2 * AioContext multithreading tests
4 * Copyright Red Hat, Inc. 2016
7 * Paolo Bonzini <pbonzini@redhat.com>
9 * This work is licensed under the terms of the GNU LGPL, version 2 or later.
10 * See the COPYING.LIB file in the top-level directory.
13 #include "qemu/osdep.h"
15 #include "block/aio.h"
16 #include "qapi/error.h"
17 #include "qemu/coroutine.h"
18 #include "qemu/thread.h"
19 #include "qemu/error-report.h"
22 /* AioContext management */
24 #define NUM_CONTEXTS 5
26 static IOThread
*threads
[NUM_CONTEXTS
];
27 static AioContext
*ctx
[NUM_CONTEXTS
];
28 static __thread
int id
= -1;
30 static QemuEvent done_event
;
32 /* Run a function synchronously on a remote iothread. */
34 typedef struct CtxRunData
{
39 static void ctx_run_bh_cb(void *opaque
)
41 CtxRunData
*data
= opaque
;
44 qemu_event_set(&done_event
);
47 static void ctx_run(int i
, QEMUBHFunc
*cb
, void *opaque
)
54 qemu_event_reset(&done_event
);
55 aio_bh_schedule_oneshot(ctx
[i
], ctx_run_bh_cb
, &data
);
56 qemu_event_wait(&done_event
);
59 /* Starting the iothreads. */
61 static void set_id_cb(void *opaque
)
68 static void create_aio_contexts(void)
72 for (i
= 0; i
< NUM_CONTEXTS
; i
++) {
73 threads
[i
] = iothread_new();
74 ctx
[i
] = iothread_get_aio_context(threads
[i
]);
77 qemu_event_init(&done_event
, false);
78 for (i
= 0; i
< NUM_CONTEXTS
; i
++) {
79 ctx_run(i
, set_id_cb
, &i
);
83 /* Stopping the iothreads. */
85 static void join_aio_contexts(void)
89 for (i
= 0; i
< NUM_CONTEXTS
; i
++) {
90 aio_context_ref(ctx
[i
]);
92 for (i
= 0; i
< NUM_CONTEXTS
; i
++) {
93 iothread_join(threads
[i
]);
95 for (i
= 0; i
< NUM_CONTEXTS
; i
++) {
96 aio_context_unref(ctx
[i
]);
98 qemu_event_destroy(&done_event
);
101 /* Basic test for the stuff above. */
103 static void test_lifecycle(void)
105 create_aio_contexts();
109 /* aio_co_schedule test. */
111 static Coroutine
*to_schedule
[NUM_CONTEXTS
];
113 static bool now_stopping
;
115 static int count_retry
;
116 static int count_here
;
117 static int count_other
;
119 static bool schedule_next(int n
)
123 co
= atomic_xchg(&to_schedule
[n
], NULL
);
125 atomic_inc(&count_retry
);
130 atomic_inc(&count_here
);
132 atomic_inc(&count_other
);
135 aio_co_schedule(ctx
[n
], co
);
139 static void finish_cb(void *opaque
)
144 static coroutine_fn
void test_multi_co_schedule_entry(void *opaque
)
146 g_assert(to_schedule
[id
] == NULL
);
148 while (!atomic_mb_read(&now_stopping
)) {
151 n
= g_test_rand_int_range(0, NUM_CONTEXTS
);
154 atomic_mb_set(&to_schedule
[id
], qemu_coroutine_self());
155 qemu_coroutine_yield();
156 g_assert(to_schedule
[id
] == NULL
);
161 static void test_multi_co_schedule(int seconds
)
165 count_here
= count_other
= count_retry
= 0;
166 now_stopping
= false;
168 create_aio_contexts();
169 for (i
= 0; i
< NUM_CONTEXTS
; i
++) {
170 Coroutine
*co1
= qemu_coroutine_create(test_multi_co_schedule_entry
, NULL
);
171 aio_co_schedule(ctx
[i
], co1
);
174 g_usleep(seconds
* 1000000);
176 atomic_mb_set(&now_stopping
, true);
177 for (i
= 0; i
< NUM_CONTEXTS
; i
++) {
178 ctx_run(i
, finish_cb
, NULL
);
179 to_schedule
[i
] = NULL
;
183 g_test_message("scheduled %d, queued %d, retry %d, total %d\n",
184 count_other
, count_here
, count_retry
,
185 count_here
+ count_other
+ count_retry
);
188 static void test_multi_co_schedule_1(void)
190 test_multi_co_schedule(1);
193 static void test_multi_co_schedule_10(void)
195 test_multi_co_schedule(10);
198 /* CoMutex thread-safety. */
200 static uint32_t atomic_counter
;
201 static uint32_t running
;
202 static uint32_t counter
;
203 static CoMutex comutex
;
205 static void coroutine_fn
test_multi_co_mutex_entry(void *opaque
)
207 while (!atomic_mb_read(&now_stopping
)) {
208 qemu_co_mutex_lock(&comutex
);
210 qemu_co_mutex_unlock(&comutex
);
212 /* Increase atomic_counter *after* releasing the mutex. Otherwise
213 * there is a chance (it happens about 1 in 3 runs) that the iothread
214 * exits before the coroutine is woken up, causing a spurious
217 atomic_inc(&atomic_counter
);
219 atomic_dec(&running
);
222 static void test_multi_co_mutex(int threads
, int seconds
)
226 qemu_co_mutex_init(&comutex
);
229 now_stopping
= false;
231 create_aio_contexts();
232 assert(threads
<= NUM_CONTEXTS
);
234 for (i
= 0; i
< threads
; i
++) {
235 Coroutine
*co1
= qemu_coroutine_create(test_multi_co_mutex_entry
, NULL
);
236 aio_co_schedule(ctx
[i
], co1
);
239 g_usleep(seconds
* 1000000);
241 atomic_mb_set(&now_stopping
, true);
242 while (running
> 0) {
247 g_test_message("%d iterations/second\n", counter
/ seconds
);
248 g_assert_cmpint(counter
, ==, atomic_counter
);
251 /* Testing with NUM_CONTEXTS threads focuses on the queue. The mutex however
252 * is too contended (and the threads spend too much time in aio_poll)
253 * to actually stress the handoff protocol.
255 static void test_multi_co_mutex_1(void)
257 test_multi_co_mutex(NUM_CONTEXTS
, 1);
260 static void test_multi_co_mutex_10(void)
262 test_multi_co_mutex(NUM_CONTEXTS
, 10);
265 /* Testing with fewer threads stresses the handoff protocol too. Still, the
266 * case where the locker _can_ pick up a handoff is very rare, happening
267 * about 10 times in 1 million, so increase the runtime a bit compared to
268 * other "quick" testcases that only run for 1 second.
270 static void test_multi_co_mutex_2_3(void)
272 test_multi_co_mutex(2, 3);
275 static void test_multi_co_mutex_2_30(void)
277 test_multi_co_mutex(2, 30);
280 /* Same test with fair mutexes, for performance comparison. */
283 #include "qemu/futex.h"
285 /* The nodes for the mutex reside in this structure (on which we try to avoid
286 * false sharing). The head of the mutex is in the "mutex_head" variable.
291 } nodes
[NUM_CONTEXTS
] __attribute__((__aligned__(64)));
293 static int mutex_head
= -1;
295 static void mcs_mutex_lock(void)
300 nodes
[id
].locked
= 1;
301 prev
= atomic_xchg(&mutex_head
, id
);
303 atomic_set(&nodes
[prev
].next
, id
);
304 qemu_futex_wait(&nodes
[id
].locked
, 1);
308 static void mcs_mutex_unlock(void)
311 if (atomic_read(&nodes
[id
].next
) == -1) {
312 if (atomic_read(&mutex_head
) == id
&&
313 atomic_cmpxchg(&mutex_head
, id
, -1) == id
) {
314 /* Last item in the list, exit. */
317 while (atomic_read(&nodes
[id
].next
) == -1) {
318 /* mcs_mutex_lock did the xchg, but has not updated
319 * nodes[prev].next yet.
324 /* Wake up the next in line. */
325 next
= atomic_read(&nodes
[id
].next
);
326 nodes
[next
].locked
= 0;
327 qemu_futex_wake(&nodes
[next
].locked
, 1);
330 static void test_multi_fair_mutex_entry(void *opaque
)
332 while (!atomic_mb_read(&now_stopping
)) {
336 atomic_inc(&atomic_counter
);
338 atomic_dec(&running
);
341 static void test_multi_fair_mutex(int threads
, int seconds
)
345 assert(mutex_head
== -1);
348 now_stopping
= false;
350 create_aio_contexts();
351 assert(threads
<= NUM_CONTEXTS
);
353 for (i
= 0; i
< threads
; i
++) {
354 Coroutine
*co1
= qemu_coroutine_create(test_multi_fair_mutex_entry
, NULL
);
355 aio_co_schedule(ctx
[i
], co1
);
358 g_usleep(seconds
* 1000000);
360 atomic_mb_set(&now_stopping
, true);
361 while (running
> 0) {
366 g_test_message("%d iterations/second\n", counter
/ seconds
);
367 g_assert_cmpint(counter
, ==, atomic_counter
);
370 static void test_multi_fair_mutex_1(void)
372 test_multi_fair_mutex(NUM_CONTEXTS
, 1);
375 static void test_multi_fair_mutex_10(void)
377 test_multi_fair_mutex(NUM_CONTEXTS
, 10);
381 /* Same test with pthread mutexes, for performance comparison and
384 static QemuMutex mutex
;
386 static void test_multi_mutex_entry(void *opaque
)
388 while (!atomic_mb_read(&now_stopping
)) {
389 qemu_mutex_lock(&mutex
);
391 qemu_mutex_unlock(&mutex
);
392 atomic_inc(&atomic_counter
);
394 atomic_dec(&running
);
397 static void test_multi_mutex(int threads
, int seconds
)
401 qemu_mutex_init(&mutex
);
404 now_stopping
= false;
406 create_aio_contexts();
407 assert(threads
<= NUM_CONTEXTS
);
409 for (i
= 0; i
< threads
; i
++) {
410 Coroutine
*co1
= qemu_coroutine_create(test_multi_mutex_entry
, NULL
);
411 aio_co_schedule(ctx
[i
], co1
);
414 g_usleep(seconds
* 1000000);
416 atomic_mb_set(&now_stopping
, true);
417 while (running
> 0) {
422 g_test_message("%d iterations/second\n", counter
/ seconds
);
423 g_assert_cmpint(counter
, ==, atomic_counter
);
426 static void test_multi_mutex_1(void)
428 test_multi_mutex(NUM_CONTEXTS
, 1);
431 static void test_multi_mutex_10(void)
433 test_multi_mutex(NUM_CONTEXTS
, 10);
438 int main(int argc
, char **argv
)
442 g_test_init(&argc
, &argv
, NULL
);
443 g_test_add_func("/aio/multi/lifecycle", test_lifecycle
);
444 if (g_test_quick()) {
445 g_test_add_func("/aio/multi/schedule", test_multi_co_schedule_1
);
446 g_test_add_func("/aio/multi/mutex/contended", test_multi_co_mutex_1
);
447 g_test_add_func("/aio/multi/mutex/handoff", test_multi_co_mutex_2_3
);
449 g_test_add_func("/aio/multi/mutex/mcs", test_multi_fair_mutex_1
);
451 g_test_add_func("/aio/multi/mutex/pthread", test_multi_mutex_1
);
453 g_test_add_func("/aio/multi/schedule", test_multi_co_schedule_10
);
454 g_test_add_func("/aio/multi/mutex/contended", test_multi_co_mutex_10
);
455 g_test_add_func("/aio/multi/mutex/handoff", test_multi_co_mutex_2_30
);
457 g_test_add_func("/aio/multi/mutex/mcs", test_multi_fair_mutex_10
);
459 g_test_add_func("/aio/multi/mutex/pthread", test_multi_mutex_10
);