1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * Module-based API test facility for ww_mutexes
6 #include <linux/kernel.h>
8 #include <linux/completion.h>
9 #include <linux/delay.h>
10 #include <linux/kthread.h>
11 #include <linux/module.h>
12 #include <linux/random.h>
13 #include <linux/slab.h>
14 #include <linux/ww_mutex.h>
16 static DEFINE_WD_CLASS(ww_class);
17 struct workqueue_struct *wq;
20 struct work_struct work;
21 struct ww_mutex mutex;
22 struct completion ready, go, done;
26 #define TEST_MTX_SPIN BIT(0)
27 #define TEST_MTX_TRY BIT(1)
28 #define TEST_MTX_CTX BIT(2)
29 #define __TEST_MTX_LAST BIT(3)
31 static void test_mutex_work(struct work_struct *work)
33 struct test_mutex *mtx = container_of(work, typeof(*mtx), work);
35 complete(&mtx->ready);
36 wait_for_completion(&mtx->go);
38 if (mtx->flags & TEST_MTX_TRY) {
39 while (!ww_mutex_trylock(&mtx->mutex))
42 ww_mutex_lock(&mtx->mutex, NULL);
45 ww_mutex_unlock(&mtx->mutex);
48 static int __test_mutex(unsigned int flags)
50 #define TIMEOUT (HZ / 16)
51 struct test_mutex mtx;
52 struct ww_acquire_ctx ctx;
55 ww_mutex_init(&mtx.mutex, &ww_class);
56 ww_acquire_init(&ctx, &ww_class);
58 INIT_WORK_ONSTACK(&mtx.work, test_mutex_work);
59 init_completion(&mtx.ready);
60 init_completion(&mtx.go);
61 init_completion(&mtx.done);
64 schedule_work(&mtx.work);
66 wait_for_completion(&mtx.ready);
67 ww_mutex_lock(&mtx.mutex, (flags & TEST_MTX_CTX) ? &ctx : NULL);
69 if (flags & TEST_MTX_SPIN) {
70 unsigned long timeout = jiffies + TIMEOUT;
74 if (completion_done(&mtx.done)) {
79 } while (time_before(jiffies, timeout));
81 ret = wait_for_completion_timeout(&mtx.done, TIMEOUT);
83 ww_mutex_unlock(&mtx.mutex);
84 ww_acquire_fini(&ctx);
87 pr_err("%s(flags=%x): mutual exclusion failure\n",
92 flush_work(&mtx.work);
93 destroy_work_on_stack(&mtx.work);
98 static int test_mutex(void)
103 for (i = 0; i < __TEST_MTX_LAST; i++) {
104 ret = __test_mutex(i);
112 static int test_aa(void)
114 struct ww_mutex mutex;
115 struct ww_acquire_ctx ctx;
118 ww_mutex_init(&mutex, &ww_class);
119 ww_acquire_init(&ctx, &ww_class);
121 ww_mutex_lock(&mutex, &ctx);
123 if (ww_mutex_trylock(&mutex)) {
124 pr_err("%s: trylocked itself!\n", __func__);
125 ww_mutex_unlock(&mutex);
130 ret = ww_mutex_lock(&mutex, &ctx);
131 if (ret != -EALREADY) {
132 pr_err("%s: missed deadlock for recursing, ret=%d\n",
135 ww_mutex_unlock(&mutex);
142 ww_mutex_unlock(&mutex);
143 ww_acquire_fini(&ctx);
148 struct work_struct work;
149 struct ww_mutex a_mutex;
150 struct ww_mutex b_mutex;
151 struct completion a_ready;
152 struct completion b_ready;
157 static void test_abba_work(struct work_struct *work)
159 struct test_abba *abba = container_of(work, typeof(*abba), work);
160 struct ww_acquire_ctx ctx;
163 ww_acquire_init(&ctx, &ww_class);
164 ww_mutex_lock(&abba->b_mutex, &ctx);
166 complete(&abba->b_ready);
167 wait_for_completion(&abba->a_ready);
169 err = ww_mutex_lock(&abba->a_mutex, &ctx);
170 if (abba->resolve && err == -EDEADLK) {
171 ww_mutex_unlock(&abba->b_mutex);
172 ww_mutex_lock_slow(&abba->a_mutex, &ctx);
173 err = ww_mutex_lock(&abba->b_mutex, &ctx);
177 ww_mutex_unlock(&abba->a_mutex);
178 ww_mutex_unlock(&abba->b_mutex);
179 ww_acquire_fini(&ctx);
184 static int test_abba(bool resolve)
186 struct test_abba abba;
187 struct ww_acquire_ctx ctx;
190 ww_mutex_init(&abba.a_mutex, &ww_class);
191 ww_mutex_init(&abba.b_mutex, &ww_class);
192 INIT_WORK_ONSTACK(&abba.work, test_abba_work);
193 init_completion(&abba.a_ready);
194 init_completion(&abba.b_ready);
195 abba.resolve = resolve;
197 schedule_work(&abba.work);
199 ww_acquire_init(&ctx, &ww_class);
200 ww_mutex_lock(&abba.a_mutex, &ctx);
202 complete(&abba.a_ready);
203 wait_for_completion(&abba.b_ready);
205 err = ww_mutex_lock(&abba.b_mutex, &ctx);
206 if (resolve && err == -EDEADLK) {
207 ww_mutex_unlock(&abba.a_mutex);
208 ww_mutex_lock_slow(&abba.b_mutex, &ctx);
209 err = ww_mutex_lock(&abba.a_mutex, &ctx);
213 ww_mutex_unlock(&abba.b_mutex);
214 ww_mutex_unlock(&abba.a_mutex);
215 ww_acquire_fini(&ctx);
217 flush_work(&abba.work);
218 destroy_work_on_stack(&abba.work);
222 if (err || abba.result) {
223 pr_err("%s: failed to resolve ABBA deadlock, A err=%d, B err=%d\n",
224 __func__, err, abba.result);
228 if (err != -EDEADLK && abba.result != -EDEADLK) {
229 pr_err("%s: missed ABBA deadlock, A err=%d, B err=%d\n",
230 __func__, err, abba.result);
238 struct work_struct work;
239 struct ww_mutex a_mutex;
240 struct ww_mutex *b_mutex;
241 struct completion *a_signal;
242 struct completion b_signal;
246 static void test_cycle_work(struct work_struct *work)
248 struct test_cycle *cycle = container_of(work, typeof(*cycle), work);
249 struct ww_acquire_ctx ctx;
252 ww_acquire_init(&ctx, &ww_class);
253 ww_mutex_lock(&cycle->a_mutex, &ctx);
255 complete(cycle->a_signal);
256 wait_for_completion(&cycle->b_signal);
258 err = ww_mutex_lock(cycle->b_mutex, &ctx);
259 if (err == -EDEADLK) {
261 ww_mutex_unlock(&cycle->a_mutex);
262 ww_mutex_lock_slow(cycle->b_mutex, &ctx);
263 erra = ww_mutex_lock(&cycle->a_mutex, &ctx);
267 ww_mutex_unlock(cycle->b_mutex);
269 ww_mutex_unlock(&cycle->a_mutex);
270 ww_acquire_fini(&ctx);
272 cycle->result = err ?: erra;
275 static int __test_cycle(unsigned int nthreads)
277 struct test_cycle *cycles;
278 unsigned int n, last = nthreads - 1;
281 cycles = kmalloc_array(nthreads, sizeof(*cycles), GFP_KERNEL);
285 for (n = 0; n < nthreads; n++) {
286 struct test_cycle *cycle = &cycles[n];
288 ww_mutex_init(&cycle->a_mutex, &ww_class);
290 cycle->b_mutex = &cycles[0].a_mutex;
292 cycle->b_mutex = &cycles[n + 1].a_mutex;
295 cycle->a_signal = &cycles[last].b_signal;
297 cycle->a_signal = &cycles[n - 1].b_signal;
298 init_completion(&cycle->b_signal);
300 INIT_WORK(&cycle->work, test_cycle_work);
304 for (n = 0; n < nthreads; n++)
305 queue_work(wq, &cycles[n].work);
310 for (n = 0; n < nthreads; n++) {
311 struct test_cycle *cycle = &cycles[n];
316 pr_err("cyclic deadlock not resolved, ret[%d/%d] = %d\n",
317 n, nthreads, cycle->result);
322 for (n = 0; n < nthreads; n++)
323 ww_mutex_destroy(&cycles[n].a_mutex);
328 static int test_cycle(unsigned int ncpus)
333 for (n = 2; n <= ncpus + 1; n++) {
334 ret = __test_cycle(n);
343 struct work_struct work;
344 struct ww_mutex *locks;
345 unsigned long timeout;
349 static int *get_random_order(int count)
354 order = kmalloc_array(count, sizeof(*order), GFP_KERNEL);
358 for (n = 0; n < count; n++)
361 for (n = count - 1; n > 1; n--) {
362 r = get_random_int() % (n + 1);
373 static void dummy_load(struct stress *stress)
375 usleep_range(1000, 2000);
378 static void stress_inorder_work(struct work_struct *work)
380 struct stress *stress = container_of(work, typeof(*stress), work);
381 const int nlocks = stress->nlocks;
382 struct ww_mutex *locks = stress->locks;
383 struct ww_acquire_ctx ctx;
386 order = get_random_order(nlocks);
394 ww_acquire_init(&ctx, &ww_class);
397 for (n = 0; n < nlocks; n++) {
401 err = ww_mutex_lock(&locks[order[n]], &ctx);
409 ww_mutex_unlock(&locks[order[contended]]);
412 ww_mutex_unlock(&locks[order[n]]);
414 if (err == -EDEADLK) {
415 ww_mutex_lock_slow(&locks[order[contended]], &ctx);
420 pr_err_once("stress (%s) failed with %d\n",
425 ww_acquire_fini(&ctx);
426 } while (!time_after(jiffies, stress->timeout));
432 struct reorder_lock {
433 struct list_head link;
434 struct ww_mutex *lock;
437 static void stress_reorder_work(struct work_struct *work)
439 struct stress *stress = container_of(work, typeof(*stress), work);
441 struct ww_acquire_ctx ctx;
442 struct reorder_lock *ll, *ln;
446 order = get_random_order(stress->nlocks);
450 for (n = 0; n < stress->nlocks; n++) {
451 ll = kmalloc(sizeof(*ll), GFP_KERNEL);
455 ll->lock = &stress->locks[order[n]];
456 list_add(&ll->link, &locks);
462 ww_acquire_init(&ctx, &ww_class);
464 list_for_each_entry(ll, &locks, link) {
465 err = ww_mutex_lock(ll->lock, &ctx);
470 list_for_each_entry_continue_reverse(ln, &locks, link)
471 ww_mutex_unlock(ln->lock);
473 if (err != -EDEADLK) {
474 pr_err_once("stress (%s) failed with %d\n",
479 ww_mutex_lock_slow(ll->lock, &ctx);
480 list_move(&ll->link, &locks); /* restarts iteration */
484 list_for_each_entry(ll, &locks, link)
485 ww_mutex_unlock(ll->lock);
487 ww_acquire_fini(&ctx);
488 } while (!time_after(jiffies, stress->timeout));
491 list_for_each_entry_safe(ll, ln, &locks, link)
497 static void stress_one_work(struct work_struct *work)
499 struct stress *stress = container_of(work, typeof(*stress), work);
500 const int nlocks = stress->nlocks;
501 struct ww_mutex *lock = stress->locks + (get_random_int() % nlocks);
505 err = ww_mutex_lock(lock, NULL);
508 ww_mutex_unlock(lock);
510 pr_err_once("stress (%s) failed with %d\n",
514 } while (!time_after(jiffies, stress->timeout));
519 #define STRESS_INORDER BIT(0)
520 #define STRESS_REORDER BIT(1)
521 #define STRESS_ONE BIT(2)
522 #define STRESS_ALL (STRESS_INORDER | STRESS_REORDER | STRESS_ONE)
524 static int stress(int nlocks, int nthreads, unsigned int flags)
526 struct ww_mutex *locks;
529 locks = kmalloc_array(nlocks, sizeof(*locks), GFP_KERNEL);
533 for (n = 0; n < nlocks; n++)
534 ww_mutex_init(&locks[n], &ww_class);
536 for (n = 0; nthreads; n++) {
537 struct stress *stress;
538 void (*fn)(struct work_struct *work);
543 if (flags & STRESS_INORDER)
544 fn = stress_inorder_work;
547 if (flags & STRESS_REORDER)
548 fn = stress_reorder_work;
551 if (flags & STRESS_ONE)
552 fn = stress_one_work;
559 stress = kmalloc(sizeof(*stress), GFP_KERNEL);
563 INIT_WORK(&stress->work, fn);
564 stress->locks = locks;
565 stress->nlocks = nlocks;
566 stress->timeout = jiffies + 2*HZ;
568 queue_work(wq, &stress->work);
574 for (n = 0; n < nlocks; n++)
575 ww_mutex_destroy(&locks[n]);
581 static int __init test_ww_mutex_init(void)
583 int ncpus = num_online_cpus();
586 wq = alloc_workqueue("test-ww_mutex", WQ_UNBOUND, 0);
598 ret = test_abba(false);
602 ret = test_abba(true);
606 ret = test_cycle(ncpus);
610 ret = stress(16, 2*ncpus, STRESS_INORDER);
614 ret = stress(16, 2*ncpus, STRESS_REORDER);
618 ret = stress(4095, hweight32(STRESS_ALL)*ncpus, STRESS_ALL);
625 static void __exit test_ww_mutex_exit(void)
627 destroy_workqueue(wq);
630 module_init(test_ww_mutex_init);
631 module_exit(test_ww_mutex_exit);
633 MODULE_LICENSE("GPL");
634 MODULE_AUTHOR("Intel Corporation");