Hashmap *m;
char *val1, *val2, *val3, *val4, *val5, *r;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
Hashmap *m, *copy;
char *val1, *val2, *val3, *val4, *r;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("val1");
assert_se(val1);
char **strv;
char *val1, *val2, *val3, *val4;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("val1");
assert_se(val1);
Hashmap *m, *n;
char *val1, *val2, *val3, *val4, *r;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("val1");
assert_se(val1);
Hashmap *m, *n;
char *val1, *val2, *val3, *val4, *r;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("val1");
assert_se(val1);
Hashmap *m;
char *val1, *val2, *r;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
val1 = strdup("old_value");
void *val2 = (void*) "val 2";
_cleanup_free_ char* key1 = NULL;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
assert_se(hashmap_ensure_allocated(&m, &string_hash_ops) >= 0);
assert_se(m);
_cleanup_hashmap_free_ Hashmap *m = NULL;
char *r;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
r = hashmap_remove(NULL, "key 1");
assert_se(r == NULL);
char val2[] = "val 2";
void *r, *r2;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
r = hashmap_remove2(NULL, "key 1", &r2);
assert_se(r == NULL);
char val1[] = "val 1";
char val2[] = "val 2";
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
r = hashmap_remove_value(NULL, "key 1", val1);
assert_se(r == NULL);
int valid;
char *r;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
assert_se(m);
void *r;
int i, j;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&trivial_hash_ops);
assert_se(m);
Hashmap *m;
int valid_hashmap;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
"key 3\0"
"key 4\0";
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
char *val1, *val2, *val3, *val4, *s;
unsigned count;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("my val1");
assert_se(val1);
Hashmap *n;
char *val1, *val2, *val3, *val4, *r;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("my val1");
assert_se(val1);
Hashmap *m;
char *val1;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("my val");
assert_se(val1);
Hashmap *m;
char *val1;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("my val");
assert_se(val1);
Hashmap *m;
char *val1, *val2, *val3, *val4;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val1 = strdup("my val");
assert_se(val1);
char *r;
char *val;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val = strdup("my val");
assert_se(val);
char key_orig[] = "Key 1";
void *key_copy;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
val = strdup("my val");
assert_se(val);
void *v, *k;
bool slow = slow_tests_enabled();
const struct {
+ const char *title;
const struct hash_ops *ops;
unsigned n_entries;
} tests[] = {
- { .ops = NULL, .n_entries = slow ? 1 << 20 : 240 },
- { .ops = &crippled_hashmap_ops, .n_entries = slow ? 1 << 14 : 140 },
+ { "trivial_hashmap_ops", NULL, slow ? 1 << 20 : 240 },
+ { "crippled_hashmap_ops", &crippled_hashmap_ops, slow ? 1 << 14 : 140 },
};
- log_info("%s (%s)", __func__, slow ? "slow" : "fast");
+ log_info("/* %s (%s) */", __func__, slow ? "slow" : "fast");
for (j = 0; j < ELEMENTSOF(tests); j++) {
+ usec_t ts = now(CLOCK_MONOTONIC), n;
+ char b[FORMAT_TIMESPAN_MAX];
+
assert_se(h = hashmap_new(tests[j].ops));
for (i = 1; i < tests[j].n_entries*3; i+=3) {
for (i = 1; i < tests[j].n_entries*3; i++)
assert_se(hashmap_contains(h, UINT_TO_PTR(i)) == (i % 3 == 1));
- log_info("%u <= %u * 0.8 = %g", hashmap_size(h), hashmap_buckets(h), hashmap_buckets(h) * 0.8);
+ log_info("%s %u <= %u * 0.8 = %g",
+ tests[j].title, hashmap_size(h), hashmap_buckets(h), hashmap_buckets(h) * 0.8);
assert_se(hashmap_size(h) <= hashmap_buckets(h) * 0.8);
assert_se(hashmap_size(h) == tests[j].n_entries);
}
hashmap_free(h);
+
+ n = now(CLOCK_MONOTONIC);
+ log_info("test took %s", format_timespan(b, sizeof b, n - ts, 0));
}
}
static void test_hashmap_first(void) {
_cleanup_hashmap_free_ Hashmap *m = NULL;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
assert_se(m);
static void test_hashmap_first_key(void) {
_cleanup_hashmap_free_ Hashmap *m = NULL;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
assert_se(m);
static void test_hashmap_steal_first_key(void) {
_cleanup_hashmap_free_ Hashmap *m = NULL;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
assert_se(m);
int seen[3] = {};
char *val;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
assert_se(m);
static void test_hashmap_clear_free_free(void) {
_cleanup_hashmap_free_ Hashmap *m = NULL;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);
assert_se(m);
static void test_hashmap_clear_free_with_destructor(void) {
_cleanup_hashmap_free_ Hashmap *m = NULL;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&test_hash_ops_key);
assert_se(m);
static void test_hashmap_reserve(void) {
_cleanup_hashmap_free_ Hashmap *m = NULL;
- log_info("%s", __func__);
+ log_info("/* %s */", __func__);
m = hashmap_new(&string_hash_ops);