Spdk/module/bdev/nvme/common.c
Shuhei Matsumoto 68a8502f1c bdev/nvme: Remove nvme_ns->ref and use nvme_ns->populated and nvme_ns->bdev instead
As said in the previous patches, nvme_ns->ref is 2 at most, and
first is for populating namespace and second is for nvme_bdev.
On the other hand, nvme_ns->populated is for populating namespace
and nvme_ns->bdev is for nvme_bdev.

Preparation was done by the preceding patches. Let's remove nvme_ns->ref
and use nvme_ns->populated and nvme_ns->bdev instead.

We have unit tests for both normal case and shutdown case now.
So regression will be avoided.

These changes will be helpful for the following patches to support
multipath.

Signed-off-by: Shuhei Matsumoto <shuhei.matsumoto.xt@hitachi.com>
Change-Id: I279ca21a41d6ee2c07bbbeb62866e28423fcc6d0
Reviewed-on: https://review.spdk.io/gerrit/c/spdk/spdk/+/7097
Community-CI: Broadcom CI
Community-CI: Mellanox Build Bot
Tested-by: SPDK CI Jenkins <sys_sgci@intel.com>
Reviewed-by: Jim Harris <james.r.harris@intel.com>
Reviewed-by: Paul Luse <paul.e.luse@intel.com>
Reviewed-by: Ben Walker <benjamin.walker@intel.com>
Reviewed-by: Aleksey Marchuk <alexeymar@mellanox.com>
2021-04-08 16:10:26 +00:00

208 lines
5.7 KiB
C

/*-
* BSD LICENSE
*
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#include "spdk/env.h"
#include "bdev_ocssd.h"
#include "common.h"
struct nvme_bdev_ctrlrs g_nvme_bdev_ctrlrs = TAILQ_HEAD_INITIALIZER(g_nvme_bdev_ctrlrs);
pthread_mutex_t g_bdev_nvme_mutex = PTHREAD_MUTEX_INITIALIZER;
bool g_bdev_nvme_module_finish;
struct nvme_bdev_ctrlr *
nvme_bdev_ctrlr_get(const struct spdk_nvme_transport_id *trid)
{
struct nvme_bdev_ctrlr *nvme_bdev_ctrlr;
TAILQ_FOREACH(nvme_bdev_ctrlr, &g_nvme_bdev_ctrlrs, tailq) {
if (spdk_nvme_transport_id_compare(trid, nvme_bdev_ctrlr->connected_trid) == 0) {
return nvme_bdev_ctrlr;
}
}
return NULL;
}
struct nvme_bdev_ctrlr *
nvme_bdev_ctrlr_get_by_name(const char *name)
{
struct nvme_bdev_ctrlr *nvme_bdev_ctrlr;
if (name == NULL) {
return NULL;
}
TAILQ_FOREACH(nvme_bdev_ctrlr, &g_nvme_bdev_ctrlrs, tailq) {
if (strcmp(name, nvme_bdev_ctrlr->name) == 0) {
return nvme_bdev_ctrlr;
}
}
return NULL;
}
struct nvme_bdev_ctrlr *
nvme_bdev_first_ctrlr(void)
{
return TAILQ_FIRST(&g_nvme_bdev_ctrlrs);
}
struct nvme_bdev_ctrlr *
nvme_bdev_next_ctrlr(struct nvme_bdev_ctrlr *prev)
{
return TAILQ_NEXT(prev, tailq);
}
void
nvme_bdev_dump_trid_json(const struct spdk_nvme_transport_id *trid, struct spdk_json_write_ctx *w)
{
const char *trtype_str;
const char *adrfam_str;
trtype_str = spdk_nvme_transport_id_trtype_str(trid->trtype);
if (trtype_str) {
spdk_json_write_named_string(w, "trtype", trtype_str);
}
adrfam_str = spdk_nvme_transport_id_adrfam_str(trid->adrfam);
if (adrfam_str) {
spdk_json_write_named_string(w, "adrfam", adrfam_str);
}
if (trid->traddr[0] != '\0') {
spdk_json_write_named_string(w, "traddr", trid->traddr);
}
if (trid->trsvcid[0] != '\0') {
spdk_json_write_named_string(w, "trsvcid", trid->trsvcid);
}
if (trid->subnqn[0] != '\0') {
spdk_json_write_named_string(w, "subnqn", trid->subnqn);
}
}
static void
nvme_bdev_unregister_cb(void *io_device)
{
struct nvme_bdev_ctrlr *nvme_bdev_ctrlr = io_device;
struct nvme_bdev_ctrlr_trid *trid, *tmp_trid;
uint32_t i;
pthread_mutex_lock(&g_bdev_nvme_mutex);
TAILQ_REMOVE(&g_nvme_bdev_ctrlrs, nvme_bdev_ctrlr, tailq);
pthread_mutex_unlock(&g_bdev_nvme_mutex);
spdk_nvme_detach(nvme_bdev_ctrlr->ctrlr);
spdk_poller_unregister(&nvme_bdev_ctrlr->adminq_timer_poller);
free(nvme_bdev_ctrlr->name);
for (i = 0; i < nvme_bdev_ctrlr->num_ns; i++) {
free(nvme_bdev_ctrlr->namespaces[i]);
}
TAILQ_FOREACH_SAFE(trid, &nvme_bdev_ctrlr->trids, link, tmp_trid) {
TAILQ_REMOVE(&nvme_bdev_ctrlr->trids, trid, link);
free(trid);
}
pthread_mutex_destroy(&nvme_bdev_ctrlr->mutex);
free(nvme_bdev_ctrlr->namespaces);
free(nvme_bdev_ctrlr);
pthread_mutex_lock(&g_bdev_nvme_mutex);
if (g_bdev_nvme_module_finish && TAILQ_EMPTY(&g_nvme_bdev_ctrlrs)) {
pthread_mutex_unlock(&g_bdev_nvme_mutex);
spdk_io_device_unregister(&g_nvme_bdev_ctrlrs, NULL);
spdk_bdev_module_finish_done();
return;
}
pthread_mutex_unlock(&g_bdev_nvme_mutex);
}
void
nvme_bdev_ctrlr_do_destruct(void *ctx)
{
struct nvme_bdev_ctrlr *nvme_bdev_ctrlr = ctx;
if (nvme_bdev_ctrlr->opal_dev) {
spdk_opal_dev_destruct(nvme_bdev_ctrlr->opal_dev);
nvme_bdev_ctrlr->opal_dev = NULL;
}
if (nvme_bdev_ctrlr->ocssd_ctrlr) {
bdev_ocssd_fini_ctrlr(nvme_bdev_ctrlr);
}
spdk_io_device_unregister(nvme_bdev_ctrlr, nvme_bdev_unregister_cb);
}
void
nvme_bdev_ctrlr_destruct(struct nvme_bdev_ctrlr *nvme_bdev_ctrlr)
{
pthread_mutex_lock(&nvme_bdev_ctrlr->mutex);
assert(nvme_bdev_ctrlr->ref > 0);
nvme_bdev_ctrlr->ref--;
if (nvme_bdev_ctrlr->ref > 0 || !nvme_bdev_ctrlr->destruct ||
nvme_bdev_ctrlr->resetting) {
pthread_mutex_unlock(&nvme_bdev_ctrlr->mutex);
return;
}
pthread_mutex_unlock(&nvme_bdev_ctrlr->mutex);
nvme_bdev_ctrlr_do_destruct(nvme_bdev_ctrlr);
}
void
nvme_ctrlr_depopulate_namespace_done(struct nvme_bdev_ns *nvme_ns)
{
struct nvme_bdev_ctrlr *nvme_bdev_ctrlr = nvme_ns->ctrlr;
assert(nvme_bdev_ctrlr != NULL);
pthread_mutex_lock(&nvme_bdev_ctrlr->mutex);
nvme_ns->populated = false;
if (nvme_ns->bdev != NULL) {
pthread_mutex_unlock(&nvme_bdev_ctrlr->mutex);
return;
}
pthread_mutex_unlock(&nvme_bdev_ctrlr->mutex);
nvme_bdev_ctrlr_destruct(nvme_bdev_ctrlr);
}