Merge tag 'v4.8-rc6' into devel
[linux-2.6-block.git] / drivers / nvme / target / core.c
CommitLineData
a07b4970
CH
1/*
2 * Common code for the NVMe target.
3 * Copyright (c) 2015-2016 HGST, a Western Digital Company.
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms and conditions of the GNU General Public License,
7 * version 2, as published by the Free Software Foundation.
8 *
9 * This program is distributed in the hope it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
12 * more details.
13 */
14#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
15#include <linux/module.h>
28b89118 16#include <linux/random.h>
a07b4970
CH
17#include "nvmet.h"
18
19static struct nvmet_fabrics_ops *nvmet_transports[NVMF_TRTYPE_MAX];
20
21/*
22 * This read/write semaphore is used to synchronize access to configuration
23 * information on a target system that will result in discovery log page
24 * information change for at least one host.
25 * The full list of resources to protected by this semaphore is:
26 *
27 * - subsystems list
28 * - per-subsystem allowed hosts list
29 * - allow_any_host subsystem attribute
30 * - nvmet_genctr
31 * - the nvmet_transports array
32 *
33 * When updating any of those lists/structures write lock should be obtained,
34 * while when reading (popolating discovery log page or checking host-subsystem
35 * link) read lock is obtained to allow concurrent reads.
36 */
37DECLARE_RWSEM(nvmet_config_sem);
38
39static struct nvmet_subsys *nvmet_find_get_subsys(struct nvmet_port *port,
40 const char *subsysnqn);
41
42u16 nvmet_copy_to_sgl(struct nvmet_req *req, off_t off, const void *buf,
43 size_t len)
44{
45 if (sg_pcopy_from_buffer(req->sg, req->sg_cnt, buf, len, off) != len)
46 return NVME_SC_SGL_INVALID_DATA | NVME_SC_DNR;
47 return 0;
48}
49
50u16 nvmet_copy_from_sgl(struct nvmet_req *req, off_t off, void *buf, size_t len)
51{
52 if (sg_pcopy_to_buffer(req->sg, req->sg_cnt, buf, len, off) != len)
53 return NVME_SC_SGL_INVALID_DATA | NVME_SC_DNR;
54 return 0;
55}
56
57static u32 nvmet_async_event_result(struct nvmet_async_event *aen)
58{
59 return aen->event_type | (aen->event_info << 8) | (aen->log_page << 16);
60}
61
62static void nvmet_async_events_free(struct nvmet_ctrl *ctrl)
63{
64 struct nvmet_req *req;
65
66 while (1) {
67 mutex_lock(&ctrl->lock);
68 if (!ctrl->nr_async_event_cmds) {
69 mutex_unlock(&ctrl->lock);
70 return;
71 }
72
73 req = ctrl->async_event_cmds[--ctrl->nr_async_event_cmds];
74 mutex_unlock(&ctrl->lock);
75 nvmet_req_complete(req, NVME_SC_INTERNAL | NVME_SC_DNR);
76 }
77}
78
79static void nvmet_async_event_work(struct work_struct *work)
80{
81 struct nvmet_ctrl *ctrl =
82 container_of(work, struct nvmet_ctrl, async_event_work);
83 struct nvmet_async_event *aen;
84 struct nvmet_req *req;
85
86 while (1) {
87 mutex_lock(&ctrl->lock);
88 aen = list_first_entry_or_null(&ctrl->async_events,
89 struct nvmet_async_event, entry);
90 if (!aen || !ctrl->nr_async_event_cmds) {
91 mutex_unlock(&ctrl->lock);
92 return;
93 }
94
95 req = ctrl->async_event_cmds[--ctrl->nr_async_event_cmds];
96 nvmet_set_result(req, nvmet_async_event_result(aen));
97
98 list_del(&aen->entry);
99 kfree(aen);
100
101 mutex_unlock(&ctrl->lock);
102 nvmet_req_complete(req, 0);
103 }
104}
105
106static void nvmet_add_async_event(struct nvmet_ctrl *ctrl, u8 event_type,
107 u8 event_info, u8 log_page)
108{
109 struct nvmet_async_event *aen;
110
111 aen = kmalloc(sizeof(*aen), GFP_KERNEL);
112 if (!aen)
113 return;
114
115 aen->event_type = event_type;
116 aen->event_info = event_info;
117 aen->log_page = log_page;
118
119 mutex_lock(&ctrl->lock);
120 list_add_tail(&aen->entry, &ctrl->async_events);
121 mutex_unlock(&ctrl->lock);
122
123 schedule_work(&ctrl->async_event_work);
124}
125
126int nvmet_register_transport(struct nvmet_fabrics_ops *ops)
127{
128 int ret = 0;
129
130 down_write(&nvmet_config_sem);
131 if (nvmet_transports[ops->type])
132 ret = -EINVAL;
133 else
134 nvmet_transports[ops->type] = ops;
135 up_write(&nvmet_config_sem);
136
137 return ret;
138}
139EXPORT_SYMBOL_GPL(nvmet_register_transport);
140
141void nvmet_unregister_transport(struct nvmet_fabrics_ops *ops)
142{
143 down_write(&nvmet_config_sem);
144 nvmet_transports[ops->type] = NULL;
145 up_write(&nvmet_config_sem);
146}
147EXPORT_SYMBOL_GPL(nvmet_unregister_transport);
148
149int nvmet_enable_port(struct nvmet_port *port)
150{
151 struct nvmet_fabrics_ops *ops;
152 int ret;
153
154 lockdep_assert_held(&nvmet_config_sem);
155
156 ops = nvmet_transports[port->disc_addr.trtype];
157 if (!ops) {
158 up_write(&nvmet_config_sem);
159 request_module("nvmet-transport-%d", port->disc_addr.trtype);
160 down_write(&nvmet_config_sem);
161 ops = nvmet_transports[port->disc_addr.trtype];
162 if (!ops) {
163 pr_err("transport type %d not supported\n",
164 port->disc_addr.trtype);
165 return -EINVAL;
166 }
167 }
168
169 if (!try_module_get(ops->owner))
170 return -EINVAL;
171
172 ret = ops->add_port(port);
173 if (ret) {
174 module_put(ops->owner);
175 return ret;
176 }
177
178 port->enabled = true;
179 return 0;
180}
181
182void nvmet_disable_port(struct nvmet_port *port)
183{
184 struct nvmet_fabrics_ops *ops;
185
186 lockdep_assert_held(&nvmet_config_sem);
187
188 port->enabled = false;
189
190 ops = nvmet_transports[port->disc_addr.trtype];
191 ops->remove_port(port);
192 module_put(ops->owner);
193}
194
195static void nvmet_keep_alive_timer(struct work_struct *work)
196{
197 struct nvmet_ctrl *ctrl = container_of(to_delayed_work(work),
198 struct nvmet_ctrl, ka_work);
199
200 pr_err("ctrl %d keep-alive timer (%d seconds) expired!\n",
201 ctrl->cntlid, ctrl->kato);
202
203 ctrl->ops->delete_ctrl(ctrl);
204}
205
206static void nvmet_start_keep_alive_timer(struct nvmet_ctrl *ctrl)
207{
208 pr_debug("ctrl %d start keep-alive timer for %d secs\n",
209 ctrl->cntlid, ctrl->kato);
210
211 INIT_DELAYED_WORK(&ctrl->ka_work, nvmet_keep_alive_timer);
212 schedule_delayed_work(&ctrl->ka_work, ctrl->kato * HZ);
213}
214
215static void nvmet_stop_keep_alive_timer(struct nvmet_ctrl *ctrl)
216{
217 pr_debug("ctrl %d stop keep-alive\n", ctrl->cntlid);
218
219 cancel_delayed_work_sync(&ctrl->ka_work);
220}
221
222static struct nvmet_ns *__nvmet_find_namespace(struct nvmet_ctrl *ctrl,
223 __le32 nsid)
224{
225 struct nvmet_ns *ns;
226
227 list_for_each_entry_rcu(ns, &ctrl->subsys->namespaces, dev_link) {
228 if (ns->nsid == le32_to_cpu(nsid))
229 return ns;
230 }
231
232 return NULL;
233}
234
235struct nvmet_ns *nvmet_find_namespace(struct nvmet_ctrl *ctrl, __le32 nsid)
236{
237 struct nvmet_ns *ns;
238
239 rcu_read_lock();
240 ns = __nvmet_find_namespace(ctrl, nsid);
241 if (ns)
242 percpu_ref_get(&ns->ref);
243 rcu_read_unlock();
244
245 return ns;
246}
247
248static void nvmet_destroy_namespace(struct percpu_ref *ref)
249{
250 struct nvmet_ns *ns = container_of(ref, struct nvmet_ns, ref);
251
252 complete(&ns->disable_done);
253}
254
255void nvmet_put_namespace(struct nvmet_ns *ns)
256{
257 percpu_ref_put(&ns->ref);
258}
259
260int nvmet_ns_enable(struct nvmet_ns *ns)
261{
262 struct nvmet_subsys *subsys = ns->subsys;
263 struct nvmet_ctrl *ctrl;
264 int ret = 0;
265
266 mutex_lock(&subsys->lock);
267 if (!list_empty(&ns->dev_link))
268 goto out_unlock;
269
270 ns->bdev = blkdev_get_by_path(ns->device_path, FMODE_READ | FMODE_WRITE,
271 NULL);
272 if (IS_ERR(ns->bdev)) {
273 pr_err("nvmet: failed to open block device %s: (%ld)\n",
274 ns->device_path, PTR_ERR(ns->bdev));
275 ret = PTR_ERR(ns->bdev);
276 ns->bdev = NULL;
277 goto out_unlock;
278 }
279
280 ns->size = i_size_read(ns->bdev->bd_inode);
281 ns->blksize_shift = blksize_bits(bdev_logical_block_size(ns->bdev));
282
283 ret = percpu_ref_init(&ns->ref, nvmet_destroy_namespace,
284 0, GFP_KERNEL);
285 if (ret)
286 goto out_blkdev_put;
287
288 if (ns->nsid > subsys->max_nsid)
289 subsys->max_nsid = ns->nsid;
290
291 /*
292 * The namespaces list needs to be sorted to simplify the implementation
293 * of the Identify Namepace List subcommand.
294 */
295 if (list_empty(&subsys->namespaces)) {
296 list_add_tail_rcu(&ns->dev_link, &subsys->namespaces);
297 } else {
298 struct nvmet_ns *old;
299
300 list_for_each_entry_rcu(old, &subsys->namespaces, dev_link) {
301 BUG_ON(ns->nsid == old->nsid);
302 if (ns->nsid < old->nsid)
303 break;
304 }
305
306 list_add_tail_rcu(&ns->dev_link, &old->dev_link);
307 }
308
309 list_for_each_entry(ctrl, &subsys->ctrls, subsys_entry)
310 nvmet_add_async_event(ctrl, NVME_AER_TYPE_NOTICE, 0, 0);
311
312 ret = 0;
313out_unlock:
314 mutex_unlock(&subsys->lock);
315 return ret;
316out_blkdev_put:
317 blkdev_put(ns->bdev, FMODE_WRITE|FMODE_READ);
318 ns->bdev = NULL;
319 goto out_unlock;
320}
321
322void nvmet_ns_disable(struct nvmet_ns *ns)
323{
324 struct nvmet_subsys *subsys = ns->subsys;
325 struct nvmet_ctrl *ctrl;
326
327 mutex_lock(&subsys->lock);
328 if (list_empty(&ns->dev_link)) {
329 mutex_unlock(&subsys->lock);
330 return;
331 }
332 list_del_init(&ns->dev_link);
333 mutex_unlock(&subsys->lock);
334
335 /*
336 * Now that we removed the namespaces from the lookup list, we
337 * can kill the per_cpu ref and wait for any remaining references
338 * to be dropped, as well as a RCU grace period for anyone only
339 * using the namepace under rcu_read_lock(). Note that we can't
340 * use call_rcu here as we need to ensure the namespaces have
341 * been fully destroyed before unloading the module.
342 */
343 percpu_ref_kill(&ns->ref);
344 synchronize_rcu();
345 wait_for_completion(&ns->disable_done);
346 percpu_ref_exit(&ns->ref);
347
348 mutex_lock(&subsys->lock);
349 list_for_each_entry(ctrl, &subsys->ctrls, subsys_entry)
350 nvmet_add_async_event(ctrl, NVME_AER_TYPE_NOTICE, 0, 0);
351
352 if (ns->bdev)
353 blkdev_put(ns->bdev, FMODE_WRITE|FMODE_READ);
354 mutex_unlock(&subsys->lock);
355}
356
357void nvmet_ns_free(struct nvmet_ns *ns)
358{
359 nvmet_ns_disable(ns);
360
361 kfree(ns->device_path);
362 kfree(ns);
363}
364
365struct nvmet_ns *nvmet_ns_alloc(struct nvmet_subsys *subsys, u32 nsid)
366{
367 struct nvmet_ns *ns;
368
369 ns = kzalloc(sizeof(*ns), GFP_KERNEL);
370 if (!ns)
371 return NULL;
372
373 INIT_LIST_HEAD(&ns->dev_link);
374 init_completion(&ns->disable_done);
375
376 ns->nsid = nsid;
377 ns->subsys = subsys;
378
379 return ns;
380}
381
382static void __nvmet_req_complete(struct nvmet_req *req, u16 status)
383{
384 if (status)
385 nvmet_set_status(req, status);
386
387 /* XXX: need to fill in something useful for sq_head */
388 req->rsp->sq_head = 0;
389 if (likely(req->sq)) /* may happen during early failure */
390 req->rsp->sq_id = cpu_to_le16(req->sq->qid);
391 req->rsp->command_id = req->cmd->common.command_id;
392
393 if (req->ns)
394 nvmet_put_namespace(req->ns);
395 req->ops->queue_response(req);
396}
397
398void nvmet_req_complete(struct nvmet_req *req, u16 status)
399{
400 __nvmet_req_complete(req, status);
401 percpu_ref_put(&req->sq->ref);
402}
403EXPORT_SYMBOL_GPL(nvmet_req_complete);
404
405void nvmet_cq_setup(struct nvmet_ctrl *ctrl, struct nvmet_cq *cq,
406 u16 qid, u16 size)
407{
408 cq->qid = qid;
409 cq->size = size;
410
411 ctrl->cqs[qid] = cq;
412}
413
414void nvmet_sq_setup(struct nvmet_ctrl *ctrl, struct nvmet_sq *sq,
415 u16 qid, u16 size)
416{
417 sq->qid = qid;
418 sq->size = size;
419
420 ctrl->sqs[qid] = sq;
421}
422
423void nvmet_sq_destroy(struct nvmet_sq *sq)
424{
425 /*
426 * If this is the admin queue, complete all AERs so that our
427 * queue doesn't have outstanding requests on it.
428 */
429 if (sq->ctrl && sq->ctrl->sqs && sq->ctrl->sqs[0] == sq)
430 nvmet_async_events_free(sq->ctrl);
431 percpu_ref_kill(&sq->ref);
432 wait_for_completion(&sq->free_done);
433 percpu_ref_exit(&sq->ref);
434
435 if (sq->ctrl) {
436 nvmet_ctrl_put(sq->ctrl);
437 sq->ctrl = NULL; /* allows reusing the queue later */
438 }
439}
440EXPORT_SYMBOL_GPL(nvmet_sq_destroy);
441
442static void nvmet_sq_free(struct percpu_ref *ref)
443{
444 struct nvmet_sq *sq = container_of(ref, struct nvmet_sq, ref);
445
446 complete(&sq->free_done);
447}
448
449int nvmet_sq_init(struct nvmet_sq *sq)
450{
451 int ret;
452
453 ret = percpu_ref_init(&sq->ref, nvmet_sq_free, 0, GFP_KERNEL);
454 if (ret) {
455 pr_err("percpu_ref init failed!\n");
456 return ret;
457 }
458 init_completion(&sq->free_done);
459
460 return 0;
461}
462EXPORT_SYMBOL_GPL(nvmet_sq_init);
463
464bool nvmet_req_init(struct nvmet_req *req, struct nvmet_cq *cq,
465 struct nvmet_sq *sq, struct nvmet_fabrics_ops *ops)
466{
467 u8 flags = req->cmd->common.flags;
468 u16 status;
469
470 req->cq = cq;
471 req->sq = sq;
472 req->ops = ops;
473 req->sg = NULL;
474 req->sg_cnt = 0;
475 req->rsp->status = 0;
476
477 /* no support for fused commands yet */
478 if (unlikely(flags & (NVME_CMD_FUSE_FIRST | NVME_CMD_FUSE_SECOND))) {
479 status = NVME_SC_INVALID_FIELD | NVME_SC_DNR;
480 goto fail;
481 }
482
483 /* either variant of SGLs is fine, as we don't support metadata */
484 if (unlikely((flags & NVME_CMD_SGL_ALL) != NVME_CMD_SGL_METABUF &&
485 (flags & NVME_CMD_SGL_ALL) != NVME_CMD_SGL_METASEG)) {
486 status = NVME_SC_INVALID_FIELD | NVME_SC_DNR;
487 goto fail;
488 }
489
490 if (unlikely(!req->sq->ctrl))
491 /* will return an error for any Non-connect command: */
492 status = nvmet_parse_connect_cmd(req);
493 else if (likely(req->sq->qid != 0))
494 status = nvmet_parse_io_cmd(req);
495 else if (req->cmd->common.opcode == nvme_fabrics_command)
496 status = nvmet_parse_fabrics_cmd(req);
497 else if (req->sq->ctrl->subsys->type == NVME_NQN_DISC)
498 status = nvmet_parse_discovery_cmd(req);
499 else
500 status = nvmet_parse_admin_cmd(req);
501
502 if (status)
503 goto fail;
504
505 if (unlikely(!percpu_ref_tryget_live(&sq->ref))) {
506 status = NVME_SC_INVALID_FIELD | NVME_SC_DNR;
507 goto fail;
508 }
509
510 return true;
511
512fail:
513 __nvmet_req_complete(req, status);
514 return false;
515}
516EXPORT_SYMBOL_GPL(nvmet_req_init);
517
518static inline bool nvmet_cc_en(u32 cc)
519{
520 return cc & 0x1;
521}
522
523static inline u8 nvmet_cc_css(u32 cc)
524{
525 return (cc >> 4) & 0x7;
526}
527
528static inline u8 nvmet_cc_mps(u32 cc)
529{
530 return (cc >> 7) & 0xf;
531}
532
533static inline u8 nvmet_cc_ams(u32 cc)
534{
535 return (cc >> 11) & 0x7;
536}
537
538static inline u8 nvmet_cc_shn(u32 cc)
539{
540 return (cc >> 14) & 0x3;
541}
542
543static inline u8 nvmet_cc_iosqes(u32 cc)
544{
545 return (cc >> 16) & 0xf;
546}
547
548static inline u8 nvmet_cc_iocqes(u32 cc)
549{
550 return (cc >> 20) & 0xf;
551}
552
553static void nvmet_start_ctrl(struct nvmet_ctrl *ctrl)
554{
555 lockdep_assert_held(&ctrl->lock);
556
557 if (nvmet_cc_iosqes(ctrl->cc) != NVME_NVM_IOSQES ||
558 nvmet_cc_iocqes(ctrl->cc) != NVME_NVM_IOCQES ||
559 nvmet_cc_mps(ctrl->cc) != 0 ||
560 nvmet_cc_ams(ctrl->cc) != 0 ||
561 nvmet_cc_css(ctrl->cc) != 0) {
562 ctrl->csts = NVME_CSTS_CFS;
563 return;
564 }
565
566 ctrl->csts = NVME_CSTS_RDY;
567}
568
569static void nvmet_clear_ctrl(struct nvmet_ctrl *ctrl)
570{
571 lockdep_assert_held(&ctrl->lock);
572
573 /* XXX: tear down queues? */
574 ctrl->csts &= ~NVME_CSTS_RDY;
575 ctrl->cc = 0;
576}
577
578void nvmet_update_cc(struct nvmet_ctrl *ctrl, u32 new)
579{
580 u32 old;
581
582 mutex_lock(&ctrl->lock);
583 old = ctrl->cc;
584 ctrl->cc = new;
585
586 if (nvmet_cc_en(new) && !nvmet_cc_en(old))
587 nvmet_start_ctrl(ctrl);
588 if (!nvmet_cc_en(new) && nvmet_cc_en(old))
589 nvmet_clear_ctrl(ctrl);
590 if (nvmet_cc_shn(new) && !nvmet_cc_shn(old)) {
591 nvmet_clear_ctrl(ctrl);
592 ctrl->csts |= NVME_CSTS_SHST_CMPLT;
593 }
594 if (!nvmet_cc_shn(new) && nvmet_cc_shn(old))
595 ctrl->csts &= ~NVME_CSTS_SHST_CMPLT;
596 mutex_unlock(&ctrl->lock);
597}
598
599static void nvmet_init_cap(struct nvmet_ctrl *ctrl)
600{
601 /* command sets supported: NVMe command set: */
602 ctrl->cap = (1ULL << 37);
603 /* CC.EN timeout in 500msec units: */
604 ctrl->cap |= (15ULL << 24);
605 /* maximum queue entries supported: */
606 ctrl->cap |= NVMET_QUEUE_SIZE - 1;
607}
608
609u16 nvmet_ctrl_find_get(const char *subsysnqn, const char *hostnqn, u16 cntlid,
610 struct nvmet_req *req, struct nvmet_ctrl **ret)
611{
612 struct nvmet_subsys *subsys;
613 struct nvmet_ctrl *ctrl;
614 u16 status = 0;
615
616 subsys = nvmet_find_get_subsys(req->port, subsysnqn);
617 if (!subsys) {
618 pr_warn("connect request for invalid subsystem %s!\n",
619 subsysnqn);
620 req->rsp->result = IPO_IATTR_CONNECT_DATA(subsysnqn);
621 return NVME_SC_CONNECT_INVALID_PARAM | NVME_SC_DNR;
622 }
623
624 mutex_lock(&subsys->lock);
625 list_for_each_entry(ctrl, &subsys->ctrls, subsys_entry) {
626 if (ctrl->cntlid == cntlid) {
627 if (strncmp(hostnqn, ctrl->hostnqn, NVMF_NQN_SIZE)) {
628 pr_warn("hostnqn mismatch.\n");
629 continue;
630 }
631 if (!kref_get_unless_zero(&ctrl->ref))
632 continue;
633
634 *ret = ctrl;
635 goto out;
636 }
637 }
638
639 pr_warn("could not find controller %d for subsys %s / host %s\n",
640 cntlid, subsysnqn, hostnqn);
641 req->rsp->result = IPO_IATTR_CONNECT_DATA(cntlid);
642 status = NVME_SC_CONNECT_INVALID_PARAM | NVME_SC_DNR;
643
644out:
645 mutex_unlock(&subsys->lock);
646 nvmet_subsys_put(subsys);
647 return status;
648}
649
650static bool __nvmet_host_allowed(struct nvmet_subsys *subsys,
651 const char *hostnqn)
652{
653 struct nvmet_host_link *p;
654
655 if (subsys->allow_any_host)
656 return true;
657
658 list_for_each_entry(p, &subsys->hosts, entry) {
659 if (!strcmp(nvmet_host_name(p->host), hostnqn))
660 return true;
661 }
662
663 return false;
664}
665
666static bool nvmet_host_discovery_allowed(struct nvmet_req *req,
667 const char *hostnqn)
668{
669 struct nvmet_subsys_link *s;
670
671 list_for_each_entry(s, &req->port->subsystems, entry) {
672 if (__nvmet_host_allowed(s->subsys, hostnqn))
673 return true;
674 }
675
676 return false;
677}
678
679bool nvmet_host_allowed(struct nvmet_req *req, struct nvmet_subsys *subsys,
680 const char *hostnqn)
681{
682 lockdep_assert_held(&nvmet_config_sem);
683
684 if (subsys->type == NVME_NQN_DISC)
685 return nvmet_host_discovery_allowed(req, hostnqn);
686 else
687 return __nvmet_host_allowed(subsys, hostnqn);
688}
689
690u16 nvmet_alloc_ctrl(const char *subsysnqn, const char *hostnqn,
691 struct nvmet_req *req, u32 kato, struct nvmet_ctrl **ctrlp)
692{
693 struct nvmet_subsys *subsys;
694 struct nvmet_ctrl *ctrl;
695 int ret;
696 u16 status;
697
698 status = NVME_SC_CONNECT_INVALID_PARAM | NVME_SC_DNR;
699 subsys = nvmet_find_get_subsys(req->port, subsysnqn);
700 if (!subsys) {
701 pr_warn("connect request for invalid subsystem %s!\n",
702 subsysnqn);
703 req->rsp->result = IPO_IATTR_CONNECT_DATA(subsysnqn);
704 goto out;
705 }
706
707 status = NVME_SC_CONNECT_INVALID_PARAM | NVME_SC_DNR;
708 down_read(&nvmet_config_sem);
709 if (!nvmet_host_allowed(req, subsys, hostnqn)) {
710 pr_info("connect by host %s for subsystem %s not allowed\n",
711 hostnqn, subsysnqn);
712 req->rsp->result = IPO_IATTR_CONNECT_DATA(hostnqn);
713 up_read(&nvmet_config_sem);
714 goto out_put_subsystem;
715 }
716 up_read(&nvmet_config_sem);
717
718 status = NVME_SC_INTERNAL;
719 ctrl = kzalloc(sizeof(*ctrl), GFP_KERNEL);
720 if (!ctrl)
721 goto out_put_subsystem;
722 mutex_init(&ctrl->lock);
723
724 nvmet_init_cap(ctrl);
725
726 INIT_WORK(&ctrl->async_event_work, nvmet_async_event_work);
727 INIT_LIST_HEAD(&ctrl->async_events);
728
729 memcpy(ctrl->subsysnqn, subsysnqn, NVMF_NQN_SIZE);
730 memcpy(ctrl->hostnqn, hostnqn, NVMF_NQN_SIZE);
731
28b89118
SG
732 /* generate a random serial number as our controllers are ephemeral: */
733 get_random_bytes(&ctrl->serial, sizeof(ctrl->serial));
734
a07b4970
CH
735 kref_init(&ctrl->ref);
736 ctrl->subsys = subsys;
737
738 ctrl->cqs = kcalloc(subsys->max_qid + 1,
739 sizeof(struct nvmet_cq *),
740 GFP_KERNEL);
741 if (!ctrl->cqs)
742 goto out_free_ctrl;
743
744 ctrl->sqs = kcalloc(subsys->max_qid + 1,
745 sizeof(struct nvmet_sq *),
746 GFP_KERNEL);
747 if (!ctrl->sqs)
748 goto out_free_cqs;
749
750 ret = ida_simple_get(&subsys->cntlid_ida,
751 NVME_CNTLID_MIN, NVME_CNTLID_MAX,
752 GFP_KERNEL);
753 if (ret < 0) {
754 status = NVME_SC_CONNECT_CTRL_BUSY | NVME_SC_DNR;
755 goto out_free_sqs;
756 }
757 ctrl->cntlid = ret;
758
759 ctrl->ops = req->ops;
760 if (ctrl->subsys->type == NVME_NQN_DISC) {
761 /* Don't accept keep-alive timeout for discovery controllers */
762 if (kato) {
763 status = NVME_SC_INVALID_FIELD | NVME_SC_DNR;
764 goto out_free_sqs;
765 }
766
767 /*
768 * Discovery controllers use some arbitrary high value in order
769 * to cleanup stale discovery sessions
770 *
771 * From the latest base diff RC:
772 * "The Keep Alive command is not supported by
773 * Discovery controllers. A transport may specify a
774 * fixed Discovery controller activity timeout value
775 * (e.g., 2 minutes). If no commands are received
776 * by a Discovery controller within that time
777 * period, the controller may perform the
778 * actions for Keep Alive Timer expiration".
779 */
780 ctrl->kato = NVMET_DISC_KATO;
781 } else {
782 /* keep-alive timeout in seconds */
783 ctrl->kato = DIV_ROUND_UP(kato, 1000);
784 }
785 nvmet_start_keep_alive_timer(ctrl);
786
787 mutex_lock(&subsys->lock);
788 list_add_tail(&ctrl->subsys_entry, &subsys->ctrls);
789 mutex_unlock(&subsys->lock);
790
791 *ctrlp = ctrl;
792 return 0;
793
794out_free_sqs:
795 kfree(ctrl->sqs);
796out_free_cqs:
797 kfree(ctrl->cqs);
798out_free_ctrl:
799 kfree(ctrl);
800out_put_subsystem:
801 nvmet_subsys_put(subsys);
802out:
803 return status;
804}
805
806static void nvmet_ctrl_free(struct kref *ref)
807{
808 struct nvmet_ctrl *ctrl = container_of(ref, struct nvmet_ctrl, ref);
809 struct nvmet_subsys *subsys = ctrl->subsys;
810
811 nvmet_stop_keep_alive_timer(ctrl);
812
813 mutex_lock(&subsys->lock);
814 list_del(&ctrl->subsys_entry);
815 mutex_unlock(&subsys->lock);
816
817 ida_simple_remove(&subsys->cntlid_ida, ctrl->cntlid);
818 nvmet_subsys_put(subsys);
819
820 kfree(ctrl->sqs);
821 kfree(ctrl->cqs);
822 kfree(ctrl);
823}
824
825void nvmet_ctrl_put(struct nvmet_ctrl *ctrl)
826{
827 kref_put(&ctrl->ref, nvmet_ctrl_free);
828}
829
830static void nvmet_fatal_error_handler(struct work_struct *work)
831{
832 struct nvmet_ctrl *ctrl =
833 container_of(work, struct nvmet_ctrl, fatal_err_work);
834
835 pr_err("ctrl %d fatal error occurred!\n", ctrl->cntlid);
836 ctrl->ops->delete_ctrl(ctrl);
837}
838
839void nvmet_ctrl_fatal_error(struct nvmet_ctrl *ctrl)
840{
841 ctrl->csts |= NVME_CSTS_CFS;
842 INIT_WORK(&ctrl->fatal_err_work, nvmet_fatal_error_handler);
843 schedule_work(&ctrl->fatal_err_work);
844}
845EXPORT_SYMBOL_GPL(nvmet_ctrl_fatal_error);
846
847static struct nvmet_subsys *nvmet_find_get_subsys(struct nvmet_port *port,
848 const char *subsysnqn)
849{
850 struct nvmet_subsys_link *p;
851
852 if (!port)
853 return NULL;
854
855 if (!strncmp(NVME_DISC_SUBSYS_NAME, subsysnqn,
856 NVMF_NQN_SIZE)) {
857 if (!kref_get_unless_zero(&nvmet_disc_subsys->ref))
858 return NULL;
859 return nvmet_disc_subsys;
860 }
861
862 down_read(&nvmet_config_sem);
863 list_for_each_entry(p, &port->subsystems, entry) {
864 if (!strncmp(p->subsys->subsysnqn, subsysnqn,
865 NVMF_NQN_SIZE)) {
866 if (!kref_get_unless_zero(&p->subsys->ref))
867 break;
868 up_read(&nvmet_config_sem);
869 return p->subsys;
870 }
871 }
872 up_read(&nvmet_config_sem);
873 return NULL;
874}
875
876struct nvmet_subsys *nvmet_subsys_alloc(const char *subsysnqn,
877 enum nvme_subsys_type type)
878{
879 struct nvmet_subsys *subsys;
880
881 subsys = kzalloc(sizeof(*subsys), GFP_KERNEL);
882 if (!subsys)
883 return NULL;
884
885 subsys->ver = (1 << 16) | (2 << 8) | 1; /* NVMe 1.2.1 */
886
887 switch (type) {
888 case NVME_NQN_NVME:
889 subsys->max_qid = NVMET_NR_QUEUES;
890 break;
891 case NVME_NQN_DISC:
892 subsys->max_qid = 0;
893 break;
894 default:
895 pr_err("%s: Unknown Subsystem type - %d\n", __func__, type);
896 kfree(subsys);
897 return NULL;
898 }
899 subsys->type = type;
900 subsys->subsysnqn = kstrndup(subsysnqn, NVMF_NQN_SIZE,
901 GFP_KERNEL);
69555af2 902 if (!subsys->subsysnqn) {
a07b4970
CH
903 kfree(subsys);
904 return NULL;
905 }
906
907 kref_init(&subsys->ref);
908
909 mutex_init(&subsys->lock);
910 INIT_LIST_HEAD(&subsys->namespaces);
911 INIT_LIST_HEAD(&subsys->ctrls);
912
913 ida_init(&subsys->cntlid_ida);
914
915 INIT_LIST_HEAD(&subsys->hosts);
916
917 return subsys;
918}
919
920static void nvmet_subsys_free(struct kref *ref)
921{
922 struct nvmet_subsys *subsys =
923 container_of(ref, struct nvmet_subsys, ref);
924
925 WARN_ON_ONCE(!list_empty(&subsys->namespaces));
926
927 ida_destroy(&subsys->cntlid_ida);
928 kfree(subsys->subsysnqn);
929 kfree(subsys);
930}
931
932void nvmet_subsys_put(struct nvmet_subsys *subsys)
933{
934 kref_put(&subsys->ref, nvmet_subsys_free);
935}
936
937static int __init nvmet_init(void)
938{
939 int error;
940
941 error = nvmet_init_discovery();
942 if (error)
943 goto out;
944
945 error = nvmet_init_configfs();
946 if (error)
947 goto out_exit_discovery;
948 return 0;
949
950out_exit_discovery:
951 nvmet_exit_discovery();
952out:
953 return error;
954}
955
956static void __exit nvmet_exit(void)
957{
958 nvmet_exit_configfs();
959 nvmet_exit_discovery();
960
961 BUILD_BUG_ON(sizeof(struct nvmf_disc_rsp_page_entry) != 1024);
962 BUILD_BUG_ON(sizeof(struct nvmf_disc_rsp_page_hdr) != 1024);
963}
964
965module_init(nvmet_init);
966module_exit(nvmet_exit);
967
968MODULE_LICENSE("GPL v2");