Spdk/lib/vhost/vhost_scsi.c
Tomasz Zawadzki 5e132b6b7a scsi: Set proper transport protocol id
This patch adds property of transport protocol id to spdk_scsi_dev.
This allows to change it depending on which appliation is using
the device. Previously only iSCSI was used for all.

Setting protocol id is done at the time when device is added to
vhost controller (vhost) or target node (iSCSI).

Please note that for SPDK vhost SAS protocol id is used,
as that is what kernel vhost reports as well.

Signed-off-by: Tomasz Zawadzki <tomasz.zawadzki@intel.com>
Change-Id: I455a856c5d7796a749b6650fee0218d526e094ed
Reviewed-on: https://review.gerrithub.io/362864
Tested-by: SPDK Automated Test System <sys_sgsw@intel.com>
Reviewed-by: Daniel Verkamp <daniel.verkamp@intel.com>
Reviewed-by: Ben Walker <benjamin.walker@intel.com>
2017-06-01 12:10:22 -04:00

916 lines
26 KiB
C

/*-
* BSD LICENSE
*
* Copyright(c) Intel Corporation. All rights reserved.
* 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
* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "spdk/stdinc.h"
#include <linux/virtio_ring.h>
#include <linux/virtio_scsi.h>
#include "spdk/env.h"
#include "spdk/scsi.h"
#include "spdk/conf.h"
#include "spdk/event.h"
#include "spdk/vhost.h"
#include "vhost_internal.h"
#include "vhost_scsi.h"
#include "task.h"
#ifndef VIRTIO_F_VERSION_1
#define VIRTIO_F_VERSION_1 32
#endif
#define VHOST_USER_F_PROTOCOL_FEATURES 30
/* Features supported by SPDK VHOST lib. */
#define SPDK_VHOST_SCSI_FEATURES ((1ULL << VIRTIO_F_VERSION_1) | \
(1ULL << VHOST_F_LOG_ALL) | \
(1ULL << VHOST_USER_F_PROTOCOL_FEATURES) | \
(1ULL << VIRTIO_F_NOTIFY_ON_EMPTY) | \
(1ULL << VIRTIO_SCSI_F_INOUT) | \
(1ULL << VIRTIO_SCSI_F_HOTPLUG) | \
(1ULL << VIRTIO_SCSI_F_CHANGE ) | \
(1ULL << VIRTIO_SCSI_F_T10_PI ))
/* Features that are specified in VIRTIO SCSI but currently not supported:
* - Live migration not supported yet
* - Hotplug/hotremove
* - LUN params change
* - T10 PI
*/
#define SPDK_VHOST_SCSI_DISABLED_FEATURES ((1ULL << VHOST_F_LOG_ALL) | \
(1ULL << VIRTIO_SCSI_F_HOTPLUG) | \
(1ULL << VIRTIO_SCSI_F_CHANGE ) | \
(1ULL << VIRTIO_SCSI_F_T10_PI ))
#define CONTROLQ_POLL_PERIOD_US (1000 * 5)
#define VIRTIO_SCSI_CONTROLQ 0
#define VIRTIO_SCSI_EVENTQ 1
#define VIRTIO_SCSI_REQUESTQ 2
struct spdk_vhost_scsi_dev {
struct spdk_vhost_dev vdev;
struct spdk_scsi_dev *scsi_dev[SPDK_VHOST_SCSI_CTRLR_MAX_DEVS];
struct spdk_poller *requestq_poller;
struct spdk_poller *controlq_poller;
} __rte_cache_aligned;
static int new_device(int vid);
static void destroy_device(int vid);
const struct spdk_vhost_dev_backend spdk_vhost_scsi_device_backend = {
.virtio_features = SPDK_VHOST_SCSI_FEATURES,
.disabled_features = SPDK_VHOST_SCSI_DISABLED_FEATURES,
.ops = {
.new_device = new_device,
.destroy_device = destroy_device,
}
};
static void task_submit(struct spdk_vhost_task *task);
static int process_request(struct spdk_vhost_task *task);
static void invalid_request(struct spdk_vhost_task *task);
static void
submit_completion(struct spdk_vhost_task *task)
{
struct iovec *iovs = NULL;
int result;
spdk_vhost_vq_used_ring_enqueue(&task->svdev->vdev, task->vq, task->req_idx,
task->scsi.data_transferred);
SPDK_TRACELOG(SPDK_TRACE_VHOST, "Finished task (%p) req_idx=%d\n", task, task->req_idx);
if (task->scsi.iovs != &task->scsi.iov) {
iovs = task->scsi.iovs;
task->scsi.iovs = &task->scsi.iov;
task->scsi.iovcnt = 1;
}
spdk_vhost_task_put(task);
if (!iovs) {
return;
}
while (1) {
task = spdk_vhost_dequeue_task();
if (!task) {
spdk_vhost_iovec_free(iovs);
break;
}
/* Set iovs so underlying functions will not try to alloc IOV */
task->scsi.iovs = iovs;
task->scsi.iovcnt = VHOST_SCSI_IOVS_LEN;
result = process_request(task);
if (result == 0) {
task_submit(task);
break;
} else {
task->scsi.iovs = &task->scsi.iov;
task->scsi.iovcnt = 1;
invalid_request(task);
}
}
}
static void
process_mgmt_task_completion(void *arg1, void *arg2)
{
struct spdk_vhost_task *task = arg1;
submit_completion(task);
}
static void
process_task_completion(void *arg1, void *arg2)
{
struct spdk_vhost_task *task = arg1;
/* The SCSI task has completed. Do final processing and then post
notification to the virtqueue's "used" ring.
*/
task->resp->status = task->scsi.status;
if (task->scsi.status != SPDK_SCSI_STATUS_GOOD) {
memcpy(task->resp->sense, task->scsi.sense_data, task->scsi.sense_data_len);
task->resp->sense_len = task->scsi.sense_data_len;
}
task->resp->resid = task->scsi.transfer_len - task->scsi.data_transferred;
submit_completion(task);
}
static void
task_submit(struct spdk_vhost_task *task)
{
/* The task is ready to be submitted. First create the callback event that
will be invoked when the SCSI command is completed. See process_task_completion()
for what SPDK vhost-scsi does when the task is completed.
*/
task->resp->response = VIRTIO_SCSI_S_OK;
task->scsi.cb_event = spdk_event_allocate(rte_lcore_id(),
process_task_completion,
task, NULL);
spdk_scsi_dev_queue_task(task->scsi_dev, &task->scsi);
}
static void
mgmt_task_submit(struct spdk_vhost_task *task, enum spdk_scsi_task_func func)
{
task->tmf_resp->response = VIRTIO_SCSI_S_OK;
task->scsi.cb_event = spdk_event_allocate(rte_lcore_id(),
process_mgmt_task_completion,
task, NULL);
spdk_scsi_dev_queue_mgmt_task(task->scsi_dev, &task->scsi, func);
}
static void
invalid_request(struct spdk_vhost_task *task)
{
spdk_vhost_vq_used_ring_enqueue(&task->svdev->vdev, task->vq, task->req_idx, 0);
spdk_vhost_task_put(task);
SPDK_TRACELOG(SPDK_TRACE_VHOST, "Invalid request (status=%" PRIu8")\n",
task->resp ? task->resp->response : -1);
}
static struct spdk_scsi_dev *
get_scsi_dev(struct spdk_vhost_scsi_dev *svdev, const __u8 *lun)
{
SPDK_TRACEDUMP(SPDK_TRACE_VHOST_QUEUE, "LUN", lun, 8);
/* First byte must be 1 and second is target */
if (lun[0] != 1 || lun[1] >= SPDK_VHOST_SCSI_CTRLR_MAX_DEVS)
return NULL;
return svdev->scsi_dev[lun[1]];
}
static struct spdk_scsi_lun *
get_scsi_lun(struct spdk_scsi_dev *scsi_dev, const __u8 *lun)
{
uint16_t lun_id = (((uint16_t)lun[2] << 8) | lun[3]) & 0x3FFF;
/* For now only one LUN per controller is allowed so no need to search LUN IDs */
if (likely(scsi_dev != NULL)) {
return spdk_scsi_dev_get_lun(scsi_dev, lun_id);
}
return NULL;
}
static void
process_ctrl_request(struct spdk_vhost_scsi_dev *svdev, struct rte_vhost_vring *controlq,
uint16_t req_idx)
{
struct spdk_vhost_task *task;
struct vring_desc *desc;
struct virtio_scsi_ctrl_tmf_req *ctrl_req;
struct virtio_scsi_ctrl_an_resp *an_resp;
desc = spdk_vhost_vq_get_desc(controlq, req_idx);
ctrl_req = spdk_vhost_gpa_to_vva(&svdev->vdev, desc->addr);
SPDK_TRACELOG(SPDK_TRACE_VHOST_QUEUE,
"Processing controlq descriptor: desc %d/%p, desc_addr %p, len %d, flags %d, last_used_idx %d; kickfd %d; size %d\n",
req_idx, desc, (void *)desc->addr, desc->len, desc->flags, controlq->last_used_idx,
controlq->kickfd, controlq->size);
SPDK_TRACEDUMP(SPDK_TRACE_VHOST_QUEUE, "Request desriptor", (uint8_t *)ctrl_req,
desc->len);
task = spdk_vhost_task_get(svdev);
task->vq = controlq;
task->svdev = svdev;
task->req_idx = req_idx;
task->scsi_dev = get_scsi_dev(task->svdev, ctrl_req->lun);
/* Process the TMF request */
switch (ctrl_req->type) {
case VIRTIO_SCSI_T_TMF:
/* Get the response buffer */
assert(spdk_vhost_vring_desc_has_next(desc));
desc = spdk_vhost_vring_desc_get_next(controlq->desc, desc);
task->tmf_resp = spdk_vhost_gpa_to_vva(&svdev->vdev, desc->addr);
/* Check if we are processing a valid request */
if (task->scsi_dev == NULL) {
task->tmf_resp->response = VIRTIO_SCSI_S_BAD_TARGET;
break;
}
switch (ctrl_req->subtype) {
case VIRTIO_SCSI_T_TMF_LOGICAL_UNIT_RESET:
/* Handle LUN reset */
SPDK_TRACELOG(SPDK_TRACE_VHOST_QUEUE, "LUN reset\n");
task->scsi.lun = get_scsi_lun(task->scsi_dev, ctrl_req->lun);
mgmt_task_submit(task, SPDK_SCSI_TASK_FUNC_LUN_RESET);
return;
default:
task->tmf_resp->response = VIRTIO_SCSI_S_ABORTED;
/* Unsupported command */
SPDK_TRACELOG(SPDK_TRACE_VHOST_QUEUE, "Unsupported TMF command %x\n", ctrl_req->subtype);
break;
}
break;
case VIRTIO_SCSI_T_AN_QUERY:
case VIRTIO_SCSI_T_AN_SUBSCRIBE: {
desc = spdk_vhost_vring_desc_get_next(controlq->desc, desc);
an_resp = spdk_vhost_gpa_to_vva(&svdev->vdev, desc->addr);
an_resp->response = VIRTIO_SCSI_S_ABORTED;
break;
}
default:
SPDK_TRACELOG(SPDK_TRACE_VHOST_QUEUE, "Unsupported control command %x\n", ctrl_req->type);
break;
}
spdk_vhost_vq_used_ring_enqueue(&svdev->vdev, controlq, req_idx, 0);
spdk_vhost_task_put(task);
}
/*
* Process task's descriptor chain and setup data related fields.
* Return
* -1 if request is invalid and must be aborted,
* 0 if all data are set,
* 1 if it was not possible to allocate IO vector for this task.
*/
static int
task_data_setup(struct spdk_vhost_task *task,
struct virtio_scsi_cmd_req **req)
{
struct rte_vhost_vring *vq = task->vq;
struct spdk_vhost_dev *vdev = &task->svdev->vdev;
struct vring_desc *desc = spdk_vhost_vq_get_desc(task->vq, task->req_idx);
struct iovec *iovs = task->scsi.iovs;
uint16_t iovcnt = 0, iovcnt_max = task->scsi.iovcnt;
uint32_t len = 0;
assert(iovcnt_max == 1 || iovcnt_max == VHOST_SCSI_IOVS_LEN);
/* Sanity check. First descriptor must be readable and must have next one. */
if (unlikely(spdk_vhost_vring_desc_is_wr(desc) || !spdk_vhost_vring_desc_has_next(desc))) {
SPDK_WARNLOG("Invalid first (request) descriptor.\n");
task->resp = NULL;
goto abort_task;
}
*req = spdk_vhost_gpa_to_vva(vdev, desc->addr);
desc = spdk_vhost_vring_desc_get_next(vq->desc, desc);
task->scsi.dxfer_dir = spdk_vhost_vring_desc_is_wr(desc) ? SPDK_SCSI_DIR_FROM_DEV :
SPDK_SCSI_DIR_TO_DEV;
if (task->scsi.dxfer_dir == SPDK_SCSI_DIR_FROM_DEV) {
/*
* FROM_DEV (READ): [RD_req][WR_resp][WR_buf0]...[WR_bufN]
*/
task->resp = spdk_vhost_gpa_to_vva(vdev, desc->addr);
if (!spdk_vhost_vring_desc_has_next(desc)) {
/*
* TEST UNIT READY command and some others might not contain any payload and this is not an error.
*/
SPDK_TRACELOG(SPDK_TRACE_VHOST_DATA,
"No payload descriptors for FROM DEV command req_idx=%"PRIu16".\n", task->req_idx);
SPDK_TRACEDUMP(SPDK_TRACE_VHOST_DATA, "CDB=", (*req)->cdb, VIRTIO_SCSI_CDB_SIZE);
task->scsi.iovcnt = 1;
task->scsi.iovs[0].iov_len = 0;
task->scsi.length = 0;
task->scsi.transfer_len = 0;
return 0;
}
desc = spdk_vhost_vring_desc_get_next(vq->desc, desc);
if (iovcnt_max != VHOST_SCSI_IOVS_LEN && spdk_vhost_vring_desc_has_next(desc)) {
iovs = spdk_vhost_iovec_alloc();
if (iovs == NULL) {
return 1;
}
iovcnt_max = VHOST_SCSI_IOVS_LEN;
}
/* All remaining descriptors are data. */
while (iovcnt < iovcnt_max) {
iovs[iovcnt].iov_base = spdk_vhost_gpa_to_vva(vdev, desc->addr);
iovs[iovcnt].iov_len = desc->len;
len += desc->len;
iovcnt++;
if (!spdk_vhost_vring_desc_has_next(desc))
break;
desc = spdk_vhost_vring_desc_get_next(vq->desc, desc);
if (unlikely(!spdk_vhost_vring_desc_is_wr(desc))) {
SPDK_WARNLOG("FROM DEV cmd: descriptor nr %" PRIu16" in payload chain is read only.\n", iovcnt);
task->resp = NULL;
goto abort_task;
}
}
} else {
SPDK_TRACELOG(SPDK_TRACE_VHOST_DATA, "TO DEV");
/*
* TO_DEV (WRITE):[RD_req][RD_buf0]...[RD_bufN][WR_resp]
* No need to check descriptor WR flag as this is done while setting scsi.dxfer_dir.
*/
if (iovcnt_max != VHOST_SCSI_IOVS_LEN && spdk_vhost_vring_desc_has_next(desc)) {
/* If next descriptor is not for response, allocate iovs. */
if (!spdk_vhost_vring_desc_is_wr(spdk_vhost_vring_desc_get_next(vq->desc, desc))) {
iovs = spdk_vhost_iovec_alloc();
if (iovs == NULL) {
return 1;
}
iovcnt_max = VHOST_SCSI_IOVS_LEN;
}
}
/* Process descriptors up to response. */
while (!spdk_vhost_vring_desc_is_wr(desc) && iovcnt < iovcnt_max) {
iovs[iovcnt].iov_base = spdk_vhost_gpa_to_vva(vdev, desc->addr);
iovs[iovcnt].iov_len = desc->len;
len += desc->len;
iovcnt++;
if (!spdk_vhost_vring_desc_has_next(desc)) {
SPDK_WARNLOG("TO_DEV cmd: no response descriptor.\n");
task->resp = NULL;
goto abort_task;
}
desc = spdk_vhost_vring_desc_get_next(vq->desc, desc);
}
task->resp = spdk_vhost_gpa_to_vva(vdev, desc->addr);
if (spdk_vhost_vring_desc_has_next(desc)) {
SPDK_WARNLOG("TO_DEV cmd: ignoring unexpected descriptors after response descriptor.\n");
}
}
if (iovcnt_max > 1 && iovcnt == iovcnt_max) {
SPDK_WARNLOG("Too many IO vectors in chain!\n");
goto abort_task;
}
task->scsi.iovs = iovs;
task->scsi.iovcnt = iovcnt;
task->scsi.length = len;
task->scsi.transfer_len = len;
return 0;
abort_task:
if (iovs != task->scsi.iovs) {
spdk_vhost_iovec_free(iovs);
}
if (task->resp) {
task->resp->response = VIRTIO_SCSI_S_ABORTED;
}
return -1;
}
static int
process_request(struct spdk_vhost_task *task)
{
struct virtio_scsi_cmd_req *req;
int result;
result = task_data_setup(task, &req);
if (result) {
return result;
}
task->scsi_dev = get_scsi_dev(task->svdev, req->lun);
if (unlikely(task->scsi_dev == NULL)) {
task->resp->response = VIRTIO_SCSI_S_BAD_TARGET;
return -1;
}
task->scsi.lun = get_scsi_lun(task->scsi_dev, req->lun);
task->scsi.cdb = req->cdb;
task->scsi.target_port = spdk_scsi_dev_find_port_by_id(task->scsi_dev, 0);
SPDK_TRACEDUMP(SPDK_TRACE_VHOST_DATA, "request CDB", req->cdb, VIRTIO_SCSI_CDB_SIZE);
return 0;
}
static void
process_controlq(struct spdk_vhost_scsi_dev *vdev, struct rte_vhost_vring *vq)
{
uint16_t reqs[32];
uint16_t reqs_cnt, i;
reqs_cnt = spdk_vhost_vq_avail_ring_get(vq, reqs, RTE_DIM(reqs));
for (i = 0; i < reqs_cnt; i++) {
process_ctrl_request(vdev, vq, reqs[i]);
}
}
static void
process_requestq(struct spdk_vhost_scsi_dev *svdev, struct rte_vhost_vring *vq)
{
uint16_t reqs[32];
uint16_t reqs_cnt, i;
struct spdk_vhost_task *task;
int result;
reqs_cnt = spdk_vhost_vq_avail_ring_get(vq, reqs, RTE_DIM(reqs));
assert(reqs_cnt <= 32);
for (i = 0; i < reqs_cnt; i++) {
task = spdk_vhost_task_get(svdev);
SPDK_TRACELOG(SPDK_TRACE_VHOST, "====== Starting processing request idx %"PRIu16"======\n",
reqs[i]);
task->vq = vq;
task->svdev = svdev;
task->req_idx = reqs[i];
result = process_request(task);
if (likely(result == 0)) {
task_submit(task);
SPDK_TRACELOG(SPDK_TRACE_VHOST, "====== Task %p req_idx %d submitted ======\n", task,
task->req_idx);
} else if (result > 0) {
spdk_vhost_enqueue_task(task);
SPDK_TRACELOG(SPDK_TRACE_VHOST, "====== Task %p req_idx %d deferred ======\n", task, task->req_idx);
} else {
invalid_request(task);
SPDK_TRACELOG(SPDK_TRACE_VHOST, "====== Task %p req_idx %d failed ======\n", task, task->req_idx);
}
}
}
static void
vdev_controlq_worker(void *arg)
{
struct spdk_vhost_scsi_dev *svdev = arg;
process_controlq(svdev, &svdev->vdev.virtqueue[VIRTIO_SCSI_CONTROLQ]);
}
static void
vdev_worker(void *arg)
{
struct spdk_vhost_scsi_dev *svdev = arg;
uint32_t q_idx;
for (q_idx = VIRTIO_SCSI_REQUESTQ; q_idx < svdev->vdev.num_queues; q_idx++) {
process_requestq(svdev, &svdev->vdev.virtqueue[q_idx]);
}
}
static void
vdev_event_done_cb(void *arg1, void *arg2)
{
sem_post((sem_t *)arg2);
}
static struct spdk_event *
vhost_sem_event_alloc(uint32_t core, spdk_event_fn fn, void *arg1, sem_t *sem)
{
if (sem_init(sem, 0, 0) < 0)
rte_panic("Failed to initialize semaphore.");
return spdk_event_allocate(core, fn, arg1, sem);
}
static int
vhost_sem_timedwait(sem_t *sem, unsigned sec)
{
struct timespec timeout;
int rc;
clock_gettime(CLOCK_REALTIME, &timeout);
timeout.tv_sec += sec;
rc = sem_timedwait(sem, &timeout);
sem_destroy(sem);
return rc;
}
static void
add_vdev_cb(void *arg1, void *arg2)
{
struct spdk_vhost_scsi_dev *svdev = arg1;
struct spdk_vhost_dev *vdev = &svdev->vdev;
uint32_t i;
for (i = 0; i < SPDK_VHOST_SCSI_CTRLR_MAX_DEVS; i++) {
if (svdev->scsi_dev[i] == NULL) {
continue;
}
spdk_scsi_dev_allocate_io_channels(svdev->scsi_dev[i]);
}
SPDK_NOTICELOG("Started poller for vhost controller %s on lcore %d\n", vdev->name, vdev->lcore);
spdk_vhost_dev_mem_register(vdev);
spdk_poller_register(&svdev->requestq_poller, vdev_worker, svdev, vdev->lcore, 0);
spdk_poller_register(&svdev->controlq_poller, vdev_controlq_worker, svdev, vdev->lcore,
CONTROLQ_POLL_PERIOD_US);
sem_post((sem_t *)arg2);
}
static void
remove_vdev_cb(void *arg1, void *arg2)
{
struct spdk_vhost_scsi_dev *svdev = arg1;
uint32_t i;
for (i = 0; i < SPDK_VHOST_SCSI_CTRLR_MAX_DEVS; i++) {
if (svdev->scsi_dev[i] == NULL) {
continue;
}
spdk_scsi_dev_free_io_channels(svdev->scsi_dev[i]);
}
SPDK_NOTICELOG("Stopping poller for vhost controller %s\n", svdev->vdev.name);
spdk_vhost_dev_mem_unregister(&svdev->vdev);
sem_post((sem_t *)arg2);
}
int
spdk_vhost_scsi_dev_construct(const char *name, uint64_t cpumask)
{
struct spdk_vhost_scsi_dev *svdev;
struct spdk_vhost_dev *vdev;
int rc;
if (name == NULL) {
SPDK_ERRLOG("Can't add controller with no name\n");
return -EINVAL;
}
if ((cpumask & spdk_app_get_core_mask()) != cpumask) {
SPDK_ERRLOG("cpumask 0x%jx not a subset of app mask 0x%jx\n",
cpumask, spdk_app_get_core_mask());
return -EINVAL;
}
svdev = spdk_dma_zmalloc(sizeof(*svdev), SPDK_CACHE_LINE_SIZE, NULL);
if (svdev == NULL) {
SPDK_ERRLOG("Couldn't allocate memory for vhost dev\n");
return -ENOMEM;
}
vdev = &svdev->vdev;
vdev->name = strdup(name);
vdev->cpumask = cpumask;
vdev->lcore = -1;
vdev->type = SPDK_VHOST_DEV_T_SCSI;
rc = spdk_vhost_dev_register(vdev, &spdk_vhost_scsi_device_backend);
if (rc < 0) {
free(vdev->name);
spdk_dma_free(svdev);
}
return rc;
}
int
spdk_vhost_scsi_dev_remove(struct spdk_vhost_scsi_dev *svdev)
{
struct spdk_vhost_dev *vdev;
int i;
vdev = &svdev->vdev;
for (i = 0; i < SPDK_VHOST_SCSI_CTRLR_MAX_DEVS; ++i) {
if (svdev->scsi_dev[i]) {
SPDK_ERRLOG("Trying to remove non-empty controller: %s.\n", vdev->name);
return -EBUSY;
}
}
if (spdk_vhost_dev_unregister(vdev) != 0) {
SPDK_ERRLOG("Could not unregister scsi controller %s with vhost library\n", vdev->name);
return -EIO;
}
SPDK_NOTICELOG("Controller %s: removed\n", vdev->name);
/*
* since spdk_vhost_scsi_vdev must not be in use,
* it should be already *destructed* (spdk_vhost_dev_destruct)
*/
free(vdev->name);
spdk_dma_free(svdev);
return 0;
}
struct spdk_scsi_dev *
spdk_vhost_scsi_dev_get_dev(struct spdk_vhost_scsi_dev *svdev, uint8_t num)
{
assert(svdev != NULL);
assert(num < SPDK_VHOST_SCSI_CTRLR_MAX_DEVS);
return svdev->scsi_dev[num];
}
int
spdk_vhost_scsi_dev_add_dev(const char *ctrlr_name, unsigned scsi_dev_num, const char *lun_name)
{
struct spdk_vhost_scsi_dev *svdev;
struct spdk_vhost_dev *vdev;
char dev_name[SPDK_SCSI_DEV_MAX_NAME];
int lun_id_list[1];
char *lun_names_list[1];
if (ctrlr_name == NULL) {
SPDK_ERRLOG("No controller name\n");
return -EINVAL;
}
if (scsi_dev_num >= SPDK_VHOST_SCSI_CTRLR_MAX_DEVS) {
SPDK_ERRLOG("Controller %d device number too big (max %d)\n", scsi_dev_num,
SPDK_VHOST_SCSI_CTRLR_MAX_DEVS);
return -EINVAL;
}
if (lun_name == NULL) {
SPDK_ERRLOG("No lun name specified \n");
return -EINVAL;
} else if (strlen(lun_name) >= SPDK_SCSI_DEV_MAX_NAME) {
SPDK_ERRLOG("LUN name '%s' too long (max %d).\n", lun_name, SPDK_SCSI_DEV_MAX_NAME - 1);
return -1;
}
svdev = (struct spdk_vhost_scsi_dev *) spdk_vhost_dev_find(ctrlr_name);
if (svdev == NULL) {
SPDK_ERRLOG("Controller %s is not defined\n", ctrlr_name);
return -ENODEV;
}
vdev = &svdev->vdev;
if (vdev->lcore != -1) {
SPDK_ERRLOG("Controller %s is in use and hotplug is not supported\n", ctrlr_name);
return -ENODEV;
}
if (svdev->scsi_dev[scsi_dev_num] != NULL) {
SPDK_ERRLOG("Controller %s dev %u already occupied\n", ctrlr_name, scsi_dev_num);
return -EEXIST;
}
/*
* At this stage only one LUN per device
*/
snprintf(dev_name, sizeof(dev_name), "Dev %u", scsi_dev_num);
lun_id_list[0] = 0;
lun_names_list[0] = (char *)lun_name;
svdev->scsi_dev[scsi_dev_num] = spdk_scsi_dev_construct(dev_name, lun_names_list, lun_id_list, 1,
SPDK_SPC_PROTOCOL_IDENTIFIER_SAS);
if (svdev->scsi_dev[scsi_dev_num] == NULL) {
SPDK_ERRLOG("Couldn't create spdk SCSI device '%s' using lun device '%s' in controller: %s\n",
dev_name, lun_name, vdev->name);
return -EINVAL;
}
spdk_scsi_dev_add_port(svdev->scsi_dev[scsi_dev_num], 0, "vhost");
SPDK_NOTICELOG("Controller %s: defined device '%s' using lun '%s'\n",
vdev->name, dev_name, lun_name);
return 0;
}
int
spdk_vhost_scsi_dev_remove_dev(struct spdk_vhost_scsi_dev *svdev, unsigned scsi_dev_num)
{
struct spdk_vhost_dev *vdev = &svdev->vdev;
if (vdev->lcore != -1) {
SPDK_ERRLOG("Controller %s is in use and hotremove is not supported\n", vdev->name);
return -EBUSY;
}
if (svdev->scsi_dev[scsi_dev_num] == NULL) {
SPDK_ERRLOG("Controller %s dev %u is not occupied\n", vdev->name, scsi_dev_num);
return -ENODEV;
}
spdk_scsi_dev_destruct(svdev->scsi_dev[scsi_dev_num]);
svdev->scsi_dev[scsi_dev_num] = NULL;
SPDK_NOTICELOG("Controller %s: removed device 'Dev %u'\n",
vdev->name, scsi_dev_num);
return 0;
}
int
spdk_vhost_scsi_controller_construct(void)
{
struct spdk_conf_section *sp = spdk_conf_first_section(NULL);
int i, dev_num;
unsigned ctrlr_num = 0;
char *lun_name, *dev_num_str;
char *cpumask_str;
char *name;
uint64_t cpumask;
while (sp != NULL) {
if (!spdk_conf_section_match_prefix(sp, "VhostScsi")) {
sp = spdk_conf_next_section(sp);
continue;
}
if (sscanf(spdk_conf_section_get_name(sp), "VhostScsi%u", &ctrlr_num) != 1) {
SPDK_ERRLOG("Section '%s' has non-numeric suffix.\n",
spdk_conf_section_get_name(sp));
return -1;
}
name = spdk_conf_section_get_val(sp, "Name");
cpumask_str = spdk_conf_section_get_val(sp, "Cpumask");
if (cpumask_str == NULL) {
cpumask = spdk_app_get_core_mask();
} else if (spdk_vhost_parse_core_mask(cpumask_str, &cpumask)) {
SPDK_ERRLOG("%s: Error parsing cpumask '%s' while creating controller\n", name, cpumask_str);
return -1;
}
if (spdk_vhost_scsi_dev_construct(name, cpumask) < 0) {
return -1;
}
for (i = 0; spdk_conf_section_get_nval(sp, "Dev", i) != NULL; i++) {
dev_num_str = spdk_conf_section_get_nmval(sp, "Dev", i, 0);
if (dev_num_str == NULL) {
SPDK_ERRLOG("%s: Invalid or missing Dev number\n", name);
return -1;
}
dev_num = (int)strtol(dev_num_str, NULL, 10);
lun_name = spdk_conf_section_get_nmval(sp, "Dev", i, 1);
if (lun_name == NULL) {
SPDK_ERRLOG("%s: Invalid or missing LUN name for dev %d\n", name, dev_num);
return -1;
} else if (spdk_conf_section_get_nmval(sp, "Dev", i, 2)) {
SPDK_ERRLOG("%s: Only one LUN per vhost SCSI device supported\n", name);
return -1;
}
if (spdk_vhost_scsi_dev_add_dev(name, dev_num, lun_name) < 0) {
return -1;
}
}
sp = spdk_conf_next_section(sp);
}
return 0;
}
/*
* A new device is added to a data core. First the device is added to the main linked list
* and then allocated to a specific data core.
*/
static int
new_device(int vid)
{
struct spdk_vhost_dev *vdev = NULL;
struct spdk_event *event;
sem_t added;
vdev = spdk_vhost_dev_load(vid);
if (vdev == NULL) {
return -1;
}
event = vhost_sem_event_alloc(vdev->lcore, add_vdev_cb, vdev, &added);
spdk_event_call(event);
if (vhost_sem_timedwait(&added, 1))
rte_panic("Failed to register new device '%s'\n", vdev->name);
return 0;
}
static void
destroy_device(int vid)
{
struct spdk_vhost_scsi_dev *svdev;
struct spdk_vhost_dev *vdev;
struct spdk_event *event;
sem_t done_sem;
uint32_t i;
vdev = spdk_vhost_dev_find_by_vid(vid);
if (vdev == NULL) {
rte_panic("Couldn't find device with vid %d to stop.\n", vid);
}
svdev = (struct spdk_vhost_scsi_dev *) vdev;
event = vhost_sem_event_alloc(vdev->lcore, vdev_event_done_cb, NULL, &done_sem);
spdk_poller_unregister(&svdev->requestq_poller, event);
if (vhost_sem_timedwait(&done_sem, 1))
rte_panic("%s: failed to unregister request queue poller.\n", vdev->name);
event = vhost_sem_event_alloc(vdev->lcore, vdev_event_done_cb, NULL, &done_sem);
spdk_poller_unregister(&svdev->controlq_poller, event);
if (vhost_sem_timedwait(&done_sem, 1))
rte_panic("%s: failed to unregister control queue poller.\n", vdev->name);
/* Wait for all tasks to finish */
for (i = 1000; i && vdev->task_cnt > 0; i--) {
usleep(1000);
}
if (vdev->task_cnt > 0) {
rte_panic("%s: pending tasks did not finish in 1s.\n", vdev->name);
}
event = vhost_sem_event_alloc(vdev->lcore, remove_vdev_cb, svdev, &done_sem);
spdk_event_call(event);
if (vhost_sem_timedwait(&done_sem, 1))
rte_panic("%s: failed to unregister poller.\n", vdev->name);
spdk_vhost_dev_unload(vdev);
}
SPDK_LOG_REGISTER_TRACE_FLAG("vhost", SPDK_TRACE_VHOST)
SPDK_LOG_REGISTER_TRACE_FLAG("vhost_queue", SPDK_TRACE_VHOST_QUEUE)
SPDK_LOG_REGISTER_TRACE_FLAG("vhost_data", SPDK_TRACE_VHOST_DATA)