Spdk/test/unit/lib/iscsi/conn.c/conn_ut.c
Shuhei Matsumoto fa7dd957ee iscsi: Reduce required free iovecs from 5 to 1 to flush PDUs
Upcoming patches will support DIF insert and strip feature in
iSCSI target and the feature will be implemented by utilizing
iovecs.

Even when we support the DIF feature, we want to keep current
batched PDU flush, and current requirement that there must be
enough free iovecs to map all segments of a PDU is too strict.

This patch alleviates the requirement by passing remaining
number of iovecs to spdk_iscsi_build_iovs().

Change-Id: I6206322839c363e0ff5abe84bfd524bdc09e23ca
Signed-off-by: Shuhei Matsumoto <shuhei.matsumoto.xt@hitachi.com>
Reviewed-on: https://review.gerrithub.io/c/spdk/spdk/+/446176
Reviewed-by: Ziye Yang <ziye.yang@intel.com>
Reviewed-by: Jim Harris <james.r.harris@intel.com>
Reviewed-by: Ben Walker <benjamin.walker@intel.com>
Tested-by: SPDK CI Jenkins <sys_sgci@intel.com>
2019-03-01 22:47:21 +00:00

365 lines
11 KiB
C

/*-
* BSD LICENSE
*
* Copyright (c) Intel Corporation.
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
*
* * Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* * Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in
* the documentation and/or other materials provided with the
* distribution.
* * Neither the name of Intel Corporation nor the names of its
* contributors may be used to endorse or promote products derived
* from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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*/
#include "spdk/stdinc.h"
#include "common/lib/test_env.c"
#include "spdk_cunit.h"
#include "iscsi/conn.c"
#include "spdk_internal/mock.h"
SPDK_LOG_REGISTER_COMPONENT("iscsi", SPDK_LOG_ISCSI)
#define DMIN32(A,B) ((uint32_t) ((uint32_t)(A) > (uint32_t)(B) ? (uint32_t)(B) : (uint32_t)(A)))
struct spdk_iscsi_globals g_spdk_iscsi;
static TAILQ_HEAD(, spdk_iscsi_task) g_ut_read_tasks = TAILQ_HEAD_INITIALIZER(g_ut_read_tasks);
DEFINE_STUB(spdk_app_get_shm_id, int, (void), 0);
DEFINE_STUB(spdk_env_get_current_core, uint32_t, (void), 0);
DEFINE_STUB(spdk_env_get_first_core, uint32_t, (void), 0);
DEFINE_STUB(spdk_env_get_last_core, uint32_t, (void), 0);
DEFINE_STUB(spdk_env_get_next_core, uint32_t, (uint32_t prev_core), 0);
DEFINE_STUB(spdk_event_allocate, struct spdk_event *,
(uint32_t lcore, spdk_event_fn fn, void *arg1, void *arg2),
NULL);
DEFINE_STUB_V(spdk_event_call, (struct spdk_event *event));
DEFINE_STUB(spdk_sock_getaddr, int,
(struct spdk_sock *sock, char *saddr, int slen, uint16_t *sport,
char *caddr, int clen, uint16_t *cport),
0);
int
spdk_sock_close(struct spdk_sock **sock)
{
*sock = NULL;
return 0;
}
DEFINE_STUB(spdk_sock_recv, ssize_t,
(struct spdk_sock *sock, void *buf, size_t len), 0);
DEFINE_STUB(spdk_sock_writev, ssize_t,
(struct spdk_sock *sock, struct iovec *iov, int iovcnt), 0);
DEFINE_STUB(spdk_sock_set_recvlowat, int, (struct spdk_sock *s, int nbytes), 0);
DEFINE_STUB(spdk_sock_set_recvbuf, int, (struct spdk_sock *sock, int sz), 0);
DEFINE_STUB(spdk_sock_set_sendbuf, int, (struct spdk_sock *sock, int sz), 0);
DEFINE_STUB(spdk_sock_group_add_sock, int,
(struct spdk_sock_group *group, struct spdk_sock *sock,
spdk_sock_cb cb_fn, void *cb_arg),
0);
DEFINE_STUB(spdk_sock_group_remove_sock, int,
(struct spdk_sock_group *group, struct spdk_sock *sock), 0);
DEFINE_STUB_V(spdk_scsi_task_put, (struct spdk_scsi_task *task));
DEFINE_STUB(spdk_scsi_dev_get_lun, struct spdk_scsi_lun *,
(struct spdk_scsi_dev *dev, int lun_id), NULL);
DEFINE_STUB(spdk_scsi_dev_has_pending_tasks, bool,
(const struct spdk_scsi_dev *dev), true);
DEFINE_STUB(spdk_scsi_lun_open, int,
(struct spdk_scsi_lun *lun, spdk_scsi_remove_cb_t hotremove_cb,
void *hotremove_ctx, struct spdk_scsi_desc **desc),
0);
DEFINE_STUB_V(spdk_scsi_lun_close, (struct spdk_scsi_desc *desc));
DEFINE_STUB(spdk_scsi_lun_allocate_io_channel, int,
(struct spdk_scsi_desc *desc), 0);
DEFINE_STUB_V(spdk_scsi_lun_free_io_channel, (struct spdk_scsi_desc *desc));
DEFINE_STUB(spdk_scsi_lun_get_id, int, (const struct spdk_scsi_lun *lun), 0);
DEFINE_STUB(spdk_scsi_port_get_name, const char *,
(const struct spdk_scsi_port *port), NULL);
void
spdk_scsi_task_copy_status(struct spdk_scsi_task *dst,
struct spdk_scsi_task *src)
{
dst->status = src->status;
}
DEFINE_STUB_V(spdk_put_pdu, (struct spdk_iscsi_pdu *pdu));
DEFINE_STUB_V(spdk_iscsi_param_free, (struct iscsi_param *params));
DEFINE_STUB(spdk_iscsi_conn_params_init, int, (struct iscsi_param **params), 0);
DEFINE_STUB_V(spdk_clear_all_transfer_task,
(struct spdk_iscsi_conn *conn, struct spdk_scsi_lun *lun,
struct spdk_iscsi_pdu *pdu));
DEFINE_STUB(spdk_iscsi_build_iovs, int,
(struct spdk_iscsi_conn *conn, struct iovec *iov, int num_iovs,
struct spdk_iscsi_pdu *pdu, uint32_t *mapped_length),
0);
DEFINE_STUB(spdk_iscsi_is_deferred_free_pdu, bool,
(struct spdk_iscsi_pdu *pdu), false);
DEFINE_STUB_V(spdk_iscsi_task_response,
(struct spdk_iscsi_conn *conn, struct spdk_iscsi_task *task));
DEFINE_STUB_V(spdk_iscsi_task_mgmt_response,
(struct spdk_iscsi_conn *conn, struct spdk_iscsi_task *task));
DEFINE_STUB_V(spdk_iscsi_send_nopin, (struct spdk_iscsi_conn *conn));
DEFINE_STUB(spdk_iscsi_execute, int,
(struct spdk_iscsi_conn *conn, struct spdk_iscsi_pdu *pdu), 0);
DEFINE_STUB_V(spdk_del_transfer_task,
(struct spdk_iscsi_conn *conn, uint32_t task_tag));
DEFINE_STUB(spdk_iscsi_conn_handle_queued_datain_tasks, int,
(struct spdk_iscsi_conn *conn), 0);
DEFINE_STUB(spdk_iscsi_read_pdu, int,
(struct spdk_iscsi_conn *conn, struct spdk_iscsi_pdu **_pdu), 0);
DEFINE_STUB_V(spdk_free_sess, (struct spdk_iscsi_sess *sess));
DEFINE_STUB(spdk_iscsi_tgt_node_cleanup_luns, int,
(struct spdk_iscsi_conn *conn, struct spdk_iscsi_tgt_node *target),
0);
DEFINE_STUB(spdk_iscsi_pdu_calc_header_digest, uint32_t,
(struct spdk_iscsi_pdu *pdu), 0);
DEFINE_STUB(spdk_iscsi_pdu_calc_data_digest, uint32_t,
(struct spdk_iscsi_pdu *pdu), 0);
DEFINE_STUB_V(spdk_shutdown_iscsi_conns_done, (void));
static struct spdk_iscsi_task *
ut_conn_task_get(struct spdk_iscsi_task *parent)
{
struct spdk_iscsi_task *task;
task = calloc(1, sizeof(*task));
SPDK_CU_ASSERT_FATAL(task != NULL);
if (parent) {
task->parent = parent;
}
return task;
}
static void
ut_conn_create_read_tasks(int transfer_len)
{
struct spdk_iscsi_task *task, *subtask;
int32_t remaining_size = 0;
task = ut_conn_task_get(NULL);
task->scsi.transfer_len = transfer_len;
task->scsi.offset = 0;
task->scsi.length = DMIN32(SPDK_BDEV_LARGE_BUF_MAX_SIZE, task->scsi.transfer_len);
task->scsi.status = SPDK_SCSI_STATUS_GOOD;
remaining_size = task->scsi.transfer_len - task->scsi.length;
task->current_datain_offset = 0;
if (remaining_size == 0) {
TAILQ_INSERT_TAIL(&g_ut_read_tasks, task, link);
return;
}
while (1) {
if (task->current_datain_offset == 0) {
task->current_datain_offset = task->scsi.length;
TAILQ_INSERT_TAIL(&g_ut_read_tasks, task, link);
continue;
}
if (task->current_datain_offset < task->scsi.transfer_len) {
remaining_size = task->scsi.transfer_len - task->current_datain_offset;
subtask = ut_conn_task_get(task);
subtask->scsi.offset = task->current_datain_offset;
subtask->scsi.length = DMIN32(SPDK_BDEV_LARGE_BUF_MAX_SIZE, remaining_size);
subtask->scsi.status = SPDK_SCSI_STATUS_GOOD;
task->current_datain_offset += subtask->scsi.length;
TAILQ_INSERT_TAIL(&g_ut_read_tasks, subtask, link);
}
if (task->current_datain_offset == task->scsi.transfer_len) {
break;
}
}
}
static void
read_task_split_in_order_case(void)
{
struct spdk_iscsi_task *primary, *task, *tmp;
ut_conn_create_read_tasks(SPDK_BDEV_LARGE_BUF_MAX_SIZE * 8);
TAILQ_FOREACH(task, &g_ut_read_tasks, link) {
primary = spdk_iscsi_task_get_primary(task);
process_read_task_completion(NULL, task, primary);
}
primary = TAILQ_FIRST(&g_ut_read_tasks);
SPDK_CU_ASSERT_FATAL(primary != NULL);
if (primary != NULL) {
CU_ASSERT(primary->bytes_completed == primary->scsi.transfer_len);
}
TAILQ_FOREACH_SAFE(task, &g_ut_read_tasks, link, tmp) {
TAILQ_REMOVE(&g_ut_read_tasks, task, link);
free(task);
}
CU_ASSERT(TAILQ_EMPTY(&g_ut_read_tasks));
}
static void
propagate_scsi_error_status_for_split_read_tasks(void)
{
struct spdk_iscsi_task primary, task1, task2, task3, task4, task5, task6;
memset(&primary, 0, sizeof(struct spdk_iscsi_task));
primary.scsi.length = 512;
primary.scsi.status = SPDK_SCSI_STATUS_GOOD;
primary.rsp_scsi_status = SPDK_SCSI_STATUS_GOOD;
TAILQ_INIT(&primary.subtask_list);
memset(&task1, 0, sizeof(struct spdk_iscsi_task));
task1.scsi.offset = 512;
task1.scsi.length = 512;
task1.scsi.status = SPDK_SCSI_STATUS_GOOD;
memset(&task2, 0, sizeof(struct spdk_iscsi_task));
task2.scsi.offset = 512 * 2;
task2.scsi.length = 512;
task2.scsi.status = SPDK_SCSI_STATUS_CHECK_CONDITION;
memset(&task3, 0, sizeof(struct spdk_iscsi_task));
task3.scsi.offset = 512 * 3;
task3.scsi.length = 512;
task3.scsi.status = SPDK_SCSI_STATUS_GOOD;
memset(&task4, 0, sizeof(struct spdk_iscsi_task));
task4.scsi.offset = 512 * 4;
task4.scsi.length = 512;
task4.scsi.status = SPDK_SCSI_STATUS_GOOD;
memset(&task5, 0, sizeof(struct spdk_iscsi_task));
task5.scsi.offset = 512 * 5;
task5.scsi.length = 512;
task5.scsi.status = SPDK_SCSI_STATUS_GOOD;
memset(&task6, 0, sizeof(struct spdk_iscsi_task));
task6.scsi.offset = 512 * 6;
task6.scsi.length = 512;
task6.scsi.status = SPDK_SCSI_STATUS_GOOD;
/* task2 has check condition status, and verify if the check condition
* status is propagated to remaining tasks correctly when these tasks complete
* by the following order, task4, task3, task2, task1, primary, task5, and task6.
*/
process_read_task_completion(NULL, &task4, &primary);
process_read_task_completion(NULL, &task3, &primary);
process_read_task_completion(NULL, &task2, &primary);
process_read_task_completion(NULL, &task1, &primary);
process_read_task_completion(NULL, &primary, &primary);
process_read_task_completion(NULL, &task5, &primary);
process_read_task_completion(NULL, &task6, &primary);
CU_ASSERT(primary.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
CU_ASSERT(task1.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
CU_ASSERT(task2.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
CU_ASSERT(task3.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
CU_ASSERT(task4.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
CU_ASSERT(task5.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
CU_ASSERT(task6.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
CU_ASSERT(TAILQ_EMPTY(&primary.subtask_list));
}
int
main(int argc, char **argv)
{
CU_pSuite suite = NULL;
unsigned int num_failures;
if (CU_initialize_registry() != CUE_SUCCESS) {
return CU_get_error();
}
suite = CU_add_suite("conn_suite", NULL, NULL);
if (suite == NULL) {
CU_cleanup_registry();
return CU_get_error();
}
if (
CU_add_test(suite, "read task split in order", read_task_split_in_order_case) == NULL ||
CU_add_test(suite, "propagate_scsi_error_status_for_split_read_tasks",
propagate_scsi_error_status_for_split_read_tasks) == NULL
) {
CU_cleanup_registry();
return CU_get_error();
}
CU_basic_set_mode(CU_BRM_VERBOSE);
CU_basic_run_tests();
num_failures = CU_get_number_of_failures();
CU_cleanup_registry();
return num_failures;
}