bdev/nvme: don't attach user deleted controllers automaticlly
When hotplug feature is enabled by NVMe driver, users may call delete_nvme_controller() RPC to delete one controller, however, the hotplug monitor will probe this controller automaticlly and attach it back to NVMe driver. We added a skip list, for those user deleted controllers so that NVMe driver will not attach it again. Fix issue #602. Change-Id: Ibbe21ff8a021f968305271acdae86207e6228e20 Signed-off-by: Changpeng Liu <changpeng.liu@intel.com> Reviewed-on: https://review.gerrithub.io/c/444323 (master) Reviewed-on: https://review.gerrithub.io/c/spdk/spdk/+/447595 Reviewed-by: Darek Stojaczyk <dariusz.stojaczyk@intel.com> Reviewed-by: Ben Walker <benjamin.walker@intel.com> Tested-by: SPDK CI Jenkins <sys_sgci@intel.com>
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@ -95,6 +95,14 @@ struct nvme_probe_ctx {
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const char *hostnqn;
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};
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struct nvme_probe_skip_entry {
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struct spdk_nvme_transport_id trid;
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TAILQ_ENTRY(nvme_probe_skip_entry) tailq;
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};
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/* All the controllers deleted by users via RPC are skipped by hotplug monitor */
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static TAILQ_HEAD(, nvme_probe_skip_entry) g_skipped_nvme_ctrlrs = TAILQ_HEAD_INITIALIZER(
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g_skipped_nvme_ctrlrs);
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static struct spdk_bdev_nvme_opts g_opts = {
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.action_on_timeout = SPDK_BDEV_NVME_TIMEOUT_ACTION_NONE,
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.timeout_us = 0,
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@ -809,6 +817,14 @@ static bool
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hotplug_probe_cb(void *cb_ctx, const struct spdk_nvme_transport_id *trid,
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struct spdk_nvme_ctrlr_opts *opts)
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{
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struct nvme_probe_skip_entry *entry;
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TAILQ_FOREACH(entry, &g_skipped_nvme_ctrlrs, tailq) {
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if (spdk_nvme_transport_id_compare(trid, &entry->trid) == 0) {
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return false;
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}
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}
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SPDK_DEBUGLOG(SPDK_LOG_BDEV_NVME, "Attaching to %s\n", trid->traddr);
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return true;
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@ -1203,6 +1219,7 @@ spdk_bdev_nvme_create(struct spdk_nvme_transport_id *trid,
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struct nvme_bdev *nvme_bdev;
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uint32_t i, nsid;
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size_t j;
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struct nvme_probe_skip_entry *entry, *tmp;
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if (nvme_ctrlr_get(trid) != NULL) {
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SPDK_ERRLOG("A controller with the provided trid (traddr: %s) already exists.\n", trid->traddr);
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@ -1214,6 +1231,16 @@ spdk_bdev_nvme_create(struct spdk_nvme_transport_id *trid,
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return -1;
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}
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if (trid->trtype == SPDK_NVME_TRANSPORT_PCIE) {
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TAILQ_FOREACH_SAFE(entry, &g_skipped_nvme_ctrlrs, tailq, tmp) {
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if (spdk_nvme_transport_id_compare(trid, &entry->trid) == 0) {
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TAILQ_REMOVE(&g_skipped_nvme_ctrlrs, entry, tailq);
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free(entry);
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break;
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}
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}
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}
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spdk_nvme_ctrlr_get_default_ctrlr_opts(&opts, sizeof(opts));
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if (hostnqn) {
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@ -1276,6 +1303,7 @@ int
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spdk_bdev_nvme_delete(const char *name)
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{
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struct nvme_ctrlr *nvme_ctrlr = NULL;
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struct nvme_probe_skip_entry *entry;
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if (name == NULL) {
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return -EINVAL;
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@ -1287,6 +1315,15 @@ spdk_bdev_nvme_delete(const char *name)
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return -ENODEV;
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}
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if (nvme_ctrlr->trid.trtype == SPDK_NVME_TRANSPORT_PCIE) {
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entry = calloc(1, sizeof(*entry));
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if (!entry) {
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return -ENOMEM;
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}
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entry->trid = nvme_ctrlr->trid;
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TAILQ_INSERT_TAIL(&g_skipped_nvme_ctrlrs, entry, tailq);
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}
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remove_cb(NULL, nvme_ctrlr->ctrlr);
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return 0;
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}
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@ -1491,9 +1528,15 @@ static void
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bdev_nvme_library_fini(void)
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{
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struct nvme_ctrlr *nvme_ctrlr, *tmp;
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struct nvme_probe_skip_entry *entry, *entry_tmp;
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spdk_poller_unregister(&g_hotplug_poller);
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TAILQ_FOREACH_SAFE(entry, &g_skipped_nvme_ctrlrs, tailq, entry_tmp) {
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TAILQ_REMOVE(&g_skipped_nvme_ctrlrs, entry, tailq);
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free(entry);
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}
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pthread_mutex_lock(&g_bdev_nvme_mutex);
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TAILQ_FOREACH_SAFE(nvme_ctrlr, &g_nvme_ctrlrs, tailq, tmp) {
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if (nvme_ctrlr->ref > 0) {
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