2 * Blockjob transactions tests
4 * Copyright Red Hat, Inc. 2015
7 * Stefan Hajnoczi <stefanha@redhat.com>
9 * This work is licensed under the terms of the GNU LGPL, version 2 or later.
10 * See the COPYING.LIB file in the top-level directory.
13 #include "qemu/osdep.h"
14 #include "qapi/error.h"
15 #include "qemu/main-loop.h"
16 #include "block/blockjob_int.h"
17 #include "sysemu/block-backend.h"
21 unsigned int iterations
;
27 static void test_block_job_complete(BlockJob
*job
, void *opaque
)
29 BlockDriverState
*bs
= blk_bs(job
->blk
);
30 int rc
= (intptr_t)opaque
;
32 if (block_job_is_cancelled(job
)) {
36 block_job_completed(job
, rc
);
40 static void coroutine_fn
test_block_job_run(void *opaque
)
42 TestBlockJob
*s
= opaque
;
43 BlockJob
*job
= &s
->common
;
45 while (s
->iterations
--) {
47 block_job_sleep_ns(job
, QEMU_CLOCK_REALTIME
, 0);
52 if (block_job_is_cancelled(job
)) {
57 block_job_defer_to_main_loop(job
, test_block_job_complete
,
58 (void *)(intptr_t)s
->rc
);
66 static void test_block_job_cb(void *opaque
, int ret
)
68 TestBlockJobCBData
*data
= opaque
;
69 if (!ret
&& block_job_is_cancelled(&data
->job
->common
)) {
76 static const BlockJobDriver test_block_job_driver
= {
77 .instance_size
= sizeof(TestBlockJob
),
78 .start
= test_block_job_run
,
81 /* Create a block job that completes with a given return code after a given
82 * number of event loop iterations. The return code is stored in the given
85 * The event loop iterations can either be handled automatically with a 0 delay
86 * timer, or they can be stepped manually by entering the coroutine.
88 static BlockJob
*test_block_job_start(unsigned int iterations
,
94 TestBlockJobCBData
*data
;
95 static unsigned counter
;
98 data
= g_new0(TestBlockJobCBData
, 1);
100 snprintf(job_id
, sizeof(job_id
), "job%u", counter
++);
101 s
= block_job_create(job_id
, &test_block_job_driver
, bs
, 0,
102 BLOCK_JOB_DEFAULT
, test_block_job_cb
,
104 s
->iterations
= iterations
;
105 s
->use_timer
= use_timer
;
109 data
->result
= result
;
110 block_job_start(&s
->common
);
114 static void test_single_job(int expected
)
118 int result
= -EINPROGRESS
;
120 txn
= block_job_txn_new();
121 job
= test_block_job_start(1, true, expected
, &result
);
122 block_job_txn_add_job(txn
, job
);
124 if (expected
== -ECANCELED
) {
125 block_job_cancel(job
);
128 while (result
== -EINPROGRESS
) {
129 aio_poll(qemu_get_aio_context(), true);
131 g_assert_cmpint(result
, ==, expected
);
133 block_job_txn_unref(txn
);
136 static void test_single_job_success(void)
141 static void test_single_job_failure(void)
143 test_single_job(-EIO
);
146 static void test_single_job_cancel(void)
148 test_single_job(-ECANCELED
);
151 static void test_pair_jobs(int expected1
, int expected2
)
156 int result1
= -EINPROGRESS
;
157 int result2
= -EINPROGRESS
;
159 txn
= block_job_txn_new();
160 job1
= test_block_job_start(1, true, expected1
, &result1
);
161 block_job_txn_add_job(txn
, job1
);
162 job2
= test_block_job_start(2, true, expected2
, &result2
);
163 block_job_txn_add_job(txn
, job2
);
165 if (expected1
== -ECANCELED
) {
166 block_job_cancel(job1
);
168 if (expected2
== -ECANCELED
) {
169 block_job_cancel(job2
);
172 while (result1
== -EINPROGRESS
|| result2
== -EINPROGRESS
) {
173 aio_poll(qemu_get_aio_context(), true);
176 /* Failure or cancellation of one job cancels the other job */
177 if (expected1
!= 0) {
178 expected2
= -ECANCELED
;
179 } else if (expected2
!= 0) {
180 expected1
= -ECANCELED
;
183 g_assert_cmpint(result1
, ==, expected1
);
184 g_assert_cmpint(result2
, ==, expected2
);
186 block_job_txn_unref(txn
);
189 static void test_pair_jobs_success(void)
191 test_pair_jobs(0, 0);
194 static void test_pair_jobs_failure(void)
196 /* Test both orderings. The two jobs run for a different number of
197 * iterations so the code path is different depending on which job fails
200 test_pair_jobs(-EIO
, 0);
201 test_pair_jobs(0, -EIO
);
204 static void test_pair_jobs_cancel(void)
206 test_pair_jobs(-ECANCELED
, 0);
207 test_pair_jobs(0, -ECANCELED
);
210 static void test_pair_jobs_fail_cancel_race(void)
215 int result1
= -EINPROGRESS
;
216 int result2
= -EINPROGRESS
;
218 txn
= block_job_txn_new();
219 job1
= test_block_job_start(1, true, -ECANCELED
, &result1
);
220 block_job_txn_add_job(txn
, job1
);
221 job2
= test_block_job_start(2, false, 0, &result2
);
222 block_job_txn_add_job(txn
, job2
);
224 block_job_cancel(job1
);
226 /* Now make job2 finish before the main loop kicks jobs. This simulates
227 * the race between a pending kick and another job completing.
229 block_job_enter(job2
);
230 block_job_enter(job2
);
232 while (result1
== -EINPROGRESS
|| result2
== -EINPROGRESS
) {
233 aio_poll(qemu_get_aio_context(), true);
236 g_assert_cmpint(result1
, ==, -ECANCELED
);
237 g_assert_cmpint(result2
, ==, -ECANCELED
);
239 block_job_txn_unref(txn
);
242 int main(int argc
, char **argv
)
244 qemu_init_main_loop(&error_abort
);
246 g_test_init(&argc
, &argv
, NULL
);
247 g_test_add_func("/single/success", test_single_job_success
);
248 g_test_add_func("/single/failure", test_single_job_failure
);
249 g_test_add_func("/single/cancel", test_single_job_cancel
);
250 g_test_add_func("/pair/success", test_pair_jobs_success
);
251 g_test_add_func("/pair/failure", test_pair_jobs_failure
);
252 g_test_add_func("/pair/cancel", test_pair_jobs_cancel
);
253 g_test_add_func("/pair/fail-cancel-race", test_pair_jobs_fail_cancel_race
);