Signed-off-by: Shuhei Matsumoto <smatsumoto@nvidia.com> Change-Id: I2cd488c17dbc92c381cd956ae0d6f5ca709a24dc Reviewed-on: https://review.spdk.io/gerrit/c/spdk/spdk/+/11263 Tested-by: SPDK CI Jenkins <sys_sgci@intel.com> Community-CI: Broadcom CI <spdk-ci.pdl@broadcom.com> Community-CI: Mellanox Build Bot Reviewed-by: Aleksey Marchuk <alexeymar@mellanox.com> Reviewed-by: Tomasz Zawadzki <tomasz.zawadzki@intel.com>
947 lines
28 KiB
C
947 lines
28 KiB
C
/*-
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* BSD LICENSE
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*
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* Copyright (c) Intel Corporation.
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* All rights reserved.
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* Copyright (c) 2022 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* * Neither the name of Intel Corporation nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "spdk/stdinc.h"
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#include "common/lib/test_env.c"
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#include "spdk_cunit.h"
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#include "iscsi/conn.c"
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#include "spdk_internal/mock.h"
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#include "unit/lib/json_mock.c"
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SPDK_LOG_REGISTER_COMPONENT(iscsi)
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DEFINE_STUB(iscsi_get_pdu, struct spdk_iscsi_pdu *,
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(struct spdk_iscsi_conn *conn), NULL);
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DEFINE_STUB(iscsi_param_eq_val, int,
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(struct iscsi_param *params, const char *key, const char *val), 0);
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DEFINE_STUB(iscsi_pdu_calc_data_digest, uint32_t, (struct spdk_iscsi_pdu *pdu), 0);
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DEFINE_STUB_V(spdk_sock_writev_async,
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(struct spdk_sock *sock, struct spdk_sock_request *req));
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struct spdk_scsi_lun {
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uint8_t reserved;
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};
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struct spdk_iscsi_globals g_iscsi = {
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.MaxLargeDataInPerConnection = DEFAULT_MAX_LARGE_DATAIN_PER_CONNECTION,
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};
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static TAILQ_HEAD(read_tasks_head, spdk_iscsi_task) g_ut_read_tasks =
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TAILQ_HEAD_INITIALIZER(g_ut_read_tasks);
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static struct spdk_iscsi_task *g_new_task = NULL;
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static ssize_t g_sock_writev_bytes = 0;
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DEFINE_STUB(spdk_app_get_shm_id, int, (void), 0);
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DEFINE_STUB(spdk_sock_getaddr, int,
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(struct spdk_sock *sock, char *saddr, int slen, uint16_t *sport,
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char *caddr, int clen, uint16_t *cport),
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0);
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int
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spdk_sock_close(struct spdk_sock **sock)
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{
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*sock = NULL;
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return 0;
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}
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DEFINE_STUB(spdk_sock_recv, ssize_t,
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(struct spdk_sock *sock, void *buf, size_t len), 0);
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DEFINE_STUB(spdk_sock_readv, ssize_t,
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(struct spdk_sock *sock, struct iovec *iov, int iovcnt), 0);
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ssize_t
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spdk_sock_writev(struct spdk_sock *sock, struct iovec *iov, int iovcnt)
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{
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return g_sock_writev_bytes;
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}
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DEFINE_STUB(spdk_sock_set_recvlowat, int, (struct spdk_sock *s, int nbytes), 0);
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DEFINE_STUB(spdk_sock_set_recvbuf, int, (struct spdk_sock *sock, int sz), 0);
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DEFINE_STUB(spdk_sock_set_sendbuf, int, (struct spdk_sock *sock, int sz), 0);
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DEFINE_STUB(spdk_sock_group_add_sock, int,
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(struct spdk_sock_group *group, struct spdk_sock *sock,
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spdk_sock_cb cb_fn, void *cb_arg),
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0);
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DEFINE_STUB(spdk_sock_group_remove_sock, int,
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(struct spdk_sock_group *group, struct spdk_sock *sock), 0);
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struct spdk_iscsi_task *
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iscsi_task_get(struct spdk_iscsi_conn *conn,
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struct spdk_iscsi_task *parent,
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spdk_scsi_task_cpl cpl_fn)
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{
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struct spdk_iscsi_task *task;
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task = g_new_task;
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if (task == NULL) {
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return NULL;
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}
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memset(task, 0, sizeof(*task));
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task->scsi.ref = 1;
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task->conn = conn;
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task->scsi.cpl_fn = cpl_fn;
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if (parent) {
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parent->scsi.ref++;
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task->parent = parent;
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task->scsi.dxfer_dir = parent->scsi.dxfer_dir;
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task->scsi.transfer_len = parent->scsi.transfer_len;
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task->scsi.lun = parent->scsi.lun;
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if (conn && (task->scsi.dxfer_dir == SPDK_SCSI_DIR_FROM_DEV)) {
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conn->data_in_cnt++;
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}
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}
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return task;
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}
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void
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spdk_scsi_task_put(struct spdk_scsi_task *scsi_task)
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{
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struct spdk_iscsi_task *task;
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CU_ASSERT(scsi_task->ref > 0);
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scsi_task->ref--;
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task = iscsi_task_from_scsi_task(scsi_task);
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if (task->parent) {
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spdk_scsi_task_put(&task->parent->scsi);
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}
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}
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DEFINE_STUB(spdk_scsi_dev_get_lun, struct spdk_scsi_lun *,
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(struct spdk_scsi_dev *dev, int lun_id), NULL);
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DEFINE_STUB(spdk_scsi_dev_get_first_lun, struct spdk_scsi_lun *,
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(struct spdk_scsi_dev *dev), NULL);
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DEFINE_STUB(spdk_scsi_dev_get_next_lun, struct spdk_scsi_lun *,
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(struct spdk_scsi_lun *prev_lun), NULL);
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DEFINE_STUB(spdk_scsi_dev_has_pending_tasks, bool,
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(const struct spdk_scsi_dev *dev, const struct spdk_scsi_port *initiator_port),
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true);
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DEFINE_STUB(spdk_scsi_lun_open, int,
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(struct spdk_scsi_lun *lun, spdk_scsi_lun_remove_cb_t hotremove_cb,
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void *hotremove_ctx, struct spdk_scsi_lun_desc **desc),
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0);
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DEFINE_STUB_V(spdk_scsi_lun_close, (struct spdk_scsi_lun_desc *desc));
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DEFINE_STUB(spdk_scsi_lun_allocate_io_channel, int,
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(struct spdk_scsi_lun_desc *desc), 0);
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DEFINE_STUB_V(spdk_scsi_lun_free_io_channel, (struct spdk_scsi_lun_desc *desc));
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DEFINE_STUB(spdk_scsi_lun_get_id, int, (const struct spdk_scsi_lun *lun), 0);
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DEFINE_STUB(spdk_scsi_port_get_name, const char *,
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(const struct spdk_scsi_port *port), NULL);
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void
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spdk_scsi_task_copy_status(struct spdk_scsi_task *dst,
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struct spdk_scsi_task *src)
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{
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dst->status = src->status;
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}
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DEFINE_STUB_V(spdk_scsi_task_set_data, (struct spdk_scsi_task *task, void *data, uint32_t len));
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DEFINE_STUB_V(spdk_scsi_task_process_null_lun, (struct spdk_scsi_task *task));
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DEFINE_STUB_V(spdk_scsi_task_process_abort, (struct spdk_scsi_task *task));
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DEFINE_STUB_V(iscsi_put_pdu, (struct spdk_iscsi_pdu *pdu));
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DEFINE_STUB_V(iscsi_param_free, (struct iscsi_param *params));
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DEFINE_STUB(iscsi_conn_params_init, int, (struct iscsi_param **params), 0);
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DEFINE_STUB_V(iscsi_clear_all_transfer_task,
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(struct spdk_iscsi_conn *conn, struct spdk_scsi_lun *lun,
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struct spdk_iscsi_pdu *pdu));
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DEFINE_STUB(iscsi_build_iovs, int,
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(struct spdk_iscsi_conn *conn, struct iovec *iov, int num_iovs,
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struct spdk_iscsi_pdu *pdu, uint32_t *mapped_length),
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0);
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DEFINE_STUB_V(iscsi_queue_task,
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(struct spdk_iscsi_conn *conn, struct spdk_iscsi_task *task));
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DEFINE_STUB_V(iscsi_task_response,
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(struct spdk_iscsi_conn *conn, struct spdk_iscsi_task *task));
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DEFINE_STUB_V(iscsi_task_mgmt_response,
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(struct spdk_iscsi_conn *conn, struct spdk_iscsi_task *task));
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DEFINE_STUB_V(iscsi_send_nopin, (struct spdk_iscsi_conn *conn));
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bool
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iscsi_del_transfer_task(struct spdk_iscsi_conn *conn, uint32_t task_tag)
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{
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struct spdk_iscsi_task *task;
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task = TAILQ_FIRST(&conn->active_r2t_tasks);
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if (task == NULL || task->tag != task_tag) {
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return false;
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}
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TAILQ_REMOVE(&conn->active_r2t_tasks, task, link);
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task->is_r2t_active = false;
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iscsi_task_put(task);
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return true;
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}
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DEFINE_STUB(iscsi_handle_incoming_pdus, int, (struct spdk_iscsi_conn *conn), 0);
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DEFINE_STUB_V(iscsi_free_sess, (struct spdk_iscsi_sess *sess));
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DEFINE_STUB(iscsi_tgt_node_cleanup_luns, int,
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(struct spdk_iscsi_conn *conn, struct spdk_iscsi_tgt_node *target),
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0);
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DEFINE_STUB(iscsi_pdu_calc_header_digest, uint32_t,
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(struct spdk_iscsi_pdu *pdu), 0);
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DEFINE_STUB(spdk_iscsi_pdu_calc_data_digest, uint32_t,
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(struct spdk_iscsi_pdu *pdu), 0);
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DEFINE_STUB_V(shutdown_iscsi_conns_done, (void));
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static struct spdk_iscsi_task *
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ut_conn_task_get(struct spdk_iscsi_task *parent)
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{
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struct spdk_iscsi_task *task;
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task = calloc(1, sizeof(*task));
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SPDK_CU_ASSERT_FATAL(task != NULL);
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task->scsi.ref = 1;
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if (parent) {
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task->parent = parent;
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parent->scsi.ref++;
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}
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return task;
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}
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static void
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ut_conn_create_read_tasks(struct spdk_iscsi_task *primary)
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{
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struct spdk_iscsi_task *subtask;
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uint32_t remaining_size = 0;
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while (1) {
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if (primary->current_data_offset < primary->scsi.transfer_len) {
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remaining_size = primary->scsi.transfer_len - primary->current_data_offset;
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subtask = ut_conn_task_get(primary);
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subtask->scsi.offset = primary->current_data_offset;
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subtask->scsi.length = spdk_min(SPDK_BDEV_LARGE_BUF_MAX_SIZE, remaining_size);
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subtask->scsi.status = SPDK_SCSI_STATUS_GOOD;
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primary->current_data_offset += subtask->scsi.length;
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TAILQ_INSERT_TAIL(&g_ut_read_tasks, subtask, link);
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}
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if (primary->current_data_offset == primary->scsi.transfer_len) {
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break;
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}
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}
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}
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static void
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read_task_split_in_order_case(void)
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{
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struct spdk_iscsi_task primary = {};
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struct spdk_iscsi_task *task, *tmp;
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struct spdk_iscsi_conn conn = {};
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struct spdk_iscsi_sess sess = {};
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conn.sess = &sess;
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conn.sess->DataSequenceInOrder = true;
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primary.scsi.transfer_len = SPDK_BDEV_LARGE_BUF_MAX_SIZE * 8;
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TAILQ_INIT(&primary.subtask_list);
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primary.current_data_offset = 0;
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primary.bytes_completed = 0;
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primary.scsi.ref = 1;
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ut_conn_create_read_tasks(&primary);
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SPDK_CU_ASSERT_FATAL(!TAILQ_EMPTY(&g_ut_read_tasks));
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TAILQ_FOREACH(task, &g_ut_read_tasks, link) {
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CU_ASSERT(&primary == iscsi_task_get_primary(task));
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process_read_task_completion(&conn, task, &primary);
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}
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CU_ASSERT(primary.bytes_completed == primary.scsi.transfer_len);
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CU_ASSERT(primary.scsi.ref == 0);
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TAILQ_FOREACH_SAFE(task, &g_ut_read_tasks, link, tmp) {
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CU_ASSERT(task->scsi.ref == 0);
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TAILQ_REMOVE(&g_ut_read_tasks, task, link);
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free(task);
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}
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}
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static void
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read_task_split_reverse_order_case(void)
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{
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struct spdk_iscsi_task primary = {};
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struct spdk_iscsi_task *task, *tmp;
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struct spdk_iscsi_conn conn = {};
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struct spdk_iscsi_sess sess = {};
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conn.sess = &sess;
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conn.sess->DataSequenceInOrder = true;
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primary.scsi.transfer_len = SPDK_BDEV_LARGE_BUF_MAX_SIZE * 8;
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TAILQ_INIT(&primary.subtask_list);
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primary.current_data_offset = 0;
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primary.bytes_completed = 0;
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primary.scsi.ref = 1;
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ut_conn_create_read_tasks(&primary);
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SPDK_CU_ASSERT_FATAL(!TAILQ_EMPTY(&g_ut_read_tasks));
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TAILQ_FOREACH_REVERSE(task, &g_ut_read_tasks, read_tasks_head, link) {
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CU_ASSERT(&primary == iscsi_task_get_primary(task));
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process_read_task_completion(&conn, task, &primary);
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}
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CU_ASSERT(primary.bytes_completed == primary.scsi.transfer_len);
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CU_ASSERT(primary.scsi.ref == 0);
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TAILQ_FOREACH_SAFE(task, &g_ut_read_tasks, link, tmp) {
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CU_ASSERT(task->scsi.ref == 0);
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TAILQ_REMOVE(&g_ut_read_tasks, task, link);
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free(task);
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}
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}
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static void
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propagate_scsi_error_status_for_split_read_tasks(void)
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{
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struct spdk_iscsi_task primary = {};
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struct spdk_iscsi_task task1 = {}, task2 = {}, task3 = {}, task4 = {}, task5 = {}, task6 = {};
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struct spdk_iscsi_conn conn = {};
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struct spdk_iscsi_sess sess = {};
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conn.sess = &sess;
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conn.sess->DataSequenceInOrder = true;
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primary.scsi.transfer_len = 512 * 6;
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primary.scsi.status = SPDK_SCSI_STATUS_GOOD;
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TAILQ_INIT(&primary.subtask_list);
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primary.scsi.ref = 7;
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task1.scsi.offset = 0;
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task1.scsi.length = 512;
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task1.scsi.status = SPDK_SCSI_STATUS_GOOD;
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task1.scsi.ref = 1;
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task1.parent = &primary;
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task2.scsi.offset = 512;
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task2.scsi.length = 512;
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task2.scsi.status = SPDK_SCSI_STATUS_CHECK_CONDITION;
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task2.scsi.ref = 1;
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task2.parent = &primary;
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task3.scsi.offset = 512 * 2;
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task3.scsi.length = 512;
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task3.scsi.status = SPDK_SCSI_STATUS_GOOD;
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task3.scsi.ref = 1;
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task3.parent = &primary;
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task4.scsi.offset = 512 * 3;
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task4.scsi.length = 512;
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task4.scsi.status = SPDK_SCSI_STATUS_GOOD;
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task4.scsi.ref = 1;
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task4.parent = &primary;
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task5.scsi.offset = 512 * 4;
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task5.scsi.length = 512;
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task5.scsi.status = SPDK_SCSI_STATUS_GOOD;
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task5.scsi.ref = 1;
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task5.parent = &primary;
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task6.scsi.offset = 512 * 5;
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task6.scsi.length = 512;
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task6.scsi.status = SPDK_SCSI_STATUS_GOOD;
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task6.scsi.ref = 1;
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task6.parent = &primary;
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/* task2 has check condition status, and verify if the check condition
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* status is propagated to remaining tasks correctly when these tasks complete
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* by the following order, task4, task3, task2, task1, primary, task5, and task6.
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*/
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process_read_task_completion(&conn, &task4, &primary);
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process_read_task_completion(&conn, &task3, &primary);
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process_read_task_completion(&conn, &task2, &primary);
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process_read_task_completion(&conn, &task1, &primary);
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process_read_task_completion(&conn, &task5, &primary);
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process_read_task_completion(&conn, &task6, &primary);
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CU_ASSERT(primary.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
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CU_ASSERT(task1.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
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CU_ASSERT(task2.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
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CU_ASSERT(task3.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
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CU_ASSERT(task4.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
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CU_ASSERT(task5.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
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CU_ASSERT(task6.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
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CU_ASSERT(primary.bytes_completed == primary.scsi.transfer_len);
|
|
CU_ASSERT(TAILQ_EMPTY(&primary.subtask_list));
|
|
CU_ASSERT(primary.scsi.ref == 0);
|
|
CU_ASSERT(task1.scsi.ref == 0);
|
|
CU_ASSERT(task2.scsi.ref == 0);
|
|
CU_ASSERT(task3.scsi.ref == 0);
|
|
CU_ASSERT(task4.scsi.ref == 0);
|
|
CU_ASSERT(task5.scsi.ref == 0);
|
|
CU_ASSERT(task6.scsi.ref == 0);
|
|
}
|
|
|
|
static void
|
|
process_non_read_task_completion_test(void)
|
|
{
|
|
struct spdk_iscsi_conn conn = {};
|
|
struct spdk_iscsi_task primary = {};
|
|
struct spdk_iscsi_task task = {};
|
|
|
|
TAILQ_INIT(&conn.active_r2t_tasks);
|
|
|
|
primary.bytes_completed = 0;
|
|
primary.scsi.transfer_len = 4096 * 3;
|
|
primary.scsi.status = SPDK_SCSI_STATUS_GOOD;
|
|
primary.scsi.ref = 1;
|
|
TAILQ_INSERT_TAIL(&conn.active_r2t_tasks, &primary, link);
|
|
primary.is_r2t_active = true;
|
|
primary.tag = 1;
|
|
|
|
/* First subtask which failed. */
|
|
task.scsi.length = 4096;
|
|
task.scsi.data_transferred = 4096;
|
|
task.scsi.status = SPDK_SCSI_STATUS_CHECK_CONDITION;
|
|
task.scsi.ref = 1;
|
|
task.parent = &primary;
|
|
primary.scsi.ref++;
|
|
|
|
process_non_read_task_completion(&conn, &task, &primary);
|
|
CU_ASSERT(!TAILQ_EMPTY(&conn.active_r2t_tasks));
|
|
CU_ASSERT(primary.bytes_completed == 4096);
|
|
CU_ASSERT(primary.scsi.data_transferred == 0);
|
|
CU_ASSERT(primary.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
|
|
CU_ASSERT(task.scsi.ref == 0);
|
|
CU_ASSERT(primary.scsi.ref == 1);
|
|
|
|
/* Second subtask which succeeded. */
|
|
task.scsi.length = 4096;
|
|
task.scsi.data_transferred = 4096;
|
|
task.scsi.status = SPDK_SCSI_STATUS_GOOD;
|
|
task.scsi.ref = 1;
|
|
task.parent = &primary;
|
|
primary.scsi.ref++;
|
|
|
|
process_non_read_task_completion(&conn, &task, &primary);
|
|
CU_ASSERT(!TAILQ_EMPTY(&conn.active_r2t_tasks));
|
|
CU_ASSERT(primary.bytes_completed == 4096 * 2);
|
|
CU_ASSERT(primary.scsi.data_transferred == 4096);
|
|
CU_ASSERT(primary.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
|
|
CU_ASSERT(task.scsi.ref == 0);
|
|
CU_ASSERT(primary.scsi.ref == 1);
|
|
|
|
/* Third and final subtask which succeeded. */
|
|
task.scsi.length = 4096;
|
|
task.scsi.data_transferred = 4096;
|
|
task.scsi.status = SPDK_SCSI_STATUS_GOOD;
|
|
task.scsi.ref = 1;
|
|
task.parent = &primary;
|
|
primary.scsi.ref++;
|
|
|
|
process_non_read_task_completion(&conn, &task, &primary);
|
|
CU_ASSERT(TAILQ_EMPTY(&conn.active_r2t_tasks));
|
|
CU_ASSERT(primary.bytes_completed == 4096 * 3);
|
|
CU_ASSERT(primary.scsi.data_transferred == 4096 * 2);
|
|
CU_ASSERT(primary.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
|
|
CU_ASSERT(task.scsi.ref == 0);
|
|
CU_ASSERT(primary.scsi.ref == 0);
|
|
|
|
/* A tricky case that the R2T was already terminated when the last task completed. */
|
|
primary.scsi.ref = 0;
|
|
primary.bytes_completed = 4096 * 2;
|
|
primary.scsi.data_transferred = 4096 * 2;
|
|
primary.scsi.transfer_len = 4096 * 3;
|
|
primary.scsi.status = SPDK_SCSI_STATUS_CHECK_CONDITION;
|
|
primary.is_r2t_active = false;
|
|
task.scsi.length = 4096;
|
|
task.scsi.data_transferred = 4096;
|
|
task.scsi.status = SPDK_SCSI_STATUS_GOOD;
|
|
task.scsi.ref = 1;
|
|
task.parent = &primary;
|
|
primary.scsi.ref++;
|
|
|
|
process_non_read_task_completion(&conn, &task, &primary);
|
|
CU_ASSERT(primary.bytes_completed == 4096 * 3);
|
|
CU_ASSERT(primary.scsi.data_transferred == 4096 * 3);
|
|
CU_ASSERT(primary.scsi.status == SPDK_SCSI_STATUS_CHECK_CONDITION);
|
|
CU_ASSERT(primary.scsi.ref == 0);
|
|
}
|
|
|
|
static bool
|
|
dequeue_pdu(void *_head, struct spdk_iscsi_pdu *pdu)
|
|
{
|
|
TAILQ_HEAD(queued_pdus, spdk_iscsi_pdu) *head = _head;
|
|
struct spdk_iscsi_pdu *tmp;
|
|
|
|
TAILQ_FOREACH(tmp, head, tailq) {
|
|
if (tmp == pdu) {
|
|
TAILQ_REMOVE(head, tmp, tailq);
|
|
return true;
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
static bool
|
|
dequeue_task(void *_head, struct spdk_iscsi_task *task)
|
|
{
|
|
TAILQ_HEAD(queued_tasks, spdk_iscsi_task) *head = _head;
|
|
struct spdk_iscsi_task *tmp;
|
|
|
|
TAILQ_FOREACH(tmp, head, link) {
|
|
if (tmp == task) {
|
|
TAILQ_REMOVE(head, tmp, link);
|
|
return true;
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
static void iscsi_conn_pdu_dummy_complete(void *arg)
|
|
{
|
|
}
|
|
|
|
static void
|
|
free_tasks_on_connection(void)
|
|
{
|
|
struct spdk_iscsi_conn conn = {};
|
|
struct spdk_iscsi_pdu pdu1 = {}, pdu2 = {}, pdu3 = {}, pdu4 = {};
|
|
struct spdk_iscsi_task task1 = {}, task2 = {}, task3 = {};
|
|
struct spdk_scsi_lun lun1 = {}, lun2 = {};
|
|
|
|
TAILQ_INIT(&conn.write_pdu_list);
|
|
TAILQ_INIT(&conn.snack_pdu_list);
|
|
TAILQ_INIT(&conn.queued_datain_tasks);
|
|
conn.data_in_cnt = g_iscsi.MaxLargeDataInPerConnection;
|
|
|
|
pdu1.task = &task1;
|
|
pdu2.task = &task2;
|
|
pdu3.task = &task3;
|
|
|
|
pdu1.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu2.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu3.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu4.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
|
|
task1.scsi.lun = &lun1;
|
|
task2.scsi.lun = &lun2;
|
|
|
|
task1.is_queued = false;
|
|
task2.is_queued = false;
|
|
task3.is_queued = true;
|
|
|
|
/* Test conn->write_pdu_list. */
|
|
|
|
task1.scsi.ref = 1;
|
|
task2.scsi.ref = 1;
|
|
task3.scsi.ref = 1;
|
|
TAILQ_INSERT_TAIL(&conn.write_pdu_list, &pdu1, tailq);
|
|
TAILQ_INSERT_TAIL(&conn.write_pdu_list, &pdu2, tailq);
|
|
TAILQ_INSERT_TAIL(&conn.write_pdu_list, &pdu3, tailq);
|
|
TAILQ_INSERT_TAIL(&conn.write_pdu_list, &pdu4, tailq);
|
|
|
|
/* Free all PDUs when exiting connection. */
|
|
iscsi_conn_free_tasks(&conn);
|
|
|
|
CU_ASSERT(TAILQ_EMPTY(&conn.write_pdu_list));
|
|
CU_ASSERT(task1.scsi.ref == 0);
|
|
CU_ASSERT(task2.scsi.ref == 0);
|
|
CU_ASSERT(task3.scsi.ref == 0);
|
|
|
|
/* Test conn->snack_pdu_list */
|
|
|
|
task1.scsi.ref = 1;
|
|
task2.scsi.ref = 1;
|
|
task3.scsi.ref = 1;
|
|
pdu1.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu2.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu3.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
TAILQ_INSERT_TAIL(&conn.snack_pdu_list, &pdu1, tailq);
|
|
TAILQ_INSERT_TAIL(&conn.snack_pdu_list, &pdu2, tailq);
|
|
TAILQ_INSERT_TAIL(&conn.snack_pdu_list, &pdu3, tailq);
|
|
|
|
/* Free all PDUs and associated tasks when exiting connection. */
|
|
iscsi_conn_free_tasks(&conn);
|
|
|
|
CU_ASSERT(!dequeue_pdu(&conn.snack_pdu_list, &pdu1));
|
|
CU_ASSERT(!dequeue_pdu(&conn.snack_pdu_list, &pdu2));
|
|
CU_ASSERT(!dequeue_pdu(&conn.snack_pdu_list, &pdu3));
|
|
CU_ASSERT(task1.scsi.ref == 0);
|
|
CU_ASSERT(task2.scsi.ref == 0);
|
|
CU_ASSERT(task3.scsi.ref == 0);
|
|
|
|
/* Test conn->queued_datain_tasks */
|
|
|
|
task1.scsi.ref = 1;
|
|
task2.scsi.ref = 1;
|
|
task3.scsi.ref = 1;
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task1, link);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task2, link);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task3, link);
|
|
|
|
/* Free all tasks which is not queued when exiting connection. */
|
|
iscsi_conn_free_tasks(&conn);
|
|
|
|
CU_ASSERT(!dequeue_task(&conn.queued_datain_tasks, &task1));
|
|
CU_ASSERT(!dequeue_task(&conn.queued_datain_tasks, &task2));
|
|
CU_ASSERT(dequeue_task(&conn.queued_datain_tasks, &task3));
|
|
CU_ASSERT(task1.scsi.ref == 0);
|
|
CU_ASSERT(task2.scsi.ref == 0);
|
|
CU_ASSERT(task3.scsi.ref == 1);
|
|
}
|
|
|
|
static void
|
|
free_tasks_with_queued_datain(void)
|
|
{
|
|
struct spdk_iscsi_conn conn = {};
|
|
struct spdk_iscsi_pdu pdu1 = {}, pdu2 = {}, pdu3 = {}, pdu4 = {}, pdu5 = {}, pdu6 = {};
|
|
struct spdk_iscsi_task task1 = {}, task2 = {}, task3 = {}, task4 = {}, task5 = {}, task6 = {};
|
|
|
|
TAILQ_INIT(&conn.write_pdu_list);
|
|
TAILQ_INIT(&conn.snack_pdu_list);
|
|
TAILQ_INIT(&conn.queued_datain_tasks);
|
|
|
|
pdu1.task = &task1;
|
|
pdu2.task = &task2;
|
|
pdu3.task = &task3;
|
|
pdu1.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu2.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu3.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
|
|
task1.scsi.ref = 1;
|
|
task2.scsi.ref = 1;
|
|
task3.scsi.ref = 1;
|
|
|
|
pdu3.bhs.opcode = ISCSI_OP_SCSI_DATAIN;
|
|
task3.scsi.offset = 1;
|
|
conn.data_in_cnt = 1;
|
|
|
|
TAILQ_INSERT_TAIL(&conn.write_pdu_list, &pdu1, tailq);
|
|
TAILQ_INSERT_TAIL(&conn.write_pdu_list, &pdu2, tailq);
|
|
TAILQ_INSERT_TAIL(&conn.write_pdu_list, &pdu3, tailq);
|
|
|
|
task4.scsi.ref = 1;
|
|
task5.scsi.ref = 1;
|
|
task6.scsi.ref = 1;
|
|
|
|
task4.pdu = &pdu4;
|
|
task5.pdu = &pdu5;
|
|
task6.pdu = &pdu6;
|
|
pdu4.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu5.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
pdu6.cb_fn = iscsi_conn_pdu_dummy_complete;
|
|
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task4, link);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task5, link);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task6, link);
|
|
|
|
iscsi_conn_free_tasks(&conn);
|
|
|
|
CU_ASSERT(TAILQ_EMPTY(&conn.write_pdu_list));
|
|
CU_ASSERT(TAILQ_EMPTY(&conn.queued_datain_tasks));
|
|
}
|
|
|
|
static void
|
|
abort_queued_datain_task_test(void)
|
|
{
|
|
struct spdk_iscsi_conn conn = {};
|
|
struct spdk_iscsi_task task = {}, subtask = {};
|
|
struct spdk_iscsi_pdu pdu = {};
|
|
struct iscsi_bhs_scsi_req *scsi_req;
|
|
int rc;
|
|
|
|
struct spdk_iscsi_sess sess = {};
|
|
|
|
conn.sess = &sess;
|
|
conn.sess->DataSequenceInOrder = true;
|
|
|
|
TAILQ_INIT(&conn.queued_datain_tasks);
|
|
task.scsi.ref = 1;
|
|
task.scsi.dxfer_dir = SPDK_SCSI_DIR_FROM_DEV;
|
|
task.pdu = &pdu;
|
|
TAILQ_INIT(&task.subtask_list);
|
|
scsi_req = (struct iscsi_bhs_scsi_req *)&pdu.bhs;
|
|
scsi_req->read_bit = 1;
|
|
|
|
g_new_task = &subtask;
|
|
|
|
/* Case1: Queue one task, and this task is not executed */
|
|
task.scsi.transfer_len = SPDK_BDEV_LARGE_BUF_MAX_SIZE * 3;
|
|
task.scsi.offset = 0;
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task, link);
|
|
|
|
/* No slots for sub read tasks */
|
|
conn.data_in_cnt = g_iscsi.MaxLargeDataInPerConnection;
|
|
rc = _iscsi_conn_abort_queued_datain_task(&conn, &task);
|
|
CU_ASSERT(rc != 0);
|
|
CU_ASSERT(!TAILQ_EMPTY(&conn.queued_datain_tasks));
|
|
|
|
/* Have slots for sub read tasks */
|
|
conn.data_in_cnt = 0;
|
|
rc = _iscsi_conn_abort_queued_datain_task(&conn, &task);
|
|
CU_ASSERT(rc == 0);
|
|
CU_ASSERT(TAILQ_EMPTY(&conn.queued_datain_tasks));
|
|
CU_ASSERT(task.current_data_offset == SPDK_BDEV_LARGE_BUF_MAX_SIZE * 3);
|
|
CU_ASSERT(task.scsi.ref == 0);
|
|
CU_ASSERT(subtask.scsi.offset == 0);
|
|
CU_ASSERT(subtask.scsi.length == SPDK_BDEV_LARGE_BUF_MAX_SIZE * 3);
|
|
CU_ASSERT(subtask.scsi.ref == 0);
|
|
|
|
/* Case2: Queue one task, and this task is partially executed */
|
|
task.scsi.ref = 1;
|
|
task.scsi.transfer_len = SPDK_BDEV_LARGE_BUF_MAX_SIZE * 3;
|
|
task.current_data_offset = SPDK_BDEV_LARGE_BUF_MAX_SIZE;
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task, link);
|
|
|
|
/* No slots for sub read tasks */
|
|
conn.data_in_cnt = g_iscsi.MaxLargeDataInPerConnection;
|
|
rc = _iscsi_conn_abort_queued_datain_task(&conn, &task);
|
|
CU_ASSERT(rc != 0);
|
|
CU_ASSERT(!TAILQ_EMPTY(&conn.queued_datain_tasks));
|
|
|
|
/* have slots for sub read tasks */
|
|
conn.data_in_cnt = 0;
|
|
rc = _iscsi_conn_abort_queued_datain_task(&conn, &task);
|
|
CU_ASSERT(rc == 0);
|
|
CU_ASSERT(task.current_data_offset == SPDK_BDEV_LARGE_BUF_MAX_SIZE * 3);
|
|
CU_ASSERT(task.scsi.ref == 2);
|
|
CU_ASSERT(TAILQ_FIRST(&task.subtask_list) == &subtask);
|
|
CU_ASSERT(subtask.scsi.offset == SPDK_BDEV_LARGE_BUF_MAX_SIZE);
|
|
CU_ASSERT(subtask.scsi.length == SPDK_BDEV_LARGE_BUF_MAX_SIZE * 2);
|
|
CU_ASSERT(subtask.scsi.ref == 1);
|
|
|
|
g_new_task = NULL;
|
|
}
|
|
|
|
static bool
|
|
datain_task_is_queued(struct spdk_iscsi_conn *conn,
|
|
struct spdk_iscsi_task *task)
|
|
{
|
|
struct spdk_iscsi_task *tmp;
|
|
|
|
TAILQ_FOREACH(tmp, &conn->queued_datain_tasks, link) {
|
|
if (tmp == task) {
|
|
return true;
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
static void
|
|
abort_queued_datain_tasks_test(void)
|
|
{
|
|
struct spdk_iscsi_conn conn = {};
|
|
struct spdk_iscsi_task task1 = {}, task2 = {}, task3 = {}, task4 = {}, task5 = {}, task6 = {};
|
|
struct spdk_iscsi_task subtask = {};
|
|
struct spdk_iscsi_pdu pdu1 = {}, pdu2 = {}, pdu3 = {}, pdu4 = {}, pdu5 = {}, pdu6 = {};
|
|
struct spdk_iscsi_pdu mgmt_pdu1 = {}, mgmt_pdu2 = {};
|
|
struct spdk_scsi_lun lun1 = {}, lun2 = {};
|
|
uint32_t alloc_cmd_sn;
|
|
struct iscsi_bhs_scsi_req *scsi_req;
|
|
int rc;
|
|
struct spdk_iscsi_sess sess = {};
|
|
|
|
TAILQ_INIT(&conn.queued_datain_tasks);
|
|
conn.data_in_cnt = 0;
|
|
|
|
conn.sess = &sess;
|
|
conn.sess->DataSequenceInOrder = true;
|
|
|
|
g_new_task = &subtask;
|
|
|
|
alloc_cmd_sn = 88;
|
|
|
|
pdu1.cmd_sn = alloc_cmd_sn;
|
|
alloc_cmd_sn++;
|
|
scsi_req = (struct iscsi_bhs_scsi_req *)&pdu1.bhs;
|
|
scsi_req->read_bit = 1;
|
|
task1.scsi.ref = 1;
|
|
task1.current_data_offset = 0;
|
|
task1.scsi.transfer_len = 512;
|
|
task1.scsi.lun = &lun1;
|
|
iscsi_task_set_pdu(&task1, &pdu1);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task1, link);
|
|
|
|
pdu2.cmd_sn = alloc_cmd_sn;
|
|
alloc_cmd_sn++;
|
|
scsi_req = (struct iscsi_bhs_scsi_req *)&pdu2.bhs;
|
|
scsi_req->read_bit = 1;
|
|
task2.scsi.ref = 1;
|
|
task2.current_data_offset = 0;
|
|
task2.scsi.transfer_len = 512;
|
|
task2.scsi.lun = &lun2;
|
|
iscsi_task_set_pdu(&task2, &pdu2);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task2, link);
|
|
|
|
mgmt_pdu1.cmd_sn = alloc_cmd_sn;
|
|
alloc_cmd_sn++;
|
|
|
|
pdu3.cmd_sn = alloc_cmd_sn;
|
|
alloc_cmd_sn++;
|
|
scsi_req = (struct iscsi_bhs_scsi_req *)&pdu3.bhs;
|
|
scsi_req->read_bit = 1;
|
|
task3.scsi.ref = 1;
|
|
task3.current_data_offset = 0;
|
|
task3.scsi.transfer_len = 512;
|
|
task3.scsi.lun = &lun1;
|
|
iscsi_task_set_pdu(&task3, &pdu3);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task3, link);
|
|
|
|
pdu4.cmd_sn = alloc_cmd_sn;
|
|
alloc_cmd_sn++;
|
|
scsi_req = (struct iscsi_bhs_scsi_req *)&pdu4.bhs;
|
|
scsi_req->read_bit = 1;
|
|
task4.scsi.ref = 1;
|
|
task4.current_data_offset = 0;
|
|
task4.scsi.transfer_len = 512;
|
|
task4.scsi.lun = &lun2;
|
|
iscsi_task_set_pdu(&task4, &pdu4);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task4, link);
|
|
|
|
pdu5.cmd_sn = alloc_cmd_sn;
|
|
alloc_cmd_sn++;
|
|
scsi_req = (struct iscsi_bhs_scsi_req *)&pdu5.bhs;
|
|
scsi_req->read_bit = 1;
|
|
task5.scsi.ref = 1;
|
|
task5.current_data_offset = 0;
|
|
task5.scsi.transfer_len = 512;
|
|
task5.scsi.lun = &lun1;
|
|
iscsi_task_set_pdu(&task5, &pdu5);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task5, link);
|
|
|
|
mgmt_pdu2.cmd_sn = alloc_cmd_sn;
|
|
alloc_cmd_sn++;
|
|
|
|
pdu6.cmd_sn = alloc_cmd_sn;
|
|
alloc_cmd_sn++;
|
|
scsi_req = (struct iscsi_bhs_scsi_req *)&pdu6.bhs;
|
|
scsi_req->read_bit = 1;
|
|
task6.scsi.ref = 1;
|
|
task6.current_data_offset = 0;
|
|
task6.scsi.transfer_len = 512;
|
|
task6.scsi.lun = &lun2;
|
|
iscsi_task_set_pdu(&task6, &pdu6);
|
|
TAILQ_INSERT_TAIL(&conn.queued_datain_tasks, &task6, link);
|
|
|
|
rc = iscsi_conn_abort_queued_datain_tasks(&conn, &lun1, &mgmt_pdu1);
|
|
CU_ASSERT(rc == 0);
|
|
CU_ASSERT(!datain_task_is_queued(&conn, &task1));
|
|
CU_ASSERT(datain_task_is_queued(&conn, &task2));
|
|
CU_ASSERT(datain_task_is_queued(&conn, &task3));
|
|
CU_ASSERT(datain_task_is_queued(&conn, &task4));
|
|
CU_ASSERT(datain_task_is_queued(&conn, &task5));
|
|
CU_ASSERT(datain_task_is_queued(&conn, &task6));
|
|
|
|
rc = iscsi_conn_abort_queued_datain_tasks(&conn, &lun2, &mgmt_pdu2);
|
|
CU_ASSERT(rc == 0);
|
|
CU_ASSERT(!datain_task_is_queued(&conn, &task2));
|
|
CU_ASSERT(datain_task_is_queued(&conn, &task3));
|
|
CU_ASSERT(!datain_task_is_queued(&conn, &task4));
|
|
CU_ASSERT(datain_task_is_queued(&conn, &task5));
|
|
CU_ASSERT(datain_task_is_queued(&conn, &task6));
|
|
|
|
CU_ASSERT(task1.scsi.ref == 0);
|
|
CU_ASSERT(task2.scsi.ref == 0);
|
|
CU_ASSERT(task3.scsi.ref == 1);
|
|
CU_ASSERT(task4.scsi.ref == 0);
|
|
CU_ASSERT(task5.scsi.ref == 1);
|
|
CU_ASSERT(task6.scsi.ref == 1);
|
|
CU_ASSERT(subtask.scsi.ref == 0);
|
|
|
|
g_new_task = NULL;
|
|
}
|
|
|
|
int
|
|
main(int argc, char **argv)
|
|
{
|
|
CU_pSuite suite = NULL;
|
|
unsigned int num_failures;
|
|
|
|
CU_set_error_action(CUEA_ABORT);
|
|
CU_initialize_registry();
|
|
|
|
suite = CU_add_suite("conn_suite", NULL, NULL);
|
|
|
|
CU_ADD_TEST(suite, read_task_split_in_order_case);
|
|
CU_ADD_TEST(suite, read_task_split_reverse_order_case);
|
|
CU_ADD_TEST(suite, propagate_scsi_error_status_for_split_read_tasks);
|
|
CU_ADD_TEST(suite, process_non_read_task_completion_test);
|
|
CU_ADD_TEST(suite, free_tasks_on_connection);
|
|
CU_ADD_TEST(suite, free_tasks_with_queued_datain);
|
|
CU_ADD_TEST(suite, abort_queued_datain_task_test);
|
|
CU_ADD_TEST(suite, abort_queued_datain_tasks_test);
|
|
|
|
CU_basic_set_mode(CU_BRM_VERBOSE);
|
|
CU_basic_run_tests();
|
|
num_failures = CU_get_number_of_failures();
|
|
CU_cleanup_registry();
|
|
return num_failures;
|
|
}
|