rizin/test/unit/test_threads.c
pelijah f2d8e0db3d
Add HtSP, HtSS, HtSU, SetS (#4415)
- All `ht_*_new0()` are removed
- `freefn` field of HT options was renamed to `finiKV`
- `finiKV_user` fields was added to HT options
- Added `ht_*_new_opt_size` API
- `HtSP` and `HtUP` are created with `ValueFree` callback  that allows to reduce extra LOC and prevent bugs
- `SetP` replaced with `SetS` (based on `HtSP`)
- `rz_th_ht_*_new0()` and `rz_th_ht_*_new_opt()` are replaced with `rz_th_ht_*_new(HtXX *)`
2024-04-16 20:27:48 +08:00

235 lines
8.5 KiB
C

// SPDX-FileCopyrightText: 2021-2023 RizinOrg <info@rizin.re>
// SPDX-FileCopyrightText: 2021-2023 deroad <wargio@libero.it>
// SPDX-License-Identifier: LGPL-3.0-only
#include <rz_th.h>
#include <rz_util/rz_time.h>
#include <rz_util/rz_sys.h>
#include "minunit.h"
bool test_thread_pool_cores(void) {
size_t cores = rz_th_physical_core_number();
RzThreadPool *pool = rz_th_pool_new(RZ_THREAD_POOL_ALL_CORES);
mu_assert_notnull(pool, "rz_th_pool_new(RZ_THREAD_POOL_ALL_CORES) null check");
size_t pool_size = rz_th_pool_size(pool);
mu_assert_eq(pool_size, cores, "rz_th_pool_new(RZ_THREAD_POOL_ALL_CORES) core count check");
rz_th_pool_free(pool);
if (cores > 1) {
/* this can be tested only when cores are more than 1 */
pool = rz_th_pool_new(cores - 1);
mu_assert_notnull(pool, "rz_th_pool_new(cores - 1) null check");
pool_size = rz_th_pool_size(pool);
mu_assert_eq(pool_size, cores - 1, "rz_th_pool_new(cores - 1) core count check");
rz_th_pool_free(pool);
}
mu_end;
}
void *thread_queue_push_timed(RzThreadQueue *queue) {
rz_sys_sleep(2);
return rz_th_queue_push(queue, queue, true) ? queue : NULL;
}
bool test_thread_queue(void) {
// test limited queue
void *head = (void *)"aaaaaa";
void *tail = (void *)"bbbbbb";
RzThreadQueue *queue = rz_th_queue_new(3, NULL);
mu_assert_notnull(queue, "rz_th_queue_new(3) null check");
mu_assert_true(rz_th_queue_is_empty(queue), "queue is empty");
mu_assert_true(rz_th_queue_push(queue, "cccccc", true), "queue pushed new element");
mu_assert_true(rz_th_queue_push(queue, head, false), "queue pushed head new element");
mu_assert_true(rz_th_queue_push(queue, tail, true), "queue pushed tail new element");
mu_assert_true(rz_th_queue_is_full(queue), "queue is full");
mu_assert_false(rz_th_queue_push(queue, "kkkkkk", true), "queue cannot push a new element");
mu_assert_ptreq(rz_th_queue_pop(queue, false), head, "queue can pop head and is that element");
mu_assert_ptreq(rz_th_queue_pop(queue, true), tail, "queue can pop tail and is that element");
mu_assert_false(rz_th_queue_is_empty(queue), "queue is empty");
mu_assert_false(rz_th_queue_is_full(queue), "queue is not full");
rz_th_queue_free(queue);
// test unlimited queue
queue = rz_th_queue_new(RZ_THREAD_QUEUE_UNLIMITED, NULL);
mu_assert_notnull(queue, "rz_th_queue_new(RZ_THREAD_QUEUE_UNLIMITED) null check");
mu_assert_true(rz_th_queue_push(queue, "aaaaa", false), "queue can push a new element");
mu_assert_true(rz_th_queue_push(queue, "aaaaa", true), "queue can push a new element");
mu_assert_true(rz_th_queue_push(queue, "aaaaa", false), "queue can push a new element");
mu_assert_true(rz_th_queue_push(queue, "aaaaa", true), "queue can push a new element");
mu_assert_true(rz_th_queue_push(queue, "aaaaa", false), "queue can push a new element");
mu_assert_true(rz_th_queue_push(queue, "aaaaa", true), "queue can push a new element");
mu_assert_false(rz_th_queue_is_empty(queue), "queue is not empty");
mu_assert_false(rz_th_queue_is_full(queue), "queue is not full");
rz_th_queue_free(queue);
// test queue
queue = rz_th_queue_new(RZ_THREAD_QUEUE_UNLIMITED, NULL);
RzThread *th = rz_th_new((RzThreadFunction)thread_queue_push_timed, queue);
mu_assert_notnull(th, "rz_th_new(thread_queue_push_timed, queue) null check");
ut64 start = rz_time_now();
tail = rz_th_queue_wait_pop(queue, true);
ut64 diff = rz_time_now() - start;
rz_th_wait(th);
mu_assert_ptreq(tail, queue, "rz_th_queue_wait_pop(queue, true) is queue");
mu_assert_true(diff >= 1500000, "queue did wait for value.");
mu_assert_ptreq(rz_th_get_retv(th), queue, "verify it returned queue");
rz_th_free(th);
rz_th_queue_free(queue);
mu_end;
}
bool test_thread_ht(void) {
bool v_boolean = false;
const char *element = NULL;
HtSS *tab = ht_ss_new(HT_STR_DUP, HT_STR_DUP);
RzThreadHtSS *ht = rz_th_ht_ss_new(tab);
mu_assert_notnull(ht, "rz_th_ht_ss_new() null check");
v_boolean = true;
element = rz_th_ht_ss_find(ht, "not found", &v_boolean);
mu_assert_false(v_boolean, "the search must say not found");
mu_assert_null(element, "the search must return NULL");
v_boolean = rz_th_ht_ss_insert(ht, "foo", "bar");
mu_assert_true(v_boolean, "the insert must succeed");
v_boolean = false;
element = rz_th_ht_ss_find(ht, "foo", &v_boolean);
mu_assert_true(v_boolean, "the search must say found");
mu_assert_notnull(element, "the search must NOT return NULL");
mu_assert_streq(element, "bar", "expecting to find 'bar' when searching for 'foo'");
element = rz_th_ht_ss_find(ht, "foo", NULL);
mu_assert_notnull(element, "the search must NOT return NULL");
mu_assert_streq(element, "bar", "expecting to find 'bar' when searching for 'foo'");
v_boolean = rz_th_ht_ss_delete(ht, "not found");
mu_assert_false(v_boolean, "the delete must fail");
v_boolean = rz_th_ht_ss_delete(ht, "foo");
mu_assert_true(v_boolean, "the delete must succeed");
v_boolean = true;
element = rz_th_ht_ss_find(ht, "foo", &v_boolean);
mu_assert_false(v_boolean, "the search must say not found");
mu_assert_null(element, "the search must return NULL");
rz_th_ht_ss_free(ht);
mu_end;
}
void thread_set_bool_arg(bool *value, bool *user) {
*value = true;
*user = true;
}
bool test_thread_iterator_list(void) {
bool bool0 = false;
bool bool1 = false;
bool bool2 = false;
bool bool3 = false;
bool bool4 = false;
bool bool_user = false;
// test empty list
RzList *list = rz_list_new();
mu_assert_notnull(list, "rz_list_new() null check");
bool res = rz_th_iterate_list(list, (RzThreadIterator)thread_set_bool_arg, 1, NULL);
mu_assert_true(res, "list is empty and must return true");
rz_list_append(list, &bool0);
rz_list_append(list, &bool1);
rz_list_append(list, &bool2);
rz_list_append(list, &bool3);
rz_list_append(list, &bool4);
// test values are accessed
res = rz_th_iterate_list(list, (RzThreadIterator)thread_set_bool_arg, RZ_THREAD_POOL_ALL_CORES, &bool_user);
mu_assert_true(res, "list is not empty and must return true");
mu_assert_true(bool_user, "bool_user must be true");
mu_assert_true(bool0, "bool0 must be true");
mu_assert_true(bool1, "bool1 must be true");
mu_assert_true(bool2, "bool2 must be true");
mu_assert_true(bool3, "bool3 must be true");
mu_assert_true(bool4, "bool4 must be true");
// test skip null pointers
rz_list_free(list);
list = rz_list_new();
mu_assert_notnull(list, "rz_list_new() null check");
bool_user = false;
rz_list_append(list, NULL);
rz_list_append(list, NULL);
rz_list_append(list, NULL);
rz_list_append(list, NULL);
rz_list_append(list, NULL);
res = rz_th_iterate_list(list, (RzThreadIterator)thread_set_bool_arg, RZ_THREAD_POOL_ALL_CORES, &bool_user);
mu_assert_true(res, "pvec is not empty and must return true");
mu_assert_false(bool_user, "bool_user must be false");
rz_list_free(list);
mu_end;
}
bool test_thread_iterator_pvec(void) {
bool bool0 = false;
bool bool1 = false;
bool bool2 = false;
bool bool3 = false;
bool bool4 = false;
bool bool_user = false;
// test empty pvec
RzPVector *pvec = rz_pvector_new(NULL);
mu_assert_notnull(pvec, "rz_pvector_new() null check");
rz_pvector_reserve(pvec, 5);
bool res = rz_th_iterate_pvector(pvec, (RzThreadIterator)thread_set_bool_arg, 1, NULL);
mu_assert_true(res, "pvec is empty and must return true");
rz_pvector_push(pvec, &bool0);
rz_pvector_push(pvec, &bool1);
rz_pvector_push(pvec, &bool2);
rz_pvector_push(pvec, &bool3);
rz_pvector_push(pvec, &bool4);
// test values are accessed
res = rz_th_iterate_pvector(pvec, (RzThreadIterator)thread_set_bool_arg, RZ_THREAD_POOL_ALL_CORES, &bool_user);
mu_assert_true(res, "pvec is not empty and must return true");
mu_assert_true(bool_user, "bool_user must be true");
mu_assert_true(bool0, "bool0 must be true");
mu_assert_true(bool1, "bool1 must be true");
mu_assert_true(bool2, "bool2 must be true");
mu_assert_true(bool3, "bool3 must be true");
mu_assert_true(bool4, "bool4 must be true");
// test skip null pointers
bool_user = false;
rz_pvector_set(pvec, 0, NULL);
rz_pvector_set(pvec, 1, NULL);
rz_pvector_set(pvec, 2, NULL);
rz_pvector_set(pvec, 3, NULL);
rz_pvector_set(pvec, 4, NULL);
res = rz_th_iterate_pvector(pvec, (RzThreadIterator)thread_set_bool_arg, RZ_THREAD_POOL_ALL_CORES, &bool_user);
mu_assert_true(res, "pvec is not empty and must return true");
mu_assert_false(bool_user, "bool_user must be false");
rz_pvector_free(pvec);
mu_end;
}
int all_tests() {
mu_run_test(test_thread_pool_cores);
mu_run_test(test_thread_queue);
mu_run_test(test_thread_ht);
mu_run_test(test_thread_iterator_list);
mu_run_test(test_thread_iterator_pvec);
return tests_passed != tests_run;
}
mu_main(all_tests)