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542 lines
15 KiB
C
542 lines
15 KiB
C
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/***
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This file is part of systemd
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Copyright 2013 Daniel Buch
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systemd is free software; you can redistribute it and/or modify it
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under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation; either version 2.1 of the License, or
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(at your option) any later version.
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systemd is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with systemd; If not, see <http://www.gnu.org/licenses/>.
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***/
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#include "strv.h"
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#include "util.h"
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#include "hashmap.h"
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void test_hashmap_funcs(void);
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static void test_hashmap_replace(void) {
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Hashmap *m;
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char *val1, *val2, *val3, *val4, *val5, *r;
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m = hashmap_new(&string_hash_ops);
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val1 = strdup("val1");
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assert_se(val1);
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val2 = strdup("val2");
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assert_se(val2);
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val3 = strdup("val3");
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assert_se(val3);
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val4 = strdup("val4");
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assert_se(val4);
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val5 = strdup("val5");
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assert_se(val5);
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hashmap_put(m, "key 1", val1);
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hashmap_put(m, "key 2", val2);
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hashmap_put(m, "key 3", val3);
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hashmap_put(m, "key 4", val4);
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hashmap_replace(m, "key 3", val1);
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r = hashmap_get(m, "key 3");
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assert_se(streq(r, "val1"));
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hashmap_replace(m, "key 5", val5);
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r = hashmap_get(m, "key 5");
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assert_se(streq(r, "val5"));
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free(val1);
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free(val2);
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free(val3);
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free(val4);
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free(val5);
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hashmap_free(m);
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}
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static void test_hashmap_copy(void) {
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Hashmap *m, *copy;
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char *val1, *val2, *val3, *val4, *r;
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val1 = strdup("val1");
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assert_se(val1);
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val2 = strdup("val2");
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assert_se(val2);
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val3 = strdup("val3");
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assert_se(val3);
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val4 = strdup("val4");
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assert_se(val4);
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m = hashmap_new(&string_hash_ops);
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hashmap_put(m, "key 1", val1);
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hashmap_put(m, "key 2", val2);
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hashmap_put(m, "key 3", val3);
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hashmap_put(m, "key 4", val4);
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copy = hashmap_copy(m);
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r = hashmap_get(copy, "key 1");
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assert_se(streq(r, "val1"));
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r = hashmap_get(copy, "key 2");
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assert_se(streq(r, "val2"));
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r = hashmap_get(copy, "key 3");
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assert_se(streq(r, "val3"));
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r = hashmap_get(copy, "key 4");
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assert_se(streq(r, "val4"));
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hashmap_free_free(copy);
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hashmap_free(m);
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}
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static void test_hashmap_get_strv(void) {
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Hashmap *m;
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char **strv;
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char *val1, *val2, *val3, *val4;
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val1 = strdup("val1");
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assert_se(val1);
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val2 = strdup("val2");
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assert_se(val2);
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val3 = strdup("val3");
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assert_se(val3);
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val4 = strdup("val4");
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assert_se(val4);
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m = hashmap_new(&string_hash_ops);
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hashmap_put(m, "key 1", val1);
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hashmap_put(m, "key 2", val2);
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hashmap_put(m, "key 3", val3);
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hashmap_put(m, "key 4", val4);
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strv = hashmap_get_strv(m);
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#ifndef ORDERED
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strv = strv_sort(strv);
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#endif
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assert_se(streq(strv[0], "val1"));
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assert_se(streq(strv[1], "val2"));
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assert_se(streq(strv[2], "val3"));
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assert_se(streq(strv[3], "val4"));
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strv_free(strv);
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hashmap_free(m);
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}
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static void test_hashmap_move_one(void) {
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Hashmap *m, *n;
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char *val1, *val2, *val3, *val4, *r;
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val1 = strdup("val1");
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assert_se(val1);
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val2 = strdup("val2");
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assert_se(val2);
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val3 = strdup("val3");
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assert_se(val3);
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val4 = strdup("val4");
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assert_se(val4);
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m = hashmap_new(&string_hash_ops);
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n = hashmap_new(&string_hash_ops);
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hashmap_put(m, "key 1", val1);
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hashmap_put(m, "key 2", val2);
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hashmap_put(m, "key 3", val3);
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hashmap_put(m, "key 4", val4);
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hashmap_move_one(n, m, "key 3");
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hashmap_move_one(n, m, "key 4");
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r = hashmap_get(n, "key 3");
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assert_se(r && streq(r, "val3"));
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r = hashmap_get(n, "key 4");
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assert_se(r && streq(r, "val4"));
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r = hashmap_get(m, "key 3");
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assert_se(!r);
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hashmap_free_free(m);
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hashmap_free_free(n);
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}
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static void test_hashmap_update(void) {
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Hashmap *m;
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char *val1, *val2, *r;
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m = hashmap_new(&string_hash_ops);
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val1 = strdup("old_value");
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assert_se(val1);
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val2 = strdup("new_value");
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assert_se(val2);
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hashmap_put(m, "key 1", val1);
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r = hashmap_get(m, "key 1");
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assert_se(streq(r, "old_value"));
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hashmap_update(m, "key 1", val2);
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r = hashmap_get(m, "key 1");
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assert_se(streq(r, "new_value"));
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free(val1);
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free(val2);
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hashmap_free(m);
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}
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static void test_hashmap_put(void) {
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Hashmap *m;
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int valid_hashmap_put;
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m = hashmap_new(&string_hash_ops);
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valid_hashmap_put = hashmap_put(m, "key 1", (void*) (const char *) "val 1");
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assert_se(valid_hashmap_put == 1);
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assert_se(m);
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hashmap_free(m);
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}
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static void test_hashmap_remove_and_put(void) {
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_cleanup_hashmap_free_ Hashmap *m = NULL;
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int valid;
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char *r;
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m = hashmap_new(&string_hash_ops);
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assert_se(m);
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valid = hashmap_remove_and_put(m, "unvalid key", "new key", NULL);
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assert_se(valid < 0);
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valid = hashmap_put(m, "key 1", (void*) (const char *) "val 1");
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assert_se(valid == 1);
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valid = hashmap_remove_and_put(m, "key 1", "key 2", (void*) (const char *) "val 2");
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assert_se(valid == 0);
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r = hashmap_get(m, "key 2");
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assert_se(streq(r, "val 2"));
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assert_se(!hashmap_get(m, "key 1"));
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valid = hashmap_put(m, "key 3", (void*) (const char *) "val 3");
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assert_se(valid == 1);
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valid = hashmap_remove_and_put(m, "key 3", "key 2", (void*) (const char *) "val 2");
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assert_se(valid < 0);
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}
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static void test_hashmap_ensure_allocated(void) {
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Hashmap *m;
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int valid_hashmap;
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m = hashmap_new(&string_hash_ops);
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valid_hashmap = hashmap_ensure_allocated(&m, &string_hash_ops);
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assert_se(valid_hashmap == 0);
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assert_se(m);
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hashmap_free(m);
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}
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static void test_hashmap_foreach_key(void) {
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Hashmap *m;
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Iterator i;
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bool key_found[] = { false, false, false, false };
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const char *s;
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const char *key;
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static const char key_table[] =
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"key 1\0"
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"key 2\0"
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"key 3\0"
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"key 4\0";
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m = hashmap_new(&string_hash_ops);
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NULSTR_FOREACH(key, key_table)
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hashmap_put(m, key, (void*) (const char*) "my dummy val");
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HASHMAP_FOREACH_KEY(s, key, m, i) {
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if (!key_found[0] && streq(key, "key 1"))
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key_found[0] = true;
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else if (!key_found[1] && streq(key, "key 2"))
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key_found[1] = true;
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else if (!key_found[2] && streq(key, "key 3"))
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key_found[2] = true;
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else if (!key_found[3] && streq(key, "fail"))
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key_found[3] = true;
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}
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assert_se(m);
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assert_se(key_found[0] && key_found[1] && key_found[2] && !key_found[3]);
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hashmap_free(m);
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}
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static void test_hashmap_foreach(void) {
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Hashmap *m;
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Iterator i;
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bool value_found[] = { false, false, false, false };
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char *val1, *val2, *val3, *val4, *s;
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val1 = strdup("my val1");
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assert_se(val1);
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val2 = strdup("my val2");
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assert_se(val2);
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val3 = strdup("my val3");
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assert_se(val3);
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val4 = strdup("my val4");
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assert_se(val4);
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m = hashmap_new(&string_hash_ops);
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hashmap_put(m, "Key 1", val1);
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hashmap_put(m, "Key 2", val2);
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hashmap_put(m, "Key 3", val3);
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hashmap_put(m, "Key 4", val4);
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HASHMAP_FOREACH(s, m, i) {
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if (!value_found[0] && streq(s, val1))
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value_found[0] = true;
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else if (!value_found[1] && streq(s, val2))
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value_found[1] = true;
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else if (!value_found[2] && streq(s, val3))
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value_found[2] = true;
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else if (!value_found[3] && streq(s, val4))
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value_found[3] = true;
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}
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assert_se(m);
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assert_se(value_found[0] && value_found[1] && value_found[2] && value_found[3]);
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hashmap_free_free(m);
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}
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static void test_hashmap_merge(void) {
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Hashmap *m;
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Hashmap *n;
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char *val1, *val2, *val3, *val4, *r;
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val1 = strdup("my val1");
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assert_se(val1);
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val2 = strdup("my val2");
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assert_se(val2);
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val3 = strdup("my val3");
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assert_se(val3);
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val4 = strdup("my val4");
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assert_se(val4);
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n = hashmap_new(&string_hash_ops);
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m = hashmap_new(&string_hash_ops);
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hashmap_put(m, "Key 1", val1);
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hashmap_put(m, "Key 2", val2);
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hashmap_put(n, "Key 3", val3);
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hashmap_put(n, "Key 4", val4);
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assert_se(hashmap_merge(m, n) == 0);
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r = hashmap_get(m, "Key 3");
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assert_se(r && streq(r, "my val3"));
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r = hashmap_get(m, "Key 4");
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assert_se(r && streq(r, "my val4"));
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assert_se(n);
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assert_se(m);
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hashmap_free(n);
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hashmap_free_free(m);
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}
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static void test_hashmap_contains(void) {
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Hashmap *m;
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char *val1;
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val1 = strdup("my val");
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assert_se(val1);
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m = hashmap_new(&string_hash_ops);
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assert_se(!hashmap_contains(m, "Key 1"));
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hashmap_put(m, "Key 1", val1);
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assert_se(hashmap_contains(m, "Key 1"));
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assert_se(m);
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hashmap_free_free(m);
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}
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static void test_hashmap_isempty(void) {
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Hashmap *m;
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char *val1;
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val1 = strdup("my val");
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assert_se(val1);
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m = hashmap_new(&string_hash_ops);
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assert_se(hashmap_isempty(m));
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hashmap_put(m, "Key 1", val1);
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assert_se(!hashmap_isempty(m));
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assert_se(m);
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hashmap_free_free(m);
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}
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static void test_hashmap_size(void) {
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Hashmap *m;
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char *val1, *val2, *val3, *val4;
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val1 = strdup("my val");
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assert_se(val1);
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val2 = strdup("my val");
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assert_se(val2);
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val3 = strdup("my val");
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assert_se(val3);
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val4 = strdup("my val");
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assert_se(val4);
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m = hashmap_new(&string_hash_ops);
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hashmap_put(m, "Key 1", val1);
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hashmap_put(m, "Key 2", val2);
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hashmap_put(m, "Key 3", val3);
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hashmap_put(m, "Key 4", val4);
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assert_se(m);
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assert_se(hashmap_size(m) == 4);
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hashmap_free_free(m);
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}
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static void test_hashmap_get(void) {
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Hashmap *m;
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char *r;
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char *val;
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val = strdup("my val");
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assert_se(val);
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m = hashmap_new(&string_hash_ops);
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hashmap_put(m, "Key 1", val);
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r = hashmap_get(m, "Key 1");
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assert_se(streq(r, val));
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assert_se(m);
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hashmap_free_free(m);
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}
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static void test_hashmap_many(void) {
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Hashmap *h;
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unsigned i;
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#define N_ENTRIES 100000
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|
||
|
assert_se(h = hashmap_new(NULL));
|
||
|
|
||
|
for (i = 1; i < N_ENTRIES*3; i+=3) {
|
||
|
assert_se(hashmap_put(h, UINT_TO_PTR(i), UINT_TO_PTR(i)) >= 0);
|
||
|
assert_se(PTR_TO_UINT(hashmap_get(h, UINT_TO_PTR(i))) == i);
|
||
|
}
|
||
|
|
||
|
for (i = 1; i < N_ENTRIES*3; i++)
|
||
|
assert_se(hashmap_contains(h, UINT_TO_PTR(i)) == (i % 3 == 1));
|
||
|
|
||
|
log_info("%u <= %u * 0.75 = %g", hashmap_size(h), hashmap_buckets(h), hashmap_buckets(h) * 0.75);
|
||
|
|
||
|
assert_se(hashmap_size(h) <= hashmap_buckets(h) * 0.75);
|
||
|
assert_se(hashmap_size(h) == N_ENTRIES);
|
||
|
|
||
|
hashmap_free(h);
|
||
|
}
|
||
|
|
||
|
static void test_hashmap_first_key(void) {
|
||
|
_cleanup_hashmap_free_ Hashmap *m = NULL;
|
||
|
|
||
|
m = hashmap_new(&string_hash_ops);
|
||
|
assert_se(m);
|
||
|
|
||
|
assert_se(!hashmap_first_key(m));
|
||
|
assert_se(hashmap_put(m, "key 1", NULL) == 1);
|
||
|
assert_se(streq(hashmap_first_key(m), "key 1"));
|
||
|
assert_se(hashmap_put(m, "key 2", NULL) == 1);
|
||
|
#ifdef ORDERED
|
||
|
assert_se(streq(hashmap_first_key(m), "key 1"));
|
||
|
assert_se(hashmap_remove(m, "key 1") == NULL);
|
||
|
assert_se(streq(hashmap_first_key(m), "key 2"));
|
||
|
#endif
|
||
|
}
|
||
|
|
||
|
static void test_hashmap_steal_first_key(void) {
|
||
|
_cleanup_hashmap_free_ Hashmap *m = NULL;
|
||
|
|
||
|
m = hashmap_new(&string_hash_ops);
|
||
|
assert_se(m);
|
||
|
|
||
|
assert_se(!hashmap_steal_first_key(m));
|
||
|
assert_se(hashmap_put(m, "key 1", NULL) == 1);
|
||
|
assert_se(streq(hashmap_steal_first_key(m), "key 1"));
|
||
|
|
||
|
assert_se(hashmap_isempty(m));
|
||
|
}
|
||
|
|
||
|
static void test_hashmap_steal_first(void) {
|
||
|
_cleanup_hashmap_free_ Hashmap *m = NULL;
|
||
|
int seen[3] = {};
|
||
|
char *val;
|
||
|
|
||
|
m = hashmap_new(&string_hash_ops);
|
||
|
assert_se(m);
|
||
|
|
||
|
assert_se(hashmap_put(m, "key 1", (void*) "1") == 1);
|
||
|
assert_se(hashmap_put(m, "key 2", (void*) "22") == 1);
|
||
|
assert_se(hashmap_put(m, "key 3", (void*) "333") == 1);
|
||
|
|
||
|
while ((val = hashmap_steal_first(m)))
|
||
|
seen[strlen(val) - 1]++;
|
||
|
|
||
|
assert_se(seen[0] == 1 && seen[1] == 1 && seen[2] == 1);
|
||
|
|
||
|
assert_se(hashmap_isempty(m));
|
||
|
}
|
||
|
|
||
|
static void test_hashmap_clear_free_free(void) {
|
||
|
_cleanup_hashmap_free_ Hashmap *m = NULL;
|
||
|
|
||
|
m = hashmap_new(&string_hash_ops);
|
||
|
assert_se(m);
|
||
|
|
||
|
assert_se(hashmap_put(m, strdup("key 1"), NULL) == 1);
|
||
|
assert_se(hashmap_put(m, strdup("key 2"), NULL) == 1);
|
||
|
assert_se(hashmap_put(m, strdup("key 3"), NULL) == 1);
|
||
|
|
||
|
hashmap_clear_free_free(m);
|
||
|
assert_se(hashmap_isempty(m));
|
||
|
}
|
||
|
|
||
|
void test_hashmap_funcs(void) {
|
||
|
test_hashmap_copy();
|
||
|
test_hashmap_get_strv();
|
||
|
test_hashmap_move_one();
|
||
|
test_hashmap_replace();
|
||
|
test_hashmap_update();
|
||
|
test_hashmap_put();
|
||
|
test_hashmap_remove_and_put();
|
||
|
test_hashmap_ensure_allocated();
|
||
|
test_hashmap_foreach();
|
||
|
test_hashmap_foreach_key();
|
||
|
test_hashmap_contains();
|
||
|
test_hashmap_merge();
|
||
|
test_hashmap_isempty();
|
||
|
test_hashmap_get();
|
||
|
test_hashmap_size();
|
||
|
test_hashmap_many();
|
||
|
test_hashmap_first_key();
|
||
|
test_hashmap_steal_first_key();
|
||
|
test_hashmap_steal_first();
|
||
|
test_hashmap_clear_free_free();
|
||
|
}
|