block: Pass parent_is_format to .inherit_options()
[qemu.git] / tests / test-bdrv-drain.c
blobb3d7960bd01d0d0484073c7da17c890ff8b8c772
1 /*
2 * Block node draining tests
4 * Copyright (c) 2017 Kevin Wolf <kwolf@redhat.com>
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22 * THE SOFTWARE.
25 #include "qemu/osdep.h"
26 #include "block/block.h"
27 #include "block/blockjob_int.h"
28 #include "sysemu/block-backend.h"
29 #include "qapi/error.h"
30 #include "qemu/main-loop.h"
31 #include "iothread.h"
33 static QemuEvent done_event;
35 typedef struct BDRVTestState {
36 int drain_count;
37 AioContext *bh_indirection_ctx;
38 bool sleep_in_drain_begin;
39 } BDRVTestState;
41 static void coroutine_fn bdrv_test_co_drain_begin(BlockDriverState *bs)
43 BDRVTestState *s = bs->opaque;
44 s->drain_count++;
45 if (s->sleep_in_drain_begin) {
46 qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 100000);
50 static void coroutine_fn bdrv_test_co_drain_end(BlockDriverState *bs)
52 BDRVTestState *s = bs->opaque;
53 s->drain_count--;
56 static void bdrv_test_close(BlockDriverState *bs)
58 BDRVTestState *s = bs->opaque;
59 g_assert_cmpint(s->drain_count, >, 0);
62 static void co_reenter_bh(void *opaque)
64 aio_co_wake(opaque);
67 static int coroutine_fn bdrv_test_co_preadv(BlockDriverState *bs,
68 uint64_t offset, uint64_t bytes,
69 QEMUIOVector *qiov, int flags)
71 BDRVTestState *s = bs->opaque;
73 /* We want this request to stay until the polling loop in drain waits for
74 * it to complete. We need to sleep a while as bdrv_drain_invoke() comes
75 * first and polls its result, too, but it shouldn't accidentally complete
76 * this request yet. */
77 qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 100000);
79 if (s->bh_indirection_ctx) {
80 aio_bh_schedule_oneshot(s->bh_indirection_ctx, co_reenter_bh,
81 qemu_coroutine_self());
82 qemu_coroutine_yield();
85 return 0;
88 static void bdrv_test_child_perm(BlockDriverState *bs, BdrvChild *c,
89 const BdrvChildClass *child_class,
90 BdrvChildRole role,
91 BlockReopenQueue *reopen_queue,
92 uint64_t perm, uint64_t shared,
93 uint64_t *nperm, uint64_t *nshared)
96 * bdrv_format_default_perms() accepts only these two, so disguise
97 * detach_by_driver_cb_parent as one of them.
99 if (child_class != &child_file && child_class != &child_backing) {
100 child_class = &child_file;
103 bdrv_format_default_perms(bs, c, child_class, role, reopen_queue,
104 perm, shared, nperm, nshared);
107 static int bdrv_test_change_backing_file(BlockDriverState *bs,
108 const char *backing_file,
109 const char *backing_fmt)
111 return 0;
114 static BlockDriver bdrv_test = {
115 .format_name = "test",
116 .instance_size = sizeof(BDRVTestState),
118 .bdrv_close = bdrv_test_close,
119 .bdrv_co_preadv = bdrv_test_co_preadv,
121 .bdrv_co_drain_begin = bdrv_test_co_drain_begin,
122 .bdrv_co_drain_end = bdrv_test_co_drain_end,
124 .bdrv_child_perm = bdrv_test_child_perm,
126 .bdrv_change_backing_file = bdrv_test_change_backing_file,
129 static void aio_ret_cb(void *opaque, int ret)
131 int *aio_ret = opaque;
132 *aio_ret = ret;
135 typedef struct CallInCoroutineData {
136 void (*entry)(void);
137 bool done;
138 } CallInCoroutineData;
140 static coroutine_fn void call_in_coroutine_entry(void *opaque)
142 CallInCoroutineData *data = opaque;
144 data->entry();
145 data->done = true;
148 static void call_in_coroutine(void (*entry)(void))
150 Coroutine *co;
151 CallInCoroutineData data = {
152 .entry = entry,
153 .done = false,
156 co = qemu_coroutine_create(call_in_coroutine_entry, &data);
157 qemu_coroutine_enter(co);
158 while (!data.done) {
159 aio_poll(qemu_get_aio_context(), true);
163 enum drain_type {
164 BDRV_DRAIN_ALL,
165 BDRV_DRAIN,
166 BDRV_SUBTREE_DRAIN,
167 DRAIN_TYPE_MAX,
170 static void do_drain_begin(enum drain_type drain_type, BlockDriverState *bs)
172 switch (drain_type) {
173 case BDRV_DRAIN_ALL: bdrv_drain_all_begin(); break;
174 case BDRV_DRAIN: bdrv_drained_begin(bs); break;
175 case BDRV_SUBTREE_DRAIN: bdrv_subtree_drained_begin(bs); break;
176 default: g_assert_not_reached();
180 static void do_drain_end(enum drain_type drain_type, BlockDriverState *bs)
182 switch (drain_type) {
183 case BDRV_DRAIN_ALL: bdrv_drain_all_end(); break;
184 case BDRV_DRAIN: bdrv_drained_end(bs); break;
185 case BDRV_SUBTREE_DRAIN: bdrv_subtree_drained_end(bs); break;
186 default: g_assert_not_reached();
190 static void do_drain_begin_unlocked(enum drain_type drain_type, BlockDriverState *bs)
192 if (drain_type != BDRV_DRAIN_ALL) {
193 aio_context_acquire(bdrv_get_aio_context(bs));
195 do_drain_begin(drain_type, bs);
196 if (drain_type != BDRV_DRAIN_ALL) {
197 aio_context_release(bdrv_get_aio_context(bs));
201 static void do_drain_end_unlocked(enum drain_type drain_type, BlockDriverState *bs)
203 if (drain_type != BDRV_DRAIN_ALL) {
204 aio_context_acquire(bdrv_get_aio_context(bs));
206 do_drain_end(drain_type, bs);
207 if (drain_type != BDRV_DRAIN_ALL) {
208 aio_context_release(bdrv_get_aio_context(bs));
212 static void test_drv_cb_common(enum drain_type drain_type, bool recursive)
214 BlockBackend *blk;
215 BlockDriverState *bs, *backing;
216 BDRVTestState *s, *backing_s;
217 BlockAIOCB *acb;
218 int aio_ret;
220 QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, NULL, 0);
222 blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
223 bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
224 &error_abort);
225 s = bs->opaque;
226 blk_insert_bs(blk, bs, &error_abort);
228 backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
229 backing_s = backing->opaque;
230 bdrv_set_backing_hd(bs, backing, &error_abort);
232 /* Simple bdrv_drain_all_begin/end pair, check that CBs are called */
233 g_assert_cmpint(s->drain_count, ==, 0);
234 g_assert_cmpint(backing_s->drain_count, ==, 0);
236 do_drain_begin(drain_type, bs);
238 g_assert_cmpint(s->drain_count, ==, 1);
239 g_assert_cmpint(backing_s->drain_count, ==, !!recursive);
241 do_drain_end(drain_type, bs);
243 g_assert_cmpint(s->drain_count, ==, 0);
244 g_assert_cmpint(backing_s->drain_count, ==, 0);
246 /* Now do the same while a request is pending */
247 aio_ret = -EINPROGRESS;
248 acb = blk_aio_preadv(blk, 0, &qiov, 0, aio_ret_cb, &aio_ret);
249 g_assert(acb != NULL);
250 g_assert_cmpint(aio_ret, ==, -EINPROGRESS);
252 g_assert_cmpint(s->drain_count, ==, 0);
253 g_assert_cmpint(backing_s->drain_count, ==, 0);
255 do_drain_begin(drain_type, bs);
257 g_assert_cmpint(aio_ret, ==, 0);
258 g_assert_cmpint(s->drain_count, ==, 1);
259 g_assert_cmpint(backing_s->drain_count, ==, !!recursive);
261 do_drain_end(drain_type, bs);
263 g_assert_cmpint(s->drain_count, ==, 0);
264 g_assert_cmpint(backing_s->drain_count, ==, 0);
266 bdrv_unref(backing);
267 bdrv_unref(bs);
268 blk_unref(blk);
271 static void test_drv_cb_drain_all(void)
273 test_drv_cb_common(BDRV_DRAIN_ALL, true);
276 static void test_drv_cb_drain(void)
278 test_drv_cb_common(BDRV_DRAIN, false);
281 static void test_drv_cb_drain_subtree(void)
283 test_drv_cb_common(BDRV_SUBTREE_DRAIN, true);
286 static void test_drv_cb_co_drain_all(void)
288 call_in_coroutine(test_drv_cb_drain_all);
291 static void test_drv_cb_co_drain(void)
293 call_in_coroutine(test_drv_cb_drain);
296 static void test_drv_cb_co_drain_subtree(void)
298 call_in_coroutine(test_drv_cb_drain_subtree);
301 static void test_quiesce_common(enum drain_type drain_type, bool recursive)
303 BlockBackend *blk;
304 BlockDriverState *bs, *backing;
306 blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
307 bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
308 &error_abort);
309 blk_insert_bs(blk, bs, &error_abort);
311 backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
312 bdrv_set_backing_hd(bs, backing, &error_abort);
314 g_assert_cmpint(bs->quiesce_counter, ==, 0);
315 g_assert_cmpint(backing->quiesce_counter, ==, 0);
317 do_drain_begin(drain_type, bs);
319 g_assert_cmpint(bs->quiesce_counter, ==, 1);
320 g_assert_cmpint(backing->quiesce_counter, ==, !!recursive);
322 do_drain_end(drain_type, bs);
324 g_assert_cmpint(bs->quiesce_counter, ==, 0);
325 g_assert_cmpint(backing->quiesce_counter, ==, 0);
327 bdrv_unref(backing);
328 bdrv_unref(bs);
329 blk_unref(blk);
332 static void test_quiesce_drain_all(void)
334 test_quiesce_common(BDRV_DRAIN_ALL, true);
337 static void test_quiesce_drain(void)
339 test_quiesce_common(BDRV_DRAIN, false);
342 static void test_quiesce_drain_subtree(void)
344 test_quiesce_common(BDRV_SUBTREE_DRAIN, true);
347 static void test_quiesce_co_drain_all(void)
349 call_in_coroutine(test_quiesce_drain_all);
352 static void test_quiesce_co_drain(void)
354 call_in_coroutine(test_quiesce_drain);
357 static void test_quiesce_co_drain_subtree(void)
359 call_in_coroutine(test_quiesce_drain_subtree);
362 static void test_nested(void)
364 BlockBackend *blk;
365 BlockDriverState *bs, *backing;
366 BDRVTestState *s, *backing_s;
367 enum drain_type outer, inner;
369 blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
370 bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
371 &error_abort);
372 s = bs->opaque;
373 blk_insert_bs(blk, bs, &error_abort);
375 backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
376 backing_s = backing->opaque;
377 bdrv_set_backing_hd(bs, backing, &error_abort);
379 for (outer = 0; outer < DRAIN_TYPE_MAX; outer++) {
380 for (inner = 0; inner < DRAIN_TYPE_MAX; inner++) {
381 int backing_quiesce = (outer != BDRV_DRAIN) +
382 (inner != BDRV_DRAIN);
384 g_assert_cmpint(bs->quiesce_counter, ==, 0);
385 g_assert_cmpint(backing->quiesce_counter, ==, 0);
386 g_assert_cmpint(s->drain_count, ==, 0);
387 g_assert_cmpint(backing_s->drain_count, ==, 0);
389 do_drain_begin(outer, bs);
390 do_drain_begin(inner, bs);
392 g_assert_cmpint(bs->quiesce_counter, ==, 2);
393 g_assert_cmpint(backing->quiesce_counter, ==, backing_quiesce);
394 g_assert_cmpint(s->drain_count, ==, 2);
395 g_assert_cmpint(backing_s->drain_count, ==, backing_quiesce);
397 do_drain_end(inner, bs);
398 do_drain_end(outer, bs);
400 g_assert_cmpint(bs->quiesce_counter, ==, 0);
401 g_assert_cmpint(backing->quiesce_counter, ==, 0);
402 g_assert_cmpint(s->drain_count, ==, 0);
403 g_assert_cmpint(backing_s->drain_count, ==, 0);
407 bdrv_unref(backing);
408 bdrv_unref(bs);
409 blk_unref(blk);
412 static void test_multiparent(void)
414 BlockBackend *blk_a, *blk_b;
415 BlockDriverState *bs_a, *bs_b, *backing;
416 BDRVTestState *a_s, *b_s, *backing_s;
418 blk_a = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
419 bs_a = bdrv_new_open_driver(&bdrv_test, "test-node-a", BDRV_O_RDWR,
420 &error_abort);
421 a_s = bs_a->opaque;
422 blk_insert_bs(blk_a, bs_a, &error_abort);
424 blk_b = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
425 bs_b = bdrv_new_open_driver(&bdrv_test, "test-node-b", BDRV_O_RDWR,
426 &error_abort);
427 b_s = bs_b->opaque;
428 blk_insert_bs(blk_b, bs_b, &error_abort);
430 backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
431 backing_s = backing->opaque;
432 bdrv_set_backing_hd(bs_a, backing, &error_abort);
433 bdrv_set_backing_hd(bs_b, backing, &error_abort);
435 g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
436 g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
437 g_assert_cmpint(backing->quiesce_counter, ==, 0);
438 g_assert_cmpint(a_s->drain_count, ==, 0);
439 g_assert_cmpint(b_s->drain_count, ==, 0);
440 g_assert_cmpint(backing_s->drain_count, ==, 0);
442 do_drain_begin(BDRV_SUBTREE_DRAIN, bs_a);
444 g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
445 g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
446 g_assert_cmpint(backing->quiesce_counter, ==, 1);
447 g_assert_cmpint(a_s->drain_count, ==, 1);
448 g_assert_cmpint(b_s->drain_count, ==, 1);
449 g_assert_cmpint(backing_s->drain_count, ==, 1);
451 do_drain_begin(BDRV_SUBTREE_DRAIN, bs_b);
453 g_assert_cmpint(bs_a->quiesce_counter, ==, 2);
454 g_assert_cmpint(bs_b->quiesce_counter, ==, 2);
455 g_assert_cmpint(backing->quiesce_counter, ==, 2);
456 g_assert_cmpint(a_s->drain_count, ==, 2);
457 g_assert_cmpint(b_s->drain_count, ==, 2);
458 g_assert_cmpint(backing_s->drain_count, ==, 2);
460 do_drain_end(BDRV_SUBTREE_DRAIN, bs_b);
462 g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
463 g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
464 g_assert_cmpint(backing->quiesce_counter, ==, 1);
465 g_assert_cmpint(a_s->drain_count, ==, 1);
466 g_assert_cmpint(b_s->drain_count, ==, 1);
467 g_assert_cmpint(backing_s->drain_count, ==, 1);
469 do_drain_end(BDRV_SUBTREE_DRAIN, bs_a);
471 g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
472 g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
473 g_assert_cmpint(backing->quiesce_counter, ==, 0);
474 g_assert_cmpint(a_s->drain_count, ==, 0);
475 g_assert_cmpint(b_s->drain_count, ==, 0);
476 g_assert_cmpint(backing_s->drain_count, ==, 0);
478 bdrv_unref(backing);
479 bdrv_unref(bs_a);
480 bdrv_unref(bs_b);
481 blk_unref(blk_a);
482 blk_unref(blk_b);
485 static void test_graph_change_drain_subtree(void)
487 BlockBackend *blk_a, *blk_b;
488 BlockDriverState *bs_a, *bs_b, *backing;
489 BDRVTestState *a_s, *b_s, *backing_s;
491 blk_a = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
492 bs_a = bdrv_new_open_driver(&bdrv_test, "test-node-a", BDRV_O_RDWR,
493 &error_abort);
494 a_s = bs_a->opaque;
495 blk_insert_bs(blk_a, bs_a, &error_abort);
497 blk_b = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
498 bs_b = bdrv_new_open_driver(&bdrv_test, "test-node-b", BDRV_O_RDWR,
499 &error_abort);
500 b_s = bs_b->opaque;
501 blk_insert_bs(blk_b, bs_b, &error_abort);
503 backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
504 backing_s = backing->opaque;
505 bdrv_set_backing_hd(bs_a, backing, &error_abort);
507 g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
508 g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
509 g_assert_cmpint(backing->quiesce_counter, ==, 0);
510 g_assert_cmpint(a_s->drain_count, ==, 0);
511 g_assert_cmpint(b_s->drain_count, ==, 0);
512 g_assert_cmpint(backing_s->drain_count, ==, 0);
514 do_drain_begin(BDRV_SUBTREE_DRAIN, bs_a);
515 do_drain_begin(BDRV_SUBTREE_DRAIN, bs_a);
516 do_drain_begin(BDRV_SUBTREE_DRAIN, bs_a);
517 do_drain_begin(BDRV_SUBTREE_DRAIN, bs_b);
518 do_drain_begin(BDRV_SUBTREE_DRAIN, bs_b);
520 bdrv_set_backing_hd(bs_b, backing, &error_abort);
521 g_assert_cmpint(bs_a->quiesce_counter, ==, 5);
522 g_assert_cmpint(bs_b->quiesce_counter, ==, 5);
523 g_assert_cmpint(backing->quiesce_counter, ==, 5);
524 g_assert_cmpint(a_s->drain_count, ==, 5);
525 g_assert_cmpint(b_s->drain_count, ==, 5);
526 g_assert_cmpint(backing_s->drain_count, ==, 5);
528 bdrv_set_backing_hd(bs_b, NULL, &error_abort);
529 g_assert_cmpint(bs_a->quiesce_counter, ==, 3);
530 g_assert_cmpint(bs_b->quiesce_counter, ==, 2);
531 g_assert_cmpint(backing->quiesce_counter, ==, 3);
532 g_assert_cmpint(a_s->drain_count, ==, 3);
533 g_assert_cmpint(b_s->drain_count, ==, 2);
534 g_assert_cmpint(backing_s->drain_count, ==, 3);
536 bdrv_set_backing_hd(bs_b, backing, &error_abort);
537 g_assert_cmpint(bs_a->quiesce_counter, ==, 5);
538 g_assert_cmpint(bs_b->quiesce_counter, ==, 5);
539 g_assert_cmpint(backing->quiesce_counter, ==, 5);
540 g_assert_cmpint(a_s->drain_count, ==, 5);
541 g_assert_cmpint(b_s->drain_count, ==, 5);
542 g_assert_cmpint(backing_s->drain_count, ==, 5);
544 do_drain_end(BDRV_SUBTREE_DRAIN, bs_b);
545 do_drain_end(BDRV_SUBTREE_DRAIN, bs_b);
546 do_drain_end(BDRV_SUBTREE_DRAIN, bs_a);
547 do_drain_end(BDRV_SUBTREE_DRAIN, bs_a);
548 do_drain_end(BDRV_SUBTREE_DRAIN, bs_a);
550 g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
551 g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
552 g_assert_cmpint(backing->quiesce_counter, ==, 0);
553 g_assert_cmpint(a_s->drain_count, ==, 0);
554 g_assert_cmpint(b_s->drain_count, ==, 0);
555 g_assert_cmpint(backing_s->drain_count, ==, 0);
557 bdrv_unref(backing);
558 bdrv_unref(bs_a);
559 bdrv_unref(bs_b);
560 blk_unref(blk_a);
561 blk_unref(blk_b);
564 static void test_graph_change_drain_all(void)
566 BlockBackend *blk_a, *blk_b;
567 BlockDriverState *bs_a, *bs_b;
568 BDRVTestState *a_s, *b_s;
570 /* Create node A with a BlockBackend */
571 blk_a = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
572 bs_a = bdrv_new_open_driver(&bdrv_test, "test-node-a", BDRV_O_RDWR,
573 &error_abort);
574 a_s = bs_a->opaque;
575 blk_insert_bs(blk_a, bs_a, &error_abort);
577 g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
578 g_assert_cmpint(a_s->drain_count, ==, 0);
580 /* Call bdrv_drain_all_begin() */
581 bdrv_drain_all_begin();
583 g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
584 g_assert_cmpint(a_s->drain_count, ==, 1);
586 /* Create node B with a BlockBackend */
587 blk_b = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
588 bs_b = bdrv_new_open_driver(&bdrv_test, "test-node-b", BDRV_O_RDWR,
589 &error_abort);
590 b_s = bs_b->opaque;
591 blk_insert_bs(blk_b, bs_b, &error_abort);
593 g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
594 g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
595 g_assert_cmpint(a_s->drain_count, ==, 1);
596 g_assert_cmpint(b_s->drain_count, ==, 1);
598 /* Unref and finally delete node A */
599 blk_unref(blk_a);
601 g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
602 g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
603 g_assert_cmpint(a_s->drain_count, ==, 1);
604 g_assert_cmpint(b_s->drain_count, ==, 1);
606 bdrv_unref(bs_a);
608 g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
609 g_assert_cmpint(b_s->drain_count, ==, 1);
611 /* End the drained section */
612 bdrv_drain_all_end();
614 g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
615 g_assert_cmpint(b_s->drain_count, ==, 0);
617 bdrv_unref(bs_b);
618 blk_unref(blk_b);
621 struct test_iothread_data {
622 BlockDriverState *bs;
623 enum drain_type drain_type;
624 int *aio_ret;
627 static void test_iothread_drain_entry(void *opaque)
629 struct test_iothread_data *data = opaque;
631 aio_context_acquire(bdrv_get_aio_context(data->bs));
632 do_drain_begin(data->drain_type, data->bs);
633 g_assert_cmpint(*data->aio_ret, ==, 0);
634 do_drain_end(data->drain_type, data->bs);
635 aio_context_release(bdrv_get_aio_context(data->bs));
637 qemu_event_set(&done_event);
640 static void test_iothread_aio_cb(void *opaque, int ret)
642 int *aio_ret = opaque;
643 *aio_ret = ret;
644 qemu_event_set(&done_event);
647 static void test_iothread_main_thread_bh(void *opaque)
649 struct test_iothread_data *data = opaque;
651 /* Test that the AioContext is not yet locked in a random BH that is
652 * executed during drain, otherwise this would deadlock. */
653 aio_context_acquire(bdrv_get_aio_context(data->bs));
654 bdrv_flush(data->bs);
655 aio_context_release(bdrv_get_aio_context(data->bs));
659 * Starts an AIO request on a BDS that runs in the AioContext of iothread 1.
660 * The request involves a BH on iothread 2 before it can complete.
662 * @drain_thread = 0 means that do_drain_begin/end are called from the main
663 * thread, @drain_thread = 1 means that they are called from iothread 1. Drain
664 * for this BDS cannot be called from iothread 2 because only the main thread
665 * may do cross-AioContext polling.
667 static void test_iothread_common(enum drain_type drain_type, int drain_thread)
669 BlockBackend *blk;
670 BlockDriverState *bs;
671 BDRVTestState *s;
672 BlockAIOCB *acb;
673 int aio_ret;
674 struct test_iothread_data data;
676 IOThread *a = iothread_new();
677 IOThread *b = iothread_new();
678 AioContext *ctx_a = iothread_get_aio_context(a);
679 AioContext *ctx_b = iothread_get_aio_context(b);
681 QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, NULL, 0);
683 /* bdrv_drain_all() may only be called from the main loop thread */
684 if (drain_type == BDRV_DRAIN_ALL && drain_thread != 0) {
685 goto out;
688 blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
689 bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
690 &error_abort);
691 s = bs->opaque;
692 blk_insert_bs(blk, bs, &error_abort);
693 blk_set_disable_request_queuing(blk, true);
695 blk_set_aio_context(blk, ctx_a, &error_abort);
696 aio_context_acquire(ctx_a);
698 s->bh_indirection_ctx = ctx_b;
700 aio_ret = -EINPROGRESS;
701 qemu_event_reset(&done_event);
703 if (drain_thread == 0) {
704 acb = blk_aio_preadv(blk, 0, &qiov, 0, test_iothread_aio_cb, &aio_ret);
705 } else {
706 acb = blk_aio_preadv(blk, 0, &qiov, 0, aio_ret_cb, &aio_ret);
708 g_assert(acb != NULL);
709 g_assert_cmpint(aio_ret, ==, -EINPROGRESS);
711 aio_context_release(ctx_a);
713 data = (struct test_iothread_data) {
714 .bs = bs,
715 .drain_type = drain_type,
716 .aio_ret = &aio_ret,
719 switch (drain_thread) {
720 case 0:
721 if (drain_type != BDRV_DRAIN_ALL) {
722 aio_context_acquire(ctx_a);
725 aio_bh_schedule_oneshot(ctx_a, test_iothread_main_thread_bh, &data);
727 /* The request is running on the IOThread a. Draining its block device
728 * will make sure that it has completed as far as the BDS is concerned,
729 * but the drain in this thread can continue immediately after
730 * bdrv_dec_in_flight() and aio_ret might be assigned only slightly
731 * later. */
732 do_drain_begin(drain_type, bs);
733 g_assert_cmpint(bs->in_flight, ==, 0);
735 if (drain_type != BDRV_DRAIN_ALL) {
736 aio_context_release(ctx_a);
738 qemu_event_wait(&done_event);
739 if (drain_type != BDRV_DRAIN_ALL) {
740 aio_context_acquire(ctx_a);
743 g_assert_cmpint(aio_ret, ==, 0);
744 do_drain_end(drain_type, bs);
746 if (drain_type != BDRV_DRAIN_ALL) {
747 aio_context_release(ctx_a);
749 break;
750 case 1:
751 aio_bh_schedule_oneshot(ctx_a, test_iothread_drain_entry, &data);
752 qemu_event_wait(&done_event);
753 break;
754 default:
755 g_assert_not_reached();
758 aio_context_acquire(ctx_a);
759 blk_set_aio_context(blk, qemu_get_aio_context(), &error_abort);
760 aio_context_release(ctx_a);
762 bdrv_unref(bs);
763 blk_unref(blk);
765 out:
766 iothread_join(a);
767 iothread_join(b);
770 static void test_iothread_drain_all(void)
772 test_iothread_common(BDRV_DRAIN_ALL, 0);
773 test_iothread_common(BDRV_DRAIN_ALL, 1);
776 static void test_iothread_drain(void)
778 test_iothread_common(BDRV_DRAIN, 0);
779 test_iothread_common(BDRV_DRAIN, 1);
782 static void test_iothread_drain_subtree(void)
784 test_iothread_common(BDRV_SUBTREE_DRAIN, 0);
785 test_iothread_common(BDRV_SUBTREE_DRAIN, 1);
789 typedef struct TestBlockJob {
790 BlockJob common;
791 int run_ret;
792 int prepare_ret;
793 bool running;
794 bool should_complete;
795 } TestBlockJob;
797 static int test_job_prepare(Job *job)
799 TestBlockJob *s = container_of(job, TestBlockJob, common.job);
801 /* Provoke an AIO_WAIT_WHILE() call to verify there is no deadlock */
802 blk_flush(s->common.blk);
803 return s->prepare_ret;
806 static void test_job_commit(Job *job)
808 TestBlockJob *s = container_of(job, TestBlockJob, common.job);
810 /* Provoke an AIO_WAIT_WHILE() call to verify there is no deadlock */
811 blk_flush(s->common.blk);
814 static void test_job_abort(Job *job)
816 TestBlockJob *s = container_of(job, TestBlockJob, common.job);
818 /* Provoke an AIO_WAIT_WHILE() call to verify there is no deadlock */
819 blk_flush(s->common.blk);
822 static int coroutine_fn test_job_run(Job *job, Error **errp)
824 TestBlockJob *s = container_of(job, TestBlockJob, common.job);
826 /* We are running the actual job code past the pause point in
827 * job_co_entry(). */
828 s->running = true;
830 job_transition_to_ready(&s->common.job);
831 while (!s->should_complete) {
832 /* Avoid job_sleep_ns() because it marks the job as !busy. We want to
833 * emulate some actual activity (probably some I/O) here so that drain
834 * has to wait for this activity to stop. */
835 qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 1000000);
837 job_pause_point(&s->common.job);
840 return s->run_ret;
843 static void test_job_complete(Job *job, Error **errp)
845 TestBlockJob *s = container_of(job, TestBlockJob, common.job);
846 s->should_complete = true;
849 BlockJobDriver test_job_driver = {
850 .job_driver = {
851 .instance_size = sizeof(TestBlockJob),
852 .free = block_job_free,
853 .user_resume = block_job_user_resume,
854 .run = test_job_run,
855 .complete = test_job_complete,
856 .prepare = test_job_prepare,
857 .commit = test_job_commit,
858 .abort = test_job_abort,
862 enum test_job_result {
863 TEST_JOB_SUCCESS,
864 TEST_JOB_FAIL_RUN,
865 TEST_JOB_FAIL_PREPARE,
868 enum test_job_drain_node {
869 TEST_JOB_DRAIN_SRC,
870 TEST_JOB_DRAIN_SRC_CHILD,
871 TEST_JOB_DRAIN_SRC_PARENT,
874 static void test_blockjob_common_drain_node(enum drain_type drain_type,
875 bool use_iothread,
876 enum test_job_result result,
877 enum test_job_drain_node drain_node)
879 BlockBackend *blk_src, *blk_target;
880 BlockDriverState *src, *src_backing, *src_overlay, *target, *drain_bs;
881 BlockJob *job;
882 TestBlockJob *tjob;
883 IOThread *iothread = NULL;
884 AioContext *ctx;
885 int ret;
887 src = bdrv_new_open_driver(&bdrv_test, "source", BDRV_O_RDWR,
888 &error_abort);
889 src_backing = bdrv_new_open_driver(&bdrv_test, "source-backing",
890 BDRV_O_RDWR, &error_abort);
891 src_overlay = bdrv_new_open_driver(&bdrv_test, "source-overlay",
892 BDRV_O_RDWR, &error_abort);
894 bdrv_set_backing_hd(src_overlay, src, &error_abort);
895 bdrv_unref(src);
896 bdrv_set_backing_hd(src, src_backing, &error_abort);
897 bdrv_unref(src_backing);
899 blk_src = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
900 blk_insert_bs(blk_src, src_overlay, &error_abort);
902 switch (drain_node) {
903 case TEST_JOB_DRAIN_SRC:
904 drain_bs = src;
905 break;
906 case TEST_JOB_DRAIN_SRC_CHILD:
907 drain_bs = src_backing;
908 break;
909 case TEST_JOB_DRAIN_SRC_PARENT:
910 drain_bs = src_overlay;
911 break;
912 default:
913 g_assert_not_reached();
916 if (use_iothread) {
917 iothread = iothread_new();
918 ctx = iothread_get_aio_context(iothread);
919 blk_set_aio_context(blk_src, ctx, &error_abort);
920 } else {
921 ctx = qemu_get_aio_context();
924 target = bdrv_new_open_driver(&bdrv_test, "target", BDRV_O_RDWR,
925 &error_abort);
926 blk_target = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
927 blk_insert_bs(blk_target, target, &error_abort);
928 blk_set_allow_aio_context_change(blk_target, true);
930 aio_context_acquire(ctx);
931 tjob = block_job_create("job0", &test_job_driver, NULL, src,
932 0, BLK_PERM_ALL,
933 0, 0, NULL, NULL, &error_abort);
934 job = &tjob->common;
935 block_job_add_bdrv(job, "target", target, 0, BLK_PERM_ALL, &error_abort);
937 switch (result) {
938 case TEST_JOB_SUCCESS:
939 break;
940 case TEST_JOB_FAIL_RUN:
941 tjob->run_ret = -EIO;
942 break;
943 case TEST_JOB_FAIL_PREPARE:
944 tjob->prepare_ret = -EIO;
945 break;
948 job_start(&job->job);
949 aio_context_release(ctx);
951 if (use_iothread) {
952 /* job_co_entry() is run in the I/O thread, wait for the actual job
953 * code to start (we don't want to catch the job in the pause point in
954 * job_co_entry(). */
955 while (!tjob->running) {
956 aio_poll(qemu_get_aio_context(), false);
960 g_assert_cmpint(job->job.pause_count, ==, 0);
961 g_assert_false(job->job.paused);
962 g_assert_true(tjob->running);
963 g_assert_true(job->job.busy); /* We're in qemu_co_sleep_ns() */
965 do_drain_begin_unlocked(drain_type, drain_bs);
967 if (drain_type == BDRV_DRAIN_ALL) {
968 /* bdrv_drain_all() drains both src and target */
969 g_assert_cmpint(job->job.pause_count, ==, 2);
970 } else {
971 g_assert_cmpint(job->job.pause_count, ==, 1);
973 g_assert_true(job->job.paused);
974 g_assert_false(job->job.busy); /* The job is paused */
976 do_drain_end_unlocked(drain_type, drain_bs);
978 if (use_iothread) {
979 /* paused is reset in the I/O thread, wait for it */
980 while (job->job.paused) {
981 aio_poll(qemu_get_aio_context(), false);
985 g_assert_cmpint(job->job.pause_count, ==, 0);
986 g_assert_false(job->job.paused);
987 g_assert_true(job->job.busy); /* We're in qemu_co_sleep_ns() */
989 do_drain_begin_unlocked(drain_type, target);
991 if (drain_type == BDRV_DRAIN_ALL) {
992 /* bdrv_drain_all() drains both src and target */
993 g_assert_cmpint(job->job.pause_count, ==, 2);
994 } else {
995 g_assert_cmpint(job->job.pause_count, ==, 1);
997 g_assert_true(job->job.paused);
998 g_assert_false(job->job.busy); /* The job is paused */
1000 do_drain_end_unlocked(drain_type, target);
1002 if (use_iothread) {
1003 /* paused is reset in the I/O thread, wait for it */
1004 while (job->job.paused) {
1005 aio_poll(qemu_get_aio_context(), false);
1009 g_assert_cmpint(job->job.pause_count, ==, 0);
1010 g_assert_false(job->job.paused);
1011 g_assert_true(job->job.busy); /* We're in qemu_co_sleep_ns() */
1013 aio_context_acquire(ctx);
1014 ret = job_complete_sync(&job->job, &error_abort);
1015 g_assert_cmpint(ret, ==, (result == TEST_JOB_SUCCESS ? 0 : -EIO));
1017 if (use_iothread) {
1018 blk_set_aio_context(blk_src, qemu_get_aio_context(), &error_abort);
1019 assert(blk_get_aio_context(blk_target) == qemu_get_aio_context());
1021 aio_context_release(ctx);
1023 blk_unref(blk_src);
1024 blk_unref(blk_target);
1025 bdrv_unref(src_overlay);
1026 bdrv_unref(target);
1028 if (iothread) {
1029 iothread_join(iothread);
1033 static void test_blockjob_common(enum drain_type drain_type, bool use_iothread,
1034 enum test_job_result result)
1036 test_blockjob_common_drain_node(drain_type, use_iothread, result,
1037 TEST_JOB_DRAIN_SRC);
1038 test_blockjob_common_drain_node(drain_type, use_iothread, result,
1039 TEST_JOB_DRAIN_SRC_CHILD);
1040 if (drain_type == BDRV_SUBTREE_DRAIN) {
1041 test_blockjob_common_drain_node(drain_type, use_iothread, result,
1042 TEST_JOB_DRAIN_SRC_PARENT);
1046 static void test_blockjob_drain_all(void)
1048 test_blockjob_common(BDRV_DRAIN_ALL, false, TEST_JOB_SUCCESS);
1051 static void test_blockjob_drain(void)
1053 test_blockjob_common(BDRV_DRAIN, false, TEST_JOB_SUCCESS);
1056 static void test_blockjob_drain_subtree(void)
1058 test_blockjob_common(BDRV_SUBTREE_DRAIN, false, TEST_JOB_SUCCESS);
1061 static void test_blockjob_error_drain_all(void)
1063 test_blockjob_common(BDRV_DRAIN_ALL, false, TEST_JOB_FAIL_RUN);
1064 test_blockjob_common(BDRV_DRAIN_ALL, false, TEST_JOB_FAIL_PREPARE);
1067 static void test_blockjob_error_drain(void)
1069 test_blockjob_common(BDRV_DRAIN, false, TEST_JOB_FAIL_RUN);
1070 test_blockjob_common(BDRV_DRAIN, false, TEST_JOB_FAIL_PREPARE);
1073 static void test_blockjob_error_drain_subtree(void)
1075 test_blockjob_common(BDRV_SUBTREE_DRAIN, false, TEST_JOB_FAIL_RUN);
1076 test_blockjob_common(BDRV_SUBTREE_DRAIN, false, TEST_JOB_FAIL_PREPARE);
1079 static void test_blockjob_iothread_drain_all(void)
1081 test_blockjob_common(BDRV_DRAIN_ALL, true, TEST_JOB_SUCCESS);
1084 static void test_blockjob_iothread_drain(void)
1086 test_blockjob_common(BDRV_DRAIN, true, TEST_JOB_SUCCESS);
1089 static void test_blockjob_iothread_drain_subtree(void)
1091 test_blockjob_common(BDRV_SUBTREE_DRAIN, true, TEST_JOB_SUCCESS);
1094 static void test_blockjob_iothread_error_drain_all(void)
1096 test_blockjob_common(BDRV_DRAIN_ALL, true, TEST_JOB_FAIL_RUN);
1097 test_blockjob_common(BDRV_DRAIN_ALL, true, TEST_JOB_FAIL_PREPARE);
1100 static void test_blockjob_iothread_error_drain(void)
1102 test_blockjob_common(BDRV_DRAIN, true, TEST_JOB_FAIL_RUN);
1103 test_blockjob_common(BDRV_DRAIN, true, TEST_JOB_FAIL_PREPARE);
1106 static void test_blockjob_iothread_error_drain_subtree(void)
1108 test_blockjob_common(BDRV_SUBTREE_DRAIN, true, TEST_JOB_FAIL_RUN);
1109 test_blockjob_common(BDRV_SUBTREE_DRAIN, true, TEST_JOB_FAIL_PREPARE);
1113 typedef struct BDRVTestTopState {
1114 BdrvChild *wait_child;
1115 } BDRVTestTopState;
1117 static void bdrv_test_top_close(BlockDriverState *bs)
1119 BdrvChild *c, *next_c;
1120 QLIST_FOREACH_SAFE(c, &bs->children, next, next_c) {
1121 bdrv_unref_child(bs, c);
1125 static int coroutine_fn bdrv_test_top_co_preadv(BlockDriverState *bs,
1126 uint64_t offset, uint64_t bytes,
1127 QEMUIOVector *qiov, int flags)
1129 BDRVTestTopState *tts = bs->opaque;
1130 return bdrv_co_preadv(tts->wait_child, offset, bytes, qiov, flags);
1133 static BlockDriver bdrv_test_top_driver = {
1134 .format_name = "test_top_driver",
1135 .instance_size = sizeof(BDRVTestTopState),
1137 .bdrv_close = bdrv_test_top_close,
1138 .bdrv_co_preadv = bdrv_test_top_co_preadv,
1140 .bdrv_child_perm = bdrv_format_default_perms,
1143 typedef struct TestCoDeleteByDrainData {
1144 BlockBackend *blk;
1145 bool detach_instead_of_delete;
1146 bool done;
1147 } TestCoDeleteByDrainData;
1149 static void coroutine_fn test_co_delete_by_drain(void *opaque)
1151 TestCoDeleteByDrainData *dbdd = opaque;
1152 BlockBackend *blk = dbdd->blk;
1153 BlockDriverState *bs = blk_bs(blk);
1154 BDRVTestTopState *tts = bs->opaque;
1155 void *buffer = g_malloc(65536);
1156 QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, buffer, 65536);
1158 /* Pretend some internal write operation from parent to child.
1159 * Important: We have to read from the child, not from the parent!
1160 * Draining works by first propagating it all up the tree to the
1161 * root and then waiting for drainage from root to the leaves
1162 * (protocol nodes). If we have a request waiting on the root,
1163 * everything will be drained before we go back down the tree, but
1164 * we do not want that. We want to be in the middle of draining
1165 * when this following requests returns. */
1166 bdrv_co_preadv(tts->wait_child, 0, 65536, &qiov, 0);
1168 g_assert_cmpint(bs->refcnt, ==, 1);
1170 if (!dbdd->detach_instead_of_delete) {
1171 blk_unref(blk);
1172 } else {
1173 BdrvChild *c, *next_c;
1174 QLIST_FOREACH_SAFE(c, &bs->children, next, next_c) {
1175 bdrv_unref_child(bs, c);
1179 dbdd->done = true;
1180 g_free(buffer);
1184 * Test what happens when some BDS has some children, you drain one of
1185 * them and this results in the BDS being deleted.
1187 * If @detach_instead_of_delete is set, the BDS is not going to be
1188 * deleted but will only detach all of its children.
1190 static void do_test_delete_by_drain(bool detach_instead_of_delete,
1191 enum drain_type drain_type)
1193 BlockBackend *blk;
1194 BlockDriverState *bs, *child_bs, *null_bs;
1195 BDRVTestTopState *tts;
1196 TestCoDeleteByDrainData dbdd;
1197 Coroutine *co;
1199 bs = bdrv_new_open_driver(&bdrv_test_top_driver, "top", BDRV_O_RDWR,
1200 &error_abort);
1201 bs->total_sectors = 65536 >> BDRV_SECTOR_BITS;
1202 tts = bs->opaque;
1204 null_bs = bdrv_open("null-co://", NULL, NULL, BDRV_O_RDWR | BDRV_O_PROTOCOL,
1205 &error_abort);
1206 bdrv_attach_child(bs, null_bs, "null-child", &child_file, 0, &error_abort);
1208 /* This child will be the one to pass to requests through to, and
1209 * it will stall until a drain occurs */
1210 child_bs = bdrv_new_open_driver(&bdrv_test, "child", BDRV_O_RDWR,
1211 &error_abort);
1212 child_bs->total_sectors = 65536 >> BDRV_SECTOR_BITS;
1213 /* Takes our reference to child_bs */
1214 tts->wait_child = bdrv_attach_child(bs, child_bs, "wait-child", &child_file,
1215 0, &error_abort);
1217 /* This child is just there to be deleted
1218 * (for detach_instead_of_delete == true) */
1219 null_bs = bdrv_open("null-co://", NULL, NULL, BDRV_O_RDWR | BDRV_O_PROTOCOL,
1220 &error_abort);
1221 bdrv_attach_child(bs, null_bs, "null-child", &child_file, 0, &error_abort);
1223 blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
1224 blk_insert_bs(blk, bs, &error_abort);
1226 /* Referenced by blk now */
1227 bdrv_unref(bs);
1229 g_assert_cmpint(bs->refcnt, ==, 1);
1230 g_assert_cmpint(child_bs->refcnt, ==, 1);
1231 g_assert_cmpint(null_bs->refcnt, ==, 1);
1234 dbdd = (TestCoDeleteByDrainData){
1235 .blk = blk,
1236 .detach_instead_of_delete = detach_instead_of_delete,
1237 .done = false,
1239 co = qemu_coroutine_create(test_co_delete_by_drain, &dbdd);
1240 qemu_coroutine_enter(co);
1242 /* Drain the child while the read operation is still pending.
1243 * This should result in the operation finishing and
1244 * test_co_delete_by_drain() resuming. Thus, @bs will be deleted
1245 * and the coroutine will exit while this drain operation is still
1246 * in progress. */
1247 switch (drain_type) {
1248 case BDRV_DRAIN:
1249 bdrv_ref(child_bs);
1250 bdrv_drain(child_bs);
1251 bdrv_unref(child_bs);
1252 break;
1253 case BDRV_SUBTREE_DRAIN:
1254 /* Would have to ref/unref bs here for !detach_instead_of_delete, but
1255 * then the whole test becomes pointless because the graph changes
1256 * don't occur during the drain any more. */
1257 assert(detach_instead_of_delete);
1258 bdrv_subtree_drained_begin(bs);
1259 bdrv_subtree_drained_end(bs);
1260 break;
1261 case BDRV_DRAIN_ALL:
1262 bdrv_drain_all_begin();
1263 bdrv_drain_all_end();
1264 break;
1265 default:
1266 g_assert_not_reached();
1269 while (!dbdd.done) {
1270 aio_poll(qemu_get_aio_context(), true);
1273 if (detach_instead_of_delete) {
1274 /* Here, the reference has not passed over to the coroutine,
1275 * so we have to delete the BB ourselves */
1276 blk_unref(blk);
1280 static void test_delete_by_drain(void)
1282 do_test_delete_by_drain(false, BDRV_DRAIN);
1285 static void test_detach_by_drain_all(void)
1287 do_test_delete_by_drain(true, BDRV_DRAIN_ALL);
1290 static void test_detach_by_drain(void)
1292 do_test_delete_by_drain(true, BDRV_DRAIN);
1295 static void test_detach_by_drain_subtree(void)
1297 do_test_delete_by_drain(true, BDRV_SUBTREE_DRAIN);
1301 struct detach_by_parent_data {
1302 BlockDriverState *parent_b;
1303 BdrvChild *child_b;
1304 BlockDriverState *c;
1305 BdrvChild *child_c;
1306 bool by_parent_cb;
1308 static struct detach_by_parent_data detach_by_parent_data;
1310 static void detach_indirect_bh(void *opaque)
1312 struct detach_by_parent_data *data = opaque;
1314 bdrv_unref_child(data->parent_b, data->child_b);
1316 bdrv_ref(data->c);
1317 data->child_c = bdrv_attach_child(data->parent_b, data->c, "PB-C",
1318 &child_file, 0, &error_abort);
1321 static void detach_by_parent_aio_cb(void *opaque, int ret)
1323 struct detach_by_parent_data *data = &detach_by_parent_data;
1325 g_assert_cmpint(ret, ==, 0);
1326 if (data->by_parent_cb) {
1327 detach_indirect_bh(data);
1331 static void detach_by_driver_cb_drained_begin(BdrvChild *child)
1333 aio_bh_schedule_oneshot(qemu_get_current_aio_context(),
1334 detach_indirect_bh, &detach_by_parent_data);
1335 child_file.drained_begin(child);
1338 static BdrvChildClass detach_by_driver_cb_class;
1341 * Initial graph:
1343 * PA PB
1344 * \ / \
1345 * A B C
1347 * by_parent_cb == true: Test that parent callbacks don't poll
1349 * PA has a pending write request whose callback changes the child nodes of
1350 * PB: It removes B and adds C instead. The subtree of PB is drained, which
1351 * will indirectly drain the write request, too.
1353 * by_parent_cb == false: Test that bdrv_drain_invoke() doesn't poll
1355 * PA's BdrvChildClass has a .drained_begin callback that schedules a BH
1356 * that does the same graph change. If bdrv_drain_invoke() calls it, the
1357 * state is messed up, but if it is only polled in the single
1358 * BDRV_POLL_WHILE() at the end of the drain, this should work fine.
1360 static void test_detach_indirect(bool by_parent_cb)
1362 BlockBackend *blk;
1363 BlockDriverState *parent_a, *parent_b, *a, *b, *c;
1364 BdrvChild *child_a, *child_b;
1365 BlockAIOCB *acb;
1367 QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, NULL, 0);
1369 if (!by_parent_cb) {
1370 detach_by_driver_cb_class = child_file;
1371 detach_by_driver_cb_class.drained_begin =
1372 detach_by_driver_cb_drained_begin;
1375 /* Create all involved nodes */
1376 parent_a = bdrv_new_open_driver(&bdrv_test, "parent-a", BDRV_O_RDWR,
1377 &error_abort);
1378 parent_b = bdrv_new_open_driver(&bdrv_test, "parent-b", 0,
1379 &error_abort);
1381 a = bdrv_new_open_driver(&bdrv_test, "a", BDRV_O_RDWR, &error_abort);
1382 b = bdrv_new_open_driver(&bdrv_test, "b", BDRV_O_RDWR, &error_abort);
1383 c = bdrv_new_open_driver(&bdrv_test, "c", BDRV_O_RDWR, &error_abort);
1385 /* blk is a BB for parent-a */
1386 blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
1387 blk_insert_bs(blk, parent_a, &error_abort);
1388 bdrv_unref(parent_a);
1390 /* If we want to get bdrv_drain_invoke() to call aio_poll(), the driver
1391 * callback must not return immediately. */
1392 if (!by_parent_cb) {
1393 BDRVTestState *s = parent_a->opaque;
1394 s->sleep_in_drain_begin = true;
1397 /* Set child relationships */
1398 bdrv_ref(b);
1399 bdrv_ref(a);
1400 child_b = bdrv_attach_child(parent_b, b, "PB-B", &child_file, 0,
1401 &error_abort);
1402 child_a = bdrv_attach_child(parent_b, a, "PB-A", &child_backing, 0,
1403 &error_abort);
1405 bdrv_ref(a);
1406 bdrv_attach_child(parent_a, a, "PA-A",
1407 by_parent_cb ? &child_file : &detach_by_driver_cb_class,
1408 0, &error_abort);
1410 g_assert_cmpint(parent_a->refcnt, ==, 1);
1411 g_assert_cmpint(parent_b->refcnt, ==, 1);
1412 g_assert_cmpint(a->refcnt, ==, 3);
1413 g_assert_cmpint(b->refcnt, ==, 2);
1414 g_assert_cmpint(c->refcnt, ==, 1);
1416 g_assert(QLIST_FIRST(&parent_b->children) == child_a);
1417 g_assert(QLIST_NEXT(child_a, next) == child_b);
1418 g_assert(QLIST_NEXT(child_b, next) == NULL);
1420 /* Start the evil write request */
1421 detach_by_parent_data = (struct detach_by_parent_data) {
1422 .parent_b = parent_b,
1423 .child_b = child_b,
1424 .c = c,
1425 .by_parent_cb = by_parent_cb,
1427 acb = blk_aio_preadv(blk, 0, &qiov, 0, detach_by_parent_aio_cb, NULL);
1428 g_assert(acb != NULL);
1430 /* Drain and check the expected result */
1431 bdrv_subtree_drained_begin(parent_b);
1433 g_assert(detach_by_parent_data.child_c != NULL);
1435 g_assert_cmpint(parent_a->refcnt, ==, 1);
1436 g_assert_cmpint(parent_b->refcnt, ==, 1);
1437 g_assert_cmpint(a->refcnt, ==, 3);
1438 g_assert_cmpint(b->refcnt, ==, 1);
1439 g_assert_cmpint(c->refcnt, ==, 2);
1441 g_assert(QLIST_FIRST(&parent_b->children) == detach_by_parent_data.child_c);
1442 g_assert(QLIST_NEXT(detach_by_parent_data.child_c, next) == child_a);
1443 g_assert(QLIST_NEXT(child_a, next) == NULL);
1445 g_assert_cmpint(parent_a->quiesce_counter, ==, 1);
1446 g_assert_cmpint(parent_b->quiesce_counter, ==, 1);
1447 g_assert_cmpint(a->quiesce_counter, ==, 1);
1448 g_assert_cmpint(b->quiesce_counter, ==, 0);
1449 g_assert_cmpint(c->quiesce_counter, ==, 1);
1451 bdrv_subtree_drained_end(parent_b);
1453 bdrv_unref(parent_b);
1454 blk_unref(blk);
1456 g_assert_cmpint(a->refcnt, ==, 1);
1457 g_assert_cmpint(b->refcnt, ==, 1);
1458 g_assert_cmpint(c->refcnt, ==, 1);
1459 bdrv_unref(a);
1460 bdrv_unref(b);
1461 bdrv_unref(c);
1464 static void test_detach_by_parent_cb(void)
1466 test_detach_indirect(true);
1469 static void test_detach_by_driver_cb(void)
1471 test_detach_indirect(false);
1474 static void test_append_to_drained(void)
1476 BlockBackend *blk;
1477 BlockDriverState *base, *overlay;
1478 BDRVTestState *base_s, *overlay_s;
1480 blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL);
1481 base = bdrv_new_open_driver(&bdrv_test, "base", BDRV_O_RDWR, &error_abort);
1482 base_s = base->opaque;
1483 blk_insert_bs(blk, base, &error_abort);
1485 overlay = bdrv_new_open_driver(&bdrv_test, "overlay", BDRV_O_RDWR,
1486 &error_abort);
1487 overlay_s = overlay->opaque;
1489 do_drain_begin(BDRV_DRAIN, base);
1490 g_assert_cmpint(base->quiesce_counter, ==, 1);
1491 g_assert_cmpint(base_s->drain_count, ==, 1);
1492 g_assert_cmpint(base->in_flight, ==, 0);
1494 /* Takes ownership of overlay, so we don't have to unref it later */
1495 bdrv_append(overlay, base, &error_abort);
1496 g_assert_cmpint(base->in_flight, ==, 0);
1497 g_assert_cmpint(overlay->in_flight, ==, 0);
1499 g_assert_cmpint(base->quiesce_counter, ==, 1);
1500 g_assert_cmpint(base_s->drain_count, ==, 1);
1501 g_assert_cmpint(overlay->quiesce_counter, ==, 1);
1502 g_assert_cmpint(overlay_s->drain_count, ==, 1);
1504 do_drain_end(BDRV_DRAIN, base);
1506 g_assert_cmpint(base->quiesce_counter, ==, 0);
1507 g_assert_cmpint(base_s->drain_count, ==, 0);
1508 g_assert_cmpint(overlay->quiesce_counter, ==, 0);
1509 g_assert_cmpint(overlay_s->drain_count, ==, 0);
1511 bdrv_unref(base);
1512 blk_unref(blk);
1515 static void test_set_aio_context(void)
1517 BlockDriverState *bs;
1518 IOThread *a = iothread_new();
1519 IOThread *b = iothread_new();
1520 AioContext *ctx_a = iothread_get_aio_context(a);
1521 AioContext *ctx_b = iothread_get_aio_context(b);
1523 bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
1524 &error_abort);
1526 bdrv_drained_begin(bs);
1527 bdrv_try_set_aio_context(bs, ctx_a, &error_abort);
1529 aio_context_acquire(ctx_a);
1530 bdrv_drained_end(bs);
1532 bdrv_drained_begin(bs);
1533 bdrv_try_set_aio_context(bs, ctx_b, &error_abort);
1534 aio_context_release(ctx_a);
1535 aio_context_acquire(ctx_b);
1536 bdrv_try_set_aio_context(bs, qemu_get_aio_context(), &error_abort);
1537 aio_context_release(ctx_b);
1538 bdrv_drained_end(bs);
1540 bdrv_unref(bs);
1541 iothread_join(a);
1542 iothread_join(b);
1546 typedef struct TestDropBackingBlockJob {
1547 BlockJob common;
1548 bool should_complete;
1549 bool *did_complete;
1550 BlockDriverState *detach_also;
1551 } TestDropBackingBlockJob;
1553 static int coroutine_fn test_drop_backing_job_run(Job *job, Error **errp)
1555 TestDropBackingBlockJob *s =
1556 container_of(job, TestDropBackingBlockJob, common.job);
1558 while (!s->should_complete) {
1559 job_sleep_ns(job, 0);
1562 return 0;
1565 static void test_drop_backing_job_commit(Job *job)
1567 TestDropBackingBlockJob *s =
1568 container_of(job, TestDropBackingBlockJob, common.job);
1570 bdrv_set_backing_hd(blk_bs(s->common.blk), NULL, &error_abort);
1571 bdrv_set_backing_hd(s->detach_also, NULL, &error_abort);
1573 *s->did_complete = true;
1576 static const BlockJobDriver test_drop_backing_job_driver = {
1577 .job_driver = {
1578 .instance_size = sizeof(TestDropBackingBlockJob),
1579 .free = block_job_free,
1580 .user_resume = block_job_user_resume,
1581 .run = test_drop_backing_job_run,
1582 .commit = test_drop_backing_job_commit,
1587 * Creates a child node with three parent nodes on it, and then runs a
1588 * block job on the final one, parent-node-2.
1590 * The job is then asked to complete before a section where the child
1591 * is drained.
1593 * Ending this section will undrain the child's parents, first
1594 * parent-node-2, then parent-node-1, then parent-node-0 -- the parent
1595 * list is in reverse order of how they were added. Ending the drain
1596 * on parent-node-2 will resume the job, thus completing it and
1597 * scheduling job_exit().
1599 * Ending the drain on parent-node-1 will poll the AioContext, which
1600 * lets job_exit() and thus test_drop_backing_job_commit() run. That
1601 * function first removes the child as parent-node-2's backing file.
1603 * In old (and buggy) implementations, there are two problems with
1604 * that:
1605 * (A) bdrv_drain_invoke() polls for every node that leaves the
1606 * drained section. This means that job_exit() is scheduled
1607 * before the child has left the drained section. Its
1608 * quiesce_counter is therefore still 1 when it is removed from
1609 * parent-node-2.
1611 * (B) bdrv_replace_child_noperm() calls drained_end() on the old
1612 * child's parents as many times as the child is quiesced. This
1613 * means it will call drained_end() on parent-node-2 once.
1614 * Because parent-node-2 is no longer quiesced at this point, this
1615 * will fail.
1617 * bdrv_replace_child_noperm() therefore must call drained_end() on
1618 * the parent only if it really is still drained because the child is
1619 * drained.
1621 * If removing child from parent-node-2 was successful (as it should
1622 * be), test_drop_backing_job_commit() will then also remove the child
1623 * from parent-node-0.
1625 * With an old version of our drain infrastructure ((A) above), that
1626 * resulted in the following flow:
1628 * 1. child attempts to leave its drained section. The call recurses
1629 * to its parents.
1631 * 2. parent-node-2 leaves the drained section. Polling in
1632 * bdrv_drain_invoke() will schedule job_exit().
1634 * 3. parent-node-1 leaves the drained section. Polling in
1635 * bdrv_drain_invoke() will run job_exit(), thus disconnecting
1636 * parent-node-0 from the child node.
1638 * 4. bdrv_parent_drained_end() uses a QLIST_FOREACH_SAFE() loop to
1639 * iterate over the parents. Thus, it now accesses the BdrvChild
1640 * object that used to connect parent-node-0 and the child node.
1641 * However, that object no longer exists, so it accesses a dangling
1642 * pointer.
1644 * The solution is to only poll once when running a bdrv_drained_end()
1645 * operation, specifically at the end when all drained_end()
1646 * operations for all involved nodes have been scheduled.
1647 * Note that this also solves (A) above, thus hiding (B).
1649 static void test_blockjob_commit_by_drained_end(void)
1651 BlockDriverState *bs_child, *bs_parents[3];
1652 TestDropBackingBlockJob *job;
1653 bool job_has_completed = false;
1654 int i;
1656 bs_child = bdrv_new_open_driver(&bdrv_test, "child-node", BDRV_O_RDWR,
1657 &error_abort);
1659 for (i = 0; i < 3; i++) {
1660 char name[32];
1661 snprintf(name, sizeof(name), "parent-node-%i", i);
1662 bs_parents[i] = bdrv_new_open_driver(&bdrv_test, name, BDRV_O_RDWR,
1663 &error_abort);
1664 bdrv_set_backing_hd(bs_parents[i], bs_child, &error_abort);
1667 job = block_job_create("job", &test_drop_backing_job_driver, NULL,
1668 bs_parents[2], 0, BLK_PERM_ALL, 0, 0, NULL, NULL,
1669 &error_abort);
1671 job->detach_also = bs_parents[0];
1672 job->did_complete = &job_has_completed;
1674 job_start(&job->common.job);
1676 job->should_complete = true;
1677 bdrv_drained_begin(bs_child);
1678 g_assert(!job_has_completed);
1679 bdrv_drained_end(bs_child);
1680 g_assert(job_has_completed);
1682 bdrv_unref(bs_parents[0]);
1683 bdrv_unref(bs_parents[1]);
1684 bdrv_unref(bs_parents[2]);
1685 bdrv_unref(bs_child);
1689 typedef struct TestSimpleBlockJob {
1690 BlockJob common;
1691 bool should_complete;
1692 bool *did_complete;
1693 } TestSimpleBlockJob;
1695 static int coroutine_fn test_simple_job_run(Job *job, Error **errp)
1697 TestSimpleBlockJob *s = container_of(job, TestSimpleBlockJob, common.job);
1699 while (!s->should_complete) {
1700 job_sleep_ns(job, 0);
1703 return 0;
1706 static void test_simple_job_clean(Job *job)
1708 TestSimpleBlockJob *s = container_of(job, TestSimpleBlockJob, common.job);
1709 *s->did_complete = true;
1712 static const BlockJobDriver test_simple_job_driver = {
1713 .job_driver = {
1714 .instance_size = sizeof(TestSimpleBlockJob),
1715 .free = block_job_free,
1716 .user_resume = block_job_user_resume,
1717 .run = test_simple_job_run,
1718 .clean = test_simple_job_clean,
1722 static int drop_intermediate_poll_update_filename(BdrvChild *child,
1723 BlockDriverState *new_base,
1724 const char *filename,
1725 Error **errp)
1728 * We are free to poll here, which may change the block graph, if
1729 * it is not drained.
1732 /* If the job is not drained: Complete it, schedule job_exit() */
1733 aio_poll(qemu_get_current_aio_context(), false);
1734 /* If the job is not drained: Run job_exit(), finish the job */
1735 aio_poll(qemu_get_current_aio_context(), false);
1737 return 0;
1741 * Test a poll in the midst of bdrv_drop_intermediate().
1743 * bdrv_drop_intermediate() calls BdrvChildClass.update_filename(),
1744 * which can yield or poll. This may lead to graph changes, unless
1745 * the whole subtree in question is drained.
1747 * We test this on the following graph:
1749 * Job
1752 * job-node
1756 * job-node
1759 * backing
1763 * node-2 --chain--> node-1 --chain--> node-0
1765 * We drop node-1 with bdrv_drop_intermediate(top=node-1, base=node-0).
1767 * This first updates node-2's backing filename by invoking
1768 * drop_intermediate_poll_update_filename(), which polls twice. This
1769 * causes the job to finish, which in turns causes the job-node to be
1770 * deleted.
1772 * bdrv_drop_intermediate() uses a QLIST_FOREACH_SAFE() loop, so it
1773 * already has a pointer to the BdrvChild edge between job-node and
1774 * node-1. When it tries to handle that edge, we probably get a
1775 * segmentation fault because the object no longer exists.
1778 * The solution is for bdrv_drop_intermediate() to drain top's
1779 * subtree. This prevents graph changes from happening just because
1780 * BdrvChildClass.update_filename() yields or polls. Thus, the block
1781 * job is paused during that drained section and must finish before or
1782 * after.
1784 * (In addition, bdrv_replace_child() must keep the job paused.)
1786 static void test_drop_intermediate_poll(void)
1788 static BdrvChildClass chain_child_class;
1789 BlockDriverState *chain[3];
1790 TestSimpleBlockJob *job;
1791 BlockDriverState *job_node;
1792 bool job_has_completed = false;
1793 int i;
1794 int ret;
1796 chain_child_class = child_backing;
1797 chain_child_class.update_filename = drop_intermediate_poll_update_filename;
1799 for (i = 0; i < 3; i++) {
1800 char name[32];
1801 snprintf(name, 32, "node-%i", i);
1803 chain[i] = bdrv_new_open_driver(&bdrv_test, name, 0, &error_abort);
1806 job_node = bdrv_new_open_driver(&bdrv_test, "job-node", BDRV_O_RDWR,
1807 &error_abort);
1808 bdrv_set_backing_hd(job_node, chain[1], &error_abort);
1811 * Establish the chain last, so the chain links are the first
1812 * elements in the BDS.parents lists
1814 for (i = 0; i < 3; i++) {
1815 if (i) {
1816 /* Takes the reference to chain[i - 1] */
1817 chain[i]->backing = bdrv_attach_child(chain[i], chain[i - 1],
1818 "chain", &chain_child_class,
1819 0, &error_abort);
1823 job = block_job_create("job", &test_simple_job_driver, NULL, job_node,
1824 0, BLK_PERM_ALL, 0, 0, NULL, NULL, &error_abort);
1826 /* The job has a reference now */
1827 bdrv_unref(job_node);
1829 job->did_complete = &job_has_completed;
1831 job_start(&job->common.job);
1832 job->should_complete = true;
1834 g_assert(!job_has_completed);
1835 ret = bdrv_drop_intermediate(chain[1], chain[0], NULL);
1836 g_assert(ret == 0);
1837 g_assert(job_has_completed);
1839 bdrv_unref(chain[2]);
1843 typedef struct BDRVReplaceTestState {
1844 bool was_drained;
1845 bool was_undrained;
1846 bool has_read;
1848 int drain_count;
1850 bool yield_before_read;
1851 Coroutine *io_co;
1852 Coroutine *drain_co;
1853 } BDRVReplaceTestState;
1855 static void bdrv_replace_test_close(BlockDriverState *bs)
1860 * If @bs has a backing file:
1861 * Yield if .yield_before_read is true (and wait for drain_begin to
1862 * wake us up).
1863 * Forward the read to bs->backing. Set .has_read to true.
1864 * If drain_begin has woken us, wake it in turn.
1866 * Otherwise:
1867 * Set .has_read to true and return success.
1869 static int coroutine_fn bdrv_replace_test_co_preadv(BlockDriverState *bs,
1870 uint64_t offset,
1871 uint64_t bytes,
1872 QEMUIOVector *qiov,
1873 int flags)
1875 BDRVReplaceTestState *s = bs->opaque;
1877 if (bs->backing) {
1878 int ret;
1880 g_assert(!s->drain_count);
1882 s->io_co = qemu_coroutine_self();
1883 if (s->yield_before_read) {
1884 s->yield_before_read = false;
1885 qemu_coroutine_yield();
1887 s->io_co = NULL;
1889 ret = bdrv_preadv(bs->backing, offset, qiov);
1890 s->has_read = true;
1892 /* Wake up drain_co if it runs */
1893 if (s->drain_co) {
1894 aio_co_wake(s->drain_co);
1897 return ret;
1900 s->has_read = true;
1901 return 0;
1905 * If .drain_count is 0, wake up .io_co if there is one; and set
1906 * .was_drained.
1907 * Increment .drain_count.
1909 static void coroutine_fn bdrv_replace_test_co_drain_begin(BlockDriverState *bs)
1911 BDRVReplaceTestState *s = bs->opaque;
1913 if (!s->drain_count) {
1914 /* Keep waking io_co up until it is done */
1915 s->drain_co = qemu_coroutine_self();
1916 while (s->io_co) {
1917 aio_co_wake(s->io_co);
1918 s->io_co = NULL;
1919 qemu_coroutine_yield();
1921 s->drain_co = NULL;
1923 s->was_drained = true;
1925 s->drain_count++;
1929 * Reduce .drain_count, set .was_undrained once it reaches 0.
1930 * If .drain_count reaches 0 and the node has a backing file, issue a
1931 * read request.
1933 static void coroutine_fn bdrv_replace_test_co_drain_end(BlockDriverState *bs)
1935 BDRVReplaceTestState *s = bs->opaque;
1937 g_assert(s->drain_count > 0);
1938 if (!--s->drain_count) {
1939 int ret;
1941 s->was_undrained = true;
1943 if (bs->backing) {
1944 char data;
1945 QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, &data, 1);
1947 /* Queue a read request post-drain */
1948 ret = bdrv_replace_test_co_preadv(bs, 0, 1, &qiov, 0);
1949 g_assert(ret >= 0);
1954 static BlockDriver bdrv_replace_test = {
1955 .format_name = "replace_test",
1956 .instance_size = sizeof(BDRVReplaceTestState),
1958 .bdrv_close = bdrv_replace_test_close,
1959 .bdrv_co_preadv = bdrv_replace_test_co_preadv,
1961 .bdrv_co_drain_begin = bdrv_replace_test_co_drain_begin,
1962 .bdrv_co_drain_end = bdrv_replace_test_co_drain_end,
1964 .bdrv_child_perm = bdrv_format_default_perms,
1967 static void coroutine_fn test_replace_child_mid_drain_read_co(void *opaque)
1969 int ret;
1970 char data;
1972 ret = blk_co_pread(opaque, 0, 1, &data, 0);
1973 g_assert(ret >= 0);
1977 * We test two things:
1978 * (1) bdrv_replace_child_noperm() must not undrain the parent if both
1979 * children are drained.
1980 * (2) bdrv_replace_child_noperm() must never flush I/O requests to a
1981 * drained child. If the old child is drained, it must flush I/O
1982 * requests after the new one has been attached. If the new child
1983 * is drained, it must flush I/O requests before the old one is
1984 * detached.
1986 * To do so, we create one parent node and two child nodes; then
1987 * attach one of the children (old_child_bs) to the parent, then
1988 * drain both old_child_bs and new_child_bs according to
1989 * old_drain_count and new_drain_count, respectively, and finally
1990 * we invoke bdrv_replace_node() to replace old_child_bs by
1991 * new_child_bs.
1993 * The test block driver we use here (bdrv_replace_test) has a read
1994 * function that:
1995 * - For the parent node, can optionally yield, and then forwards the
1996 * read to bdrv_preadv(),
1997 * - For the child node, just returns immediately.
1999 * If the read yields, the drain_begin function will wake it up.
2001 * The drain_end function issues a read on the parent once it is fully
2002 * undrained (which simulates requests starting to come in again).
2004 static void do_test_replace_child_mid_drain(int old_drain_count,
2005 int new_drain_count)
2007 BlockBackend *parent_blk;
2008 BlockDriverState *parent_bs;
2009 BlockDriverState *old_child_bs, *new_child_bs;
2010 BDRVReplaceTestState *parent_s;
2011 BDRVReplaceTestState *old_child_s, *new_child_s;
2012 Coroutine *io_co;
2013 int i;
2015 parent_bs = bdrv_new_open_driver(&bdrv_replace_test, "parent", 0,
2016 &error_abort);
2017 parent_s = parent_bs->opaque;
2019 parent_blk = blk_new(qemu_get_aio_context(),
2020 BLK_PERM_CONSISTENT_READ, BLK_PERM_ALL);
2021 blk_insert_bs(parent_blk, parent_bs, &error_abort);
2023 old_child_bs = bdrv_new_open_driver(&bdrv_replace_test, "old-child", 0,
2024 &error_abort);
2025 new_child_bs = bdrv_new_open_driver(&bdrv_replace_test, "new-child", 0,
2026 &error_abort);
2027 old_child_s = old_child_bs->opaque;
2028 new_child_s = new_child_bs->opaque;
2030 /* So that we can read something */
2031 parent_bs->total_sectors = 1;
2032 old_child_bs->total_sectors = 1;
2033 new_child_bs->total_sectors = 1;
2035 bdrv_ref(old_child_bs);
2036 parent_bs->backing = bdrv_attach_child(parent_bs, old_child_bs, "child",
2037 &child_backing, 0, &error_abort);
2039 for (i = 0; i < old_drain_count; i++) {
2040 bdrv_drained_begin(old_child_bs);
2042 for (i = 0; i < new_drain_count; i++) {
2043 bdrv_drained_begin(new_child_bs);
2046 if (!old_drain_count) {
2048 * Start a read operation that will yield, so it will not
2049 * complete before the node is drained.
2051 parent_s->yield_before_read = true;
2052 io_co = qemu_coroutine_create(test_replace_child_mid_drain_read_co,
2053 parent_blk);
2054 qemu_coroutine_enter(io_co);
2057 /* If we have started a read operation, it should have yielded */
2058 g_assert(!parent_s->has_read);
2060 /* Reset drained status so we can see what bdrv_replace_node() does */
2061 parent_s->was_drained = false;
2062 parent_s->was_undrained = false;
2064 g_assert(parent_bs->quiesce_counter == old_drain_count);
2065 bdrv_replace_node(old_child_bs, new_child_bs, &error_abort);
2066 g_assert(parent_bs->quiesce_counter == new_drain_count);
2068 if (!old_drain_count && !new_drain_count) {
2070 * From undrained to undrained drains and undrains the parent,
2071 * because bdrv_replace_node() contains a drained section for
2072 * @old_child_bs.
2074 g_assert(parent_s->was_drained && parent_s->was_undrained);
2075 } else if (!old_drain_count && new_drain_count) {
2077 * From undrained to drained should drain the parent and keep
2078 * it that way.
2080 g_assert(parent_s->was_drained && !parent_s->was_undrained);
2081 } else if (old_drain_count && !new_drain_count) {
2083 * From drained to undrained should undrain the parent and
2084 * keep it that way.
2086 g_assert(!parent_s->was_drained && parent_s->was_undrained);
2087 } else /* if (old_drain_count && new_drain_count) */ {
2089 * From drained to drained must not undrain the parent at any
2090 * point
2092 g_assert(!parent_s->was_drained && !parent_s->was_undrained);
2095 if (!old_drain_count || !new_drain_count) {
2097 * If !old_drain_count, we have started a read request before
2098 * bdrv_replace_node(). If !new_drain_count, the parent must
2099 * have been undrained at some point, and
2100 * bdrv_replace_test_co_drain_end() starts a read request
2101 * then.
2103 g_assert(parent_s->has_read);
2104 } else {
2106 * If the parent was never undrained, there is no way to start
2107 * a read request.
2109 g_assert(!parent_s->has_read);
2112 /* A drained child must have not received any request */
2113 g_assert(!(old_drain_count && old_child_s->has_read));
2114 g_assert(!(new_drain_count && new_child_s->has_read));
2116 for (i = 0; i < new_drain_count; i++) {
2117 bdrv_drained_end(new_child_bs);
2119 for (i = 0; i < old_drain_count; i++) {
2120 bdrv_drained_end(old_child_bs);
2124 * By now, bdrv_replace_test_co_drain_end() must have been called
2125 * at some point while the new child was attached to the parent.
2127 g_assert(parent_s->has_read);
2128 g_assert(new_child_s->has_read);
2130 blk_unref(parent_blk);
2131 bdrv_unref(parent_bs);
2132 bdrv_unref(old_child_bs);
2133 bdrv_unref(new_child_bs);
2136 static void test_replace_child_mid_drain(void)
2138 int old_drain_count, new_drain_count;
2140 for (old_drain_count = 0; old_drain_count < 2; old_drain_count++) {
2141 for (new_drain_count = 0; new_drain_count < 2; new_drain_count++) {
2142 do_test_replace_child_mid_drain(old_drain_count, new_drain_count);
2147 int main(int argc, char **argv)
2149 int ret;
2151 bdrv_init();
2152 qemu_init_main_loop(&error_abort);
2154 g_test_init(&argc, &argv, NULL);
2155 qemu_event_init(&done_event, false);
2157 g_test_add_func("/bdrv-drain/driver-cb/drain_all", test_drv_cb_drain_all);
2158 g_test_add_func("/bdrv-drain/driver-cb/drain", test_drv_cb_drain);
2159 g_test_add_func("/bdrv-drain/driver-cb/drain_subtree",
2160 test_drv_cb_drain_subtree);
2162 g_test_add_func("/bdrv-drain/driver-cb/co/drain_all",
2163 test_drv_cb_co_drain_all);
2164 g_test_add_func("/bdrv-drain/driver-cb/co/drain", test_drv_cb_co_drain);
2165 g_test_add_func("/bdrv-drain/driver-cb/co/drain_subtree",
2166 test_drv_cb_co_drain_subtree);
2169 g_test_add_func("/bdrv-drain/quiesce/drain_all", test_quiesce_drain_all);
2170 g_test_add_func("/bdrv-drain/quiesce/drain", test_quiesce_drain);
2171 g_test_add_func("/bdrv-drain/quiesce/drain_subtree",
2172 test_quiesce_drain_subtree);
2174 g_test_add_func("/bdrv-drain/quiesce/co/drain_all",
2175 test_quiesce_co_drain_all);
2176 g_test_add_func("/bdrv-drain/quiesce/co/drain", test_quiesce_co_drain);
2177 g_test_add_func("/bdrv-drain/quiesce/co/drain_subtree",
2178 test_quiesce_co_drain_subtree);
2180 g_test_add_func("/bdrv-drain/nested", test_nested);
2181 g_test_add_func("/bdrv-drain/multiparent", test_multiparent);
2183 g_test_add_func("/bdrv-drain/graph-change/drain_subtree",
2184 test_graph_change_drain_subtree);
2185 g_test_add_func("/bdrv-drain/graph-change/drain_all",
2186 test_graph_change_drain_all);
2188 g_test_add_func("/bdrv-drain/iothread/drain_all", test_iothread_drain_all);
2189 g_test_add_func("/bdrv-drain/iothread/drain", test_iothread_drain);
2190 g_test_add_func("/bdrv-drain/iothread/drain_subtree",
2191 test_iothread_drain_subtree);
2193 g_test_add_func("/bdrv-drain/blockjob/drain_all", test_blockjob_drain_all);
2194 g_test_add_func("/bdrv-drain/blockjob/drain", test_blockjob_drain);
2195 g_test_add_func("/bdrv-drain/blockjob/drain_subtree",
2196 test_blockjob_drain_subtree);
2198 g_test_add_func("/bdrv-drain/blockjob/error/drain_all",
2199 test_blockjob_error_drain_all);
2200 g_test_add_func("/bdrv-drain/blockjob/error/drain",
2201 test_blockjob_error_drain);
2202 g_test_add_func("/bdrv-drain/blockjob/error/drain_subtree",
2203 test_blockjob_error_drain_subtree);
2205 g_test_add_func("/bdrv-drain/blockjob/iothread/drain_all",
2206 test_blockjob_iothread_drain_all);
2207 g_test_add_func("/bdrv-drain/blockjob/iothread/drain",
2208 test_blockjob_iothread_drain);
2209 g_test_add_func("/bdrv-drain/blockjob/iothread/drain_subtree",
2210 test_blockjob_iothread_drain_subtree);
2212 g_test_add_func("/bdrv-drain/blockjob/iothread/error/drain_all",
2213 test_blockjob_iothread_error_drain_all);
2214 g_test_add_func("/bdrv-drain/blockjob/iothread/error/drain",
2215 test_blockjob_iothread_error_drain);
2216 g_test_add_func("/bdrv-drain/blockjob/iothread/error/drain_subtree",
2217 test_blockjob_iothread_error_drain_subtree);
2219 g_test_add_func("/bdrv-drain/deletion/drain", test_delete_by_drain);
2220 g_test_add_func("/bdrv-drain/detach/drain_all", test_detach_by_drain_all);
2221 g_test_add_func("/bdrv-drain/detach/drain", test_detach_by_drain);
2222 g_test_add_func("/bdrv-drain/detach/drain_subtree", test_detach_by_drain_subtree);
2223 g_test_add_func("/bdrv-drain/detach/parent_cb", test_detach_by_parent_cb);
2224 g_test_add_func("/bdrv-drain/detach/driver_cb", test_detach_by_driver_cb);
2226 g_test_add_func("/bdrv-drain/attach/drain", test_append_to_drained);
2228 g_test_add_func("/bdrv-drain/set_aio_context", test_set_aio_context);
2230 g_test_add_func("/bdrv-drain/blockjob/commit_by_drained_end",
2231 test_blockjob_commit_by_drained_end);
2233 g_test_add_func("/bdrv-drain/bdrv_drop_intermediate/poll",
2234 test_drop_intermediate_poll);
2236 g_test_add_func("/bdrv-drain/replace_child/mid-drain",
2237 test_replace_child_mid_drain);
2239 ret = g_test_run();
2240 qemu_event_destroy(&done_event);
2241 return ret;