scsi: ufs: fix's to ufs_lun_depth unit test

This patch fixes the ufs unit test case "lun_depth" to work properly.
In cases where nutrs == lun_qdepth, 0 was an argument for the random
number generating function, which returned bogus numbers as a result.
In this patch we distinguish between equality and inequality cases, where
in the equality case we remove the irrelevant test cases.

Change-Id: Id7967e894e9d4d0fa1e250852895debcefcbf818
Signed-off-by: Lee Susman <lsusman@codeaurora.org>
This commit is contained in:
Lee Susman 2013-12-04 14:29:44 +02:00 committed by David Keitel
parent c5761a4b7a
commit 0f26d7cf9a

View file

@ -653,7 +653,8 @@ static void ufs_test_run_scenario(void *data, async_cookie_t cookie)
* We want to run the queue every run_q requests, or, * We want to run the queue every run_q requests, or,
* when the requests pool is exhausted * when the requests pool is exhausted
*/ */
if (ts->td->test_count >= QUEUE_MAX_REQUESTS ||
if (ts->td->dispatched_count >= QUEUE_MAX_REQUESTS ||
(ts->run_q && !(i % ts->run_q))) (ts->run_q && !(i % ts->run_q)))
blk_run_queue(ts->td->req_q); blk_run_queue(ts->td->req_q);
} }
@ -748,15 +749,12 @@ static int ufs_test_run_lun_depth_test(struct test_data *td)
struct scsi_device *sdev; struct scsi_device *sdev;
bool changed_seed = false; bool changed_seed = false;
int i = 0, num_req[LUN_DEPTH_TEST_SIZE]; int i = 0, num_req[LUN_DEPTH_TEST_SIZE];
int lun_qdepth, nutrs; int lun_qdepth, nutrs, num_scenarios;
BUG_ON(!td || !td->req_q || !td->req_q->queuedata); BUG_ON(!td || !td->req_q || !td->req_q->queuedata);
sdev = (struct scsi_device *)td->req_q->queuedata; sdev = (struct scsi_device *)td->req_q->queuedata;
lun_qdepth = sdev->max_queue_depth; lun_qdepth = sdev->max_queue_depth;
nutrs = sdev->host->can_queue; nutrs = sdev->host->can_queue;
/* in case there is no specific queue size per LU */
if (lun_qdepth == nutrs)
lun_qdepth = lun_qdepth >> 2;
/* allow randomness even if user forgot */ /* allow randomness even if user forgot */
if (utd->random_test_seed <= 0) { if (utd->random_test_seed <= 0) {
@ -770,22 +768,29 @@ static int ufs_test_run_lun_depth_test(struct test_data *td)
num_req[i++] = lun_qdepth - 1; num_req[i++] = lun_qdepth - 1;
num_req[i++] = lun_qdepth; num_req[i++] = lun_qdepth;
num_req[i++] = lun_qdepth + 1; num_req[i++] = lun_qdepth + 1;
num_req[i++] = lun_qdepth + 1 + ufs_test_pseudo_random_seed( /* if (nutrs-lun_qdepth-2 <= 0), do not run this scenario */
if (nutrs - lun_qdepth - 2 > 0)
num_req[i++] = lun_qdepth + 1 + ufs_test_pseudo_random_seed(
&utd->random_test_seed, 1, nutrs - lun_qdepth - 2); &utd->random_test_seed, 1, nutrs - lun_qdepth - 2);
num_req[i++] = nutrs - 1;
num_req[i++] = nutrs; /* if nutrs == lun_qdepth, do not run these three scenarios */
num_req[i++] = nutrs + 1; if (nutrs != lun_qdepth) {
num_req[i++] = nutrs - 1;
num_req[i++] = nutrs;
num_req[i++] = nutrs + 1;
}
/* a random number up to 10, not to cause overflow or timeout */ /* a random number up to 10, not to cause overflow or timeout */
num_req[i++] = nutrs + 1 + ufs_test_pseudo_random_seed( num_req[i++] = nutrs + 1 + ufs_test_pseudo_random_seed(
&utd->random_test_seed, 1, 10); &utd->random_test_seed, 1, 10);
num_scenarios = i;
utd->test_stage = UFS_TEST_LUN_DEPTH_TEST_RUNNING; utd->test_stage = UFS_TEST_LUN_DEPTH_TEST_RUNNING;
utd->fail_threads = 0; utd->fail_threads = 0;
read_data = get_scenario(td, SCEN_RANDOM_READ_32_NO_FLUSH); read_data = get_scenario(td, SCEN_RANDOM_READ_32_NO_FLUSH);
write_data = get_scenario(td, SCEN_RANDOM_READ_32_NO_FLUSH); write_data = get_scenario(td, SCEN_RANDOM_WRITE_32_NO_FLUSH);
for (i = 0; i < LUN_DEPTH_TEST_SIZE; i++) { for (i = 0; i < num_scenarios; i++) {
int reqs = num_req[i]; int reqs = num_req[i];
read_data->total_req = reqs; read_data->total_req = reqs;