/* Tests related to the hash tables used inside Expat __ __ _ ___\ \/ /_ __ __ _| |_ / _ \\ /| '_ \ / _` | __| | __// \| |_) | (_| | |_ \___/_/\_\ .__/ \__,_|\__| |_| XML parser Copyright (c) 2026 Sebastian Pipping Licensed under the MIT license: Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. SPDX-License-Identifier: MIT */ #include "hash_tests.h" #include "common.h" // for XCS #include "expat.h" #include "hash_table.h" #include "minicheck.h" #include #include // for memcmp START_TEST(test_hash_table) { // The test is not doing any parsing, so a single run // (with `g_chunkSize == 0`) is enough if (g_chunkSize != 0) return; typedef struct { const XML_Char *name; bool initialized; } NAME_AND_FLAG; HASH_TABLE table; XML_Parser parser = XML_ParserCreate(NULL); hashTableInit(&table, parser); const XML_Char *const key1 = XCS("key1"); const XML_Char *const key2 = XCS("key2"); const XML_Char *const key3 = XCS("key1overlap"); // Self-test: `key3` starts with `key1` but is different from it assert_true(memcmp(key1, key3, keylen(key1)) == 0); assert_true(keyeq(key1, keylen(key1), key3) == XML_FALSE); // Test: Look up false for all keys because the table is empty assert_true(lookup(parser, &table, key1, 0) == NULL); assert_true(lookup(parser, &table, key2, 0) == NULL); assert_true(lookup(parser, &table, key3, 0) == NULL); // Test: Iteration yields 0 items initially { HASH_TABLE_ITER iter1; hashTableIterInit(&iter1, &table); assert_true(hashTableIterNext(&iter1) == NULL); } // Test: Insertion works (including initialization to zero) NAME_AND_FLAG *const inserted1 = (NAME_AND_FLAG *)lookup(parser, &table, key1, sizeof(NAME_AND_FLAG)); assert_true(inserted1 != NULL); assert_true(inserted1->name == key1); assert_true(! inserted1->initialized); // Make it possible to tell the struct apart from a freshly inserted version inserted1->initialized = true; // Test: Only present keys can be looked up assert_true(lookup(parser, &table, key1, 0) != NULL); assert_true(lookup(parser, &table, key2, 0) == NULL); assert_true(lookup(parser, &table, key3, 0) == NULL); // Test: Key length works without false positives assert_true(lookupWithLength(parser, &table, key3, /*nameLen=*/3, 0) == NULL); assert_true(lookupWithLength(parser, &table, key3, /*nameLen=*/4, 0) != NULL); assert_true(lookupWithLength(parser, &table, key3, /*nameLen=*/5, 0) == NULL); // TEST: Lookup does not reset existing entries to zeros NAME_AND_FLAG *const found = (NAME_AND_FLAG *)lookup(parser, &table, key1, sizeof(NAME_AND_FLAG)); assert_true(found != NULL); assert_true(found->name == key1); assert_true(found->initialized); // this is key // Test: Insertion of a second item works assert_true(lookup(parser, &table, key2, 0) == NULL); assert_true(lookup(parser, &table, key2, sizeof(NAME_AND_FLAG)) != NULL); assert_true(lookup(parser, &table, key2, 0) != NULL); // Test: Iteration yields nothing but the two expected items { HASH_TABLE_ITER iter2; hashTableIterInit(&iter2, &table); size_t itemCount = 0; while (true) { const NAME_AND_FLAG *const item = (const NAME_AND_FLAG *)hashTableIterNext(&iter2); if (item == NULL) break; itemCount++; if (keyeq(key1, keylen(key1), item->name) == XML_TRUE) assert_true(item->initialized); else if (keyeq(key2, keylen(key2), item->name) == XML_TRUE) assert_true(! item->initialized); else fail("unexpected item .name"); } assert_true(itemCount == 2); } // Test: After clearing all lookups fail hashTableClear(&table); assert_true(lookup(parser, &table, key1, 0) == NULL); assert_true(lookup(parser, &table, key2, 0) == NULL); assert_true(lookup(parser, &table, key3, 0) == NULL); // Test: After clearing iteration yields 0 items again { HASH_TABLE_ITER iter3; hashTableIterInit(&iter3, &table); assert_true(hashTableIterNext(&iter3) == NULL); } hashTableDestroy(&table); XML_ParserFree(parser); } END_TEST void make_hash_test_case(Suite *s) { TCase *const tc_hash = tcase_create("hash tests"); suite_add_tcase(s, tc_hash); tcase_add_test(tc_hash, test_hash_table); }