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1 /*
2  * Block node draining tests
3  *
4  * Copyright (c) 2017 Kevin Wolf <[email protected]>
5  *
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:
12  *
13  * The above copyright notice and this permission notice shall be included in
14  * all copies or substantial portions of the Software.
15  *
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.
23  */
24
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 "iothread.h"
31
32 static QemuEvent done_event;
33
34 typedef struct BDRVTestState {
35     int drain_count;
36     AioContext *bh_indirection_ctx;
37     bool sleep_in_drain_begin;
38 } BDRVTestState;
39
40 static void coroutine_fn bdrv_test_co_drain_begin(BlockDriverState *bs)
41 {
42     BDRVTestState *s = bs->opaque;
43     s->drain_count++;
44     if (s->sleep_in_drain_begin) {
45         qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 100000);
46     }
47 }
48
49 static void coroutine_fn bdrv_test_co_drain_end(BlockDriverState *bs)
50 {
51     BDRVTestState *s = bs->opaque;
52     s->drain_count--;
53 }
54
55 static void bdrv_test_close(BlockDriverState *bs)
56 {
57     BDRVTestState *s = bs->opaque;
58     g_assert_cmpint(s->drain_count, >, 0);
59 }
60
61 static void co_reenter_bh(void *opaque)
62 {
63     aio_co_wake(opaque);
64 }
65
66 static int coroutine_fn bdrv_test_co_preadv(BlockDriverState *bs,
67                                             uint64_t offset, uint64_t bytes,
68                                             QEMUIOVector *qiov, int flags)
69 {
70     BDRVTestState *s = bs->opaque;
71
72     /* We want this request to stay until the polling loop in drain waits for
73      * it to complete. We need to sleep a while as bdrv_drain_invoke() comes
74      * first and polls its result, too, but it shouldn't accidentally complete
75      * this request yet. */
76     qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 100000);
77
78     if (s->bh_indirection_ctx) {
79         aio_bh_schedule_oneshot(s->bh_indirection_ctx, co_reenter_bh,
80                                 qemu_coroutine_self());
81         qemu_coroutine_yield();
82     }
83
84     return 0;
85 }
86
87 static void bdrv_test_child_perm(BlockDriverState *bs, BdrvChild *c,
88                                  const BdrvChildRole *role,
89                                  BlockReopenQueue *reopen_queue,
90                                  uint64_t perm, uint64_t shared,
91                                  uint64_t *nperm, uint64_t *nshared)
92 {
93     /* bdrv_format_default_perms() accepts only these two, so disguise
94      * detach_by_driver_cb_role as one of them. */
95     if (role != &child_file && role != &child_backing) {
96         role = &child_file;
97     }
98
99     bdrv_format_default_perms(bs, c, role, reopen_queue, perm, shared,
100                               nperm, nshared);
101 }
102
103 static BlockDriver bdrv_test = {
104     .format_name            = "test",
105     .instance_size          = sizeof(BDRVTestState),
106
107     .bdrv_close             = bdrv_test_close,
108     .bdrv_co_preadv         = bdrv_test_co_preadv,
109
110     .bdrv_co_drain_begin    = bdrv_test_co_drain_begin,
111     .bdrv_co_drain_end      = bdrv_test_co_drain_end,
112
113     .bdrv_child_perm        = bdrv_test_child_perm,
114 };
115
116 static void aio_ret_cb(void *opaque, int ret)
117 {
118     int *aio_ret = opaque;
119     *aio_ret = ret;
120 }
121
122 typedef struct CallInCoroutineData {
123     void (*entry)(void);
124     bool done;
125 } CallInCoroutineData;
126
127 static coroutine_fn void call_in_coroutine_entry(void *opaque)
128 {
129     CallInCoroutineData *data = opaque;
130
131     data->entry();
132     data->done = true;
133 }
134
135 static void call_in_coroutine(void (*entry)(void))
136 {
137     Coroutine *co;
138     CallInCoroutineData data = {
139         .entry  = entry,
140         .done   = false,
141     };
142
143     co = qemu_coroutine_create(call_in_coroutine_entry, &data);
144     qemu_coroutine_enter(co);
145     while (!data.done) {
146         aio_poll(qemu_get_aio_context(), true);
147     }
148 }
149
150 enum drain_type {
151     BDRV_DRAIN_ALL,
152     BDRV_DRAIN,
153     BDRV_SUBTREE_DRAIN,
154     DRAIN_TYPE_MAX,
155 };
156
157 static void do_drain_begin(enum drain_type drain_type, BlockDriverState *bs)
158 {
159     switch (drain_type) {
160     case BDRV_DRAIN_ALL:        bdrv_drain_all_begin(); break;
161     case BDRV_DRAIN:            bdrv_drained_begin(bs); break;
162     case BDRV_SUBTREE_DRAIN:    bdrv_subtree_drained_begin(bs); break;
163     default:                    g_assert_not_reached();
164     }
165 }
166
167 static void do_drain_end(enum drain_type drain_type, BlockDriverState *bs)
168 {
169     switch (drain_type) {
170     case BDRV_DRAIN_ALL:        bdrv_drain_all_end(); break;
171     case BDRV_DRAIN:            bdrv_drained_end(bs); break;
172     case BDRV_SUBTREE_DRAIN:    bdrv_subtree_drained_end(bs); break;
173     default:                    g_assert_not_reached();
174     }
175 }
176
177 static void test_drv_cb_common(enum drain_type drain_type, bool recursive)
178 {
179     BlockBackend *blk;
180     BlockDriverState *bs, *backing;
181     BDRVTestState *s, *backing_s;
182     BlockAIOCB *acb;
183     int aio_ret;
184
185     QEMUIOVector qiov;
186     struct iovec iov = {
187         .iov_base = NULL,
188         .iov_len = 0,
189     };
190     qemu_iovec_init_external(&qiov, &iov, 1);
191
192     blk = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
193     bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
194                               &error_abort);
195     s = bs->opaque;
196     blk_insert_bs(blk, bs, &error_abort);
197
198     backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
199     backing_s = backing->opaque;
200     bdrv_set_backing_hd(bs, backing, &error_abort);
201
202     /* Simple bdrv_drain_all_begin/end pair, check that CBs are called */
203     g_assert_cmpint(s->drain_count, ==, 0);
204     g_assert_cmpint(backing_s->drain_count, ==, 0);
205
206     do_drain_begin(drain_type, bs);
207
208     g_assert_cmpint(s->drain_count, ==, 1);
209     g_assert_cmpint(backing_s->drain_count, ==, !!recursive);
210
211     do_drain_end(drain_type, bs);
212
213     g_assert_cmpint(s->drain_count, ==, 0);
214     g_assert_cmpint(backing_s->drain_count, ==, 0);
215
216     /* Now do the same while a request is pending */
217     aio_ret = -EINPROGRESS;
218     acb = blk_aio_preadv(blk, 0, &qiov, 0, aio_ret_cb, &aio_ret);
219     g_assert(acb != NULL);
220     g_assert_cmpint(aio_ret, ==, -EINPROGRESS);
221
222     g_assert_cmpint(s->drain_count, ==, 0);
223     g_assert_cmpint(backing_s->drain_count, ==, 0);
224
225     do_drain_begin(drain_type, bs);
226
227     g_assert_cmpint(aio_ret, ==, 0);
228     g_assert_cmpint(s->drain_count, ==, 1);
229     g_assert_cmpint(backing_s->drain_count, ==, !!recursive);
230
231     do_drain_end(drain_type, bs);
232
233     g_assert_cmpint(s->drain_count, ==, 0);
234     g_assert_cmpint(backing_s->drain_count, ==, 0);
235
236     bdrv_unref(backing);
237     bdrv_unref(bs);
238     blk_unref(blk);
239 }
240
241 static void test_drv_cb_drain_all(void)
242 {
243     test_drv_cb_common(BDRV_DRAIN_ALL, true);
244 }
245
246 static void test_drv_cb_drain(void)
247 {
248     test_drv_cb_common(BDRV_DRAIN, false);
249 }
250
251 static void test_drv_cb_drain_subtree(void)
252 {
253     test_drv_cb_common(BDRV_SUBTREE_DRAIN, true);
254 }
255
256 static void test_drv_cb_co_drain_all(void)
257 {
258     call_in_coroutine(test_drv_cb_drain_all);
259 }
260
261 static void test_drv_cb_co_drain(void)
262 {
263     call_in_coroutine(test_drv_cb_drain);
264 }
265
266 static void test_drv_cb_co_drain_subtree(void)
267 {
268     call_in_coroutine(test_drv_cb_drain_subtree);
269 }
270
271 static void test_quiesce_common(enum drain_type drain_type, bool recursive)
272 {
273     BlockBackend *blk;
274     BlockDriverState *bs, *backing;
275
276     blk = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
277     bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
278                               &error_abort);
279     blk_insert_bs(blk, bs, &error_abort);
280
281     backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
282     bdrv_set_backing_hd(bs, backing, &error_abort);
283
284     g_assert_cmpint(bs->quiesce_counter, ==, 0);
285     g_assert_cmpint(backing->quiesce_counter, ==, 0);
286
287     do_drain_begin(drain_type, bs);
288
289     g_assert_cmpint(bs->quiesce_counter, ==, 1);
290     g_assert_cmpint(backing->quiesce_counter, ==, !!recursive);
291
292     do_drain_end(drain_type, bs);
293
294     g_assert_cmpint(bs->quiesce_counter, ==, 0);
295     g_assert_cmpint(backing->quiesce_counter, ==, 0);
296
297     bdrv_unref(backing);
298     bdrv_unref(bs);
299     blk_unref(blk);
300 }
301
302 static void test_quiesce_drain_all(void)
303 {
304     test_quiesce_common(BDRV_DRAIN_ALL, true);
305 }
306
307 static void test_quiesce_drain(void)
308 {
309     test_quiesce_common(BDRV_DRAIN, false);
310 }
311
312 static void test_quiesce_drain_subtree(void)
313 {
314     test_quiesce_common(BDRV_SUBTREE_DRAIN, true);
315 }
316
317 static void test_quiesce_co_drain_all(void)
318 {
319     call_in_coroutine(test_quiesce_drain_all);
320 }
321
322 static void test_quiesce_co_drain(void)
323 {
324     call_in_coroutine(test_quiesce_drain);
325 }
326
327 static void test_quiesce_co_drain_subtree(void)
328 {
329     call_in_coroutine(test_quiesce_drain_subtree);
330 }
331
332 static void test_nested(void)
333 {
334     BlockBackend *blk;
335     BlockDriverState *bs, *backing;
336     BDRVTestState *s, *backing_s;
337     enum drain_type outer, inner;
338
339     blk = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
340     bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
341                               &error_abort);
342     s = bs->opaque;
343     blk_insert_bs(blk, bs, &error_abort);
344
345     backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
346     backing_s = backing->opaque;
347     bdrv_set_backing_hd(bs, backing, &error_abort);
348
349     for (outer = 0; outer < DRAIN_TYPE_MAX; outer++) {
350         for (inner = 0; inner < DRAIN_TYPE_MAX; inner++) {
351             int backing_quiesce = (outer != BDRV_DRAIN) +
352                                   (inner != BDRV_DRAIN);
353
354             g_assert_cmpint(bs->quiesce_counter, ==, 0);
355             g_assert_cmpint(backing->quiesce_counter, ==, 0);
356             g_assert_cmpint(s->drain_count, ==, 0);
357             g_assert_cmpint(backing_s->drain_count, ==, 0);
358
359             do_drain_begin(outer, bs);
360             do_drain_begin(inner, bs);
361
362             g_assert_cmpint(bs->quiesce_counter, ==, 2);
363             g_assert_cmpint(backing->quiesce_counter, ==, backing_quiesce);
364             g_assert_cmpint(s->drain_count, ==, 2);
365             g_assert_cmpint(backing_s->drain_count, ==, backing_quiesce);
366
367             do_drain_end(inner, bs);
368             do_drain_end(outer, bs);
369
370             g_assert_cmpint(bs->quiesce_counter, ==, 0);
371             g_assert_cmpint(backing->quiesce_counter, ==, 0);
372             g_assert_cmpint(s->drain_count, ==, 0);
373             g_assert_cmpint(backing_s->drain_count, ==, 0);
374         }
375     }
376
377     bdrv_unref(backing);
378     bdrv_unref(bs);
379     blk_unref(blk);
380 }
381
382 static void test_multiparent(void)
383 {
384     BlockBackend *blk_a, *blk_b;
385     BlockDriverState *bs_a, *bs_b, *backing;
386     BDRVTestState *a_s, *b_s, *backing_s;
387
388     blk_a = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
389     bs_a = bdrv_new_open_driver(&bdrv_test, "test-node-a", BDRV_O_RDWR,
390                                 &error_abort);
391     a_s = bs_a->opaque;
392     blk_insert_bs(blk_a, bs_a, &error_abort);
393
394     blk_b = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
395     bs_b = bdrv_new_open_driver(&bdrv_test, "test-node-b", BDRV_O_RDWR,
396                                 &error_abort);
397     b_s = bs_b->opaque;
398     blk_insert_bs(blk_b, bs_b, &error_abort);
399
400     backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
401     backing_s = backing->opaque;
402     bdrv_set_backing_hd(bs_a, backing, &error_abort);
403     bdrv_set_backing_hd(bs_b, backing, &error_abort);
404
405     g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
406     g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
407     g_assert_cmpint(backing->quiesce_counter, ==, 0);
408     g_assert_cmpint(a_s->drain_count, ==, 0);
409     g_assert_cmpint(b_s->drain_count, ==, 0);
410     g_assert_cmpint(backing_s->drain_count, ==, 0);
411
412     do_drain_begin(BDRV_SUBTREE_DRAIN, bs_a);
413
414     g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
415     g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
416     g_assert_cmpint(backing->quiesce_counter, ==, 1);
417     g_assert_cmpint(a_s->drain_count, ==, 1);
418     g_assert_cmpint(b_s->drain_count, ==, 1);
419     g_assert_cmpint(backing_s->drain_count, ==, 1);
420
421     do_drain_begin(BDRV_SUBTREE_DRAIN, bs_b);
422
423     g_assert_cmpint(bs_a->quiesce_counter, ==, 2);
424     g_assert_cmpint(bs_b->quiesce_counter, ==, 2);
425     g_assert_cmpint(backing->quiesce_counter, ==, 2);
426     g_assert_cmpint(a_s->drain_count, ==, 2);
427     g_assert_cmpint(b_s->drain_count, ==, 2);
428     g_assert_cmpint(backing_s->drain_count, ==, 2);
429
430     do_drain_end(BDRV_SUBTREE_DRAIN, bs_b);
431
432     g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
433     g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
434     g_assert_cmpint(backing->quiesce_counter, ==, 1);
435     g_assert_cmpint(a_s->drain_count, ==, 1);
436     g_assert_cmpint(b_s->drain_count, ==, 1);
437     g_assert_cmpint(backing_s->drain_count, ==, 1);
438
439     do_drain_end(BDRV_SUBTREE_DRAIN, bs_a);
440
441     g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
442     g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
443     g_assert_cmpint(backing->quiesce_counter, ==, 0);
444     g_assert_cmpint(a_s->drain_count, ==, 0);
445     g_assert_cmpint(b_s->drain_count, ==, 0);
446     g_assert_cmpint(backing_s->drain_count, ==, 0);
447
448     bdrv_unref(backing);
449     bdrv_unref(bs_a);
450     bdrv_unref(bs_b);
451     blk_unref(blk_a);
452     blk_unref(blk_b);
453 }
454
455 static void test_graph_change_drain_subtree(void)
456 {
457     BlockBackend *blk_a, *blk_b;
458     BlockDriverState *bs_a, *bs_b, *backing;
459     BDRVTestState *a_s, *b_s, *backing_s;
460
461     blk_a = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
462     bs_a = bdrv_new_open_driver(&bdrv_test, "test-node-a", BDRV_O_RDWR,
463                                 &error_abort);
464     a_s = bs_a->opaque;
465     blk_insert_bs(blk_a, bs_a, &error_abort);
466
467     blk_b = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
468     bs_b = bdrv_new_open_driver(&bdrv_test, "test-node-b", BDRV_O_RDWR,
469                                 &error_abort);
470     b_s = bs_b->opaque;
471     blk_insert_bs(blk_b, bs_b, &error_abort);
472
473     backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort);
474     backing_s = backing->opaque;
475     bdrv_set_backing_hd(bs_a, backing, &error_abort);
476
477     g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
478     g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
479     g_assert_cmpint(backing->quiesce_counter, ==, 0);
480     g_assert_cmpint(a_s->drain_count, ==, 0);
481     g_assert_cmpint(b_s->drain_count, ==, 0);
482     g_assert_cmpint(backing_s->drain_count, ==, 0);
483
484     do_drain_begin(BDRV_SUBTREE_DRAIN, bs_a);
485     do_drain_begin(BDRV_SUBTREE_DRAIN, bs_a);
486     do_drain_begin(BDRV_SUBTREE_DRAIN, bs_a);
487     do_drain_begin(BDRV_SUBTREE_DRAIN, bs_b);
488     do_drain_begin(BDRV_SUBTREE_DRAIN, bs_b);
489
490     bdrv_set_backing_hd(bs_b, backing, &error_abort);
491     g_assert_cmpint(bs_a->quiesce_counter, ==, 5);
492     g_assert_cmpint(bs_b->quiesce_counter, ==, 5);
493     g_assert_cmpint(backing->quiesce_counter, ==, 5);
494     g_assert_cmpint(a_s->drain_count, ==, 5);
495     g_assert_cmpint(b_s->drain_count, ==, 5);
496     g_assert_cmpint(backing_s->drain_count, ==, 5);
497
498     bdrv_set_backing_hd(bs_b, NULL, &error_abort);
499     g_assert_cmpint(bs_a->quiesce_counter, ==, 3);
500     g_assert_cmpint(bs_b->quiesce_counter, ==, 2);
501     g_assert_cmpint(backing->quiesce_counter, ==, 3);
502     g_assert_cmpint(a_s->drain_count, ==, 3);
503     g_assert_cmpint(b_s->drain_count, ==, 2);
504     g_assert_cmpint(backing_s->drain_count, ==, 3);
505
506     bdrv_set_backing_hd(bs_b, backing, &error_abort);
507     g_assert_cmpint(bs_a->quiesce_counter, ==, 5);
508     g_assert_cmpint(bs_b->quiesce_counter, ==, 5);
509     g_assert_cmpint(backing->quiesce_counter, ==, 5);
510     g_assert_cmpint(a_s->drain_count, ==, 5);
511     g_assert_cmpint(b_s->drain_count, ==, 5);
512     g_assert_cmpint(backing_s->drain_count, ==, 5);
513
514     do_drain_end(BDRV_SUBTREE_DRAIN, bs_b);
515     do_drain_end(BDRV_SUBTREE_DRAIN, bs_b);
516     do_drain_end(BDRV_SUBTREE_DRAIN, bs_a);
517     do_drain_end(BDRV_SUBTREE_DRAIN, bs_a);
518     do_drain_end(BDRV_SUBTREE_DRAIN, bs_a);
519
520     g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
521     g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
522     g_assert_cmpint(backing->quiesce_counter, ==, 0);
523     g_assert_cmpint(a_s->drain_count, ==, 0);
524     g_assert_cmpint(b_s->drain_count, ==, 0);
525     g_assert_cmpint(backing_s->drain_count, ==, 0);
526
527     bdrv_unref(backing);
528     bdrv_unref(bs_a);
529     bdrv_unref(bs_b);
530     blk_unref(blk_a);
531     blk_unref(blk_b);
532 }
533
534 static void test_graph_change_drain_all(void)
535 {
536     BlockBackend *blk_a, *blk_b;
537     BlockDriverState *bs_a, *bs_b;
538     BDRVTestState *a_s, *b_s;
539
540     /* Create node A with a BlockBackend */
541     blk_a = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
542     bs_a = bdrv_new_open_driver(&bdrv_test, "test-node-a", BDRV_O_RDWR,
543                                 &error_abort);
544     a_s = bs_a->opaque;
545     blk_insert_bs(blk_a, bs_a, &error_abort);
546
547     g_assert_cmpint(bs_a->quiesce_counter, ==, 0);
548     g_assert_cmpint(a_s->drain_count, ==, 0);
549
550     /* Call bdrv_drain_all_begin() */
551     bdrv_drain_all_begin();
552
553     g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
554     g_assert_cmpint(a_s->drain_count, ==, 1);
555
556     /* Create node B with a BlockBackend */
557     blk_b = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
558     bs_b = bdrv_new_open_driver(&bdrv_test, "test-node-b", BDRV_O_RDWR,
559                                 &error_abort);
560     b_s = bs_b->opaque;
561     blk_insert_bs(blk_b, bs_b, &error_abort);
562
563     g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
564     g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
565     g_assert_cmpint(a_s->drain_count, ==, 1);
566     g_assert_cmpint(b_s->drain_count, ==, 1);
567
568     /* Unref and finally delete node A */
569     blk_unref(blk_a);
570
571     g_assert_cmpint(bs_a->quiesce_counter, ==, 1);
572     g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
573     g_assert_cmpint(a_s->drain_count, ==, 1);
574     g_assert_cmpint(b_s->drain_count, ==, 1);
575
576     bdrv_unref(bs_a);
577
578     g_assert_cmpint(bs_b->quiesce_counter, ==, 1);
579     g_assert_cmpint(b_s->drain_count, ==, 1);
580
581     /* End the drained section */
582     bdrv_drain_all_end();
583
584     g_assert_cmpint(bs_b->quiesce_counter, ==, 0);
585     g_assert_cmpint(b_s->drain_count, ==, 0);
586
587     bdrv_unref(bs_b);
588     blk_unref(blk_b);
589 }
590
591 struct test_iothread_data {
592     BlockDriverState *bs;
593     enum drain_type drain_type;
594     int *aio_ret;
595 };
596
597 static void test_iothread_drain_entry(void *opaque)
598 {
599     struct test_iothread_data *data = opaque;
600
601     aio_context_acquire(bdrv_get_aio_context(data->bs));
602     do_drain_begin(data->drain_type, data->bs);
603     g_assert_cmpint(*data->aio_ret, ==, 0);
604     do_drain_end(data->drain_type, data->bs);
605     aio_context_release(bdrv_get_aio_context(data->bs));
606
607     qemu_event_set(&done_event);
608 }
609
610 static void test_iothread_aio_cb(void *opaque, int ret)
611 {
612     int *aio_ret = opaque;
613     *aio_ret = ret;
614     qemu_event_set(&done_event);
615 }
616
617 /*
618  * Starts an AIO request on a BDS that runs in the AioContext of iothread 1.
619  * The request involves a BH on iothread 2 before it can complete.
620  *
621  * @drain_thread = 0 means that do_drain_begin/end are called from the main
622  * thread, @drain_thread = 1 means that they are called from iothread 1. Drain
623  * for this BDS cannot be called from iothread 2 because only the main thread
624  * may do cross-AioContext polling.
625  */
626 static void test_iothread_common(enum drain_type drain_type, int drain_thread)
627 {
628     BlockBackend *blk;
629     BlockDriverState *bs;
630     BDRVTestState *s;
631     BlockAIOCB *acb;
632     int aio_ret;
633     struct test_iothread_data data;
634
635     IOThread *a = iothread_new();
636     IOThread *b = iothread_new();
637     AioContext *ctx_a = iothread_get_aio_context(a);
638     AioContext *ctx_b = iothread_get_aio_context(b);
639
640     QEMUIOVector qiov;
641     struct iovec iov = {
642         .iov_base = NULL,
643         .iov_len = 0,
644     };
645     qemu_iovec_init_external(&qiov, &iov, 1);
646
647     /* bdrv_drain_all() may only be called from the main loop thread */
648     if (drain_type == BDRV_DRAIN_ALL && drain_thread != 0) {
649         goto out;
650     }
651
652     blk = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
653     bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR,
654                               &error_abort);
655     s = bs->opaque;
656     blk_insert_bs(blk, bs, &error_abort);
657
658     blk_set_aio_context(blk, ctx_a);
659     aio_context_acquire(ctx_a);
660
661     s->bh_indirection_ctx = ctx_b;
662
663     aio_ret = -EINPROGRESS;
664     if (drain_thread == 0) {
665         acb = blk_aio_preadv(blk, 0, &qiov, 0, test_iothread_aio_cb, &aio_ret);
666     } else {
667         acb = blk_aio_preadv(blk, 0, &qiov, 0, aio_ret_cb, &aio_ret);
668     }
669     g_assert(acb != NULL);
670     g_assert_cmpint(aio_ret, ==, -EINPROGRESS);
671
672     aio_context_release(ctx_a);
673
674     data = (struct test_iothread_data) {
675         .bs         = bs,
676         .drain_type = drain_type,
677         .aio_ret    = &aio_ret,
678     };
679
680     switch (drain_thread) {
681     case 0:
682         if (drain_type != BDRV_DRAIN_ALL) {
683             aio_context_acquire(ctx_a);
684         }
685
686         /* The request is running on the IOThread a. Draining its block device
687          * will make sure that it has completed as far as the BDS is concerned,
688          * but the drain in this thread can continue immediately after
689          * bdrv_dec_in_flight() and aio_ret might be assigned only slightly
690          * later. */
691         qemu_event_reset(&done_event);
692         do_drain_begin(drain_type, bs);
693         g_assert_cmpint(bs->in_flight, ==, 0);
694
695         if (drain_type != BDRV_DRAIN_ALL) {
696             aio_context_release(ctx_a);
697         }
698         qemu_event_wait(&done_event);
699         if (drain_type != BDRV_DRAIN_ALL) {
700             aio_context_acquire(ctx_a);
701         }
702
703         g_assert_cmpint(aio_ret, ==, 0);
704         do_drain_end(drain_type, bs);
705
706         if (drain_type != BDRV_DRAIN_ALL) {
707             aio_context_release(ctx_a);
708         }
709         break;
710     case 1:
711         qemu_event_reset(&done_event);
712         aio_bh_schedule_oneshot(ctx_a, test_iothread_drain_entry, &data);
713         qemu_event_wait(&done_event);
714         break;
715     default:
716         g_assert_not_reached();
717     }
718
719     aio_context_acquire(ctx_a);
720     blk_set_aio_context(blk, qemu_get_aio_context());
721     aio_context_release(ctx_a);
722
723     bdrv_unref(bs);
724     blk_unref(blk);
725
726 out:
727     iothread_join(a);
728     iothread_join(b);
729 }
730
731 static void test_iothread_drain_all(void)
732 {
733     test_iothread_common(BDRV_DRAIN_ALL, 0);
734     test_iothread_common(BDRV_DRAIN_ALL, 1);
735 }
736
737 static void test_iothread_drain(void)
738 {
739     test_iothread_common(BDRV_DRAIN, 0);
740     test_iothread_common(BDRV_DRAIN, 1);
741 }
742
743 static void test_iothread_drain_subtree(void)
744 {
745     test_iothread_common(BDRV_SUBTREE_DRAIN, 0);
746     test_iothread_common(BDRV_SUBTREE_DRAIN, 1);
747 }
748
749
750 typedef struct TestBlockJob {
751     BlockJob common;
752     bool should_complete;
753 } TestBlockJob;
754
755 static int coroutine_fn test_job_run(Job *job, Error **errp)
756 {
757     TestBlockJob *s = container_of(job, TestBlockJob, common.job);
758
759     job_transition_to_ready(&s->common.job);
760     while (!s->should_complete) {
761         /* Avoid block_job_sleep_ns() because it marks the job as !busy. We
762          * want to emulate some actual activity (probably some I/O) here so
763          * that drain has to wait for this acitivity to stop. */
764         qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 100000);
765         job_pause_point(&s->common.job);
766     }
767
768     return 0;
769 }
770
771 static void test_job_complete(Job *job, Error **errp)
772 {
773     TestBlockJob *s = container_of(job, TestBlockJob, common.job);
774     s->should_complete = true;
775 }
776
777 BlockJobDriver test_job_driver = {
778     .job_driver = {
779         .instance_size  = sizeof(TestBlockJob),
780         .free           = block_job_free,
781         .user_resume    = block_job_user_resume,
782         .drain          = block_job_drain,
783         .run            = test_job_run,
784         .complete       = test_job_complete,
785     },
786 };
787
788 static void test_blockjob_common(enum drain_type drain_type)
789 {
790     BlockBackend *blk_src, *blk_target;
791     BlockDriverState *src, *target;
792     BlockJob *job;
793     int ret;
794
795     src = bdrv_new_open_driver(&bdrv_test, "source", BDRV_O_RDWR,
796                                &error_abort);
797     blk_src = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
798     blk_insert_bs(blk_src, src, &error_abort);
799
800     target = bdrv_new_open_driver(&bdrv_test, "target", BDRV_O_RDWR,
801                                   &error_abort);
802     blk_target = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
803     blk_insert_bs(blk_target, target, &error_abort);
804
805     job = block_job_create("job0", &test_job_driver, NULL, src, 0, BLK_PERM_ALL,
806                            0, 0, NULL, NULL, &error_abort);
807     block_job_add_bdrv(job, "target", target, 0, BLK_PERM_ALL, &error_abort);
808     job_start(&job->job);
809
810     g_assert_cmpint(job->job.pause_count, ==, 0);
811     g_assert_false(job->job.paused);
812     g_assert_true(job->job.busy); /* We're in job_sleep_ns() */
813
814     do_drain_begin(drain_type, src);
815
816     if (drain_type == BDRV_DRAIN_ALL) {
817         /* bdrv_drain_all() drains both src and target */
818         g_assert_cmpint(job->job.pause_count, ==, 2);
819     } else {
820         g_assert_cmpint(job->job.pause_count, ==, 1);
821     }
822     g_assert_true(job->job.paused);
823     g_assert_false(job->job.busy); /* The job is paused */
824
825     do_drain_end(drain_type, src);
826
827     g_assert_cmpint(job->job.pause_count, ==, 0);
828     g_assert_false(job->job.paused);
829     g_assert_true(job->job.busy); /* We're in qemu_co_sleep_ns() */
830
831     do_drain_begin(drain_type, target);
832
833     if (drain_type == BDRV_DRAIN_ALL) {
834         /* bdrv_drain_all() drains both src and target */
835         g_assert_cmpint(job->job.pause_count, ==, 2);
836     } else {
837         g_assert_cmpint(job->job.pause_count, ==, 1);
838     }
839     g_assert_true(job->job.paused);
840     g_assert_false(job->job.busy); /* The job is paused */
841
842     do_drain_end(drain_type, target);
843
844     g_assert_cmpint(job->job.pause_count, ==, 0);
845     g_assert_false(job->job.paused);
846     g_assert_true(job->job.busy); /* We're in job_sleep_ns() */
847
848     ret = job_complete_sync(&job->job, &error_abort);
849     g_assert_cmpint(ret, ==, 0);
850
851     blk_unref(blk_src);
852     blk_unref(blk_target);
853     bdrv_unref(src);
854     bdrv_unref(target);
855 }
856
857 static void test_blockjob_drain_all(void)
858 {
859     test_blockjob_common(BDRV_DRAIN_ALL);
860 }
861
862 static void test_blockjob_drain(void)
863 {
864     test_blockjob_common(BDRV_DRAIN);
865 }
866
867 static void test_blockjob_drain_subtree(void)
868 {
869     test_blockjob_common(BDRV_SUBTREE_DRAIN);
870 }
871
872
873 typedef struct BDRVTestTopState {
874     BdrvChild *wait_child;
875 } BDRVTestTopState;
876
877 static void bdrv_test_top_close(BlockDriverState *bs)
878 {
879     BdrvChild *c, *next_c;
880     QLIST_FOREACH_SAFE(c, &bs->children, next, next_c) {
881         bdrv_unref_child(bs, c);
882     }
883 }
884
885 static int coroutine_fn bdrv_test_top_co_preadv(BlockDriverState *bs,
886                                                 uint64_t offset, uint64_t bytes,
887                                                 QEMUIOVector *qiov, int flags)
888 {
889     BDRVTestTopState *tts = bs->opaque;
890     return bdrv_co_preadv(tts->wait_child, offset, bytes, qiov, flags);
891 }
892
893 static BlockDriver bdrv_test_top_driver = {
894     .format_name            = "test_top_driver",
895     .instance_size          = sizeof(BDRVTestTopState),
896
897     .bdrv_close             = bdrv_test_top_close,
898     .bdrv_co_preadv         = bdrv_test_top_co_preadv,
899
900     .bdrv_child_perm        = bdrv_format_default_perms,
901 };
902
903 typedef struct TestCoDeleteByDrainData {
904     BlockBackend *blk;
905     bool detach_instead_of_delete;
906     bool done;
907 } TestCoDeleteByDrainData;
908
909 static void coroutine_fn test_co_delete_by_drain(void *opaque)
910 {
911     TestCoDeleteByDrainData *dbdd = opaque;
912     BlockBackend *blk = dbdd->blk;
913     BlockDriverState *bs = blk_bs(blk);
914     BDRVTestTopState *tts = bs->opaque;
915     void *buffer = g_malloc(65536);
916     QEMUIOVector qiov;
917     struct iovec iov = {
918         .iov_base = buffer,
919         .iov_len  = 65536,
920     };
921
922     qemu_iovec_init_external(&qiov, &iov, 1);
923
924     /* Pretend some internal write operation from parent to child.
925      * Important: We have to read from the child, not from the parent!
926      * Draining works by first propagating it all up the tree to the
927      * root and then waiting for drainage from root to the leaves
928      * (protocol nodes).  If we have a request waiting on the root,
929      * everything will be drained before we go back down the tree, but
930      * we do not want that.  We want to be in the middle of draining
931      * when this following requests returns. */
932     bdrv_co_preadv(tts->wait_child, 0, 65536, &qiov, 0);
933
934     g_assert_cmpint(bs->refcnt, ==, 1);
935
936     if (!dbdd->detach_instead_of_delete) {
937         blk_unref(blk);
938     } else {
939         BdrvChild *c, *next_c;
940         QLIST_FOREACH_SAFE(c, &bs->children, next, next_c) {
941             bdrv_unref_child(bs, c);
942         }
943     }
944
945     dbdd->done = true;
946     g_free(buffer);
947 }
948
949 /**
950  * Test what happens when some BDS has some children, you drain one of
951  * them and this results in the BDS being deleted.
952  *
953  * If @detach_instead_of_delete is set, the BDS is not going to be
954  * deleted but will only detach all of its children.
955  */
956 static void do_test_delete_by_drain(bool detach_instead_of_delete,
957                                     enum drain_type drain_type)
958 {
959     BlockBackend *blk;
960     BlockDriverState *bs, *child_bs, *null_bs;
961     BDRVTestTopState *tts;
962     TestCoDeleteByDrainData dbdd;
963     Coroutine *co;
964
965     bs = bdrv_new_open_driver(&bdrv_test_top_driver, "top", BDRV_O_RDWR,
966                               &error_abort);
967     bs->total_sectors = 65536 >> BDRV_SECTOR_BITS;
968     tts = bs->opaque;
969
970     null_bs = bdrv_open("null-co://", NULL, NULL, BDRV_O_RDWR | BDRV_O_PROTOCOL,
971                         &error_abort);
972     bdrv_attach_child(bs, null_bs, "null-child", &child_file, &error_abort);
973
974     /* This child will be the one to pass to requests through to, and
975      * it will stall until a drain occurs */
976     child_bs = bdrv_new_open_driver(&bdrv_test, "child", BDRV_O_RDWR,
977                                     &error_abort);
978     child_bs->total_sectors = 65536 >> BDRV_SECTOR_BITS;
979     /* Takes our reference to child_bs */
980     tts->wait_child = bdrv_attach_child(bs, child_bs, "wait-child", &child_file,
981                                         &error_abort);
982
983     /* This child is just there to be deleted
984      * (for detach_instead_of_delete == true) */
985     null_bs = bdrv_open("null-co://", NULL, NULL, BDRV_O_RDWR | BDRV_O_PROTOCOL,
986                         &error_abort);
987     bdrv_attach_child(bs, null_bs, "null-child", &child_file, &error_abort);
988
989     blk = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
990     blk_insert_bs(blk, bs, &error_abort);
991
992     /* Referenced by blk now */
993     bdrv_unref(bs);
994
995     g_assert_cmpint(bs->refcnt, ==, 1);
996     g_assert_cmpint(child_bs->refcnt, ==, 1);
997     g_assert_cmpint(null_bs->refcnt, ==, 1);
998
999
1000     dbdd = (TestCoDeleteByDrainData){
1001         .blk = blk,
1002         .detach_instead_of_delete = detach_instead_of_delete,
1003         .done = false,
1004     };
1005     co = qemu_coroutine_create(test_co_delete_by_drain, &dbdd);
1006     qemu_coroutine_enter(co);
1007
1008     /* Drain the child while the read operation is still pending.
1009      * This should result in the operation finishing and
1010      * test_co_delete_by_drain() resuming.  Thus, @bs will be deleted
1011      * and the coroutine will exit while this drain operation is still
1012      * in progress. */
1013     switch (drain_type) {
1014     case BDRV_DRAIN:
1015         bdrv_ref(child_bs);
1016         bdrv_drain(child_bs);
1017         bdrv_unref(child_bs);
1018         break;
1019     case BDRV_SUBTREE_DRAIN:
1020         /* Would have to ref/unref bs here for !detach_instead_of_delete, but
1021          * then the whole test becomes pointless because the graph changes
1022          * don't occur during the drain any more. */
1023         assert(detach_instead_of_delete);
1024         bdrv_subtree_drained_begin(bs);
1025         bdrv_subtree_drained_end(bs);
1026         break;
1027     case BDRV_DRAIN_ALL:
1028         bdrv_drain_all_begin();
1029         bdrv_drain_all_end();
1030         break;
1031     default:
1032         g_assert_not_reached();
1033     }
1034
1035     while (!dbdd.done) {
1036         aio_poll(qemu_get_aio_context(), true);
1037     }
1038
1039     if (detach_instead_of_delete) {
1040         /* Here, the reference has not passed over to the coroutine,
1041          * so we have to delete the BB ourselves */
1042         blk_unref(blk);
1043     }
1044 }
1045
1046 static void test_delete_by_drain(void)
1047 {
1048     do_test_delete_by_drain(false, BDRV_DRAIN);
1049 }
1050
1051 static void test_detach_by_drain_all(void)
1052 {
1053     do_test_delete_by_drain(true, BDRV_DRAIN_ALL);
1054 }
1055
1056 static void test_detach_by_drain(void)
1057 {
1058     do_test_delete_by_drain(true, BDRV_DRAIN);
1059 }
1060
1061 static void test_detach_by_drain_subtree(void)
1062 {
1063     do_test_delete_by_drain(true, BDRV_SUBTREE_DRAIN);
1064 }
1065
1066
1067 struct detach_by_parent_data {
1068     BlockDriverState *parent_b;
1069     BdrvChild *child_b;
1070     BlockDriverState *c;
1071     BdrvChild *child_c;
1072     bool by_parent_cb;
1073 };
1074 static struct detach_by_parent_data detach_by_parent_data;
1075
1076 static void detach_indirect_bh(void *opaque)
1077 {
1078     struct detach_by_parent_data *data = opaque;
1079
1080     bdrv_unref_child(data->parent_b, data->child_b);
1081
1082     bdrv_ref(data->c);
1083     data->child_c = bdrv_attach_child(data->parent_b, data->c, "PB-C",
1084                                       &child_file, &error_abort);
1085 }
1086
1087 static void detach_by_parent_aio_cb(void *opaque, int ret)
1088 {
1089     struct detach_by_parent_data *data = &detach_by_parent_data;
1090
1091     g_assert_cmpint(ret, ==, 0);
1092     if (data->by_parent_cb) {
1093         detach_indirect_bh(data);
1094     }
1095 }
1096
1097 static void detach_by_driver_cb_drained_begin(BdrvChild *child)
1098 {
1099     aio_bh_schedule_oneshot(qemu_get_current_aio_context(),
1100                             detach_indirect_bh, &detach_by_parent_data);
1101     child_file.drained_begin(child);
1102 }
1103
1104 static BdrvChildRole detach_by_driver_cb_role;
1105
1106 /*
1107  * Initial graph:
1108  *
1109  * PA     PB
1110  *    \ /   \
1111  *     A     B     C
1112  *
1113  * by_parent_cb == true:  Test that parent callbacks don't poll
1114  *
1115  *     PA has a pending write request whose callback changes the child nodes of
1116  *     PB: It removes B and adds C instead. The subtree of PB is drained, which
1117  *     will indirectly drain the write request, too.
1118  *
1119  * by_parent_cb == false: Test that bdrv_drain_invoke() doesn't poll
1120  *
1121  *     PA's BdrvChildRole has a .drained_begin callback that schedules a BH
1122  *     that does the same graph change. If bdrv_drain_invoke() calls it, the
1123  *     state is messed up, but if it is only polled in the single
1124  *     BDRV_POLL_WHILE() at the end of the drain, this should work fine.
1125  */
1126 static void test_detach_indirect(bool by_parent_cb)
1127 {
1128     BlockBackend *blk;
1129     BlockDriverState *parent_a, *parent_b, *a, *b, *c;
1130     BdrvChild *child_a, *child_b;
1131     BlockAIOCB *acb;
1132
1133     QEMUIOVector qiov;
1134     struct iovec iov = {
1135         .iov_base = NULL,
1136         .iov_len = 0,
1137     };
1138     qemu_iovec_init_external(&qiov, &iov, 1);
1139
1140     if (!by_parent_cb) {
1141         detach_by_driver_cb_role = child_file;
1142         detach_by_driver_cb_role.drained_begin =
1143             detach_by_driver_cb_drained_begin;
1144     }
1145
1146     /* Create all involved nodes */
1147     parent_a = bdrv_new_open_driver(&bdrv_test, "parent-a", BDRV_O_RDWR,
1148                                     &error_abort);
1149     parent_b = bdrv_new_open_driver(&bdrv_test, "parent-b", 0,
1150                                     &error_abort);
1151
1152     a = bdrv_new_open_driver(&bdrv_test, "a", BDRV_O_RDWR, &error_abort);
1153     b = bdrv_new_open_driver(&bdrv_test, "b", BDRV_O_RDWR, &error_abort);
1154     c = bdrv_new_open_driver(&bdrv_test, "c", BDRV_O_RDWR, &error_abort);
1155
1156     /* blk is a BB for parent-a */
1157     blk = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
1158     blk_insert_bs(blk, parent_a, &error_abort);
1159     bdrv_unref(parent_a);
1160
1161     /* If we want to get bdrv_drain_invoke() to call aio_poll(), the driver
1162      * callback must not return immediately. */
1163     if (!by_parent_cb) {
1164         BDRVTestState *s = parent_a->opaque;
1165         s->sleep_in_drain_begin = true;
1166     }
1167
1168     /* Set child relationships */
1169     bdrv_ref(b);
1170     bdrv_ref(a);
1171     child_b = bdrv_attach_child(parent_b, b, "PB-B", &child_file, &error_abort);
1172     child_a = bdrv_attach_child(parent_b, a, "PB-A", &child_backing, &error_abort);
1173
1174     bdrv_ref(a);
1175     bdrv_attach_child(parent_a, a, "PA-A",
1176                       by_parent_cb ? &child_file : &detach_by_driver_cb_role,
1177                       &error_abort);
1178
1179     g_assert_cmpint(parent_a->refcnt, ==, 1);
1180     g_assert_cmpint(parent_b->refcnt, ==, 1);
1181     g_assert_cmpint(a->refcnt, ==, 3);
1182     g_assert_cmpint(b->refcnt, ==, 2);
1183     g_assert_cmpint(c->refcnt, ==, 1);
1184
1185     g_assert(QLIST_FIRST(&parent_b->children) == child_a);
1186     g_assert(QLIST_NEXT(child_a, next) == child_b);
1187     g_assert(QLIST_NEXT(child_b, next) == NULL);
1188
1189     /* Start the evil write request */
1190     detach_by_parent_data = (struct detach_by_parent_data) {
1191         .parent_b = parent_b,
1192         .child_b = child_b,
1193         .c = c,
1194         .by_parent_cb = by_parent_cb,
1195     };
1196     acb = blk_aio_preadv(blk, 0, &qiov, 0, detach_by_parent_aio_cb, NULL);
1197     g_assert(acb != NULL);
1198
1199     /* Drain and check the expected result */
1200     bdrv_subtree_drained_begin(parent_b);
1201
1202     g_assert(detach_by_parent_data.child_c != NULL);
1203
1204     g_assert_cmpint(parent_a->refcnt, ==, 1);
1205     g_assert_cmpint(parent_b->refcnt, ==, 1);
1206     g_assert_cmpint(a->refcnt, ==, 3);
1207     g_assert_cmpint(b->refcnt, ==, 1);
1208     g_assert_cmpint(c->refcnt, ==, 2);
1209
1210     g_assert(QLIST_FIRST(&parent_b->children) == detach_by_parent_data.child_c);
1211     g_assert(QLIST_NEXT(detach_by_parent_data.child_c, next) == child_a);
1212     g_assert(QLIST_NEXT(child_a, next) == NULL);
1213
1214     g_assert_cmpint(parent_a->quiesce_counter, ==, 1);
1215     g_assert_cmpint(parent_b->quiesce_counter, ==, 1);
1216     g_assert_cmpint(a->quiesce_counter, ==, 1);
1217     g_assert_cmpint(b->quiesce_counter, ==, 0);
1218     g_assert_cmpint(c->quiesce_counter, ==, 1);
1219
1220     bdrv_subtree_drained_end(parent_b);
1221
1222     bdrv_unref(parent_b);
1223     blk_unref(blk);
1224
1225     /* XXX Once bdrv_close() unref's children instead of just detaching them,
1226      * this won't be necessary any more. */
1227     bdrv_unref(a);
1228     bdrv_unref(a);
1229     bdrv_unref(c);
1230
1231     g_assert_cmpint(a->refcnt, ==, 1);
1232     g_assert_cmpint(b->refcnt, ==, 1);
1233     g_assert_cmpint(c->refcnt, ==, 1);
1234     bdrv_unref(a);
1235     bdrv_unref(b);
1236     bdrv_unref(c);
1237 }
1238
1239 static void test_detach_by_parent_cb(void)
1240 {
1241     test_detach_indirect(true);
1242 }
1243
1244 static void test_detach_by_driver_cb(void)
1245 {
1246     test_detach_indirect(false);
1247 }
1248
1249 static void test_append_to_drained(void)
1250 {
1251     BlockBackend *blk;
1252     BlockDriverState *base, *overlay;
1253     BDRVTestState *base_s, *overlay_s;
1254
1255     blk = blk_new(BLK_PERM_ALL, BLK_PERM_ALL);
1256     base = bdrv_new_open_driver(&bdrv_test, "base", BDRV_O_RDWR, &error_abort);
1257     base_s = base->opaque;
1258     blk_insert_bs(blk, base, &error_abort);
1259
1260     overlay = bdrv_new_open_driver(&bdrv_test, "overlay", BDRV_O_RDWR,
1261                                    &error_abort);
1262     overlay_s = overlay->opaque;
1263
1264     do_drain_begin(BDRV_DRAIN, base);
1265     g_assert_cmpint(base->quiesce_counter, ==, 1);
1266     g_assert_cmpint(base_s->drain_count, ==, 1);
1267     g_assert_cmpint(base->in_flight, ==, 0);
1268
1269     /* Takes ownership of overlay, so we don't have to unref it later */
1270     bdrv_append(overlay, base, &error_abort);
1271     g_assert_cmpint(base->in_flight, ==, 0);
1272     g_assert_cmpint(overlay->in_flight, ==, 0);
1273
1274     g_assert_cmpint(base->quiesce_counter, ==, 1);
1275     g_assert_cmpint(base_s->drain_count, ==, 1);
1276     g_assert_cmpint(overlay->quiesce_counter, ==, 1);
1277     g_assert_cmpint(overlay_s->drain_count, ==, 1);
1278
1279     do_drain_end(BDRV_DRAIN, base);
1280
1281     g_assert_cmpint(base->quiesce_counter, ==, 0);
1282     g_assert_cmpint(base_s->drain_count, ==, 0);
1283     g_assert_cmpint(overlay->quiesce_counter, ==, 0);
1284     g_assert_cmpint(overlay_s->drain_count, ==, 0);
1285
1286     bdrv_unref(base);
1287     blk_unref(blk);
1288 }
1289
1290 int main(int argc, char **argv)
1291 {
1292     int ret;
1293
1294     bdrv_init();
1295     qemu_init_main_loop(&error_abort);
1296
1297     g_test_init(&argc, &argv, NULL);
1298     qemu_event_init(&done_event, false);
1299
1300     g_test_add_func("/bdrv-drain/driver-cb/drain_all", test_drv_cb_drain_all);
1301     g_test_add_func("/bdrv-drain/driver-cb/drain", test_drv_cb_drain);
1302     g_test_add_func("/bdrv-drain/driver-cb/drain_subtree",
1303                     test_drv_cb_drain_subtree);
1304
1305     g_test_add_func("/bdrv-drain/driver-cb/co/drain_all",
1306                     test_drv_cb_co_drain_all);
1307     g_test_add_func("/bdrv-drain/driver-cb/co/drain", test_drv_cb_co_drain);
1308     g_test_add_func("/bdrv-drain/driver-cb/co/drain_subtree",
1309                     test_drv_cb_co_drain_subtree);
1310
1311
1312     g_test_add_func("/bdrv-drain/quiesce/drain_all", test_quiesce_drain_all);
1313     g_test_add_func("/bdrv-drain/quiesce/drain", test_quiesce_drain);
1314     g_test_add_func("/bdrv-drain/quiesce/drain_subtree",
1315                     test_quiesce_drain_subtree);
1316
1317     g_test_add_func("/bdrv-drain/quiesce/co/drain_all",
1318                     test_quiesce_co_drain_all);
1319     g_test_add_func("/bdrv-drain/quiesce/co/drain", test_quiesce_co_drain);
1320     g_test_add_func("/bdrv-drain/quiesce/co/drain_subtree",
1321                     test_quiesce_co_drain_subtree);
1322
1323     g_test_add_func("/bdrv-drain/nested", test_nested);
1324     g_test_add_func("/bdrv-drain/multiparent", test_multiparent);
1325
1326     g_test_add_func("/bdrv-drain/graph-change/drain_subtree",
1327                     test_graph_change_drain_subtree);
1328     g_test_add_func("/bdrv-drain/graph-change/drain_all",
1329                     test_graph_change_drain_all);
1330
1331     g_test_add_func("/bdrv-drain/iothread/drain_all", test_iothread_drain_all);
1332     g_test_add_func("/bdrv-drain/iothread/drain", test_iothread_drain);
1333     g_test_add_func("/bdrv-drain/iothread/drain_subtree",
1334                     test_iothread_drain_subtree);
1335
1336     g_test_add_func("/bdrv-drain/blockjob/drain_all", test_blockjob_drain_all);
1337     g_test_add_func("/bdrv-drain/blockjob/drain", test_blockjob_drain);
1338     g_test_add_func("/bdrv-drain/blockjob/drain_subtree",
1339                     test_blockjob_drain_subtree);
1340
1341     g_test_add_func("/bdrv-drain/deletion/drain", test_delete_by_drain);
1342     g_test_add_func("/bdrv-drain/detach/drain_all", test_detach_by_drain_all);
1343     g_test_add_func("/bdrv-drain/detach/drain", test_detach_by_drain);
1344     g_test_add_func("/bdrv-drain/detach/drain_subtree", test_detach_by_drain_subtree);
1345     g_test_add_func("/bdrv-drain/detach/parent_cb", test_detach_by_parent_cb);
1346     g_test_add_func("/bdrv-drain/detach/driver_cb", test_detach_by_driver_cb);
1347
1348     g_test_add_func("/bdrv-drain/attach/drain", test_append_to_drained);
1349
1350     ret = g_test_run();
1351     qemu_event_destroy(&done_event);
1352     return ret;
1353 }
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