F(ArrayList, InsertViaIterator) {
universe@606 1210 int fivenums[] = {0, 1, 2, 3, 4, 5};
universe@667 1211 auto list = autofree(cxArrayListCreate(&testingAllocator, cx_cmp_int, sizeof(int), 4));
universe@629 1212 cxListAddArray(list, fivenums, 5);
universe@606 1213 verifyInsertViaIterator(list);
universe@606 1214 }
universe@606 1215
universe@521 1216 TEST_F(LinkedList, cxListReverse) {
universe@521 1217 verifyReverse(linkedListFromTestData());
universe@521 1218 }
universe@521 1219
universe@641 1220 TEST_F(PointerLinkedList, cxListReverse) {
universe@641 1221 verifyReverse(pointerLinkedListFromTestData());
universe@641 1222 }
universe@641 1223
universe@606 1224 TEST_F(ArrayList, cxListReverse) {
universe@606 1225 verifyReverse(arrayListFromTestData());
universe@606 1226 }
universe@606 1227
universe@521 1228 TEST_F(LinkedList, cxListCompare) {
universe@521 1229 auto left = linkedListFromTestData();
universe@521 1230 auto right = linkedListFromTestData();
universe@521 1231 verifyCompare(left, right);
universe@521 1232 }
universe@521 1233
universe@641 1234 TEST_F(LinkedList, cxListCompareWithPtrList) {
universe@641 1235 auto left = linkedListFromTestData();
universe@641 1236 auto right = pointerLinkedListFromTestData();
universe@641 1237 verifyCompare(left, right);
universe@641 1238 }
universe@641 1239
universe@606 1240 TEST_F(LinkedList, cxListCompareWithArrayList) {
universe@606 1241 auto left = linkedListFromTestData();
universe@606 1242 auto right = arrayListFromTestData();
universe@606 1243 verifyCompare(left, right);
universe@606 1244 }
universe@606 1245
universe@641 1246 TEST_F(PointerLinkedList, cxListCompare) {
universe@641 1247 auto left = pointerLinkedListFromTestData();
universe@641 1248 auto right = pointerLinkedListFromTestData();
universe@641 1249 verifyCompare(left, right);
universe@641 1250 }
universe@641 1251
universe@641 1252 TEST_F(PointerLinkedList, cxListCompareWithNormalList) {
universe@641 1253 auto left = pointerLinkedListFromTestData();
universe@641 1254 auto right = linkedListFromTestData();
universe@641 1255 verifyCompare(left, right);
universe@641 1256 }
universe@641 1257
universe@641 1258 TEST_F(PointerLinkedList, cxListCompareWithArrayList) {
universe@641 1259 auto left = pointerLinkedListFromTestData();
universe@641 1260 auto right = arrayListFromTestData();
universe@641 1261 verifyCompare(left, right);
universe@641 1262 }
universe@641 1263
universe@606 1264 TEST_F(ArrayList, cxListCompare) {
universe@606 1265 auto left = arrayListFromTestData();
universe@606 1266 auto right = arrayListFromTestData();
universe@606 1267 verifyCompare(left, right);
universe@606 1268 }
universe@606 1269
universe@641 1270 TEST_F(ArrayList, cxListCompareWithPtrList) {
universe@641 1271 auto left = arrayListFromTestData();
universe@641 1272 auto right = pointerLinkedListFromTestData();
universe@641 1273 verifyCompare(left, right);
universe@641 1274 }
universe@641 1275
universe@641 1276 TEST_F(ArrayList, cxListCompareWithNormalList) {
universe@606 1277 auto left = arrayListFromTestData();
universe@606 1278 auto right = linkedListFromTestData();
universe@606 1279 verifyCompare(left, right);
universe@606 1280 }
universe@641 1281
universe@672 1282 TEST_F(LinkedList, SimpleDestructor) {
universe@672 1283 verifySimpleDestructor(linkedListFromTestData());
universe@672 1284 }
universe@672 1285
universe@672 1286 TEST_F(PointerLinkedList, SimpleDestructor) {
universe@672 1287 verifySimpleDestructor(pointerLinkedListFromTestData());
universe@672 1288 }
universe@672 1289
universe@672 1290 TEST_F(ArrayList, SimpleDestructor) {
universe@672 1291 verifySimpleDestructor(arrayListFromTestData());
universe@672 1292 }
universe@672 1293
universe@672 1294 TEST_F(LinkedList, AdvancedDestructor) {
universe@672 1295 verifyAdvancedDestructor(linkedListFromTestData());
universe@672 1296 }
universe@672 1297
universe@672 1298 TEST_F(PointerLinkedList, AdvancedDestructor) {
universe@672 1299 verifyAdvancedDestructor(pointerLinkedListFromTestData());
universe@672 1300 }
universe@672 1301
universe@672 1302 TEST_F(ArrayList, AdvancedDestructor) {
universe@672 1303 verifyAdvancedDestructor(arrayListFromTestData());
universe@672 1304 }
universe@672 1305
universe@672 1306 TEST_F(PointerLinkedList, DestroyNoDestructor) {
universe@641 1307 void *item = cxMalloc(&testingAllocator, sizeof(int));
universe@667 1308 auto list = cxLinkedListCreate(cxDefaultAllocator, cx_cmp_int, CX_STORE_POINTERS);
universe@641 1309 cxListAdd(list, item);
universe@641 1310 ASSERT_FALSE(testingAllocator.verify());
universe@641 1311 cxListDestroy(list);
universe@641 1312 EXPECT_FALSE(testingAllocator.verify());
universe@641 1313 cxFree(&testingAllocator, item);
universe@641 1314 EXPECT_TRUE(testingAllocator.verify());
universe@641 1315 }
universe@641 1316
universe@672 1317 TEST_F(PointerLinkedList, DestroySimpleDestructor) {
universe@641 1318 int item = 0;
universe@667 1319 auto list = cxLinkedListCreate(cxDefaultAllocator, cx_cmp_int, CX_STORE_POINTERS);
universe@641 1320 list->simple_destructor = [](void *elem) { *(int *) elem = 42; };
universe@641 1321 cxListAdd(list, &item);
universe@641 1322 cxListDestroy(list);
universe@641 1323 EXPECT_EQ(item, 42);
universe@641 1324 }
universe@641 1325
universe@672 1326 TEST_F(PointerLinkedList, DestroyAdvancedDestructor) {
universe@641 1327 void *item = cxMalloc(&testingAllocator, sizeof(int));
universe@667 1328 auto list = cxLinkedListCreate(cxDefaultAllocator, cx_cmp_int, CX_STORE_POINTERS);
universe@677 1329 list->destructor_data = &testingAllocator;
universe@677 1330 list->advanced_destructor = (cx_destructor_func2) cxFree;
universe@641 1331 cxListAdd(list, item);
universe@641 1332 ASSERT_FALSE(testingAllocator.verify());
universe@641 1333 cxListDestroy(list);
universe@641 1334 EXPECT_TRUE(testingAllocator.verify());
universe@641 1335 }

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