1881cfd17SKevin Wolf /* 2881cfd17SKevin Wolf * Block node draining tests 3881cfd17SKevin Wolf * 4881cfd17SKevin Wolf * Copyright (c) 2017 Kevin Wolf <kwolf@redhat.com> 5881cfd17SKevin Wolf * 6881cfd17SKevin Wolf * Permission is hereby granted, free of charge, to any person obtaining a copy 7881cfd17SKevin Wolf * of this software and associated documentation files (the "Software"), to deal 8881cfd17SKevin Wolf * in the Software without restriction, including without limitation the rights 9881cfd17SKevin Wolf * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell 10881cfd17SKevin Wolf * copies of the Software, and to permit persons to whom the Software is 11881cfd17SKevin Wolf * furnished to do so, subject to the following conditions: 12881cfd17SKevin Wolf * 13881cfd17SKevin Wolf * The above copyright notice and this permission notice shall be included in 14881cfd17SKevin Wolf * all copies or substantial portions of the Software. 15881cfd17SKevin Wolf * 16881cfd17SKevin Wolf * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 17881cfd17SKevin Wolf * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 18881cfd17SKevin Wolf * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 19881cfd17SKevin Wolf * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 20881cfd17SKevin Wolf * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, 21881cfd17SKevin Wolf * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN 22881cfd17SKevin Wolf * THE SOFTWARE. 23881cfd17SKevin Wolf */ 24881cfd17SKevin Wolf 25881cfd17SKevin Wolf #include "qemu/osdep.h" 26e2c1c34fSMarkus Armbruster #include "block/block_int.h" 277253220dSKevin Wolf #include "block/blockjob_int.h" 28881cfd17SKevin Wolf #include "sysemu/block-backend.h" 29881cfd17SKevin Wolf #include "qapi/error.h" 30db725815SMarkus Armbruster #include "qemu/main-loop.h" 31bb675689SKevin Wolf #include "iothread.h" 32bb675689SKevin Wolf 33bb675689SKevin Wolf static QemuEvent done_event; 34881cfd17SKevin Wolf 35881cfd17SKevin Wolf typedef struct BDRVTestState { 36881cfd17SKevin Wolf int drain_count; 37bb675689SKevin Wolf AioContext *bh_indirection_ctx; 3857320ca9SKevin Wolf bool sleep_in_drain_begin; 39881cfd17SKevin Wolf } BDRVTestState; 40881cfd17SKevin Wolf 417bce1c29SKevin Wolf static void coroutine_fn sleep_in_drain_begin(void *opaque) 427bce1c29SKevin Wolf { 437bce1c29SKevin Wolf BlockDriverState *bs = opaque; 447bce1c29SKevin Wolf 457bce1c29SKevin Wolf qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 100000); 467bce1c29SKevin Wolf bdrv_dec_in_flight(bs); 477bce1c29SKevin Wolf } 487bce1c29SKevin Wolf 495e8ac217SKevin Wolf static void bdrv_test_drain_begin(BlockDriverState *bs) 50881cfd17SKevin Wolf { 51881cfd17SKevin Wolf BDRVTestState *s = bs->opaque; 52881cfd17SKevin Wolf s->drain_count++; 5357320ca9SKevin Wolf if (s->sleep_in_drain_begin) { 547bce1c29SKevin Wolf Coroutine *co = qemu_coroutine_create(sleep_in_drain_begin, bs); 557bce1c29SKevin Wolf bdrv_inc_in_flight(bs); 567bce1c29SKevin Wolf aio_co_enter(bdrv_get_aio_context(bs), co); 5757320ca9SKevin Wolf } 58881cfd17SKevin Wolf } 59881cfd17SKevin Wolf 605e8ac217SKevin Wolf static void bdrv_test_drain_end(BlockDriverState *bs) 61881cfd17SKevin Wolf { 62881cfd17SKevin Wolf BDRVTestState *s = bs->opaque; 63881cfd17SKevin Wolf s->drain_count--; 64881cfd17SKevin Wolf } 65881cfd17SKevin Wolf 66881cfd17SKevin Wolf static void bdrv_test_close(BlockDriverState *bs) 67881cfd17SKevin Wolf { 68881cfd17SKevin Wolf BDRVTestState *s = bs->opaque; 69881cfd17SKevin Wolf g_assert_cmpint(s->drain_count, >, 0); 70881cfd17SKevin Wolf } 71881cfd17SKevin Wolf 72bb675689SKevin Wolf static void co_reenter_bh(void *opaque) 73bb675689SKevin Wolf { 74bb675689SKevin Wolf aio_co_wake(opaque); 75bb675689SKevin Wolf } 76bb675689SKevin Wolf 77881cfd17SKevin Wolf static int coroutine_fn bdrv_test_co_preadv(BlockDriverState *bs, 78f7ef38ddSVladimir Sementsov-Ogievskiy int64_t offset, int64_t bytes, 79f7ef38ddSVladimir Sementsov-Ogievskiy QEMUIOVector *qiov, 80f7ef38ddSVladimir Sementsov-Ogievskiy BdrvRequestFlags flags) 81881cfd17SKevin Wolf { 82bb675689SKevin Wolf BDRVTestState *s = bs->opaque; 83bb675689SKevin Wolf 84881cfd17SKevin Wolf /* We want this request to stay until the polling loop in drain waits for 85881cfd17SKevin Wolf * it to complete. We need to sleep a while as bdrv_drain_invoke() comes 86881cfd17SKevin Wolf * first and polls its result, too, but it shouldn't accidentally complete 87881cfd17SKevin Wolf * this request yet. */ 88881cfd17SKevin Wolf qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 100000); 89881cfd17SKevin Wolf 90bb675689SKevin Wolf if (s->bh_indirection_ctx) { 91bb675689SKevin Wolf aio_bh_schedule_oneshot(s->bh_indirection_ctx, co_reenter_bh, 92bb675689SKevin Wolf qemu_coroutine_self()); 93bb675689SKevin Wolf qemu_coroutine_yield(); 94bb675689SKevin Wolf } 95bb675689SKevin Wolf 96881cfd17SKevin Wolf return 0; 97881cfd17SKevin Wolf } 98881cfd17SKevin Wolf 999746b35cSMax Reitz static int bdrv_test_change_backing_file(BlockDriverState *bs, 1009746b35cSMax Reitz const char *backing_file, 1019746b35cSMax Reitz const char *backing_fmt) 1029746b35cSMax Reitz { 1039746b35cSMax Reitz return 0; 1049746b35cSMax Reitz } 1059746b35cSMax Reitz 106881cfd17SKevin Wolf static BlockDriver bdrv_test = { 107881cfd17SKevin Wolf .format_name = "test", 108881cfd17SKevin Wolf .instance_size = sizeof(BDRVTestState), 10925f78d9eSVladimir Sementsov-Ogievskiy .supports_backing = true, 110881cfd17SKevin Wolf 111881cfd17SKevin Wolf .bdrv_close = bdrv_test_close, 112881cfd17SKevin Wolf .bdrv_co_preadv = bdrv_test_co_preadv, 113881cfd17SKevin Wolf 1145e8ac217SKevin Wolf .bdrv_drain_begin = bdrv_test_drain_begin, 1155e8ac217SKevin Wolf .bdrv_drain_end = bdrv_test_drain_end, 11686e1c840SKevin Wolf 117e5d8a406SMax Reitz .bdrv_child_perm = bdrv_default_perms, 1189746b35cSMax Reitz 1199746b35cSMax Reitz .bdrv_change_backing_file = bdrv_test_change_backing_file, 120881cfd17SKevin Wolf }; 121881cfd17SKevin Wolf 122881cfd17SKevin Wolf static void aio_ret_cb(void *opaque, int ret) 123881cfd17SKevin Wolf { 124881cfd17SKevin Wolf int *aio_ret = opaque; 125881cfd17SKevin Wolf *aio_ret = ret; 126881cfd17SKevin Wolf } 127881cfd17SKevin Wolf 1280582eb10SKevin Wolf typedef struct CallInCoroutineData { 1290582eb10SKevin Wolf void (*entry)(void); 1300582eb10SKevin Wolf bool done; 1310582eb10SKevin Wolf } CallInCoroutineData; 1320582eb10SKevin Wolf 1330582eb10SKevin Wolf static coroutine_fn void call_in_coroutine_entry(void *opaque) 1340582eb10SKevin Wolf { 1350582eb10SKevin Wolf CallInCoroutineData *data = opaque; 1360582eb10SKevin Wolf 1370582eb10SKevin Wolf data->entry(); 1380582eb10SKevin Wolf data->done = true; 1390582eb10SKevin Wolf } 1400582eb10SKevin Wolf 1410582eb10SKevin Wolf static void call_in_coroutine(void (*entry)(void)) 1420582eb10SKevin Wolf { 1430582eb10SKevin Wolf Coroutine *co; 1440582eb10SKevin Wolf CallInCoroutineData data = { 1450582eb10SKevin Wolf .entry = entry, 1460582eb10SKevin Wolf .done = false, 1470582eb10SKevin Wolf }; 1480582eb10SKevin Wolf 1490582eb10SKevin Wolf co = qemu_coroutine_create(call_in_coroutine_entry, &data); 1500582eb10SKevin Wolf qemu_coroutine_enter(co); 1510582eb10SKevin Wolf while (!data.done) { 1520582eb10SKevin Wolf aio_poll(qemu_get_aio_context(), true); 1530582eb10SKevin Wolf } 1540582eb10SKevin Wolf } 1550582eb10SKevin Wolf 15686e1c840SKevin Wolf enum drain_type { 15786e1c840SKevin Wolf BDRV_DRAIN_ALL, 15886e1c840SKevin Wolf BDRV_DRAIN, 1596c429a6aSKevin Wolf DRAIN_TYPE_MAX, 16086e1c840SKevin Wolf }; 16186e1c840SKevin Wolf 16286e1c840SKevin Wolf static void do_drain_begin(enum drain_type drain_type, BlockDriverState *bs) 16386e1c840SKevin Wolf { 16486e1c840SKevin Wolf switch (drain_type) { 16586e1c840SKevin Wolf case BDRV_DRAIN_ALL: bdrv_drain_all_begin(); break; 16686e1c840SKevin Wolf case BDRV_DRAIN: bdrv_drained_begin(bs); break; 16786e1c840SKevin Wolf default: g_assert_not_reached(); 16886e1c840SKevin Wolf } 16986e1c840SKevin Wolf } 17086e1c840SKevin Wolf 17186e1c840SKevin Wolf static void do_drain_end(enum drain_type drain_type, BlockDriverState *bs) 17286e1c840SKevin Wolf { 17386e1c840SKevin Wolf switch (drain_type) { 17486e1c840SKevin Wolf case BDRV_DRAIN_ALL: bdrv_drain_all_end(); break; 17586e1c840SKevin Wolf case BDRV_DRAIN: bdrv_drained_end(bs); break; 17686e1c840SKevin Wolf default: g_assert_not_reached(); 17786e1c840SKevin Wolf } 17886e1c840SKevin Wolf } 17986e1c840SKevin Wolf 180f62c1729SKevin Wolf static void do_drain_begin_unlocked(enum drain_type drain_type, BlockDriverState *bs) 181f62c1729SKevin Wolf { 182f62c1729SKevin Wolf if (drain_type != BDRV_DRAIN_ALL) { 183f62c1729SKevin Wolf aio_context_acquire(bdrv_get_aio_context(bs)); 184f62c1729SKevin Wolf } 185f62c1729SKevin Wolf do_drain_begin(drain_type, bs); 186f62c1729SKevin Wolf if (drain_type != BDRV_DRAIN_ALL) { 187f62c1729SKevin Wolf aio_context_release(bdrv_get_aio_context(bs)); 188f62c1729SKevin Wolf } 189f62c1729SKevin Wolf } 190f62c1729SKevin Wolf 19157f3d07bSKevin Wolf static BlockBackend * no_coroutine_fn test_setup(void) 19257f3d07bSKevin Wolf { 19357f3d07bSKevin Wolf BlockBackend *blk; 19457f3d07bSKevin Wolf BlockDriverState *bs, *backing; 19557f3d07bSKevin Wolf 19657f3d07bSKevin Wolf blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 19757f3d07bSKevin Wolf bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR, 19857f3d07bSKevin Wolf &error_abort); 19957f3d07bSKevin Wolf blk_insert_bs(blk, bs, &error_abort); 20057f3d07bSKevin Wolf 20157f3d07bSKevin Wolf backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort); 20257f3d07bSKevin Wolf bdrv_set_backing_hd(bs, backing, &error_abort); 20357f3d07bSKevin Wolf 20457f3d07bSKevin Wolf bdrv_unref(backing); 20557f3d07bSKevin Wolf bdrv_unref(bs); 20657f3d07bSKevin Wolf 20757f3d07bSKevin Wolf return blk; 20857f3d07bSKevin Wolf } 20957f3d07bSKevin Wolf 210f62c1729SKevin Wolf static void do_drain_end_unlocked(enum drain_type drain_type, BlockDriverState *bs) 211f62c1729SKevin Wolf { 212f62c1729SKevin Wolf if (drain_type != BDRV_DRAIN_ALL) { 213f62c1729SKevin Wolf aio_context_acquire(bdrv_get_aio_context(bs)); 214f62c1729SKevin Wolf } 215f62c1729SKevin Wolf do_drain_end(drain_type, bs); 216f62c1729SKevin Wolf if (drain_type != BDRV_DRAIN_ALL) { 217f62c1729SKevin Wolf aio_context_release(bdrv_get_aio_context(bs)); 218f62c1729SKevin Wolf } 219f62c1729SKevin Wolf } 220f62c1729SKevin Wolf 22157f3d07bSKevin Wolf static void test_drv_cb_common(BlockBackend *blk, enum drain_type drain_type, 22257f3d07bSKevin Wolf bool recursive) 223881cfd17SKevin Wolf { 22457f3d07bSKevin Wolf BlockDriverState *bs = blk_bs(blk); 22557f3d07bSKevin Wolf BlockDriverState *backing = bs->backing->bs; 22686e1c840SKevin Wolf BDRVTestState *s, *backing_s; 227881cfd17SKevin Wolf BlockAIOCB *acb; 228881cfd17SKevin Wolf int aio_ret; 229881cfd17SKevin Wolf 230405d8fe0SVladimir Sementsov-Ogievskiy QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, NULL, 0); 231881cfd17SKevin Wolf 232881cfd17SKevin Wolf s = bs->opaque; 23386e1c840SKevin Wolf backing_s = backing->opaque; 23486e1c840SKevin Wolf 235881cfd17SKevin Wolf /* Simple bdrv_drain_all_begin/end pair, check that CBs are called */ 236881cfd17SKevin Wolf g_assert_cmpint(s->drain_count, ==, 0); 23786e1c840SKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, 0); 23886e1c840SKevin Wolf 23986e1c840SKevin Wolf do_drain_begin(drain_type, bs); 24086e1c840SKevin Wolf 241881cfd17SKevin Wolf g_assert_cmpint(s->drain_count, ==, 1); 24286e1c840SKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, !!recursive); 24386e1c840SKevin Wolf 24486e1c840SKevin Wolf do_drain_end(drain_type, bs); 24586e1c840SKevin Wolf 246881cfd17SKevin Wolf g_assert_cmpint(s->drain_count, ==, 0); 24786e1c840SKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, 0); 248881cfd17SKevin Wolf 249881cfd17SKevin Wolf /* Now do the same while a request is pending */ 250881cfd17SKevin Wolf aio_ret = -EINPROGRESS; 251881cfd17SKevin Wolf acb = blk_aio_preadv(blk, 0, &qiov, 0, aio_ret_cb, &aio_ret); 252881cfd17SKevin Wolf g_assert(acb != NULL); 253881cfd17SKevin Wolf g_assert_cmpint(aio_ret, ==, -EINPROGRESS); 254881cfd17SKevin Wolf 255881cfd17SKevin Wolf g_assert_cmpint(s->drain_count, ==, 0); 25686e1c840SKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, 0); 25786e1c840SKevin Wolf 25886e1c840SKevin Wolf do_drain_begin(drain_type, bs); 25986e1c840SKevin Wolf 260881cfd17SKevin Wolf g_assert_cmpint(aio_ret, ==, 0); 261881cfd17SKevin Wolf g_assert_cmpint(s->drain_count, ==, 1); 26286e1c840SKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, !!recursive); 263881cfd17SKevin Wolf 26486e1c840SKevin Wolf do_drain_end(drain_type, bs); 26586e1c840SKevin Wolf 26686e1c840SKevin Wolf g_assert_cmpint(s->drain_count, ==, 0); 26786e1c840SKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, 0); 268881cfd17SKevin Wolf } 269881cfd17SKevin Wolf 27086e1c840SKevin Wolf static void test_drv_cb_drain_all(void) 27186e1c840SKevin Wolf { 27257f3d07bSKevin Wolf BlockBackend *blk = test_setup(); 27357f3d07bSKevin Wolf test_drv_cb_common(blk, BDRV_DRAIN_ALL, true); 27457f3d07bSKevin Wolf blk_unref(blk); 27586e1c840SKevin Wolf } 27686e1c840SKevin Wolf 27786e1c840SKevin Wolf static void test_drv_cb_drain(void) 27886e1c840SKevin Wolf { 27957f3d07bSKevin Wolf BlockBackend *blk = test_setup(); 28057f3d07bSKevin Wolf test_drv_cb_common(blk, BDRV_DRAIN, false); 28157f3d07bSKevin Wolf blk_unref(blk); 28257f3d07bSKevin Wolf } 28357f3d07bSKevin Wolf 28457f3d07bSKevin Wolf static void coroutine_fn test_drv_cb_co_drain_all_entry(void) 28557f3d07bSKevin Wolf { 28657f3d07bSKevin Wolf BlockBackend *blk = blk_all_next(NULL); 28757f3d07bSKevin Wolf test_drv_cb_common(blk, BDRV_DRAIN_ALL, true); 28886e1c840SKevin Wolf } 28986e1c840SKevin Wolf 2906d0252f2SKevin Wolf static void test_drv_cb_co_drain_all(void) 2916d0252f2SKevin Wolf { 29257f3d07bSKevin Wolf BlockBackend *blk = test_setup(); 29357f3d07bSKevin Wolf call_in_coroutine(test_drv_cb_co_drain_all_entry); 29457f3d07bSKevin Wolf blk_unref(blk); 29557f3d07bSKevin Wolf } 29657f3d07bSKevin Wolf 29757f3d07bSKevin Wolf static void coroutine_fn test_drv_cb_co_drain_entry(void) 29857f3d07bSKevin Wolf { 29957f3d07bSKevin Wolf BlockBackend *blk = blk_all_next(NULL); 30057f3d07bSKevin Wolf test_drv_cb_common(blk, BDRV_DRAIN, false); 3016d0252f2SKevin Wolf } 3026d0252f2SKevin Wolf 3030582eb10SKevin Wolf static void test_drv_cb_co_drain(void) 3040582eb10SKevin Wolf { 30557f3d07bSKevin Wolf BlockBackend *blk = test_setup(); 30657f3d07bSKevin Wolf call_in_coroutine(test_drv_cb_co_drain_entry); 30757f3d07bSKevin Wolf blk_unref(blk); 3080582eb10SKevin Wolf } 3090582eb10SKevin Wolf 31057f3d07bSKevin Wolf static void test_quiesce_common(BlockBackend *blk, enum drain_type drain_type, 31157f3d07bSKevin Wolf bool recursive) 31289a6ceabSKevin Wolf { 31357f3d07bSKevin Wolf BlockDriverState *bs = blk_bs(blk); 31457f3d07bSKevin Wolf BlockDriverState *backing = bs->backing->bs; 31589a6ceabSKevin Wolf 31689a6ceabSKevin Wolf g_assert_cmpint(bs->quiesce_counter, ==, 0); 31789a6ceabSKevin Wolf g_assert_cmpint(backing->quiesce_counter, ==, 0); 31889a6ceabSKevin Wolf 31989a6ceabSKevin Wolf do_drain_begin(drain_type, bs); 32089a6ceabSKevin Wolf 32157e05be3SKevin Wolf if (drain_type == BDRV_DRAIN_ALL) { 32257e05be3SKevin Wolf g_assert_cmpint(bs->quiesce_counter, ==, 2); 32357e05be3SKevin Wolf } else { 32489a6ceabSKevin Wolf g_assert_cmpint(bs->quiesce_counter, ==, 1); 32557e05be3SKevin Wolf } 32689a6ceabSKevin Wolf g_assert_cmpint(backing->quiesce_counter, ==, !!recursive); 32789a6ceabSKevin Wolf 32889a6ceabSKevin Wolf do_drain_end(drain_type, bs); 32989a6ceabSKevin Wolf 33089a6ceabSKevin Wolf g_assert_cmpint(bs->quiesce_counter, ==, 0); 33189a6ceabSKevin Wolf g_assert_cmpint(backing->quiesce_counter, ==, 0); 33289a6ceabSKevin Wolf } 33389a6ceabSKevin Wolf 33489a6ceabSKevin Wolf static void test_quiesce_drain_all(void) 33589a6ceabSKevin Wolf { 33657f3d07bSKevin Wolf BlockBackend *blk = test_setup(); 33757f3d07bSKevin Wolf test_quiesce_common(blk, BDRV_DRAIN_ALL, true); 33857f3d07bSKevin Wolf blk_unref(blk); 33989a6ceabSKevin Wolf } 34089a6ceabSKevin Wolf 34189a6ceabSKevin Wolf static void test_quiesce_drain(void) 34289a6ceabSKevin Wolf { 34357f3d07bSKevin Wolf BlockBackend *blk = test_setup(); 34457f3d07bSKevin Wolf test_quiesce_common(blk, BDRV_DRAIN, false); 34557f3d07bSKevin Wolf blk_unref(blk); 34657f3d07bSKevin Wolf } 34757f3d07bSKevin Wolf 34857f3d07bSKevin Wolf static void coroutine_fn test_quiesce_co_drain_all_entry(void) 34957f3d07bSKevin Wolf { 35057f3d07bSKevin Wolf BlockBackend *blk = blk_all_next(NULL); 35157f3d07bSKevin Wolf test_quiesce_common(blk, BDRV_DRAIN_ALL, true); 35289a6ceabSKevin Wolf } 35389a6ceabSKevin Wolf 3546d0252f2SKevin Wolf static void test_quiesce_co_drain_all(void) 3556d0252f2SKevin Wolf { 35657f3d07bSKevin Wolf BlockBackend *blk = test_setup(); 35757f3d07bSKevin Wolf call_in_coroutine(test_quiesce_co_drain_all_entry); 35857f3d07bSKevin Wolf blk_unref(blk); 35957f3d07bSKevin Wolf } 36057f3d07bSKevin Wolf 36157f3d07bSKevin Wolf static void coroutine_fn test_quiesce_co_drain_entry(void) 36257f3d07bSKevin Wolf { 36357f3d07bSKevin Wolf BlockBackend *blk = blk_all_next(NULL); 36457f3d07bSKevin Wolf test_quiesce_common(blk, BDRV_DRAIN, false); 3656d0252f2SKevin Wolf } 3666d0252f2SKevin Wolf 3670582eb10SKevin Wolf static void test_quiesce_co_drain(void) 3680582eb10SKevin Wolf { 36957f3d07bSKevin Wolf BlockBackend *blk = test_setup(); 37057f3d07bSKevin Wolf call_in_coroutine(test_quiesce_co_drain_entry); 37157f3d07bSKevin Wolf blk_unref(blk); 3720582eb10SKevin Wolf } 3730582eb10SKevin Wolf 3746c429a6aSKevin Wolf static void test_nested(void) 3756c429a6aSKevin Wolf { 3766c429a6aSKevin Wolf BlockBackend *blk; 3776c429a6aSKevin Wolf BlockDriverState *bs, *backing; 3786c429a6aSKevin Wolf BDRVTestState *s, *backing_s; 3796c429a6aSKevin Wolf enum drain_type outer, inner; 3806c429a6aSKevin Wolf 381d861ab3aSKevin Wolf blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 3826c429a6aSKevin Wolf bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR, 3836c429a6aSKevin Wolf &error_abort); 3846c429a6aSKevin Wolf s = bs->opaque; 3856c429a6aSKevin Wolf blk_insert_bs(blk, bs, &error_abort); 3866c429a6aSKevin Wolf 3876c429a6aSKevin Wolf backing = bdrv_new_open_driver(&bdrv_test, "backing", 0, &error_abort); 3886c429a6aSKevin Wolf backing_s = backing->opaque; 3896c429a6aSKevin Wolf bdrv_set_backing_hd(bs, backing, &error_abort); 3906c429a6aSKevin Wolf 3916c429a6aSKevin Wolf for (outer = 0; outer < DRAIN_TYPE_MAX; outer++) { 3926c429a6aSKevin Wolf for (inner = 0; inner < DRAIN_TYPE_MAX; inner++) { 39357e05be3SKevin Wolf int backing_quiesce = (outer == BDRV_DRAIN_ALL) + 39457e05be3SKevin Wolf (inner == BDRV_DRAIN_ALL); 3956c429a6aSKevin Wolf 3966c429a6aSKevin Wolf g_assert_cmpint(bs->quiesce_counter, ==, 0); 3976c429a6aSKevin Wolf g_assert_cmpint(backing->quiesce_counter, ==, 0); 3986c429a6aSKevin Wolf g_assert_cmpint(s->drain_count, ==, 0); 3996c429a6aSKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, 0); 4006c429a6aSKevin Wolf 4016c429a6aSKevin Wolf do_drain_begin(outer, bs); 4026c429a6aSKevin Wolf do_drain_begin(inner, bs); 4036c429a6aSKevin Wolf 40457e05be3SKevin Wolf g_assert_cmpint(bs->quiesce_counter, ==, 2 + !!backing_quiesce); 4056c429a6aSKevin Wolf g_assert_cmpint(backing->quiesce_counter, ==, backing_quiesce); 40657e05be3SKevin Wolf g_assert_cmpint(s->drain_count, ==, 1); 40757e05be3SKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, !!backing_quiesce); 4086c429a6aSKevin Wolf 4096c429a6aSKevin Wolf do_drain_end(inner, bs); 4106c429a6aSKevin Wolf do_drain_end(outer, bs); 4116c429a6aSKevin Wolf 4126c429a6aSKevin Wolf g_assert_cmpint(bs->quiesce_counter, ==, 0); 4136c429a6aSKevin Wolf g_assert_cmpint(backing->quiesce_counter, ==, 0); 4146c429a6aSKevin Wolf g_assert_cmpint(s->drain_count, ==, 0); 4156c429a6aSKevin Wolf g_assert_cmpint(backing_s->drain_count, ==, 0); 4166c429a6aSKevin Wolf } 4176c429a6aSKevin Wolf } 4186c429a6aSKevin Wolf 4196c429a6aSKevin Wolf bdrv_unref(backing); 4206c429a6aSKevin Wolf bdrv_unref(bs); 4216c429a6aSKevin Wolf blk_unref(blk); 4226c429a6aSKevin Wolf } 4236c429a6aSKevin Wolf 42419f7a7e5SKevin Wolf static void test_graph_change_drain_all(void) 42519f7a7e5SKevin Wolf { 42619f7a7e5SKevin Wolf BlockBackend *blk_a, *blk_b; 42719f7a7e5SKevin Wolf BlockDriverState *bs_a, *bs_b; 42819f7a7e5SKevin Wolf BDRVTestState *a_s, *b_s; 42919f7a7e5SKevin Wolf 43019f7a7e5SKevin Wolf /* Create node A with a BlockBackend */ 431d861ab3aSKevin Wolf blk_a = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 43219f7a7e5SKevin Wolf bs_a = bdrv_new_open_driver(&bdrv_test, "test-node-a", BDRV_O_RDWR, 43319f7a7e5SKevin Wolf &error_abort); 43419f7a7e5SKevin Wolf a_s = bs_a->opaque; 43519f7a7e5SKevin Wolf blk_insert_bs(blk_a, bs_a, &error_abort); 43619f7a7e5SKevin Wolf 43719f7a7e5SKevin Wolf g_assert_cmpint(bs_a->quiesce_counter, ==, 0); 43819f7a7e5SKevin Wolf g_assert_cmpint(a_s->drain_count, ==, 0); 43919f7a7e5SKevin Wolf 44019f7a7e5SKevin Wolf /* Call bdrv_drain_all_begin() */ 44119f7a7e5SKevin Wolf bdrv_drain_all_begin(); 44219f7a7e5SKevin Wolf 44319f7a7e5SKevin Wolf g_assert_cmpint(bs_a->quiesce_counter, ==, 1); 44419f7a7e5SKevin Wolf g_assert_cmpint(a_s->drain_count, ==, 1); 44519f7a7e5SKevin Wolf 44619f7a7e5SKevin Wolf /* Create node B with a BlockBackend */ 447d861ab3aSKevin Wolf blk_b = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 44819f7a7e5SKevin Wolf bs_b = bdrv_new_open_driver(&bdrv_test, "test-node-b", BDRV_O_RDWR, 44919f7a7e5SKevin Wolf &error_abort); 45019f7a7e5SKevin Wolf b_s = bs_b->opaque; 45119f7a7e5SKevin Wolf blk_insert_bs(blk_b, bs_b, &error_abort); 45219f7a7e5SKevin Wolf 45319f7a7e5SKevin Wolf g_assert_cmpint(bs_a->quiesce_counter, ==, 1); 45419f7a7e5SKevin Wolf g_assert_cmpint(bs_b->quiesce_counter, ==, 1); 45519f7a7e5SKevin Wolf g_assert_cmpint(a_s->drain_count, ==, 1); 45619f7a7e5SKevin Wolf g_assert_cmpint(b_s->drain_count, ==, 1); 45719f7a7e5SKevin Wolf 45819f7a7e5SKevin Wolf /* Unref and finally delete node A */ 45919f7a7e5SKevin Wolf blk_unref(blk_a); 46019f7a7e5SKevin Wolf 46119f7a7e5SKevin Wolf g_assert_cmpint(bs_a->quiesce_counter, ==, 1); 46219f7a7e5SKevin Wolf g_assert_cmpint(bs_b->quiesce_counter, ==, 1); 46319f7a7e5SKevin Wolf g_assert_cmpint(a_s->drain_count, ==, 1); 46419f7a7e5SKevin Wolf g_assert_cmpint(b_s->drain_count, ==, 1); 46519f7a7e5SKevin Wolf 46619f7a7e5SKevin Wolf bdrv_unref(bs_a); 46719f7a7e5SKevin Wolf 46819f7a7e5SKevin Wolf g_assert_cmpint(bs_b->quiesce_counter, ==, 1); 46919f7a7e5SKevin Wolf g_assert_cmpint(b_s->drain_count, ==, 1); 47019f7a7e5SKevin Wolf 47119f7a7e5SKevin Wolf /* End the drained section */ 47219f7a7e5SKevin Wolf bdrv_drain_all_end(); 47319f7a7e5SKevin Wolf 47419f7a7e5SKevin Wolf g_assert_cmpint(bs_b->quiesce_counter, ==, 0); 47519f7a7e5SKevin Wolf g_assert_cmpint(b_s->drain_count, ==, 0); 4761a6d3bd2SGreg Kurz g_assert_cmpint(qemu_get_aio_context()->external_disable_cnt, ==, 0); 47719f7a7e5SKevin Wolf 47819f7a7e5SKevin Wolf bdrv_unref(bs_b); 47919f7a7e5SKevin Wolf blk_unref(blk_b); 48019f7a7e5SKevin Wolf } 48119f7a7e5SKevin Wolf 482bb675689SKevin Wolf struct test_iothread_data { 483bb675689SKevin Wolf BlockDriverState *bs; 484bb675689SKevin Wolf enum drain_type drain_type; 485bb675689SKevin Wolf int *aio_ret; 486*ab613350SStefan Hajnoczi bool co_done; 487bb675689SKevin Wolf }; 488bb675689SKevin Wolf 489*ab613350SStefan Hajnoczi static void coroutine_fn test_iothread_drain_co_entry(void *opaque) 490bb675689SKevin Wolf { 491bb675689SKevin Wolf struct test_iothread_data *data = opaque; 492bb675689SKevin Wolf 493bb675689SKevin Wolf do_drain_begin(data->drain_type, data->bs); 494bb675689SKevin Wolf g_assert_cmpint(*data->aio_ret, ==, 0); 495bb675689SKevin Wolf do_drain_end(data->drain_type, data->bs); 496bb675689SKevin Wolf 497*ab613350SStefan Hajnoczi data->co_done = true; 498*ab613350SStefan Hajnoczi aio_wait_kick(); 499bb675689SKevin Wolf } 500bb675689SKevin Wolf 501bb675689SKevin Wolf static void test_iothread_aio_cb(void *opaque, int ret) 502bb675689SKevin Wolf { 503bb675689SKevin Wolf int *aio_ret = opaque; 504bb675689SKevin Wolf *aio_ret = ret; 505bb675689SKevin Wolf qemu_event_set(&done_event); 506bb675689SKevin Wolf } 507bb675689SKevin Wolf 508ecc1a5c7SKevin Wolf static void test_iothread_main_thread_bh(void *opaque) 509ecc1a5c7SKevin Wolf { 510ecc1a5c7SKevin Wolf struct test_iothread_data *data = opaque; 511ecc1a5c7SKevin Wolf 512ecc1a5c7SKevin Wolf /* Test that the AioContext is not yet locked in a random BH that is 513ecc1a5c7SKevin Wolf * executed during drain, otherwise this would deadlock. */ 514ecc1a5c7SKevin Wolf aio_context_acquire(bdrv_get_aio_context(data->bs)); 515ecc1a5c7SKevin Wolf bdrv_flush(data->bs); 516ecc1a5c7SKevin Wolf aio_context_release(bdrv_get_aio_context(data->bs)); 517ecc1a5c7SKevin Wolf } 518ecc1a5c7SKevin Wolf 519bb675689SKevin Wolf /* 520bb675689SKevin Wolf * Starts an AIO request on a BDS that runs in the AioContext of iothread 1. 521bb675689SKevin Wolf * The request involves a BH on iothread 2 before it can complete. 522bb675689SKevin Wolf * 523bb675689SKevin Wolf * @drain_thread = 0 means that do_drain_begin/end are called from the main 524bb675689SKevin Wolf * thread, @drain_thread = 1 means that they are called from iothread 1. Drain 525bb675689SKevin Wolf * for this BDS cannot be called from iothread 2 because only the main thread 526bb675689SKevin Wolf * may do cross-AioContext polling. 527bb675689SKevin Wolf */ 528bb675689SKevin Wolf static void test_iothread_common(enum drain_type drain_type, int drain_thread) 529bb675689SKevin Wolf { 530bb675689SKevin Wolf BlockBackend *blk; 531bb675689SKevin Wolf BlockDriverState *bs; 532bb675689SKevin Wolf BDRVTestState *s; 533bb675689SKevin Wolf BlockAIOCB *acb; 534*ab613350SStefan Hajnoczi Coroutine *co; 535bb675689SKevin Wolf int aio_ret; 536bb675689SKevin Wolf struct test_iothread_data data; 537bb675689SKevin Wolf 538bb675689SKevin Wolf IOThread *a = iothread_new(); 539bb675689SKevin Wolf IOThread *b = iothread_new(); 540bb675689SKevin Wolf AioContext *ctx_a = iothread_get_aio_context(a); 541bb675689SKevin Wolf AioContext *ctx_b = iothread_get_aio_context(b); 542bb675689SKevin Wolf 543405d8fe0SVladimir Sementsov-Ogievskiy QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, NULL, 0); 544bb675689SKevin Wolf 545bb675689SKevin Wolf /* bdrv_drain_all() may only be called from the main loop thread */ 546bb675689SKevin Wolf if (drain_type == BDRV_DRAIN_ALL && drain_thread != 0) { 547bb675689SKevin Wolf goto out; 548bb675689SKevin Wolf } 549bb675689SKevin Wolf 550d861ab3aSKevin Wolf blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 551bb675689SKevin Wolf bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR, 552bb675689SKevin Wolf &error_abort); 553bb675689SKevin Wolf s = bs->opaque; 554bb675689SKevin Wolf blk_insert_bs(blk, bs, &error_abort); 555cf312932SKevin Wolf blk_set_disable_request_queuing(blk, true); 556bb675689SKevin Wolf 55797896a48SKevin Wolf blk_set_aio_context(blk, ctx_a, &error_abort); 558bb675689SKevin Wolf aio_context_acquire(ctx_a); 559bb675689SKevin Wolf 560bb675689SKevin Wolf s->bh_indirection_ctx = ctx_b; 561bb675689SKevin Wolf 562bb675689SKevin Wolf aio_ret = -EINPROGRESS; 563dd353157SKevin Wolf qemu_event_reset(&done_event); 564dd353157SKevin Wolf 565bb675689SKevin Wolf if (drain_thread == 0) { 566bb675689SKevin Wolf acb = blk_aio_preadv(blk, 0, &qiov, 0, test_iothread_aio_cb, &aio_ret); 567bb675689SKevin Wolf } else { 568bb675689SKevin Wolf acb = blk_aio_preadv(blk, 0, &qiov, 0, aio_ret_cb, &aio_ret); 569bb675689SKevin Wolf } 570bb675689SKevin Wolf g_assert(acb != NULL); 571bb675689SKevin Wolf g_assert_cmpint(aio_ret, ==, -EINPROGRESS); 572bb675689SKevin Wolf 573bb675689SKevin Wolf aio_context_release(ctx_a); 574bb675689SKevin Wolf 575bb675689SKevin Wolf data = (struct test_iothread_data) { 576bb675689SKevin Wolf .bs = bs, 577bb675689SKevin Wolf .drain_type = drain_type, 578bb675689SKevin Wolf .aio_ret = &aio_ret, 579bb675689SKevin Wolf }; 580bb675689SKevin Wolf 581bb675689SKevin Wolf switch (drain_thread) { 582bb675689SKevin Wolf case 0: 583bb675689SKevin Wolf if (drain_type != BDRV_DRAIN_ALL) { 584bb675689SKevin Wolf aio_context_acquire(ctx_a); 585bb675689SKevin Wolf } 586bb675689SKevin Wolf 587ecc1a5c7SKevin Wolf aio_bh_schedule_oneshot(ctx_a, test_iothread_main_thread_bh, &data); 588ecc1a5c7SKevin Wolf 589bb675689SKevin Wolf /* The request is running on the IOThread a. Draining its block device 590bb675689SKevin Wolf * will make sure that it has completed as far as the BDS is concerned, 591bb675689SKevin Wolf * but the drain in this thread can continue immediately after 592bb675689SKevin Wolf * bdrv_dec_in_flight() and aio_ret might be assigned only slightly 593bb675689SKevin Wolf * later. */ 594bb675689SKevin Wolf do_drain_begin(drain_type, bs); 595bb675689SKevin Wolf g_assert_cmpint(bs->in_flight, ==, 0); 596bb675689SKevin Wolf 597bb675689SKevin Wolf if (drain_type != BDRV_DRAIN_ALL) { 598bb675689SKevin Wolf aio_context_release(ctx_a); 599bb675689SKevin Wolf } 600bb675689SKevin Wolf qemu_event_wait(&done_event); 601bb675689SKevin Wolf if (drain_type != BDRV_DRAIN_ALL) { 602bb675689SKevin Wolf aio_context_acquire(ctx_a); 603bb675689SKevin Wolf } 604bb675689SKevin Wolf 605bb675689SKevin Wolf g_assert_cmpint(aio_ret, ==, 0); 606bb675689SKevin Wolf do_drain_end(drain_type, bs); 607bb675689SKevin Wolf 608bb675689SKevin Wolf if (drain_type != BDRV_DRAIN_ALL) { 609bb675689SKevin Wolf aio_context_release(ctx_a); 610bb675689SKevin Wolf } 611bb675689SKevin Wolf break; 612bb675689SKevin Wolf case 1: 613*ab613350SStefan Hajnoczi co = qemu_coroutine_create(test_iothread_drain_co_entry, &data); 614*ab613350SStefan Hajnoczi aio_co_enter(ctx_a, co); 615*ab613350SStefan Hajnoczi AIO_WAIT_WHILE_UNLOCKED(NULL, !data.co_done); 616bb675689SKevin Wolf break; 617bb675689SKevin Wolf default: 618bb675689SKevin Wolf g_assert_not_reached(); 619bb675689SKevin Wolf } 620bb675689SKevin Wolf 621bb675689SKevin Wolf aio_context_acquire(ctx_a); 62297896a48SKevin Wolf blk_set_aio_context(blk, qemu_get_aio_context(), &error_abort); 623bb675689SKevin Wolf aio_context_release(ctx_a); 624bb675689SKevin Wolf 625bb675689SKevin Wolf bdrv_unref(bs); 626bb675689SKevin Wolf blk_unref(blk); 627bb675689SKevin Wolf 628bb675689SKevin Wolf out: 629bb675689SKevin Wolf iothread_join(a); 630bb675689SKevin Wolf iothread_join(b); 631bb675689SKevin Wolf } 632bb675689SKevin Wolf 633bb675689SKevin Wolf static void test_iothread_drain_all(void) 634bb675689SKevin Wolf { 635bb675689SKevin Wolf test_iothread_common(BDRV_DRAIN_ALL, 0); 636bb675689SKevin Wolf test_iothread_common(BDRV_DRAIN_ALL, 1); 637bb675689SKevin Wolf } 638bb675689SKevin Wolf 639bb675689SKevin Wolf static void test_iothread_drain(void) 640bb675689SKevin Wolf { 641bb675689SKevin Wolf test_iothread_common(BDRV_DRAIN, 0); 642bb675689SKevin Wolf test_iothread_common(BDRV_DRAIN, 1); 643bb675689SKevin Wolf } 644bb675689SKevin Wolf 6457253220dSKevin Wolf 6467253220dSKevin Wolf typedef struct TestBlockJob { 6477253220dSKevin Wolf BlockJob common; 6481b177bbeSVladimir Sementsov-Ogievskiy BlockDriverState *bs; 649d49725afSKevin Wolf int run_ret; 650d49725afSKevin Wolf int prepare_ret; 651d8b3afd5SKevin Wolf bool running; 6527253220dSKevin Wolf bool should_complete; 6537253220dSKevin Wolf } TestBlockJob; 6547253220dSKevin Wolf 655ae23dde9SKevin Wolf static int test_job_prepare(Job *job) 656ae23dde9SKevin Wolf { 657ae23dde9SKevin Wolf TestBlockJob *s = container_of(job, TestBlockJob, common.job); 658ae23dde9SKevin Wolf 659ae23dde9SKevin Wolf /* Provoke an AIO_WAIT_WHILE() call to verify there is no deadlock */ 6601b177bbeSVladimir Sementsov-Ogievskiy bdrv_flush(s->bs); 661d49725afSKevin Wolf return s->prepare_ret; 662d49725afSKevin Wolf } 663d49725afSKevin Wolf 664d49725afSKevin Wolf static void test_job_commit(Job *job) 665d49725afSKevin Wolf { 666d49725afSKevin Wolf TestBlockJob *s = container_of(job, TestBlockJob, common.job); 667d49725afSKevin Wolf 668d49725afSKevin Wolf /* Provoke an AIO_WAIT_WHILE() call to verify there is no deadlock */ 6691b177bbeSVladimir Sementsov-Ogievskiy bdrv_flush(s->bs); 670d49725afSKevin Wolf } 671d49725afSKevin Wolf 672d49725afSKevin Wolf static void test_job_abort(Job *job) 673d49725afSKevin Wolf { 674d49725afSKevin Wolf TestBlockJob *s = container_of(job, TestBlockJob, common.job); 675d49725afSKevin Wolf 676d49725afSKevin Wolf /* Provoke an AIO_WAIT_WHILE() call to verify there is no deadlock */ 6771b177bbeSVladimir Sementsov-Ogievskiy bdrv_flush(s->bs); 678ae23dde9SKevin Wolf } 679ae23dde9SKevin Wolf 680f67432a2SJohn Snow static int coroutine_fn test_job_run(Job *job, Error **errp) 6817253220dSKevin Wolf { 682f67432a2SJohn Snow TestBlockJob *s = container_of(job, TestBlockJob, common.job); 6837253220dSKevin Wolf 684d8b3afd5SKevin Wolf /* We are running the actual job code past the pause point in 685d8b3afd5SKevin Wolf * job_co_entry(). */ 686d8b3afd5SKevin Wolf s->running = true; 687d8b3afd5SKevin Wolf 6882e1795b5SKevin Wolf job_transition_to_ready(&s->common.job); 6897253220dSKevin Wolf while (!s->should_complete) { 6905599c162SKevin Wolf /* Avoid job_sleep_ns() because it marks the job as !busy. We want to 6915599c162SKevin Wolf * emulate some actual activity (probably some I/O) here so that drain 6925599c162SKevin Wolf * has to wait for this activity to stop. */ 693d8b3afd5SKevin Wolf qemu_co_sleep_ns(QEMU_CLOCK_REALTIME, 1000000); 694d8b3afd5SKevin Wolf 69589bd0305SKevin Wolf job_pause_point(&s->common.job); 6967253220dSKevin Wolf } 6977253220dSKevin Wolf 698d49725afSKevin Wolf return s->run_ret; 6997253220dSKevin Wolf } 7007253220dSKevin Wolf 7013453d972SKevin Wolf static void test_job_complete(Job *job, Error **errp) 7027253220dSKevin Wolf { 7033453d972SKevin Wolf TestBlockJob *s = container_of(job, TestBlockJob, common.job); 7047253220dSKevin Wolf s->should_complete = true; 7057253220dSKevin Wolf } 7067253220dSKevin Wolf 7077253220dSKevin Wolf BlockJobDriver test_job_driver = { 70833e9e9bdSKevin Wolf .job_driver = { 7097253220dSKevin Wolf .instance_size = sizeof(TestBlockJob), 71080fa2c75SKevin Wolf .free = block_job_free, 711b15de828SKevin Wolf .user_resume = block_job_user_resume, 712f67432a2SJohn Snow .run = test_job_run, 7137253220dSKevin Wolf .complete = test_job_complete, 714ae23dde9SKevin Wolf .prepare = test_job_prepare, 715d49725afSKevin Wolf .commit = test_job_commit, 716d49725afSKevin Wolf .abort = test_job_abort, 7173453d972SKevin Wolf }, 7187253220dSKevin Wolf }; 7197253220dSKevin Wolf 720d49725afSKevin Wolf enum test_job_result { 721d49725afSKevin Wolf TEST_JOB_SUCCESS, 722d49725afSKevin Wolf TEST_JOB_FAIL_RUN, 723d49725afSKevin Wolf TEST_JOB_FAIL_PREPARE, 724d49725afSKevin Wolf }; 725d49725afSKevin Wolf 726d8b3afd5SKevin Wolf enum test_job_drain_node { 727d8b3afd5SKevin Wolf TEST_JOB_DRAIN_SRC, 728d8b3afd5SKevin Wolf TEST_JOB_DRAIN_SRC_CHILD, 729d8b3afd5SKevin Wolf }; 730d8b3afd5SKevin Wolf 731d8b3afd5SKevin Wolf static void test_blockjob_common_drain_node(enum drain_type drain_type, 732d8b3afd5SKevin Wolf bool use_iothread, 733d8b3afd5SKevin Wolf enum test_job_result result, 734d8b3afd5SKevin Wolf enum test_job_drain_node drain_node) 7357253220dSKevin Wolf { 7367253220dSKevin Wolf BlockBackend *blk_src, *blk_target; 737d8b3afd5SKevin Wolf BlockDriverState *src, *src_backing, *src_overlay, *target, *drain_bs; 7387253220dSKevin Wolf BlockJob *job; 739d49725afSKevin Wolf TestBlockJob *tjob; 740f62c1729SKevin Wolf IOThread *iothread = NULL; 741f62c1729SKevin Wolf AioContext *ctx; 7427253220dSKevin Wolf int ret; 7437253220dSKevin Wolf 7447253220dSKevin Wolf src = bdrv_new_open_driver(&bdrv_test, "source", BDRV_O_RDWR, 7457253220dSKevin Wolf &error_abort); 746d8b3afd5SKevin Wolf src_backing = bdrv_new_open_driver(&bdrv_test, "source-backing", 747d8b3afd5SKevin Wolf BDRV_O_RDWR, &error_abort); 748d8b3afd5SKevin Wolf src_overlay = bdrv_new_open_driver(&bdrv_test, "source-overlay", 749d8b3afd5SKevin Wolf BDRV_O_RDWR, &error_abort); 750d8b3afd5SKevin Wolf 751d8b3afd5SKevin Wolf bdrv_set_backing_hd(src_overlay, src, &error_abort); 752d8b3afd5SKevin Wolf bdrv_unref(src); 753d8b3afd5SKevin Wolf bdrv_set_backing_hd(src, src_backing, &error_abort); 754d8b3afd5SKevin Wolf bdrv_unref(src_backing); 755d8b3afd5SKevin Wolf 756d861ab3aSKevin Wolf blk_src = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 757d8b3afd5SKevin Wolf blk_insert_bs(blk_src, src_overlay, &error_abort); 758d8b3afd5SKevin Wolf 759d8b3afd5SKevin Wolf switch (drain_node) { 760d8b3afd5SKevin Wolf case TEST_JOB_DRAIN_SRC: 761d8b3afd5SKevin Wolf drain_bs = src; 762d8b3afd5SKevin Wolf break; 763d8b3afd5SKevin Wolf case TEST_JOB_DRAIN_SRC_CHILD: 764d8b3afd5SKevin Wolf drain_bs = src_backing; 765d8b3afd5SKevin Wolf break; 766d8b3afd5SKevin Wolf default: 767d8b3afd5SKevin Wolf g_assert_not_reached(); 768d8b3afd5SKevin Wolf } 7697253220dSKevin Wolf 770f62c1729SKevin Wolf if (use_iothread) { 771f62c1729SKevin Wolf iothread = iothread_new(); 772f62c1729SKevin Wolf ctx = iothread_get_aio_context(iothread); 77397896a48SKevin Wolf blk_set_aio_context(blk_src, ctx, &error_abort); 774f62c1729SKevin Wolf } else { 775f62c1729SKevin Wolf ctx = qemu_get_aio_context(); 776f62c1729SKevin Wolf } 777f62c1729SKevin Wolf 7787253220dSKevin Wolf target = bdrv_new_open_driver(&bdrv_test, "target", BDRV_O_RDWR, 7797253220dSKevin Wolf &error_abort); 780d861ab3aSKevin Wolf blk_target = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 7817253220dSKevin Wolf blk_insert_bs(blk_target, target, &error_abort); 782132ada80SKevin Wolf blk_set_allow_aio_context_change(blk_target, true); 7837253220dSKevin Wolf 784f62c1729SKevin Wolf aio_context_acquire(ctx); 785d49725afSKevin Wolf tjob = block_job_create("job0", &test_job_driver, NULL, src, 786d49725afSKevin Wolf 0, BLK_PERM_ALL, 78775859b94SJohn Snow 0, 0, NULL, NULL, &error_abort); 7881b177bbeSVladimir Sementsov-Ogievskiy tjob->bs = src; 789d49725afSKevin Wolf job = &tjob->common; 7907253220dSKevin Wolf block_job_add_bdrv(job, "target", target, 0, BLK_PERM_ALL, &error_abort); 791d49725afSKevin Wolf 792d49725afSKevin Wolf switch (result) { 793d49725afSKevin Wolf case TEST_JOB_SUCCESS: 794d49725afSKevin Wolf break; 795d49725afSKevin Wolf case TEST_JOB_FAIL_RUN: 796d49725afSKevin Wolf tjob->run_ret = -EIO; 797d49725afSKevin Wolf break; 798d49725afSKevin Wolf case TEST_JOB_FAIL_PREPARE: 799d49725afSKevin Wolf tjob->prepare_ret = -EIO; 800d49725afSKevin Wolf break; 801d49725afSKevin Wolf } 8026f592e5aSEmanuele Giuseppe Esposito aio_context_release(ctx); 803d49725afSKevin Wolf 804da01ff7fSKevin Wolf job_start(&job->job); 8057253220dSKevin Wolf 806d8b3afd5SKevin Wolf if (use_iothread) { 807d8b3afd5SKevin Wolf /* job_co_entry() is run in the I/O thread, wait for the actual job 808d8b3afd5SKevin Wolf * code to start (we don't want to catch the job in the pause point in 809d8b3afd5SKevin Wolf * job_co_entry(). */ 810d8b3afd5SKevin Wolf while (!tjob->running) { 811d8b3afd5SKevin Wolf aio_poll(qemu_get_aio_context(), false); 812d8b3afd5SKevin Wolf } 813d8b3afd5SKevin Wolf } 814d8b3afd5SKevin Wolf 815191e7af3SEmanuele Giuseppe Esposito WITH_JOB_LOCK_GUARD() { 816da01ff7fSKevin Wolf g_assert_cmpint(job->job.pause_count, ==, 0); 817da01ff7fSKevin Wolf g_assert_false(job->job.paused); 818d8b3afd5SKevin Wolf g_assert_true(tjob->running); 8195599c162SKevin Wolf g_assert_true(job->job.busy); /* We're in qemu_co_sleep_ns() */ 820191e7af3SEmanuele Giuseppe Esposito } 8217253220dSKevin Wolf 822d8b3afd5SKevin Wolf do_drain_begin_unlocked(drain_type, drain_bs); 8237253220dSKevin Wolf 824191e7af3SEmanuele Giuseppe Esposito WITH_JOB_LOCK_GUARD() { 8257253220dSKevin Wolf if (drain_type == BDRV_DRAIN_ALL) { 82681193349SKevin Wolf /* bdrv_drain_all() drains both src and target */ 827da01ff7fSKevin Wolf g_assert_cmpint(job->job.pause_count, ==, 2); 8287253220dSKevin Wolf } else { 829da01ff7fSKevin Wolf g_assert_cmpint(job->job.pause_count, ==, 1); 8307253220dSKevin Wolf } 83189bd0305SKevin Wolf g_assert_true(job->job.paused); 832da01ff7fSKevin Wolf g_assert_false(job->job.busy); /* The job is paused */ 833191e7af3SEmanuele Giuseppe Esposito } 8347253220dSKevin Wolf 835d8b3afd5SKevin Wolf do_drain_end_unlocked(drain_type, drain_bs); 836f62c1729SKevin Wolf 837f62c1729SKevin Wolf if (use_iothread) { 838191e7af3SEmanuele Giuseppe Esposito /* 839191e7af3SEmanuele Giuseppe Esposito * Here we are waiting for the paused status to change, 840191e7af3SEmanuele Giuseppe Esposito * so don't bother protecting the read every time. 841191e7af3SEmanuele Giuseppe Esposito * 842191e7af3SEmanuele Giuseppe Esposito * paused is reset in the I/O thread, wait for it 843191e7af3SEmanuele Giuseppe Esposito */ 844f62c1729SKevin Wolf while (job->job.paused) { 845f62c1729SKevin Wolf aio_poll(qemu_get_aio_context(), false); 846f62c1729SKevin Wolf } 847f62c1729SKevin Wolf } 8487253220dSKevin Wolf 849191e7af3SEmanuele Giuseppe Esposito WITH_JOB_LOCK_GUARD() { 850da01ff7fSKevin Wolf g_assert_cmpint(job->job.pause_count, ==, 0); 851da01ff7fSKevin Wolf g_assert_false(job->job.paused); 85289bd0305SKevin Wolf g_assert_true(job->job.busy); /* We're in qemu_co_sleep_ns() */ 853191e7af3SEmanuele Giuseppe Esposito } 8547253220dSKevin Wolf 855132ada80SKevin Wolf do_drain_begin_unlocked(drain_type, target); 8567253220dSKevin Wolf 857191e7af3SEmanuele Giuseppe Esposito WITH_JOB_LOCK_GUARD() { 8587253220dSKevin Wolf if (drain_type == BDRV_DRAIN_ALL) { 85981193349SKevin Wolf /* bdrv_drain_all() drains both src and target */ 860da01ff7fSKevin Wolf g_assert_cmpint(job->job.pause_count, ==, 2); 8617253220dSKevin Wolf } else { 862da01ff7fSKevin Wolf g_assert_cmpint(job->job.pause_count, ==, 1); 8637253220dSKevin Wolf } 86489bd0305SKevin Wolf g_assert_true(job->job.paused); 865da01ff7fSKevin Wolf g_assert_false(job->job.busy); /* The job is paused */ 866191e7af3SEmanuele Giuseppe Esposito } 8677253220dSKevin Wolf 868132ada80SKevin Wolf do_drain_end_unlocked(drain_type, target); 8697253220dSKevin Wolf 870f62c1729SKevin Wolf if (use_iothread) { 871191e7af3SEmanuele Giuseppe Esposito /* 872191e7af3SEmanuele Giuseppe Esposito * Here we are waiting for the paused status to change, 873191e7af3SEmanuele Giuseppe Esposito * so don't bother protecting the read every time. 874191e7af3SEmanuele Giuseppe Esposito * 875191e7af3SEmanuele Giuseppe Esposito * paused is reset in the I/O thread, wait for it 876191e7af3SEmanuele Giuseppe Esposito */ 877f62c1729SKevin Wolf while (job->job.paused) { 878f62c1729SKevin Wolf aio_poll(qemu_get_aio_context(), false); 879f62c1729SKevin Wolf } 880f62c1729SKevin Wolf } 881f62c1729SKevin Wolf 882191e7af3SEmanuele Giuseppe Esposito WITH_JOB_LOCK_GUARD() { 883da01ff7fSKevin Wolf g_assert_cmpint(job->job.pause_count, ==, 0); 884da01ff7fSKevin Wolf g_assert_false(job->job.paused); 8855599c162SKevin Wolf g_assert_true(job->job.busy); /* We're in qemu_co_sleep_ns() */ 886191e7af3SEmanuele Giuseppe Esposito } 8877253220dSKevin Wolf 888191e7af3SEmanuele Giuseppe Esposito WITH_JOB_LOCK_GUARD() { 889191e7af3SEmanuele Giuseppe Esposito ret = job_complete_sync_locked(&job->job, &error_abort); 890191e7af3SEmanuele Giuseppe Esposito } 891d49725afSKevin Wolf g_assert_cmpint(ret, ==, (result == TEST_JOB_SUCCESS ? 0 : -EIO)); 8927253220dSKevin Wolf 8936f592e5aSEmanuele Giuseppe Esposito aio_context_acquire(ctx); 894f62c1729SKevin Wolf if (use_iothread) { 89597896a48SKevin Wolf blk_set_aio_context(blk_src, qemu_get_aio_context(), &error_abort); 896ad943dcbSKevin Wolf assert(blk_get_aio_context(blk_target) == qemu_get_aio_context()); 897f62c1729SKevin Wolf } 898f62c1729SKevin Wolf aio_context_release(ctx); 899f62c1729SKevin Wolf 9007253220dSKevin Wolf blk_unref(blk_src); 9017253220dSKevin Wolf blk_unref(blk_target); 902d8b3afd5SKevin Wolf bdrv_unref(src_overlay); 9037253220dSKevin Wolf bdrv_unref(target); 904f62c1729SKevin Wolf 905f62c1729SKevin Wolf if (iothread) { 906f62c1729SKevin Wolf iothread_join(iothread); 907f62c1729SKevin Wolf } 9087253220dSKevin Wolf } 9097253220dSKevin Wolf 910d8b3afd5SKevin Wolf static void test_blockjob_common(enum drain_type drain_type, bool use_iothread, 911d8b3afd5SKevin Wolf enum test_job_result result) 912d8b3afd5SKevin Wolf { 913d8b3afd5SKevin Wolf test_blockjob_common_drain_node(drain_type, use_iothread, result, 914d8b3afd5SKevin Wolf TEST_JOB_DRAIN_SRC); 915d8b3afd5SKevin Wolf test_blockjob_common_drain_node(drain_type, use_iothread, result, 916d8b3afd5SKevin Wolf TEST_JOB_DRAIN_SRC_CHILD); 917d8b3afd5SKevin Wolf } 918d8b3afd5SKevin Wolf 9197253220dSKevin Wolf static void test_blockjob_drain_all(void) 9207253220dSKevin Wolf { 921d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN_ALL, false, TEST_JOB_SUCCESS); 9227253220dSKevin Wolf } 9237253220dSKevin Wolf 9247253220dSKevin Wolf static void test_blockjob_drain(void) 9257253220dSKevin Wolf { 926d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN, false, TEST_JOB_SUCCESS); 9277253220dSKevin Wolf } 9287253220dSKevin Wolf 929d49725afSKevin Wolf static void test_blockjob_error_drain_all(void) 930d49725afSKevin Wolf { 931d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN_ALL, false, TEST_JOB_FAIL_RUN); 932d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN_ALL, false, TEST_JOB_FAIL_PREPARE); 933d49725afSKevin Wolf } 934d49725afSKevin Wolf 935d49725afSKevin Wolf static void test_blockjob_error_drain(void) 936d49725afSKevin Wolf { 937d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN, false, TEST_JOB_FAIL_RUN); 938d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN, false, TEST_JOB_FAIL_PREPARE); 939d49725afSKevin Wolf } 940d49725afSKevin Wolf 941f62c1729SKevin Wolf static void test_blockjob_iothread_drain_all(void) 942f62c1729SKevin Wolf { 943d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN_ALL, true, TEST_JOB_SUCCESS); 944f62c1729SKevin Wolf } 945f62c1729SKevin Wolf 946f62c1729SKevin Wolf static void test_blockjob_iothread_drain(void) 947f62c1729SKevin Wolf { 948d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN, true, TEST_JOB_SUCCESS); 949f62c1729SKevin Wolf } 950f62c1729SKevin Wolf 951d49725afSKevin Wolf static void test_blockjob_iothread_error_drain_all(void) 952d49725afSKevin Wolf { 953d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN_ALL, true, TEST_JOB_FAIL_RUN); 954d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN_ALL, true, TEST_JOB_FAIL_PREPARE); 955d49725afSKevin Wolf } 956d49725afSKevin Wolf 957d49725afSKevin Wolf static void test_blockjob_iothread_error_drain(void) 958d49725afSKevin Wolf { 959d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN, true, TEST_JOB_FAIL_RUN); 960d49725afSKevin Wolf test_blockjob_common(BDRV_DRAIN, true, TEST_JOB_FAIL_PREPARE); 961d49725afSKevin Wolf } 962d49725afSKevin Wolf 9634c8158e3SMax Reitz 9644c8158e3SMax Reitz typedef struct BDRVTestTopState { 9654c8158e3SMax Reitz BdrvChild *wait_child; 9664c8158e3SMax Reitz } BDRVTestTopState; 9674c8158e3SMax Reitz 9684c8158e3SMax Reitz static void bdrv_test_top_close(BlockDriverState *bs) 9694c8158e3SMax Reitz { 9704c8158e3SMax Reitz BdrvChild *c, *next_c; 9714c8158e3SMax Reitz QLIST_FOREACH_SAFE(c, &bs->children, next, next_c) { 9724c8158e3SMax Reitz bdrv_unref_child(bs, c); 9734c8158e3SMax Reitz } 9744c8158e3SMax Reitz } 9754c8158e3SMax Reitz 976b9b10c35SKevin Wolf static int coroutine_fn GRAPH_RDLOCK 977b9b10c35SKevin Wolf bdrv_test_top_co_preadv(BlockDriverState *bs, int64_t offset, int64_t bytes, 978b9b10c35SKevin Wolf QEMUIOVector *qiov, BdrvRequestFlags flags) 9794c8158e3SMax Reitz { 9804c8158e3SMax Reitz BDRVTestTopState *tts = bs->opaque; 9814c8158e3SMax Reitz return bdrv_co_preadv(tts->wait_child, offset, bytes, qiov, flags); 9824c8158e3SMax Reitz } 9834c8158e3SMax Reitz 9844c8158e3SMax Reitz static BlockDriver bdrv_test_top_driver = { 9854c8158e3SMax Reitz .format_name = "test_top_driver", 9864c8158e3SMax Reitz .instance_size = sizeof(BDRVTestTopState), 9874c8158e3SMax Reitz 9884c8158e3SMax Reitz .bdrv_close = bdrv_test_top_close, 9894c8158e3SMax Reitz .bdrv_co_preadv = bdrv_test_top_co_preadv, 9904c8158e3SMax Reitz 99169dca43dSMax Reitz .bdrv_child_perm = bdrv_default_perms, 9924c8158e3SMax Reitz }; 9934c8158e3SMax Reitz 9944c8158e3SMax Reitz typedef struct TestCoDeleteByDrainData { 9954c8158e3SMax Reitz BlockBackend *blk; 9964c8158e3SMax Reitz bool detach_instead_of_delete; 9974c8158e3SMax Reitz bool done; 9984c8158e3SMax Reitz } TestCoDeleteByDrainData; 9994c8158e3SMax Reitz 10004c8158e3SMax Reitz static void coroutine_fn test_co_delete_by_drain(void *opaque) 10014c8158e3SMax Reitz { 10024c8158e3SMax Reitz TestCoDeleteByDrainData *dbdd = opaque; 10034c8158e3SMax Reitz BlockBackend *blk = dbdd->blk; 10044c8158e3SMax Reitz BlockDriverState *bs = blk_bs(blk); 10054c8158e3SMax Reitz BDRVTestTopState *tts = bs->opaque; 10064c8158e3SMax Reitz void *buffer = g_malloc(65536); 1007405d8fe0SVladimir Sementsov-Ogievskiy QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, buffer, 65536); 10084c8158e3SMax Reitz 10094c8158e3SMax Reitz /* Pretend some internal write operation from parent to child. 10104c8158e3SMax Reitz * Important: We have to read from the child, not from the parent! 10114c8158e3SMax Reitz * Draining works by first propagating it all up the tree to the 10124c8158e3SMax Reitz * root and then waiting for drainage from root to the leaves 10134c8158e3SMax Reitz * (protocol nodes). If we have a request waiting on the root, 10144c8158e3SMax Reitz * everything will be drained before we go back down the tree, but 10154c8158e3SMax Reitz * we do not want that. We want to be in the middle of draining 10164c8158e3SMax Reitz * when this following requests returns. */ 101787f130bdSKevin Wolf bdrv_graph_co_rdlock(); 10184c8158e3SMax Reitz bdrv_co_preadv(tts->wait_child, 0, 65536, &qiov, 0); 101987f130bdSKevin Wolf bdrv_graph_co_rdunlock(); 10204c8158e3SMax Reitz 10214c8158e3SMax Reitz g_assert_cmpint(bs->refcnt, ==, 1); 10224c8158e3SMax Reitz 10234c8158e3SMax Reitz if (!dbdd->detach_instead_of_delete) { 102401a10c24SKevin Wolf blk_co_unref(blk); 10254c8158e3SMax Reitz } else { 10264c8158e3SMax Reitz BdrvChild *c, *next_c; 10274c8158e3SMax Reitz QLIST_FOREACH_SAFE(c, &bs->children, next, next_c) { 10284c8158e3SMax Reitz bdrv_unref_child(bs, c); 10294c8158e3SMax Reitz } 10304c8158e3SMax Reitz } 10314c8158e3SMax Reitz 10324c8158e3SMax Reitz dbdd->done = true; 10337b43db3cSMarc-André Lureau g_free(buffer); 10344c8158e3SMax Reitz } 10354c8158e3SMax Reitz 10364c8158e3SMax Reitz /** 10374c8158e3SMax Reitz * Test what happens when some BDS has some children, you drain one of 10384c8158e3SMax Reitz * them and this results in the BDS being deleted. 10394c8158e3SMax Reitz * 10404c8158e3SMax Reitz * If @detach_instead_of_delete is set, the BDS is not going to be 10414c8158e3SMax Reitz * deleted but will only detach all of its children. 10424c8158e3SMax Reitz */ 1043ebd31837SKevin Wolf static void do_test_delete_by_drain(bool detach_instead_of_delete, 1044ebd31837SKevin Wolf enum drain_type drain_type) 10454c8158e3SMax Reitz { 10464c8158e3SMax Reitz BlockBackend *blk; 10474c8158e3SMax Reitz BlockDriverState *bs, *child_bs, *null_bs; 10484c8158e3SMax Reitz BDRVTestTopState *tts; 10494c8158e3SMax Reitz TestCoDeleteByDrainData dbdd; 10504c8158e3SMax Reitz Coroutine *co; 10514c8158e3SMax Reitz 10524c8158e3SMax Reitz bs = bdrv_new_open_driver(&bdrv_test_top_driver, "top", BDRV_O_RDWR, 10534c8158e3SMax Reitz &error_abort); 10544c8158e3SMax Reitz bs->total_sectors = 65536 >> BDRV_SECTOR_BITS; 10554c8158e3SMax Reitz tts = bs->opaque; 10564c8158e3SMax Reitz 10574c8158e3SMax Reitz null_bs = bdrv_open("null-co://", NULL, NULL, BDRV_O_RDWR | BDRV_O_PROTOCOL, 10584c8158e3SMax Reitz &error_abort); 1059a16be3cdSMax Reitz bdrv_attach_child(bs, null_bs, "null-child", &child_of_bds, 1060a16be3cdSMax Reitz BDRV_CHILD_DATA, &error_abort); 10614c8158e3SMax Reitz 10624c8158e3SMax Reitz /* This child will be the one to pass to requests through to, and 10634c8158e3SMax Reitz * it will stall until a drain occurs */ 10644c8158e3SMax Reitz child_bs = bdrv_new_open_driver(&bdrv_test, "child", BDRV_O_RDWR, 10654c8158e3SMax Reitz &error_abort); 10664c8158e3SMax Reitz child_bs->total_sectors = 65536 >> BDRV_SECTOR_BITS; 10674c8158e3SMax Reitz /* Takes our reference to child_bs */ 1068a16be3cdSMax Reitz tts->wait_child = bdrv_attach_child(bs, child_bs, "wait-child", 1069a16be3cdSMax Reitz &child_of_bds, 1070a16be3cdSMax Reitz BDRV_CHILD_DATA | BDRV_CHILD_PRIMARY, 1071a16be3cdSMax Reitz &error_abort); 10724c8158e3SMax Reitz 10734c8158e3SMax Reitz /* This child is just there to be deleted 10744c8158e3SMax Reitz * (for detach_instead_of_delete == true) */ 10754c8158e3SMax Reitz null_bs = bdrv_open("null-co://", NULL, NULL, BDRV_O_RDWR | BDRV_O_PROTOCOL, 10764c8158e3SMax Reitz &error_abort); 1077a16be3cdSMax Reitz bdrv_attach_child(bs, null_bs, "null-child", &child_of_bds, BDRV_CHILD_DATA, 1078a16be3cdSMax Reitz &error_abort); 10794c8158e3SMax Reitz 1080d861ab3aSKevin Wolf blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 10814c8158e3SMax Reitz blk_insert_bs(blk, bs, &error_abort); 10824c8158e3SMax Reitz 10834c8158e3SMax Reitz /* Referenced by blk now */ 10844c8158e3SMax Reitz bdrv_unref(bs); 10854c8158e3SMax Reitz 10864c8158e3SMax Reitz g_assert_cmpint(bs->refcnt, ==, 1); 10874c8158e3SMax Reitz g_assert_cmpint(child_bs->refcnt, ==, 1); 10884c8158e3SMax Reitz g_assert_cmpint(null_bs->refcnt, ==, 1); 10894c8158e3SMax Reitz 10904c8158e3SMax Reitz 10914c8158e3SMax Reitz dbdd = (TestCoDeleteByDrainData){ 10924c8158e3SMax Reitz .blk = blk, 10934c8158e3SMax Reitz .detach_instead_of_delete = detach_instead_of_delete, 10944c8158e3SMax Reitz .done = false, 10954c8158e3SMax Reitz }; 10964c8158e3SMax Reitz co = qemu_coroutine_create(test_co_delete_by_drain, &dbdd); 10974c8158e3SMax Reitz qemu_coroutine_enter(co); 10984c8158e3SMax Reitz 10994c8158e3SMax Reitz /* Drain the child while the read operation is still pending. 11004c8158e3SMax Reitz * This should result in the operation finishing and 11014c8158e3SMax Reitz * test_co_delete_by_drain() resuming. Thus, @bs will be deleted 11024c8158e3SMax Reitz * and the coroutine will exit while this drain operation is still 11034c8158e3SMax Reitz * in progress. */ 1104ebd31837SKevin Wolf switch (drain_type) { 1105ebd31837SKevin Wolf case BDRV_DRAIN: 11064c8158e3SMax Reitz bdrv_ref(child_bs); 11074c8158e3SMax Reitz bdrv_drain(child_bs); 11084c8158e3SMax Reitz bdrv_unref(child_bs); 1109ebd31837SKevin Wolf break; 111019f7a7e5SKevin Wolf case BDRV_DRAIN_ALL: 111119f7a7e5SKevin Wolf bdrv_drain_all_begin(); 111219f7a7e5SKevin Wolf bdrv_drain_all_end(); 111319f7a7e5SKevin Wolf break; 1114ebd31837SKevin Wolf default: 1115ebd31837SKevin Wolf g_assert_not_reached(); 1116ebd31837SKevin Wolf } 11174c8158e3SMax Reitz 11184c8158e3SMax Reitz while (!dbdd.done) { 11194c8158e3SMax Reitz aio_poll(qemu_get_aio_context(), true); 11204c8158e3SMax Reitz } 11214c8158e3SMax Reitz 11224c8158e3SMax Reitz if (detach_instead_of_delete) { 11234c8158e3SMax Reitz /* Here, the reference has not passed over to the coroutine, 11244c8158e3SMax Reitz * so we have to delete the BB ourselves */ 11254c8158e3SMax Reitz blk_unref(blk); 11264c8158e3SMax Reitz } 11274c8158e3SMax Reitz } 11284c8158e3SMax Reitz 11294c8158e3SMax Reitz static void test_delete_by_drain(void) 11304c8158e3SMax Reitz { 1131ebd31837SKevin Wolf do_test_delete_by_drain(false, BDRV_DRAIN); 11324c8158e3SMax Reitz } 11334c8158e3SMax Reitz 113419f7a7e5SKevin Wolf static void test_detach_by_drain_all(void) 113519f7a7e5SKevin Wolf { 113619f7a7e5SKevin Wolf do_test_delete_by_drain(true, BDRV_DRAIN_ALL); 113719f7a7e5SKevin Wolf } 113819f7a7e5SKevin Wolf 11394c8158e3SMax Reitz static void test_detach_by_drain(void) 11404c8158e3SMax Reitz { 1141ebd31837SKevin Wolf do_test_delete_by_drain(true, BDRV_DRAIN); 1142ebd31837SKevin Wolf } 1143ebd31837SKevin Wolf 11444c8158e3SMax Reitz 1145231281abSKevin Wolf struct detach_by_parent_data { 1146231281abSKevin Wolf BlockDriverState *parent_b; 1147231281abSKevin Wolf BdrvChild *child_b; 1148231281abSKevin Wolf BlockDriverState *c; 1149231281abSKevin Wolf BdrvChild *child_c; 115057320ca9SKevin Wolf bool by_parent_cb; 1151617f3a96SKevin Wolf bool detach_on_drain; 1152231281abSKevin Wolf }; 115357320ca9SKevin Wolf static struct detach_by_parent_data detach_by_parent_data; 1154231281abSKevin Wolf 115557320ca9SKevin Wolf static void detach_indirect_bh(void *opaque) 1156231281abSKevin Wolf { 1157231281abSKevin Wolf struct detach_by_parent_data *data = opaque; 1158231281abSKevin Wolf 1159617f3a96SKevin Wolf bdrv_dec_in_flight(data->child_b->bs); 1160231281abSKevin Wolf bdrv_unref_child(data->parent_b, data->child_b); 1161231281abSKevin Wolf 1162231281abSKevin Wolf bdrv_ref(data->c); 1163231281abSKevin Wolf data->child_c = bdrv_attach_child(data->parent_b, data->c, "PB-C", 1164a16be3cdSMax Reitz &child_of_bds, BDRV_CHILD_DATA, 1165a16be3cdSMax Reitz &error_abort); 1166231281abSKevin Wolf } 1167231281abSKevin Wolf 116857320ca9SKevin Wolf static void detach_by_parent_aio_cb(void *opaque, int ret) 116957320ca9SKevin Wolf { 117057320ca9SKevin Wolf struct detach_by_parent_data *data = &detach_by_parent_data; 117157320ca9SKevin Wolf 117257320ca9SKevin Wolf g_assert_cmpint(ret, ==, 0); 117357320ca9SKevin Wolf if (data->by_parent_cb) { 1174617f3a96SKevin Wolf bdrv_inc_in_flight(data->child_b->bs); 117557320ca9SKevin Wolf detach_indirect_bh(data); 117657320ca9SKevin Wolf } 117757320ca9SKevin Wolf } 117857320ca9SKevin Wolf 117957320ca9SKevin Wolf static void detach_by_driver_cb_drained_begin(BdrvChild *child) 118057320ca9SKevin Wolf { 1181617f3a96SKevin Wolf struct detach_by_parent_data *data = &detach_by_parent_data; 1182617f3a96SKevin Wolf 1183617f3a96SKevin Wolf if (!data->detach_on_drain) { 1184617f3a96SKevin Wolf return; 1185617f3a96SKevin Wolf } 1186617f3a96SKevin Wolf data->detach_on_drain = false; 1187617f3a96SKevin Wolf 1188617f3a96SKevin Wolf bdrv_inc_in_flight(data->child_b->bs); 118957320ca9SKevin Wolf aio_bh_schedule_oneshot(qemu_get_current_aio_context(), 119057320ca9SKevin Wolf detach_indirect_bh, &detach_by_parent_data); 1191a16be3cdSMax Reitz child_of_bds.drained_begin(child); 119257320ca9SKevin Wolf } 119357320ca9SKevin Wolf 1194bd86fb99SMax Reitz static BdrvChildClass detach_by_driver_cb_class; 119557320ca9SKevin Wolf 1196231281abSKevin Wolf /* 1197231281abSKevin Wolf * Initial graph: 1198231281abSKevin Wolf * 1199231281abSKevin Wolf * PA PB 1200231281abSKevin Wolf * \ / \ 1201231281abSKevin Wolf * A B C 1202231281abSKevin Wolf * 120357320ca9SKevin Wolf * by_parent_cb == true: Test that parent callbacks don't poll 120457320ca9SKevin Wolf * 120557320ca9SKevin Wolf * PA has a pending write request whose callback changes the child nodes of 120657320ca9SKevin Wolf * PB: It removes B and adds C instead. The subtree of PB is drained, which 120757320ca9SKevin Wolf * will indirectly drain the write request, too. 120857320ca9SKevin Wolf * 120957320ca9SKevin Wolf * by_parent_cb == false: Test that bdrv_drain_invoke() doesn't poll 121057320ca9SKevin Wolf * 1211bd86fb99SMax Reitz * PA's BdrvChildClass has a .drained_begin callback that schedules a BH 121257320ca9SKevin Wolf * that does the same graph change. If bdrv_drain_invoke() calls it, the 121357320ca9SKevin Wolf * state is messed up, but if it is only polled in the single 121457320ca9SKevin Wolf * BDRV_POLL_WHILE() at the end of the drain, this should work fine. 1215231281abSKevin Wolf */ 121657320ca9SKevin Wolf static void test_detach_indirect(bool by_parent_cb) 1217231281abSKevin Wolf { 1218231281abSKevin Wolf BlockBackend *blk; 1219231281abSKevin Wolf BlockDriverState *parent_a, *parent_b, *a, *b, *c; 1220231281abSKevin Wolf BdrvChild *child_a, *child_b; 1221231281abSKevin Wolf BlockAIOCB *acb; 1222231281abSKevin Wolf 1223405d8fe0SVladimir Sementsov-Ogievskiy QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, NULL, 0); 1224231281abSKevin Wolf 122557320ca9SKevin Wolf if (!by_parent_cb) { 1226a16be3cdSMax Reitz detach_by_driver_cb_class = child_of_bds; 1227bd86fb99SMax Reitz detach_by_driver_cb_class.drained_begin = 122857320ca9SKevin Wolf detach_by_driver_cb_drained_begin; 1229617f3a96SKevin Wolf detach_by_driver_cb_class.drained_end = NULL; 1230617f3a96SKevin Wolf detach_by_driver_cb_class.drained_poll = NULL; 123157320ca9SKevin Wolf } 123257320ca9SKevin Wolf 1233617f3a96SKevin Wolf detach_by_parent_data = (struct detach_by_parent_data) { 1234617f3a96SKevin Wolf .detach_on_drain = false, 1235617f3a96SKevin Wolf }; 1236617f3a96SKevin Wolf 1237231281abSKevin Wolf /* Create all involved nodes */ 1238231281abSKevin Wolf parent_a = bdrv_new_open_driver(&bdrv_test, "parent-a", BDRV_O_RDWR, 1239231281abSKevin Wolf &error_abort); 1240231281abSKevin Wolf parent_b = bdrv_new_open_driver(&bdrv_test, "parent-b", 0, 1241231281abSKevin Wolf &error_abort); 1242231281abSKevin Wolf 1243231281abSKevin Wolf a = bdrv_new_open_driver(&bdrv_test, "a", BDRV_O_RDWR, &error_abort); 1244231281abSKevin Wolf b = bdrv_new_open_driver(&bdrv_test, "b", BDRV_O_RDWR, &error_abort); 1245231281abSKevin Wolf c = bdrv_new_open_driver(&bdrv_test, "c", BDRV_O_RDWR, &error_abort); 1246231281abSKevin Wolf 1247231281abSKevin Wolf /* blk is a BB for parent-a */ 1248d861ab3aSKevin Wolf blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 1249231281abSKevin Wolf blk_insert_bs(blk, parent_a, &error_abort); 1250231281abSKevin Wolf bdrv_unref(parent_a); 1251231281abSKevin Wolf 125257320ca9SKevin Wolf /* If we want to get bdrv_drain_invoke() to call aio_poll(), the driver 125357320ca9SKevin Wolf * callback must not return immediately. */ 125457320ca9SKevin Wolf if (!by_parent_cb) { 125557320ca9SKevin Wolf BDRVTestState *s = parent_a->opaque; 125657320ca9SKevin Wolf s->sleep_in_drain_begin = true; 125757320ca9SKevin Wolf } 125857320ca9SKevin Wolf 1259231281abSKevin Wolf /* Set child relationships */ 1260231281abSKevin Wolf bdrv_ref(b); 1261231281abSKevin Wolf bdrv_ref(a); 1262a16be3cdSMax Reitz child_b = bdrv_attach_child(parent_b, b, "PB-B", &child_of_bds, 1263a16be3cdSMax Reitz BDRV_CHILD_DATA, &error_abort); 126425191e5fSMax Reitz child_a = bdrv_attach_child(parent_b, a, "PB-A", &child_of_bds, 126525191e5fSMax Reitz BDRV_CHILD_COW, &error_abort); 1266231281abSKevin Wolf 1267231281abSKevin Wolf bdrv_ref(a); 126857320ca9SKevin Wolf bdrv_attach_child(parent_a, a, "PA-A", 1269a16be3cdSMax Reitz by_parent_cb ? &child_of_bds : &detach_by_driver_cb_class, 1270a16be3cdSMax Reitz BDRV_CHILD_DATA, &error_abort); 1271231281abSKevin Wolf 1272231281abSKevin Wolf g_assert_cmpint(parent_a->refcnt, ==, 1); 1273231281abSKevin Wolf g_assert_cmpint(parent_b->refcnt, ==, 1); 1274231281abSKevin Wolf g_assert_cmpint(a->refcnt, ==, 3); 1275231281abSKevin Wolf g_assert_cmpint(b->refcnt, ==, 2); 1276231281abSKevin Wolf g_assert_cmpint(c->refcnt, ==, 1); 1277231281abSKevin Wolf 1278231281abSKevin Wolf g_assert(QLIST_FIRST(&parent_b->children) == child_a); 1279231281abSKevin Wolf g_assert(QLIST_NEXT(child_a, next) == child_b); 1280231281abSKevin Wolf g_assert(QLIST_NEXT(child_b, next) == NULL); 1281231281abSKevin Wolf 1282231281abSKevin Wolf /* Start the evil write request */ 128357320ca9SKevin Wolf detach_by_parent_data = (struct detach_by_parent_data) { 1284231281abSKevin Wolf .parent_b = parent_b, 1285231281abSKevin Wolf .child_b = child_b, 1286231281abSKevin Wolf .c = c, 128757320ca9SKevin Wolf .by_parent_cb = by_parent_cb, 1288617f3a96SKevin Wolf .detach_on_drain = true, 1289231281abSKevin Wolf }; 129057320ca9SKevin Wolf acb = blk_aio_preadv(blk, 0, &qiov, 0, detach_by_parent_aio_cb, NULL); 1291231281abSKevin Wolf g_assert(acb != NULL); 1292231281abSKevin Wolf 1293231281abSKevin Wolf /* Drain and check the expected result */ 1294299403aeSKevin Wolf bdrv_drained_begin(parent_b); 1295299403aeSKevin Wolf bdrv_drained_begin(a); 1296299403aeSKevin Wolf bdrv_drained_begin(b); 1297299403aeSKevin Wolf bdrv_drained_begin(c); 1298231281abSKevin Wolf 129957320ca9SKevin Wolf g_assert(detach_by_parent_data.child_c != NULL); 1300231281abSKevin Wolf 1301231281abSKevin Wolf g_assert_cmpint(parent_a->refcnt, ==, 1); 1302231281abSKevin Wolf g_assert_cmpint(parent_b->refcnt, ==, 1); 1303231281abSKevin Wolf g_assert_cmpint(a->refcnt, ==, 3); 1304231281abSKevin Wolf g_assert_cmpint(b->refcnt, ==, 1); 1305231281abSKevin Wolf g_assert_cmpint(c->refcnt, ==, 2); 1306231281abSKevin Wolf 130757320ca9SKevin Wolf g_assert(QLIST_FIRST(&parent_b->children) == detach_by_parent_data.child_c); 130857320ca9SKevin Wolf g_assert(QLIST_NEXT(detach_by_parent_data.child_c, next) == child_a); 1309231281abSKevin Wolf g_assert(QLIST_NEXT(child_a, next) == NULL); 1310231281abSKevin Wolf 1311231281abSKevin Wolf g_assert_cmpint(parent_a->quiesce_counter, ==, 1); 1312299403aeSKevin Wolf g_assert_cmpint(parent_b->quiesce_counter, ==, 3); 1313231281abSKevin Wolf g_assert_cmpint(a->quiesce_counter, ==, 1); 1314299403aeSKevin Wolf g_assert_cmpint(b->quiesce_counter, ==, 1); 1315231281abSKevin Wolf g_assert_cmpint(c->quiesce_counter, ==, 1); 1316231281abSKevin Wolf 1317299403aeSKevin Wolf bdrv_drained_end(parent_b); 1318299403aeSKevin Wolf bdrv_drained_end(a); 1319299403aeSKevin Wolf bdrv_drained_end(b); 1320299403aeSKevin Wolf bdrv_drained_end(c); 1321231281abSKevin Wolf 1322231281abSKevin Wolf bdrv_unref(parent_b); 1323231281abSKevin Wolf blk_unref(blk); 1324231281abSKevin Wolf 1325231281abSKevin Wolf g_assert_cmpint(a->refcnt, ==, 1); 1326231281abSKevin Wolf g_assert_cmpint(b->refcnt, ==, 1); 1327231281abSKevin Wolf g_assert_cmpint(c->refcnt, ==, 1); 1328231281abSKevin Wolf bdrv_unref(a); 1329231281abSKevin Wolf bdrv_unref(b); 1330231281abSKevin Wolf bdrv_unref(c); 1331231281abSKevin Wolf } 1332231281abSKevin Wolf 133357320ca9SKevin Wolf static void test_detach_by_parent_cb(void) 133457320ca9SKevin Wolf { 133557320ca9SKevin Wolf test_detach_indirect(true); 133657320ca9SKevin Wolf } 133757320ca9SKevin Wolf 133857320ca9SKevin Wolf static void test_detach_by_driver_cb(void) 133957320ca9SKevin Wolf { 134057320ca9SKevin Wolf test_detach_indirect(false); 134157320ca9SKevin Wolf } 1342231281abSKevin Wolf 1343b994c5bcSKevin Wolf static void test_append_to_drained(void) 1344b994c5bcSKevin Wolf { 1345b994c5bcSKevin Wolf BlockBackend *blk; 1346b994c5bcSKevin Wolf BlockDriverState *base, *overlay; 1347b994c5bcSKevin Wolf BDRVTestState *base_s, *overlay_s; 1348b994c5bcSKevin Wolf 1349d861ab3aSKevin Wolf blk = blk_new(qemu_get_aio_context(), BLK_PERM_ALL, BLK_PERM_ALL); 1350b994c5bcSKevin Wolf base = bdrv_new_open_driver(&bdrv_test, "base", BDRV_O_RDWR, &error_abort); 1351b994c5bcSKevin Wolf base_s = base->opaque; 1352b994c5bcSKevin Wolf blk_insert_bs(blk, base, &error_abort); 1353b994c5bcSKevin Wolf 1354b994c5bcSKevin Wolf overlay = bdrv_new_open_driver(&bdrv_test, "overlay", BDRV_O_RDWR, 1355b994c5bcSKevin Wolf &error_abort); 1356b994c5bcSKevin Wolf overlay_s = overlay->opaque; 1357b994c5bcSKevin Wolf 1358b994c5bcSKevin Wolf do_drain_begin(BDRV_DRAIN, base); 1359b994c5bcSKevin Wolf g_assert_cmpint(base->quiesce_counter, ==, 1); 1360b994c5bcSKevin Wolf g_assert_cmpint(base_s->drain_count, ==, 1); 1361b994c5bcSKevin Wolf g_assert_cmpint(base->in_flight, ==, 0); 1362b994c5bcSKevin Wolf 1363b994c5bcSKevin Wolf bdrv_append(overlay, base, &error_abort); 1364b994c5bcSKevin Wolf g_assert_cmpint(base->in_flight, ==, 0); 1365b994c5bcSKevin Wolf g_assert_cmpint(overlay->in_flight, ==, 0); 1366b994c5bcSKevin Wolf 1367b994c5bcSKevin Wolf g_assert_cmpint(base->quiesce_counter, ==, 1); 1368b994c5bcSKevin Wolf g_assert_cmpint(base_s->drain_count, ==, 1); 1369b994c5bcSKevin Wolf g_assert_cmpint(overlay->quiesce_counter, ==, 1); 1370b994c5bcSKevin Wolf g_assert_cmpint(overlay_s->drain_count, ==, 1); 1371b994c5bcSKevin Wolf 1372b994c5bcSKevin Wolf do_drain_end(BDRV_DRAIN, base); 1373b994c5bcSKevin Wolf 1374b994c5bcSKevin Wolf g_assert_cmpint(base->quiesce_counter, ==, 0); 1375b994c5bcSKevin Wolf g_assert_cmpint(base_s->drain_count, ==, 0); 1376b994c5bcSKevin Wolf g_assert_cmpint(overlay->quiesce_counter, ==, 0); 1377b994c5bcSKevin Wolf g_assert_cmpint(overlay_s->drain_count, ==, 0); 1378b994c5bcSKevin Wolf 1379ae9d4417SVladimir Sementsov-Ogievskiy bdrv_unref(overlay); 1380b994c5bcSKevin Wolf bdrv_unref(base); 1381b994c5bcSKevin Wolf blk_unref(blk); 1382b994c5bcSKevin Wolf } 1383b994c5bcSKevin Wolf 1384247d2737SKevin Wolf static void test_set_aio_context(void) 1385247d2737SKevin Wolf { 1386247d2737SKevin Wolf BlockDriverState *bs; 1387247d2737SKevin Wolf IOThread *a = iothread_new(); 1388247d2737SKevin Wolf IOThread *b = iothread_new(); 1389247d2737SKevin Wolf AioContext *ctx_a = iothread_get_aio_context(a); 1390247d2737SKevin Wolf AioContext *ctx_b = iothread_get_aio_context(b); 1391247d2737SKevin Wolf 1392247d2737SKevin Wolf bs = bdrv_new_open_driver(&bdrv_test, "test-node", BDRV_O_RDWR, 1393247d2737SKevin Wolf &error_abort); 1394247d2737SKevin Wolf 1395247d2737SKevin Wolf bdrv_drained_begin(bs); 1396142e6907SEmanuele Giuseppe Esposito bdrv_try_change_aio_context(bs, ctx_a, NULL, &error_abort); 1397247d2737SKevin Wolf 1398247d2737SKevin Wolf aio_context_acquire(ctx_a); 1399247d2737SKevin Wolf bdrv_drained_end(bs); 1400247d2737SKevin Wolf 1401247d2737SKevin Wolf bdrv_drained_begin(bs); 1402142e6907SEmanuele Giuseppe Esposito bdrv_try_change_aio_context(bs, ctx_b, NULL, &error_abort); 1403247d2737SKevin Wolf aio_context_release(ctx_a); 1404247d2737SKevin Wolf aio_context_acquire(ctx_b); 1405142e6907SEmanuele Giuseppe Esposito bdrv_try_change_aio_context(bs, qemu_get_aio_context(), NULL, &error_abort); 1406247d2737SKevin Wolf aio_context_release(ctx_b); 1407247d2737SKevin Wolf bdrv_drained_end(bs); 1408247d2737SKevin Wolf 1409247d2737SKevin Wolf bdrv_unref(bs); 1410247d2737SKevin Wolf iothread_join(a); 1411247d2737SKevin Wolf iothread_join(b); 1412247d2737SKevin Wolf } 1413247d2737SKevin Wolf 14148e442810SMax Reitz 14158e442810SMax Reitz typedef struct TestDropBackingBlockJob { 14168e442810SMax Reitz BlockJob common; 14178e442810SMax Reitz bool should_complete; 14188e442810SMax Reitz bool *did_complete; 14192afdc790SMax Reitz BlockDriverState *detach_also; 14201b177bbeSVladimir Sementsov-Ogievskiy BlockDriverState *bs; 14218e442810SMax Reitz } TestDropBackingBlockJob; 14228e442810SMax Reitz 14238e442810SMax Reitz static int coroutine_fn test_drop_backing_job_run(Job *job, Error **errp) 14248e442810SMax Reitz { 14258e442810SMax Reitz TestDropBackingBlockJob *s = 14268e442810SMax Reitz container_of(job, TestDropBackingBlockJob, common.job); 14278e442810SMax Reitz 14288e442810SMax Reitz while (!s->should_complete) { 14298e442810SMax Reitz job_sleep_ns(job, 0); 14308e442810SMax Reitz } 14318e442810SMax Reitz 14328e442810SMax Reitz return 0; 14338e442810SMax Reitz } 14348e442810SMax Reitz 14358e442810SMax Reitz static void test_drop_backing_job_commit(Job *job) 14368e442810SMax Reitz { 14378e442810SMax Reitz TestDropBackingBlockJob *s = 14388e442810SMax Reitz container_of(job, TestDropBackingBlockJob, common.job); 14398e442810SMax Reitz 14401b177bbeSVladimir Sementsov-Ogievskiy bdrv_set_backing_hd(s->bs, NULL, &error_abort); 14412afdc790SMax Reitz bdrv_set_backing_hd(s->detach_also, NULL, &error_abort); 14428e442810SMax Reitz 14438e442810SMax Reitz *s->did_complete = true; 14448e442810SMax Reitz } 14458e442810SMax Reitz 14468e442810SMax Reitz static const BlockJobDriver test_drop_backing_job_driver = { 14478e442810SMax Reitz .job_driver = { 14488e442810SMax Reitz .instance_size = sizeof(TestDropBackingBlockJob), 14498e442810SMax Reitz .free = block_job_free, 14508e442810SMax Reitz .user_resume = block_job_user_resume, 14518e442810SMax Reitz .run = test_drop_backing_job_run, 14528e442810SMax Reitz .commit = test_drop_backing_job_commit, 14538e442810SMax Reitz } 14548e442810SMax Reitz }; 14558e442810SMax Reitz 14568e442810SMax Reitz /** 14578e442810SMax Reitz * Creates a child node with three parent nodes on it, and then runs a 14588e442810SMax Reitz * block job on the final one, parent-node-2. 14598e442810SMax Reitz * 14608e442810SMax Reitz * The job is then asked to complete before a section where the child 14618e442810SMax Reitz * is drained. 14628e442810SMax Reitz * 14638e442810SMax Reitz * Ending this section will undrain the child's parents, first 14648e442810SMax Reitz * parent-node-2, then parent-node-1, then parent-node-0 -- the parent 14658e442810SMax Reitz * list is in reverse order of how they were added. Ending the drain 14668e442810SMax Reitz * on parent-node-2 will resume the job, thus completing it and 14678e442810SMax Reitz * scheduling job_exit(). 14688e442810SMax Reitz * 14698e442810SMax Reitz * Ending the drain on parent-node-1 will poll the AioContext, which 14708e442810SMax Reitz * lets job_exit() and thus test_drop_backing_job_commit() run. That 14712afdc790SMax Reitz * function first removes the child as parent-node-2's backing file. 14728e442810SMax Reitz * 14738e442810SMax Reitz * In old (and buggy) implementations, there are two problems with 14748e442810SMax Reitz * that: 14758e442810SMax Reitz * (A) bdrv_drain_invoke() polls for every node that leaves the 14768e442810SMax Reitz * drained section. This means that job_exit() is scheduled 14778e442810SMax Reitz * before the child has left the drained section. Its 14788e442810SMax Reitz * quiesce_counter is therefore still 1 when it is removed from 14798e442810SMax Reitz * parent-node-2. 14808e442810SMax Reitz * 14818e442810SMax Reitz * (B) bdrv_replace_child_noperm() calls drained_end() on the old 14828e442810SMax Reitz * child's parents as many times as the child is quiesced. This 14838e442810SMax Reitz * means it will call drained_end() on parent-node-2 once. 14848e442810SMax Reitz * Because parent-node-2 is no longer quiesced at this point, this 14858e442810SMax Reitz * will fail. 14868e442810SMax Reitz * 14878e442810SMax Reitz * bdrv_replace_child_noperm() therefore must call drained_end() on 14888e442810SMax Reitz * the parent only if it really is still drained because the child is 14898e442810SMax Reitz * drained. 14902afdc790SMax Reitz * 14912afdc790SMax Reitz * If removing child from parent-node-2 was successful (as it should 14922afdc790SMax Reitz * be), test_drop_backing_job_commit() will then also remove the child 14932afdc790SMax Reitz * from parent-node-0. 14942afdc790SMax Reitz * 14952afdc790SMax Reitz * With an old version of our drain infrastructure ((A) above), that 14962afdc790SMax Reitz * resulted in the following flow: 14972afdc790SMax Reitz * 14982afdc790SMax Reitz * 1. child attempts to leave its drained section. The call recurses 14992afdc790SMax Reitz * to its parents. 15002afdc790SMax Reitz * 15012afdc790SMax Reitz * 2. parent-node-2 leaves the drained section. Polling in 15022afdc790SMax Reitz * bdrv_drain_invoke() will schedule job_exit(). 15032afdc790SMax Reitz * 15042afdc790SMax Reitz * 3. parent-node-1 leaves the drained section. Polling in 15052afdc790SMax Reitz * bdrv_drain_invoke() will run job_exit(), thus disconnecting 15062afdc790SMax Reitz * parent-node-0 from the child node. 15072afdc790SMax Reitz * 15082afdc790SMax Reitz * 4. bdrv_parent_drained_end() uses a QLIST_FOREACH_SAFE() loop to 15092afdc790SMax Reitz * iterate over the parents. Thus, it now accesses the BdrvChild 15102afdc790SMax Reitz * object that used to connect parent-node-0 and the child node. 15112afdc790SMax Reitz * However, that object no longer exists, so it accesses a dangling 15122afdc790SMax Reitz * pointer. 15132afdc790SMax Reitz * 15142afdc790SMax Reitz * The solution is to only poll once when running a bdrv_drained_end() 15152afdc790SMax Reitz * operation, specifically at the end when all drained_end() 15162afdc790SMax Reitz * operations for all involved nodes have been scheduled. 15172afdc790SMax Reitz * Note that this also solves (A) above, thus hiding (B). 15188e442810SMax Reitz */ 15198e442810SMax Reitz static void test_blockjob_commit_by_drained_end(void) 15208e442810SMax Reitz { 15218e442810SMax Reitz BlockDriverState *bs_child, *bs_parents[3]; 15228e442810SMax Reitz TestDropBackingBlockJob *job; 15238e442810SMax Reitz bool job_has_completed = false; 15248e442810SMax Reitz int i; 15258e442810SMax Reitz 15268e442810SMax Reitz bs_child = bdrv_new_open_driver(&bdrv_test, "child-node", BDRV_O_RDWR, 15278e442810SMax Reitz &error_abort); 15288e442810SMax Reitz 15298e442810SMax Reitz for (i = 0; i < 3; i++) { 15308e442810SMax Reitz char name[32]; 15318e442810SMax Reitz snprintf(name, sizeof(name), "parent-node-%i", i); 15328e442810SMax Reitz bs_parents[i] = bdrv_new_open_driver(&bdrv_test, name, BDRV_O_RDWR, 15338e442810SMax Reitz &error_abort); 15348e442810SMax Reitz bdrv_set_backing_hd(bs_parents[i], bs_child, &error_abort); 15358e442810SMax Reitz } 15368e442810SMax Reitz 15378e442810SMax Reitz job = block_job_create("job", &test_drop_backing_job_driver, NULL, 15388e442810SMax Reitz bs_parents[2], 0, BLK_PERM_ALL, 0, 0, NULL, NULL, 15398e442810SMax Reitz &error_abort); 15401b177bbeSVladimir Sementsov-Ogievskiy job->bs = bs_parents[2]; 15418e442810SMax Reitz 15422afdc790SMax Reitz job->detach_also = bs_parents[0]; 15438e442810SMax Reitz job->did_complete = &job_has_completed; 15448e442810SMax Reitz 15458e442810SMax Reitz job_start(&job->common.job); 15468e442810SMax Reitz 15478e442810SMax Reitz job->should_complete = true; 15488e442810SMax Reitz bdrv_drained_begin(bs_child); 15498e442810SMax Reitz g_assert(!job_has_completed); 15508e442810SMax Reitz bdrv_drained_end(bs_child); 15515e8ac217SKevin Wolf aio_poll(qemu_get_aio_context(), false); 15528e442810SMax Reitz g_assert(job_has_completed); 15538e442810SMax Reitz 15548e442810SMax Reitz bdrv_unref(bs_parents[0]); 15558e442810SMax Reitz bdrv_unref(bs_parents[1]); 15568e442810SMax Reitz bdrv_unref(bs_parents[2]); 15578e442810SMax Reitz bdrv_unref(bs_child); 15588e442810SMax Reitz } 15598e442810SMax Reitz 15609746b35cSMax Reitz 15619746b35cSMax Reitz typedef struct TestSimpleBlockJob { 15629746b35cSMax Reitz BlockJob common; 15639746b35cSMax Reitz bool should_complete; 15649746b35cSMax Reitz bool *did_complete; 15659746b35cSMax Reitz } TestSimpleBlockJob; 15669746b35cSMax Reitz 15679746b35cSMax Reitz static int coroutine_fn test_simple_job_run(Job *job, Error **errp) 15689746b35cSMax Reitz { 15699746b35cSMax Reitz TestSimpleBlockJob *s = container_of(job, TestSimpleBlockJob, common.job); 15709746b35cSMax Reitz 15719746b35cSMax Reitz while (!s->should_complete) { 15729746b35cSMax Reitz job_sleep_ns(job, 0); 15739746b35cSMax Reitz } 15749746b35cSMax Reitz 15759746b35cSMax Reitz return 0; 15769746b35cSMax Reitz } 15779746b35cSMax Reitz 15789746b35cSMax Reitz static void test_simple_job_clean(Job *job) 15799746b35cSMax Reitz { 15809746b35cSMax Reitz TestSimpleBlockJob *s = container_of(job, TestSimpleBlockJob, common.job); 15819746b35cSMax Reitz *s->did_complete = true; 15829746b35cSMax Reitz } 15839746b35cSMax Reitz 15849746b35cSMax Reitz static const BlockJobDriver test_simple_job_driver = { 15859746b35cSMax Reitz .job_driver = { 15869746b35cSMax Reitz .instance_size = sizeof(TestSimpleBlockJob), 15879746b35cSMax Reitz .free = block_job_free, 15889746b35cSMax Reitz .user_resume = block_job_user_resume, 15899746b35cSMax Reitz .run = test_simple_job_run, 15909746b35cSMax Reitz .clean = test_simple_job_clean, 15919746b35cSMax Reitz }, 15929746b35cSMax Reitz }; 15939746b35cSMax Reitz 15949746b35cSMax Reitz static int drop_intermediate_poll_update_filename(BdrvChild *child, 15959746b35cSMax Reitz BlockDriverState *new_base, 15969746b35cSMax Reitz const char *filename, 15979746b35cSMax Reitz Error **errp) 15989746b35cSMax Reitz { 15999746b35cSMax Reitz /* 16009746b35cSMax Reitz * We are free to poll here, which may change the block graph, if 16019746b35cSMax Reitz * it is not drained. 16029746b35cSMax Reitz */ 16039746b35cSMax Reitz 16049746b35cSMax Reitz /* If the job is not drained: Complete it, schedule job_exit() */ 16059746b35cSMax Reitz aio_poll(qemu_get_current_aio_context(), false); 16069746b35cSMax Reitz /* If the job is not drained: Run job_exit(), finish the job */ 16079746b35cSMax Reitz aio_poll(qemu_get_current_aio_context(), false); 16089746b35cSMax Reitz 16099746b35cSMax Reitz return 0; 16109746b35cSMax Reitz } 16119746b35cSMax Reitz 16129746b35cSMax Reitz /** 16139746b35cSMax Reitz * Test a poll in the midst of bdrv_drop_intermediate(). 16149746b35cSMax Reitz * 1615bd86fb99SMax Reitz * bdrv_drop_intermediate() calls BdrvChildClass.update_filename(), 16169746b35cSMax Reitz * which can yield or poll. This may lead to graph changes, unless 16179746b35cSMax Reitz * the whole subtree in question is drained. 16189746b35cSMax Reitz * 16199746b35cSMax Reitz * We test this on the following graph: 16209746b35cSMax Reitz * 16219746b35cSMax Reitz * Job 16229746b35cSMax Reitz * 16239746b35cSMax Reitz * | 16249746b35cSMax Reitz * job-node 16259746b35cSMax Reitz * | 16269746b35cSMax Reitz * v 16279746b35cSMax Reitz * 16289746b35cSMax Reitz * job-node 16299746b35cSMax Reitz * 16309746b35cSMax Reitz * | 16319746b35cSMax Reitz * backing 16329746b35cSMax Reitz * | 16339746b35cSMax Reitz * v 16349746b35cSMax Reitz * 16359746b35cSMax Reitz * node-2 --chain--> node-1 --chain--> node-0 16369746b35cSMax Reitz * 16379746b35cSMax Reitz * We drop node-1 with bdrv_drop_intermediate(top=node-1, base=node-0). 16389746b35cSMax Reitz * 16399746b35cSMax Reitz * This first updates node-2's backing filename by invoking 16409746b35cSMax Reitz * drop_intermediate_poll_update_filename(), which polls twice. This 16419746b35cSMax Reitz * causes the job to finish, which in turns causes the job-node to be 16429746b35cSMax Reitz * deleted. 16439746b35cSMax Reitz * 16449746b35cSMax Reitz * bdrv_drop_intermediate() uses a QLIST_FOREACH_SAFE() loop, so it 16459746b35cSMax Reitz * already has a pointer to the BdrvChild edge between job-node and 16469746b35cSMax Reitz * node-1. When it tries to handle that edge, we probably get a 16479746b35cSMax Reitz * segmentation fault because the object no longer exists. 16489746b35cSMax Reitz * 16499746b35cSMax Reitz * 16509746b35cSMax Reitz * The solution is for bdrv_drop_intermediate() to drain top's 16519746b35cSMax Reitz * subtree. This prevents graph changes from happening just because 1652bd86fb99SMax Reitz * BdrvChildClass.update_filename() yields or polls. Thus, the block 16539746b35cSMax Reitz * job is paused during that drained section and must finish before or 16549746b35cSMax Reitz * after. 16559746b35cSMax Reitz * 16569746b35cSMax Reitz * (In addition, bdrv_replace_child() must keep the job paused.) 16579746b35cSMax Reitz */ 16589746b35cSMax Reitz static void test_drop_intermediate_poll(void) 16599746b35cSMax Reitz { 1660bd86fb99SMax Reitz static BdrvChildClass chain_child_class; 16619746b35cSMax Reitz BlockDriverState *chain[3]; 16629746b35cSMax Reitz TestSimpleBlockJob *job; 16639746b35cSMax Reitz BlockDriverState *job_node; 16649746b35cSMax Reitz bool job_has_completed = false; 16659746b35cSMax Reitz int i; 16669746b35cSMax Reitz int ret; 16679746b35cSMax Reitz 166825191e5fSMax Reitz chain_child_class = child_of_bds; 1669bd86fb99SMax Reitz chain_child_class.update_filename = drop_intermediate_poll_update_filename; 16709746b35cSMax Reitz 16719746b35cSMax Reitz for (i = 0; i < 3; i++) { 16729746b35cSMax Reitz char name[32]; 16739746b35cSMax Reitz snprintf(name, 32, "node-%i", i); 16749746b35cSMax Reitz 16759746b35cSMax Reitz chain[i] = bdrv_new_open_driver(&bdrv_test, name, 0, &error_abort); 16769746b35cSMax Reitz } 16779746b35cSMax Reitz 16789746b35cSMax Reitz job_node = bdrv_new_open_driver(&bdrv_test, "job-node", BDRV_O_RDWR, 16799746b35cSMax Reitz &error_abort); 16809746b35cSMax Reitz bdrv_set_backing_hd(job_node, chain[1], &error_abort); 16819746b35cSMax Reitz 16829746b35cSMax Reitz /* 16839746b35cSMax Reitz * Establish the chain last, so the chain links are the first 16849746b35cSMax Reitz * elements in the BDS.parents lists 16859746b35cSMax Reitz */ 16869746b35cSMax Reitz for (i = 0; i < 3; i++) { 16879746b35cSMax Reitz if (i) { 16889746b35cSMax Reitz /* Takes the reference to chain[i - 1] */ 16895bb04747SVladimir Sementsov-Ogievskiy bdrv_attach_child(chain[i], chain[i - 1], "chain", 16905bb04747SVladimir Sementsov-Ogievskiy &chain_child_class, BDRV_CHILD_COW, &error_abort); 16919746b35cSMax Reitz } 16929746b35cSMax Reitz } 16939746b35cSMax Reitz 16949746b35cSMax Reitz job = block_job_create("job", &test_simple_job_driver, NULL, job_node, 16959746b35cSMax Reitz 0, BLK_PERM_ALL, 0, 0, NULL, NULL, &error_abort); 16969746b35cSMax Reitz 16979746b35cSMax Reitz /* The job has a reference now */ 16989746b35cSMax Reitz bdrv_unref(job_node); 16999746b35cSMax Reitz 17009746b35cSMax Reitz job->did_complete = &job_has_completed; 17019746b35cSMax Reitz 17029746b35cSMax Reitz job_start(&job->common.job); 17039746b35cSMax Reitz job->should_complete = true; 17049746b35cSMax Reitz 17059746b35cSMax Reitz g_assert(!job_has_completed); 17069746b35cSMax Reitz ret = bdrv_drop_intermediate(chain[1], chain[0], NULL); 17075e8ac217SKevin Wolf aio_poll(qemu_get_aio_context(), false); 17089746b35cSMax Reitz g_assert(ret == 0); 17099746b35cSMax Reitz g_assert(job_has_completed); 17109746b35cSMax Reitz 17119746b35cSMax Reitz bdrv_unref(chain[2]); 17129746b35cSMax Reitz } 17139746b35cSMax Reitz 17140513f984SMax Reitz 17150513f984SMax Reitz typedef struct BDRVReplaceTestState { 171623987471SKevin Wolf bool setup_completed; 17170513f984SMax Reitz bool was_drained; 17180513f984SMax Reitz bool was_undrained; 17190513f984SMax Reitz bool has_read; 17200513f984SMax Reitz 17210513f984SMax Reitz int drain_count; 17220513f984SMax Reitz 17230513f984SMax Reitz bool yield_before_read; 17240513f984SMax Reitz Coroutine *io_co; 17250513f984SMax Reitz Coroutine *drain_co; 17260513f984SMax Reitz } BDRVReplaceTestState; 17270513f984SMax Reitz 17280513f984SMax Reitz static void bdrv_replace_test_close(BlockDriverState *bs) 17290513f984SMax Reitz { 17300513f984SMax Reitz } 17310513f984SMax Reitz 17320513f984SMax Reitz /** 17330513f984SMax Reitz * If @bs has a backing file: 17340513f984SMax Reitz * Yield if .yield_before_read is true (and wait for drain_begin to 17350513f984SMax Reitz * wake us up). 17360513f984SMax Reitz * Forward the read to bs->backing. Set .has_read to true. 17370513f984SMax Reitz * If drain_begin has woken us, wake it in turn. 17380513f984SMax Reitz * 17390513f984SMax Reitz * Otherwise: 17400513f984SMax Reitz * Set .has_read to true and return success. 17410513f984SMax Reitz */ 1742b9b10c35SKevin Wolf static int coroutine_fn GRAPH_RDLOCK 1743b9b10c35SKevin Wolf bdrv_replace_test_co_preadv(BlockDriverState *bs, int64_t offset, int64_t bytes, 1744b9b10c35SKevin Wolf QEMUIOVector *qiov, BdrvRequestFlags flags) 17450513f984SMax Reitz { 17460513f984SMax Reitz BDRVReplaceTestState *s = bs->opaque; 17470513f984SMax Reitz 17480513f984SMax Reitz if (bs->backing) { 17490513f984SMax Reitz int ret; 17500513f984SMax Reitz 17510513f984SMax Reitz g_assert(!s->drain_count); 17520513f984SMax Reitz 17530513f984SMax Reitz s->io_co = qemu_coroutine_self(); 17540513f984SMax Reitz if (s->yield_before_read) { 17550513f984SMax Reitz s->yield_before_read = false; 17560513f984SMax Reitz qemu_coroutine_yield(); 17570513f984SMax Reitz } 17580513f984SMax Reitz s->io_co = NULL; 17590513f984SMax Reitz 1760fae2681aSVladimir Sementsov-Ogievskiy ret = bdrv_co_preadv(bs->backing, offset, bytes, qiov, 0); 17610513f984SMax Reitz s->has_read = true; 17620513f984SMax Reitz 17630513f984SMax Reitz /* Wake up drain_co if it runs */ 17640513f984SMax Reitz if (s->drain_co) { 17650513f984SMax Reitz aio_co_wake(s->drain_co); 17660513f984SMax Reitz } 17670513f984SMax Reitz 17680513f984SMax Reitz return ret; 17690513f984SMax Reitz } 17700513f984SMax Reitz 17710513f984SMax Reitz s->has_read = true; 17720513f984SMax Reitz return 0; 17730513f984SMax Reitz } 17740513f984SMax Reitz 17757bce1c29SKevin Wolf static void coroutine_fn bdrv_replace_test_drain_co(void *opaque) 17767bce1c29SKevin Wolf { 17777bce1c29SKevin Wolf BlockDriverState *bs = opaque; 17787bce1c29SKevin Wolf BDRVReplaceTestState *s = bs->opaque; 17797bce1c29SKevin Wolf 17807bce1c29SKevin Wolf /* Keep waking io_co up until it is done */ 17817bce1c29SKevin Wolf while (s->io_co) { 17827bce1c29SKevin Wolf aio_co_wake(s->io_co); 17837bce1c29SKevin Wolf s->io_co = NULL; 17847bce1c29SKevin Wolf qemu_coroutine_yield(); 17857bce1c29SKevin Wolf } 17867bce1c29SKevin Wolf s->drain_co = NULL; 17877bce1c29SKevin Wolf bdrv_dec_in_flight(bs); 17887bce1c29SKevin Wolf } 17897bce1c29SKevin Wolf 17900513f984SMax Reitz /** 17910513f984SMax Reitz * If .drain_count is 0, wake up .io_co if there is one; and set 17920513f984SMax Reitz * .was_drained. 17930513f984SMax Reitz * Increment .drain_count. 17940513f984SMax Reitz */ 17955e8ac217SKevin Wolf static void bdrv_replace_test_drain_begin(BlockDriverState *bs) 17960513f984SMax Reitz { 17970513f984SMax Reitz BDRVReplaceTestState *s = bs->opaque; 17980513f984SMax Reitz 179923987471SKevin Wolf if (!s->setup_completed) { 180023987471SKevin Wolf return; 180123987471SKevin Wolf } 180223987471SKevin Wolf 18030513f984SMax Reitz if (!s->drain_count) { 18047bce1c29SKevin Wolf s->drain_co = qemu_coroutine_create(bdrv_replace_test_drain_co, bs); 18057bce1c29SKevin Wolf bdrv_inc_in_flight(bs); 18067bce1c29SKevin Wolf aio_co_enter(bdrv_get_aio_context(bs), s->drain_co); 18070513f984SMax Reitz s->was_drained = true; 18080513f984SMax Reitz } 18090513f984SMax Reitz s->drain_count++; 18100513f984SMax Reitz } 18110513f984SMax Reitz 18127bce1c29SKevin Wolf static void coroutine_fn bdrv_replace_test_read_entry(void *opaque) 18137bce1c29SKevin Wolf { 18147bce1c29SKevin Wolf BlockDriverState *bs = opaque; 18157bce1c29SKevin Wolf char data; 18167bce1c29SKevin Wolf QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, &data, 1); 18177bce1c29SKevin Wolf int ret; 18187bce1c29SKevin Wolf 18197bce1c29SKevin Wolf /* Queue a read request post-drain */ 1820b9b10c35SKevin Wolf bdrv_graph_co_rdlock(); 18217bce1c29SKevin Wolf ret = bdrv_replace_test_co_preadv(bs, 0, 1, &qiov, 0); 1822b9b10c35SKevin Wolf bdrv_graph_co_rdunlock(); 1823b9b10c35SKevin Wolf 18247bce1c29SKevin Wolf g_assert(ret >= 0); 18257bce1c29SKevin Wolf bdrv_dec_in_flight(bs); 18267bce1c29SKevin Wolf } 18277bce1c29SKevin Wolf 18280513f984SMax Reitz /** 18290513f984SMax Reitz * Reduce .drain_count, set .was_undrained once it reaches 0. 18300513f984SMax Reitz * If .drain_count reaches 0 and the node has a backing file, issue a 18310513f984SMax Reitz * read request. 18320513f984SMax Reitz */ 18335e8ac217SKevin Wolf static void bdrv_replace_test_drain_end(BlockDriverState *bs) 18340513f984SMax Reitz { 18350513f984SMax Reitz BDRVReplaceTestState *s = bs->opaque; 18360513f984SMax Reitz 183723987471SKevin Wolf if (!s->setup_completed) { 183823987471SKevin Wolf return; 183923987471SKevin Wolf } 184023987471SKevin Wolf 18410513f984SMax Reitz g_assert(s->drain_count > 0); 18420513f984SMax Reitz if (!--s->drain_count) { 18430513f984SMax Reitz s->was_undrained = true; 18440513f984SMax Reitz 18450513f984SMax Reitz if (bs->backing) { 18467bce1c29SKevin Wolf Coroutine *co = qemu_coroutine_create(bdrv_replace_test_read_entry, 18477bce1c29SKevin Wolf bs); 18487bce1c29SKevin Wolf bdrv_inc_in_flight(bs); 18497bce1c29SKevin Wolf aio_co_enter(bdrv_get_aio_context(bs), co); 18500513f984SMax Reitz } 18510513f984SMax Reitz } 18520513f984SMax Reitz } 18530513f984SMax Reitz 18540513f984SMax Reitz static BlockDriver bdrv_replace_test = { 18550513f984SMax Reitz .format_name = "replace_test", 18560513f984SMax Reitz .instance_size = sizeof(BDRVReplaceTestState), 18579ebfc111SVladimir Sementsov-Ogievskiy .supports_backing = true, 18580513f984SMax Reitz 18590513f984SMax Reitz .bdrv_close = bdrv_replace_test_close, 18600513f984SMax Reitz .bdrv_co_preadv = bdrv_replace_test_co_preadv, 18610513f984SMax Reitz 18625e8ac217SKevin Wolf .bdrv_drain_begin = bdrv_replace_test_drain_begin, 18635e8ac217SKevin Wolf .bdrv_drain_end = bdrv_replace_test_drain_end, 18640513f984SMax Reitz 186569dca43dSMax Reitz .bdrv_child_perm = bdrv_default_perms, 18660513f984SMax Reitz }; 18670513f984SMax Reitz 18680513f984SMax Reitz static void coroutine_fn test_replace_child_mid_drain_read_co(void *opaque) 18690513f984SMax Reitz { 18700513f984SMax Reitz int ret; 18710513f984SMax Reitz char data; 18720513f984SMax Reitz 18730513f984SMax Reitz ret = blk_co_pread(opaque, 0, 1, &data, 0); 18740513f984SMax Reitz g_assert(ret >= 0); 18750513f984SMax Reitz } 18760513f984SMax Reitz 18770513f984SMax Reitz /** 18780513f984SMax Reitz * We test two things: 18790513f984SMax Reitz * (1) bdrv_replace_child_noperm() must not undrain the parent if both 18800513f984SMax Reitz * children are drained. 18810513f984SMax Reitz * (2) bdrv_replace_child_noperm() must never flush I/O requests to a 18820513f984SMax Reitz * drained child. If the old child is drained, it must flush I/O 18830513f984SMax Reitz * requests after the new one has been attached. If the new child 18840513f984SMax Reitz * is drained, it must flush I/O requests before the old one is 18850513f984SMax Reitz * detached. 18860513f984SMax Reitz * 18870513f984SMax Reitz * To do so, we create one parent node and two child nodes; then 18880513f984SMax Reitz * attach one of the children (old_child_bs) to the parent, then 18890513f984SMax Reitz * drain both old_child_bs and new_child_bs according to 18900513f984SMax Reitz * old_drain_count and new_drain_count, respectively, and finally 18910513f984SMax Reitz * we invoke bdrv_replace_node() to replace old_child_bs by 18920513f984SMax Reitz * new_child_bs. 18930513f984SMax Reitz * 18940513f984SMax Reitz * The test block driver we use here (bdrv_replace_test) has a read 18950513f984SMax Reitz * function that: 18960513f984SMax Reitz * - For the parent node, can optionally yield, and then forwards the 18970513f984SMax Reitz * read to bdrv_preadv(), 18980513f984SMax Reitz * - For the child node, just returns immediately. 18990513f984SMax Reitz * 19000513f984SMax Reitz * If the read yields, the drain_begin function will wake it up. 19010513f984SMax Reitz * 19020513f984SMax Reitz * The drain_end function issues a read on the parent once it is fully 19030513f984SMax Reitz * undrained (which simulates requests starting to come in again). 19040513f984SMax Reitz */ 19050513f984SMax Reitz static void do_test_replace_child_mid_drain(int old_drain_count, 19060513f984SMax Reitz int new_drain_count) 19070513f984SMax Reitz { 19080513f984SMax Reitz BlockBackend *parent_blk; 19090513f984SMax Reitz BlockDriverState *parent_bs; 19100513f984SMax Reitz BlockDriverState *old_child_bs, *new_child_bs; 19110513f984SMax Reitz BDRVReplaceTestState *parent_s; 19120513f984SMax Reitz BDRVReplaceTestState *old_child_s, *new_child_s; 19130513f984SMax Reitz Coroutine *io_co; 19140513f984SMax Reitz int i; 19150513f984SMax Reitz 19160513f984SMax Reitz parent_bs = bdrv_new_open_driver(&bdrv_replace_test, "parent", 0, 19170513f984SMax Reitz &error_abort); 19180513f984SMax Reitz parent_s = parent_bs->opaque; 19190513f984SMax Reitz 19200513f984SMax Reitz parent_blk = blk_new(qemu_get_aio_context(), 19210513f984SMax Reitz BLK_PERM_CONSISTENT_READ, BLK_PERM_ALL); 19220513f984SMax Reitz blk_insert_bs(parent_blk, parent_bs, &error_abort); 19230513f984SMax Reitz 19240513f984SMax Reitz old_child_bs = bdrv_new_open_driver(&bdrv_replace_test, "old-child", 0, 19250513f984SMax Reitz &error_abort); 19260513f984SMax Reitz new_child_bs = bdrv_new_open_driver(&bdrv_replace_test, "new-child", 0, 19270513f984SMax Reitz &error_abort); 19280513f984SMax Reitz old_child_s = old_child_bs->opaque; 19290513f984SMax Reitz new_child_s = new_child_bs->opaque; 19300513f984SMax Reitz 19310513f984SMax Reitz /* So that we can read something */ 19320513f984SMax Reitz parent_bs->total_sectors = 1; 19330513f984SMax Reitz old_child_bs->total_sectors = 1; 19340513f984SMax Reitz new_child_bs->total_sectors = 1; 19350513f984SMax Reitz 19360513f984SMax Reitz bdrv_ref(old_child_bs); 19375bb04747SVladimir Sementsov-Ogievskiy bdrv_attach_child(parent_bs, old_child_bs, "child", &child_of_bds, 19385bb04747SVladimir Sementsov-Ogievskiy BDRV_CHILD_COW, &error_abort); 193923987471SKevin Wolf parent_s->setup_completed = true; 19400513f984SMax Reitz 19410513f984SMax Reitz for (i = 0; i < old_drain_count; i++) { 19420513f984SMax Reitz bdrv_drained_begin(old_child_bs); 19430513f984SMax Reitz } 19440513f984SMax Reitz for (i = 0; i < new_drain_count; i++) { 19450513f984SMax Reitz bdrv_drained_begin(new_child_bs); 19460513f984SMax Reitz } 19470513f984SMax Reitz 19480513f984SMax Reitz if (!old_drain_count) { 19490513f984SMax Reitz /* 19500513f984SMax Reitz * Start a read operation that will yield, so it will not 19510513f984SMax Reitz * complete before the node is drained. 19520513f984SMax Reitz */ 19530513f984SMax Reitz parent_s->yield_before_read = true; 19540513f984SMax Reitz io_co = qemu_coroutine_create(test_replace_child_mid_drain_read_co, 19550513f984SMax Reitz parent_blk); 19560513f984SMax Reitz qemu_coroutine_enter(io_co); 19570513f984SMax Reitz } 19580513f984SMax Reitz 19590513f984SMax Reitz /* If we have started a read operation, it should have yielded */ 19600513f984SMax Reitz g_assert(!parent_s->has_read); 19610513f984SMax Reitz 19620513f984SMax Reitz /* Reset drained status so we can see what bdrv_replace_node() does */ 19630513f984SMax Reitz parent_s->was_drained = false; 19640513f984SMax Reitz parent_s->was_undrained = false; 19650513f984SMax Reitz 19660513f984SMax Reitz g_assert(parent_bs->quiesce_counter == old_drain_count); 19670513f984SMax Reitz bdrv_replace_node(old_child_bs, new_child_bs, &error_abort); 19680513f984SMax Reitz g_assert(parent_bs->quiesce_counter == new_drain_count); 19690513f984SMax Reitz 19700513f984SMax Reitz if (!old_drain_count && !new_drain_count) { 19710513f984SMax Reitz /* 19720513f984SMax Reitz * From undrained to undrained drains and undrains the parent, 19730513f984SMax Reitz * because bdrv_replace_node() contains a drained section for 19740513f984SMax Reitz * @old_child_bs. 19750513f984SMax Reitz */ 19760513f984SMax Reitz g_assert(parent_s->was_drained && parent_s->was_undrained); 19770513f984SMax Reitz } else if (!old_drain_count && new_drain_count) { 19780513f984SMax Reitz /* 19790513f984SMax Reitz * From undrained to drained should drain the parent and keep 19800513f984SMax Reitz * it that way. 19810513f984SMax Reitz */ 19820513f984SMax Reitz g_assert(parent_s->was_drained && !parent_s->was_undrained); 19830513f984SMax Reitz } else if (old_drain_count && !new_drain_count) { 19840513f984SMax Reitz /* 19850513f984SMax Reitz * From drained to undrained should undrain the parent and 19860513f984SMax Reitz * keep it that way. 19870513f984SMax Reitz */ 19880513f984SMax Reitz g_assert(!parent_s->was_drained && parent_s->was_undrained); 19890513f984SMax Reitz } else /* if (old_drain_count && new_drain_count) */ { 19900513f984SMax Reitz /* 19910513f984SMax Reitz * From drained to drained must not undrain the parent at any 19920513f984SMax Reitz * point 19930513f984SMax Reitz */ 19940513f984SMax Reitz g_assert(!parent_s->was_drained && !parent_s->was_undrained); 19950513f984SMax Reitz } 19960513f984SMax Reitz 19970513f984SMax Reitz if (!old_drain_count || !new_drain_count) { 19980513f984SMax Reitz /* 19990513f984SMax Reitz * If !old_drain_count, we have started a read request before 20000513f984SMax Reitz * bdrv_replace_node(). If !new_drain_count, the parent must 20010513f984SMax Reitz * have been undrained at some point, and 20020513f984SMax Reitz * bdrv_replace_test_co_drain_end() starts a read request 20030513f984SMax Reitz * then. 20040513f984SMax Reitz */ 20050513f984SMax Reitz g_assert(parent_s->has_read); 20060513f984SMax Reitz } else { 20070513f984SMax Reitz /* 20080513f984SMax Reitz * If the parent was never undrained, there is no way to start 20090513f984SMax Reitz * a read request. 20100513f984SMax Reitz */ 20110513f984SMax Reitz g_assert(!parent_s->has_read); 20120513f984SMax Reitz } 20130513f984SMax Reitz 20140513f984SMax Reitz /* A drained child must have not received any request */ 20150513f984SMax Reitz g_assert(!(old_drain_count && old_child_s->has_read)); 20160513f984SMax Reitz g_assert(!(new_drain_count && new_child_s->has_read)); 20170513f984SMax Reitz 20180513f984SMax Reitz for (i = 0; i < new_drain_count; i++) { 20190513f984SMax Reitz bdrv_drained_end(new_child_bs); 20200513f984SMax Reitz } 20210513f984SMax Reitz for (i = 0; i < old_drain_count; i++) { 20220513f984SMax Reitz bdrv_drained_end(old_child_bs); 20230513f984SMax Reitz } 20240513f984SMax Reitz 20250513f984SMax Reitz /* 20260513f984SMax Reitz * By now, bdrv_replace_test_co_drain_end() must have been called 20270513f984SMax Reitz * at some point while the new child was attached to the parent. 20280513f984SMax Reitz */ 20290513f984SMax Reitz g_assert(parent_s->has_read); 20300513f984SMax Reitz g_assert(new_child_s->has_read); 20310513f984SMax Reitz 20320513f984SMax Reitz blk_unref(parent_blk); 20330513f984SMax Reitz bdrv_unref(parent_bs); 20340513f984SMax Reitz bdrv_unref(old_child_bs); 20350513f984SMax Reitz bdrv_unref(new_child_bs); 20360513f984SMax Reitz } 20370513f984SMax Reitz 20380513f984SMax Reitz static void test_replace_child_mid_drain(void) 20390513f984SMax Reitz { 20400513f984SMax Reitz int old_drain_count, new_drain_count; 20410513f984SMax Reitz 20420513f984SMax Reitz for (old_drain_count = 0; old_drain_count < 2; old_drain_count++) { 20430513f984SMax Reitz for (new_drain_count = 0; new_drain_count < 2; new_drain_count++) { 20440513f984SMax Reitz do_test_replace_child_mid_drain(old_drain_count, new_drain_count); 20450513f984SMax Reitz } 20460513f984SMax Reitz } 20470513f984SMax Reitz } 20480513f984SMax Reitz 2049881cfd17SKevin Wolf int main(int argc, char **argv) 2050881cfd17SKevin Wolf { 2051bb675689SKevin Wolf int ret; 2052bb675689SKevin Wolf 2053881cfd17SKevin Wolf bdrv_init(); 2054881cfd17SKevin Wolf qemu_init_main_loop(&error_abort); 2055881cfd17SKevin Wolf 2056881cfd17SKevin Wolf g_test_init(&argc, &argv, NULL); 2057bb675689SKevin Wolf qemu_event_init(&done_event, false); 2058881cfd17SKevin Wolf 2059881cfd17SKevin Wolf g_test_add_func("/bdrv-drain/driver-cb/drain_all", test_drv_cb_drain_all); 206086e1c840SKevin Wolf g_test_add_func("/bdrv-drain/driver-cb/drain", test_drv_cb_drain); 2061881cfd17SKevin Wolf 20626d0252f2SKevin Wolf g_test_add_func("/bdrv-drain/driver-cb/co/drain_all", 20636d0252f2SKevin Wolf test_drv_cb_co_drain_all); 20640582eb10SKevin Wolf g_test_add_func("/bdrv-drain/driver-cb/co/drain", test_drv_cb_co_drain); 20650582eb10SKevin Wolf 206689a6ceabSKevin Wolf g_test_add_func("/bdrv-drain/quiesce/drain_all", test_quiesce_drain_all); 206789a6ceabSKevin Wolf g_test_add_func("/bdrv-drain/quiesce/drain", test_quiesce_drain); 206889a6ceabSKevin Wolf 20696d0252f2SKevin Wolf g_test_add_func("/bdrv-drain/quiesce/co/drain_all", 20706d0252f2SKevin Wolf test_quiesce_co_drain_all); 20710582eb10SKevin Wolf g_test_add_func("/bdrv-drain/quiesce/co/drain", test_quiesce_co_drain); 20720582eb10SKevin Wolf 20736c429a6aSKevin Wolf g_test_add_func("/bdrv-drain/nested", test_nested); 207419f7a7e5SKevin Wolf 207519f7a7e5SKevin Wolf g_test_add_func("/bdrv-drain/graph-change/drain_all", 207619f7a7e5SKevin Wolf test_graph_change_drain_all); 20776c429a6aSKevin Wolf 2078bb675689SKevin Wolf g_test_add_func("/bdrv-drain/iothread/drain_all", test_iothread_drain_all); 2079bb675689SKevin Wolf g_test_add_func("/bdrv-drain/iothread/drain", test_iothread_drain); 2080bb675689SKevin Wolf 20817253220dSKevin Wolf g_test_add_func("/bdrv-drain/blockjob/drain_all", test_blockjob_drain_all); 20827253220dSKevin Wolf g_test_add_func("/bdrv-drain/blockjob/drain", test_blockjob_drain); 20837253220dSKevin Wolf 2084d49725afSKevin Wolf g_test_add_func("/bdrv-drain/blockjob/error/drain_all", 2085d49725afSKevin Wolf test_blockjob_error_drain_all); 2086d49725afSKevin Wolf g_test_add_func("/bdrv-drain/blockjob/error/drain", 2087d49725afSKevin Wolf test_blockjob_error_drain); 2088d49725afSKevin Wolf 2089f62c1729SKevin Wolf g_test_add_func("/bdrv-drain/blockjob/iothread/drain_all", 2090f62c1729SKevin Wolf test_blockjob_iothread_drain_all); 2091f62c1729SKevin Wolf g_test_add_func("/bdrv-drain/blockjob/iothread/drain", 2092f62c1729SKevin Wolf test_blockjob_iothread_drain); 2093f62c1729SKevin Wolf 2094d49725afSKevin Wolf g_test_add_func("/bdrv-drain/blockjob/iothread/error/drain_all", 2095d49725afSKevin Wolf test_blockjob_iothread_error_drain_all); 2096d49725afSKevin Wolf g_test_add_func("/bdrv-drain/blockjob/iothread/error/drain", 2097d49725afSKevin Wolf test_blockjob_iothread_error_drain); 2098d49725afSKevin Wolf 2099ebd31837SKevin Wolf g_test_add_func("/bdrv-drain/deletion/drain", test_delete_by_drain); 210019f7a7e5SKevin Wolf g_test_add_func("/bdrv-drain/detach/drain_all", test_detach_by_drain_all); 2101ebd31837SKevin Wolf g_test_add_func("/bdrv-drain/detach/drain", test_detach_by_drain); 2102231281abSKevin Wolf g_test_add_func("/bdrv-drain/detach/parent_cb", test_detach_by_parent_cb); 210357320ca9SKevin Wolf g_test_add_func("/bdrv-drain/detach/driver_cb", test_detach_by_driver_cb); 21044c8158e3SMax Reitz 2105b994c5bcSKevin Wolf g_test_add_func("/bdrv-drain/attach/drain", test_append_to_drained); 2106b994c5bcSKevin Wolf 2107247d2737SKevin Wolf g_test_add_func("/bdrv-drain/set_aio_context", test_set_aio_context); 2108247d2737SKevin Wolf 21098e442810SMax Reitz g_test_add_func("/bdrv-drain/blockjob/commit_by_drained_end", 21108e442810SMax Reitz test_blockjob_commit_by_drained_end); 21118e442810SMax Reitz 21129746b35cSMax Reitz g_test_add_func("/bdrv-drain/bdrv_drop_intermediate/poll", 21139746b35cSMax Reitz test_drop_intermediate_poll); 21149746b35cSMax Reitz 21150513f984SMax Reitz g_test_add_func("/bdrv-drain/replace_child/mid-drain", 21160513f984SMax Reitz test_replace_child_mid_drain); 21170513f984SMax Reitz 2118bb675689SKevin Wolf ret = g_test_run(); 2119bb675689SKevin Wolf qemu_event_destroy(&done_event); 2120bb675689SKevin Wolf return ret; 2121881cfd17SKevin Wolf } 2122