1 // SPDX-License-Identifier: GPL-2.0+
3 * Module-based torture test facility for locking
5 * Copyright (C) IBM Corporation, 2014
7 * Authors: Paul E. McKenney <paulmck@linux.ibm.com>
8 * Davidlohr Bueso <dave@stgolabs.net>
9 * Based on kernel/rcu/torture.c.
12 #define pr_fmt(fmt) fmt
14 #include <linux/kernel.h>
15 #include <linux/module.h>
16 #include <linux/kthread.h>
17 #include <linux/sched/rt.h>
18 #include <linux/spinlock.h>
19 #include <linux/rwlock.h>
20 #include <linux/mutex.h>
21 #include <linux/rwsem.h>
22 #include <linux/smp.h>
23 #include <linux/interrupt.h>
24 #include <linux/sched.h>
25 #include <uapi/linux/sched/types.h>
26 #include <linux/rtmutex.h>
27 #include <linux/atomic.h>
28 #include <linux/moduleparam.h>
29 #include <linux/delay.h>
30 #include <linux/slab.h>
31 #include <linux/percpu-rwsem.h>
32 #include <linux/torture.h>
34 MODULE_LICENSE("GPL");
35 MODULE_AUTHOR("Paul E. McKenney <paulmck@linux.ibm.com>");
37 torture_param(int, nwriters_stress
, -1,
38 "Number of write-locking stress-test threads");
39 torture_param(int, nreaders_stress
, -1,
40 "Number of read-locking stress-test threads");
41 torture_param(int, onoff_holdoff
, 0, "Time after boot before CPU hotplugs (s)");
42 torture_param(int, onoff_interval
, 0,
43 "Time between CPU hotplugs (s), 0=disable");
44 torture_param(int, shuffle_interval
, 3,
45 "Number of jiffies between shuffles, 0=disable");
46 torture_param(int, shutdown_secs
, 0, "Shutdown time (j), <= zero to disable.");
47 torture_param(int, stat_interval
, 60,
48 "Number of seconds between stats printk()s");
49 torture_param(int, stutter
, 5, "Number of jiffies to run/halt test, 0=disable");
50 torture_param(int, verbose
, 1,
51 "Enable verbose debugging printk()s");
53 static char *torture_type
= "spin_lock";
54 module_param(torture_type
, charp
, 0444);
55 MODULE_PARM_DESC(torture_type
,
56 "Type of lock to torture (spin_lock, spin_lock_irq, mutex_lock, ...)");
58 static struct task_struct
*stats_task
;
59 static struct task_struct
**writer_tasks
;
60 static struct task_struct
**reader_tasks
;
62 static bool lock_is_write_held
;
63 static bool lock_is_read_held
;
65 struct lock_stress_stats
{
70 /* Forward reference. */
71 static void lock_torture_cleanup(void);
74 * Operations vector for selecting different types of tests.
76 struct lock_torture_ops
{
78 int (*writelock
)(void);
79 void (*write_delay
)(struct torture_random_state
*trsp
);
80 void (*task_boost
)(struct torture_random_state
*trsp
);
81 void (*writeunlock
)(void);
82 int (*readlock
)(void);
83 void (*read_delay
)(struct torture_random_state
*trsp
);
84 void (*readunlock
)(void);
86 unsigned long flags
; /* for irq spinlocks */
90 struct lock_torture_cxt
{
91 int nrealwriters_stress
;
92 int nrealreaders_stress
;
94 atomic_t n_lock_torture_errors
;
95 struct lock_torture_ops
*cur_ops
;
96 struct lock_stress_stats
*lwsa
; /* writer statistics */
97 struct lock_stress_stats
*lrsa
; /* reader statistics */
99 static struct lock_torture_cxt cxt
= { 0, 0, false,
103 * Definitions for lock torture testing.
106 static int torture_lock_busted_write_lock(void)
108 return 0; /* BUGGY, do not use in real life!!! */
111 static void torture_lock_busted_write_delay(struct torture_random_state
*trsp
)
113 const unsigned long longdelay_ms
= 100;
115 /* We want a long delay occasionally to force massive contention. */
116 if (!(torture_random(trsp
) %
117 (cxt
.nrealwriters_stress
* 2000 * longdelay_ms
)))
118 mdelay(longdelay_ms
);
119 if (!(torture_random(trsp
) % (cxt
.nrealwriters_stress
* 20000)))
120 torture_preempt_schedule(); /* Allow test to be preempted. */
123 static void torture_lock_busted_write_unlock(void)
125 /* BUGGY, do not use in real life!!! */
128 static void torture_boost_dummy(struct torture_random_state
*trsp
)
130 /* Only rtmutexes care about priority */
133 static struct lock_torture_ops lock_busted_ops
= {
134 .writelock
= torture_lock_busted_write_lock
,
135 .write_delay
= torture_lock_busted_write_delay
,
136 .task_boost
= torture_boost_dummy
,
137 .writeunlock
= torture_lock_busted_write_unlock
,
141 .name
= "lock_busted"
144 static DEFINE_SPINLOCK(torture_spinlock
);
146 static int torture_spin_lock_write_lock(void) __acquires(torture_spinlock
)
148 spin_lock(&torture_spinlock
);
152 static void torture_spin_lock_write_delay(struct torture_random_state
*trsp
)
154 const unsigned long shortdelay_us
= 2;
155 const unsigned long longdelay_ms
= 100;
157 /* We want a short delay mostly to emulate likely code, and
158 * we want a long delay occasionally to force massive contention.
160 if (!(torture_random(trsp
) %
161 (cxt
.nrealwriters_stress
* 2000 * longdelay_ms
)))
162 mdelay(longdelay_ms
);
163 if (!(torture_random(trsp
) %
164 (cxt
.nrealwriters_stress
* 2 * shortdelay_us
)))
165 udelay(shortdelay_us
);
166 if (!(torture_random(trsp
) % (cxt
.nrealwriters_stress
* 20000)))
167 torture_preempt_schedule(); /* Allow test to be preempted. */
170 static void torture_spin_lock_write_unlock(void) __releases(torture_spinlock
)
172 spin_unlock(&torture_spinlock
);
175 static struct lock_torture_ops spin_lock_ops
= {
176 .writelock
= torture_spin_lock_write_lock
,
177 .write_delay
= torture_spin_lock_write_delay
,
178 .task_boost
= torture_boost_dummy
,
179 .writeunlock
= torture_spin_lock_write_unlock
,
186 static int torture_spin_lock_write_lock_irq(void)
187 __acquires(torture_spinlock
)
191 spin_lock_irqsave(&torture_spinlock
, flags
);
192 cxt
.cur_ops
->flags
= flags
;
196 static void torture_lock_spin_write_unlock_irq(void)
197 __releases(torture_spinlock
)
199 spin_unlock_irqrestore(&torture_spinlock
, cxt
.cur_ops
->flags
);
202 static struct lock_torture_ops spin_lock_irq_ops
= {
203 .writelock
= torture_spin_lock_write_lock_irq
,
204 .write_delay
= torture_spin_lock_write_delay
,
205 .task_boost
= torture_boost_dummy
,
206 .writeunlock
= torture_lock_spin_write_unlock_irq
,
210 .name
= "spin_lock_irq"
213 static DEFINE_RWLOCK(torture_rwlock
);
215 static int torture_rwlock_write_lock(void) __acquires(torture_rwlock
)
217 write_lock(&torture_rwlock
);
221 static void torture_rwlock_write_delay(struct torture_random_state
*trsp
)
223 const unsigned long shortdelay_us
= 2;
224 const unsigned long longdelay_ms
= 100;
226 /* We want a short delay mostly to emulate likely code, and
227 * we want a long delay occasionally to force massive contention.
229 if (!(torture_random(trsp
) %
230 (cxt
.nrealwriters_stress
* 2000 * longdelay_ms
)))
231 mdelay(longdelay_ms
);
233 udelay(shortdelay_us
);
236 static void torture_rwlock_write_unlock(void) __releases(torture_rwlock
)
238 write_unlock(&torture_rwlock
);
241 static int torture_rwlock_read_lock(void) __acquires(torture_rwlock
)
243 read_lock(&torture_rwlock
);
247 static void torture_rwlock_read_delay(struct torture_random_state
*trsp
)
249 const unsigned long shortdelay_us
= 10;
250 const unsigned long longdelay_ms
= 100;
252 /* We want a short delay mostly to emulate likely code, and
253 * we want a long delay occasionally to force massive contention.
255 if (!(torture_random(trsp
) %
256 (cxt
.nrealreaders_stress
* 2000 * longdelay_ms
)))
257 mdelay(longdelay_ms
);
259 udelay(shortdelay_us
);
262 static void torture_rwlock_read_unlock(void) __releases(torture_rwlock
)
264 read_unlock(&torture_rwlock
);
267 static struct lock_torture_ops rw_lock_ops
= {
268 .writelock
= torture_rwlock_write_lock
,
269 .write_delay
= torture_rwlock_write_delay
,
270 .task_boost
= torture_boost_dummy
,
271 .writeunlock
= torture_rwlock_write_unlock
,
272 .readlock
= torture_rwlock_read_lock
,
273 .read_delay
= torture_rwlock_read_delay
,
274 .readunlock
= torture_rwlock_read_unlock
,
278 static int torture_rwlock_write_lock_irq(void) __acquires(torture_rwlock
)
282 write_lock_irqsave(&torture_rwlock
, flags
);
283 cxt
.cur_ops
->flags
= flags
;
287 static void torture_rwlock_write_unlock_irq(void)
288 __releases(torture_rwlock
)
290 write_unlock_irqrestore(&torture_rwlock
, cxt
.cur_ops
->flags
);
293 static int torture_rwlock_read_lock_irq(void) __acquires(torture_rwlock
)
297 read_lock_irqsave(&torture_rwlock
, flags
);
298 cxt
.cur_ops
->flags
= flags
;
302 static void torture_rwlock_read_unlock_irq(void)
303 __releases(torture_rwlock
)
305 read_unlock_irqrestore(&torture_rwlock
, cxt
.cur_ops
->flags
);
308 static struct lock_torture_ops rw_lock_irq_ops
= {
309 .writelock
= torture_rwlock_write_lock_irq
,
310 .write_delay
= torture_rwlock_write_delay
,
311 .task_boost
= torture_boost_dummy
,
312 .writeunlock
= torture_rwlock_write_unlock_irq
,
313 .readlock
= torture_rwlock_read_lock_irq
,
314 .read_delay
= torture_rwlock_read_delay
,
315 .readunlock
= torture_rwlock_read_unlock_irq
,
316 .name
= "rw_lock_irq"
319 static DEFINE_MUTEX(torture_mutex
);
321 static int torture_mutex_lock(void) __acquires(torture_mutex
)
323 mutex_lock(&torture_mutex
);
327 static void torture_mutex_delay(struct torture_random_state
*trsp
)
329 const unsigned long longdelay_ms
= 100;
331 /* We want a long delay occasionally to force massive contention. */
332 if (!(torture_random(trsp
) %
333 (cxt
.nrealwriters_stress
* 2000 * longdelay_ms
)))
334 mdelay(longdelay_ms
* 5);
336 mdelay(longdelay_ms
/ 5);
337 if (!(torture_random(trsp
) % (cxt
.nrealwriters_stress
* 20000)))
338 torture_preempt_schedule(); /* Allow test to be preempted. */
341 static void torture_mutex_unlock(void) __releases(torture_mutex
)
343 mutex_unlock(&torture_mutex
);
346 static struct lock_torture_ops mutex_lock_ops
= {
347 .writelock
= torture_mutex_lock
,
348 .write_delay
= torture_mutex_delay
,
349 .task_boost
= torture_boost_dummy
,
350 .writeunlock
= torture_mutex_unlock
,
357 #include <linux/ww_mutex.h>
358 static DEFINE_WD_CLASS(torture_ww_class
);
359 static DEFINE_WW_MUTEX(torture_ww_mutex_0
, &torture_ww_class
);
360 static DEFINE_WW_MUTEX(torture_ww_mutex_1
, &torture_ww_class
);
361 static DEFINE_WW_MUTEX(torture_ww_mutex_2
, &torture_ww_class
);
363 static int torture_ww_mutex_lock(void)
364 __acquires(torture_ww_mutex_0
)
365 __acquires(torture_ww_mutex_1
)
366 __acquires(torture_ww_mutex_2
)
369 struct reorder_lock
{
370 struct list_head link
;
371 struct ww_mutex
*lock
;
372 } locks
[3], *ll
, *ln
;
373 struct ww_acquire_ctx ctx
;
375 locks
[0].lock
= &torture_ww_mutex_0
;
376 list_add(&locks
[0].link
, &list
);
378 locks
[1].lock
= &torture_ww_mutex_1
;
379 list_add(&locks
[1].link
, &list
);
381 locks
[2].lock
= &torture_ww_mutex_2
;
382 list_add(&locks
[2].link
, &list
);
384 ww_acquire_init(&ctx
, &torture_ww_class
);
386 list_for_each_entry(ll
, &list
, link
) {
389 err
= ww_mutex_lock(ll
->lock
, &ctx
);
394 list_for_each_entry_continue_reverse(ln
, &list
, link
)
395 ww_mutex_unlock(ln
->lock
);
400 ww_mutex_lock_slow(ll
->lock
, &ctx
);
401 list_move(&ll
->link
, &list
);
404 ww_acquire_fini(&ctx
);
408 static void torture_ww_mutex_unlock(void)
409 __releases(torture_ww_mutex_0
)
410 __releases(torture_ww_mutex_1
)
411 __releases(torture_ww_mutex_2
)
413 ww_mutex_unlock(&torture_ww_mutex_0
);
414 ww_mutex_unlock(&torture_ww_mutex_1
);
415 ww_mutex_unlock(&torture_ww_mutex_2
);
418 static struct lock_torture_ops ww_mutex_lock_ops
= {
419 .writelock
= torture_ww_mutex_lock
,
420 .write_delay
= torture_mutex_delay
,
421 .task_boost
= torture_boost_dummy
,
422 .writeunlock
= torture_ww_mutex_unlock
,
426 .name
= "ww_mutex_lock"
429 #ifdef CONFIG_RT_MUTEXES
430 static DEFINE_RT_MUTEX(torture_rtmutex
);
432 static int torture_rtmutex_lock(void) __acquires(torture_rtmutex
)
434 rt_mutex_lock(&torture_rtmutex
);
438 static void torture_rtmutex_boost(struct torture_random_state
*trsp
)
441 struct sched_param param
;
442 const unsigned int factor
= 50000; /* yes, quite arbitrary */
444 if (!rt_task(current
)) {
446 * Boost priority once every ~50k operations. When the
447 * task tries to take the lock, the rtmutex it will account
448 * for the new priority, and do any corresponding pi-dance.
450 if (trsp
&& !(torture_random(trsp
) %
451 (cxt
.nrealwriters_stress
* factor
))) {
453 param
.sched_priority
= MAX_RT_PRIO
- 1;
454 } else /* common case, do nothing */
458 * The task will remain boosted for another ~500k operations,
459 * then restored back to its original prio, and so forth.
461 * When @trsp is nil, we want to force-reset the task for
462 * stopping the kthread.
464 if (!trsp
|| !(torture_random(trsp
) %
465 (cxt
.nrealwriters_stress
* factor
* 2))) {
466 policy
= SCHED_NORMAL
;
467 param
.sched_priority
= 0;
468 } else /* common case, do nothing */
472 sched_setscheduler_nocheck(current
, policy
, ¶m
);
475 static void torture_rtmutex_delay(struct torture_random_state
*trsp
)
477 const unsigned long shortdelay_us
= 2;
478 const unsigned long longdelay_ms
= 100;
481 * We want a short delay mostly to emulate likely code, and
482 * we want a long delay occasionally to force massive contention.
484 if (!(torture_random(trsp
) %
485 (cxt
.nrealwriters_stress
* 2000 * longdelay_ms
)))
486 mdelay(longdelay_ms
);
487 if (!(torture_random(trsp
) %
488 (cxt
.nrealwriters_stress
* 2 * shortdelay_us
)))
489 udelay(shortdelay_us
);
490 if (!(torture_random(trsp
) % (cxt
.nrealwriters_stress
* 20000)))
491 torture_preempt_schedule(); /* Allow test to be preempted. */
494 static void torture_rtmutex_unlock(void) __releases(torture_rtmutex
)
496 rt_mutex_unlock(&torture_rtmutex
);
499 static struct lock_torture_ops rtmutex_lock_ops
= {
500 .writelock
= torture_rtmutex_lock
,
501 .write_delay
= torture_rtmutex_delay
,
502 .task_boost
= torture_rtmutex_boost
,
503 .writeunlock
= torture_rtmutex_unlock
,
507 .name
= "rtmutex_lock"
511 static DECLARE_RWSEM(torture_rwsem
);
512 static int torture_rwsem_down_write(void) __acquires(torture_rwsem
)
514 down_write(&torture_rwsem
);
518 static void torture_rwsem_write_delay(struct torture_random_state
*trsp
)
520 const unsigned long longdelay_ms
= 100;
522 /* We want a long delay occasionally to force massive contention. */
523 if (!(torture_random(trsp
) %
524 (cxt
.nrealwriters_stress
* 2000 * longdelay_ms
)))
525 mdelay(longdelay_ms
* 10);
527 mdelay(longdelay_ms
/ 10);
528 if (!(torture_random(trsp
) % (cxt
.nrealwriters_stress
* 20000)))
529 torture_preempt_schedule(); /* Allow test to be preempted. */
532 static void torture_rwsem_up_write(void) __releases(torture_rwsem
)
534 up_write(&torture_rwsem
);
537 static int torture_rwsem_down_read(void) __acquires(torture_rwsem
)
539 down_read(&torture_rwsem
);
543 static void torture_rwsem_read_delay(struct torture_random_state
*trsp
)
545 const unsigned long longdelay_ms
= 100;
547 /* We want a long delay occasionally to force massive contention. */
548 if (!(torture_random(trsp
) %
549 (cxt
.nrealreaders_stress
* 2000 * longdelay_ms
)))
550 mdelay(longdelay_ms
* 2);
552 mdelay(longdelay_ms
/ 2);
553 if (!(torture_random(trsp
) % (cxt
.nrealreaders_stress
* 20000)))
554 torture_preempt_schedule(); /* Allow test to be preempted. */
557 static void torture_rwsem_up_read(void) __releases(torture_rwsem
)
559 up_read(&torture_rwsem
);
562 static struct lock_torture_ops rwsem_lock_ops
= {
563 .writelock
= torture_rwsem_down_write
,
564 .write_delay
= torture_rwsem_write_delay
,
565 .task_boost
= torture_boost_dummy
,
566 .writeunlock
= torture_rwsem_up_write
,
567 .readlock
= torture_rwsem_down_read
,
568 .read_delay
= torture_rwsem_read_delay
,
569 .readunlock
= torture_rwsem_up_read
,
573 #include <linux/percpu-rwsem.h>
574 static struct percpu_rw_semaphore pcpu_rwsem
;
576 void torture_percpu_rwsem_init(void)
578 BUG_ON(percpu_init_rwsem(&pcpu_rwsem
));
581 static int torture_percpu_rwsem_down_write(void) __acquires(pcpu_rwsem
)
583 percpu_down_write(&pcpu_rwsem
);
587 static void torture_percpu_rwsem_up_write(void) __releases(pcpu_rwsem
)
589 percpu_up_write(&pcpu_rwsem
);
592 static int torture_percpu_rwsem_down_read(void) __acquires(pcpu_rwsem
)
594 percpu_down_read(&pcpu_rwsem
);
598 static void torture_percpu_rwsem_up_read(void) __releases(pcpu_rwsem
)
600 percpu_up_read(&pcpu_rwsem
);
603 static struct lock_torture_ops percpu_rwsem_lock_ops
= {
604 .init
= torture_percpu_rwsem_init
,
605 .writelock
= torture_percpu_rwsem_down_write
,
606 .write_delay
= torture_rwsem_write_delay
,
607 .task_boost
= torture_boost_dummy
,
608 .writeunlock
= torture_percpu_rwsem_up_write
,
609 .readlock
= torture_percpu_rwsem_down_read
,
610 .read_delay
= torture_rwsem_read_delay
,
611 .readunlock
= torture_percpu_rwsem_up_read
,
612 .name
= "percpu_rwsem_lock"
616 * Lock torture writer kthread. Repeatedly acquires and releases
617 * the lock, checking for duplicate acquisitions.
619 static int lock_torture_writer(void *arg
)
621 struct lock_stress_stats
*lwsp
= arg
;
622 static DEFINE_TORTURE_RANDOM(rand
);
624 VERBOSE_TOROUT_STRING("lock_torture_writer task started");
625 set_user_nice(current
, MAX_NICE
);
628 if ((torture_random(&rand
) & 0xfffff) == 0)
629 schedule_timeout_uninterruptible(1);
631 cxt
.cur_ops
->task_boost(&rand
);
632 cxt
.cur_ops
->writelock();
633 if (WARN_ON_ONCE(lock_is_write_held
))
635 lock_is_write_held
= 1;
636 if (WARN_ON_ONCE(lock_is_read_held
))
637 lwsp
->n_lock_fail
++; /* rare, but... */
639 lwsp
->n_lock_acquired
++;
640 cxt
.cur_ops
->write_delay(&rand
);
641 lock_is_write_held
= 0;
642 cxt
.cur_ops
->writeunlock();
644 stutter_wait("lock_torture_writer");
645 } while (!torture_must_stop());
647 cxt
.cur_ops
->task_boost(NULL
); /* reset prio */
648 torture_kthread_stopping("lock_torture_writer");
653 * Lock torture reader kthread. Repeatedly acquires and releases
656 static int lock_torture_reader(void *arg
)
658 struct lock_stress_stats
*lrsp
= arg
;
659 static DEFINE_TORTURE_RANDOM(rand
);
661 VERBOSE_TOROUT_STRING("lock_torture_reader task started");
662 set_user_nice(current
, MAX_NICE
);
665 if ((torture_random(&rand
) & 0xfffff) == 0)
666 schedule_timeout_uninterruptible(1);
668 cxt
.cur_ops
->readlock();
669 lock_is_read_held
= 1;
670 if (WARN_ON_ONCE(lock_is_write_held
))
671 lrsp
->n_lock_fail
++; /* rare, but... */
673 lrsp
->n_lock_acquired
++;
674 cxt
.cur_ops
->read_delay(&rand
);
675 lock_is_read_held
= 0;
676 cxt
.cur_ops
->readunlock();
678 stutter_wait("lock_torture_reader");
679 } while (!torture_must_stop());
680 torture_kthread_stopping("lock_torture_reader");
685 * Create an lock-torture-statistics message in the specified buffer.
687 static void __torture_print_stats(char *page
,
688 struct lock_stress_stats
*statp
, bool write
)
692 long max
= 0, min
= statp
? statp
[0].n_lock_acquired
: 0;
695 n_stress
= write
? cxt
.nrealwriters_stress
: cxt
.nrealreaders_stress
;
696 for (i
= 0; i
< n_stress
; i
++) {
697 if (statp
[i
].n_lock_fail
)
699 sum
+= statp
[i
].n_lock_acquired
;
700 if (max
< statp
[i
].n_lock_fail
)
701 max
= statp
[i
].n_lock_fail
;
702 if (min
> statp
[i
].n_lock_fail
)
703 min
= statp
[i
].n_lock_fail
;
705 page
+= sprintf(page
,
706 "%s: Total: %lld Max/Min: %ld/%ld %s Fail: %d %s\n",
707 write
? "Writes" : "Reads ",
708 sum
, max
, min
, max
/ 2 > min
? "???" : "",
709 fail
, fail
? "!!!" : "");
711 atomic_inc(&cxt
.n_lock_torture_errors
);
715 * Print torture statistics. Caller must ensure that there is only one
716 * call to this function at a given time!!! This is normally accomplished
717 * by relying on the module system to only have one copy of the module
718 * loaded, and then by giving the lock_torture_stats kthread full control
719 * (or the init/cleanup functions when lock_torture_stats thread is not
722 static void lock_torture_stats_print(void)
724 int size
= cxt
.nrealwriters_stress
* 200 + 8192;
727 if (cxt
.cur_ops
->readlock
)
728 size
+= cxt
.nrealreaders_stress
* 200 + 8192;
730 buf
= kmalloc(size
, GFP_KERNEL
);
732 pr_err("lock_torture_stats_print: Out of memory, need: %d",
737 __torture_print_stats(buf
, cxt
.lwsa
, true);
741 if (cxt
.cur_ops
->readlock
) {
742 buf
= kmalloc(size
, GFP_KERNEL
);
744 pr_err("lock_torture_stats_print: Out of memory, need: %d",
749 __torture_print_stats(buf
, cxt
.lrsa
, false);
756 * Periodically prints torture statistics, if periodic statistics printing
757 * was specified via the stat_interval module parameter.
759 * No need to worry about fullstop here, since this one doesn't reference
760 * volatile state or register callbacks.
762 static int lock_torture_stats(void *arg
)
764 VERBOSE_TOROUT_STRING("lock_torture_stats task started");
766 schedule_timeout_interruptible(stat_interval
* HZ
);
767 lock_torture_stats_print();
768 torture_shutdown_absorb("lock_torture_stats");
769 } while (!torture_must_stop());
770 torture_kthread_stopping("lock_torture_stats");
775 lock_torture_print_module_parms(struct lock_torture_ops
*cur_ops
,
778 pr_alert("%s" TORTURE_FLAG
779 "--- %s%s: nwriters_stress=%d nreaders_stress=%d stat_interval=%d verbose=%d shuffle_interval=%d stutter=%d shutdown_secs=%d onoff_interval=%d onoff_holdoff=%d\n",
780 torture_type
, tag
, cxt
.debug_lock
? " [debug]": "",
781 cxt
.nrealwriters_stress
, cxt
.nrealreaders_stress
, stat_interval
,
782 verbose
, shuffle_interval
, stutter
, shutdown_secs
,
783 onoff_interval
, onoff_holdoff
);
786 static void lock_torture_cleanup(void)
790 if (torture_cleanup_begin())
794 * Indicates early cleanup, meaning that the test has not run,
795 * such as when passing bogus args when loading the module. As
796 * such, only perform the underlying torture-specific cleanups,
797 * and avoid anything related to locktorture.
799 if (!cxt
.lwsa
&& !cxt
.lrsa
)
803 for (i
= 0; i
< cxt
.nrealwriters_stress
; i
++)
804 torture_stop_kthread(lock_torture_writer
,
811 for (i
= 0; i
< cxt
.nrealreaders_stress
; i
++)
812 torture_stop_kthread(lock_torture_reader
,
818 torture_stop_kthread(lock_torture_stats
, stats_task
);
819 lock_torture_stats_print(); /* -After- the stats thread is stopped! */
821 if (atomic_read(&cxt
.n_lock_torture_errors
))
822 lock_torture_print_module_parms(cxt
.cur_ops
,
823 "End of test: FAILURE");
824 else if (torture_onoff_failures())
825 lock_torture_print_module_parms(cxt
.cur_ops
,
826 "End of test: LOCK_HOTPLUG");
828 lock_torture_print_module_parms(cxt
.cur_ops
,
829 "End of test: SUCCESS");
837 torture_cleanup_end();
840 static int __init
lock_torture_init(void)
844 static struct lock_torture_ops
*torture_ops
[] = {
846 &spin_lock_ops
, &spin_lock_irq_ops
,
847 &rw_lock_ops
, &rw_lock_irq_ops
,
850 #ifdef CONFIG_RT_MUTEXES
854 &percpu_rwsem_lock_ops
,
857 if (!torture_init_begin(torture_type
, verbose
))
860 /* Process args and tell the world that the torturer is on the job. */
861 for (i
= 0; i
< ARRAY_SIZE(torture_ops
); i
++) {
862 cxt
.cur_ops
= torture_ops
[i
];
863 if (strcmp(torture_type
, cxt
.cur_ops
->name
) == 0)
866 if (i
== ARRAY_SIZE(torture_ops
)) {
867 pr_alert("lock-torture: invalid torture type: \"%s\"\n",
869 pr_alert("lock-torture types:");
870 for (i
= 0; i
< ARRAY_SIZE(torture_ops
); i
++)
871 pr_alert(" %s", torture_ops
[i
]->name
);
877 if (nwriters_stress
== 0 && nreaders_stress
== 0) {
878 pr_alert("lock-torture: must run at least one locking thread\n");
883 if (cxt
.cur_ops
->init
)
886 if (nwriters_stress
>= 0)
887 cxt
.nrealwriters_stress
= nwriters_stress
;
889 cxt
.nrealwriters_stress
= 2 * num_online_cpus();
891 #ifdef CONFIG_DEBUG_MUTEXES
892 if (strncmp(torture_type
, "mutex", 5) == 0)
893 cxt
.debug_lock
= true;
895 #ifdef CONFIG_DEBUG_RT_MUTEXES
896 if (strncmp(torture_type
, "rtmutex", 7) == 0)
897 cxt
.debug_lock
= true;
899 #ifdef CONFIG_DEBUG_SPINLOCK
900 if ((strncmp(torture_type
, "spin", 4) == 0) ||
901 (strncmp(torture_type
, "rw_lock", 7) == 0))
902 cxt
.debug_lock
= true;
905 /* Initialize the statistics so that each run gets its own numbers. */
906 if (nwriters_stress
) {
907 lock_is_write_held
= 0;
908 cxt
.lwsa
= kmalloc_array(cxt
.nrealwriters_stress
,
911 if (cxt
.lwsa
== NULL
) {
912 VERBOSE_TOROUT_STRING("cxt.lwsa: Out of memory");
917 for (i
= 0; i
< cxt
.nrealwriters_stress
; i
++) {
918 cxt
.lwsa
[i
].n_lock_fail
= 0;
919 cxt
.lwsa
[i
].n_lock_acquired
= 0;
923 if (cxt
.cur_ops
->readlock
) {
924 if (nreaders_stress
>= 0)
925 cxt
.nrealreaders_stress
= nreaders_stress
;
928 * By default distribute evenly the number of
929 * readers and writers. We still run the same number
930 * of threads as the writer-only locks default.
932 if (nwriters_stress
< 0) /* user doesn't care */
933 cxt
.nrealwriters_stress
= num_online_cpus();
934 cxt
.nrealreaders_stress
= cxt
.nrealwriters_stress
;
937 if (nreaders_stress
) {
938 lock_is_read_held
= 0;
939 cxt
.lrsa
= kmalloc_array(cxt
.nrealreaders_stress
,
942 if (cxt
.lrsa
== NULL
) {
943 VERBOSE_TOROUT_STRING("cxt.lrsa: Out of memory");
950 for (i
= 0; i
< cxt
.nrealreaders_stress
; i
++) {
951 cxt
.lrsa
[i
].n_lock_fail
= 0;
952 cxt
.lrsa
[i
].n_lock_acquired
= 0;
957 lock_torture_print_module_parms(cxt
.cur_ops
, "Start of test");
959 /* Prepare torture context. */
960 if (onoff_interval
> 0) {
961 firsterr
= torture_onoff_init(onoff_holdoff
* HZ
,
962 onoff_interval
* HZ
, NULL
);
966 if (shuffle_interval
> 0) {
967 firsterr
= torture_shuffle_init(shuffle_interval
);
971 if (shutdown_secs
> 0) {
972 firsterr
= torture_shutdown_init(shutdown_secs
,
973 lock_torture_cleanup
);
978 firsterr
= torture_stutter_init(stutter
);
983 if (nwriters_stress
) {
984 writer_tasks
= kcalloc(cxt
.nrealwriters_stress
,
985 sizeof(writer_tasks
[0]),
987 if (writer_tasks
== NULL
) {
988 VERBOSE_TOROUT_ERRSTRING("writer_tasks: Out of memory");
994 if (cxt
.cur_ops
->readlock
) {
995 reader_tasks
= kcalloc(cxt
.nrealreaders_stress
,
996 sizeof(reader_tasks
[0]),
998 if (reader_tasks
== NULL
) {
999 VERBOSE_TOROUT_ERRSTRING("reader_tasks: Out of memory");
1000 kfree(writer_tasks
);
1001 writer_tasks
= NULL
;
1008 * Create the kthreads and start torturing (oh, those poor little locks).
1010 * TODO: Note that we interleave writers with readers, giving writers a
1011 * slight advantage, by creating its kthread first. This can be modified
1012 * for very specific needs, or even let the user choose the policy, if
1015 for (i
= 0, j
= 0; i
< cxt
.nrealwriters_stress
||
1016 j
< cxt
.nrealreaders_stress
; i
++, j
++) {
1017 if (i
>= cxt
.nrealwriters_stress
)
1020 /* Create writer. */
1021 firsterr
= torture_create_kthread(lock_torture_writer
, &cxt
.lwsa
[i
],
1027 if (cxt
.cur_ops
->readlock
== NULL
|| (j
>= cxt
.nrealreaders_stress
))
1029 /* Create reader. */
1030 firsterr
= torture_create_kthread(lock_torture_reader
, &cxt
.lrsa
[j
],
1035 if (stat_interval
> 0) {
1036 firsterr
= torture_create_kthread(lock_torture_stats
, NULL
,
1046 lock_torture_cleanup();
1050 module_init(lock_torture_init
);
1051 module_exit(lock_torture_cleanup
);