blob: e1a7e5cdfcf4ee8d046598566dd2ce628c0c86cf [file] [log] [blame]
James Smarte3994412016-12-02 00:28:42 -08001/*
2 * Copyright (c) 2016 Avago Technologies. All rights reserved.
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of version 2 of the GNU General Public License as
6 * published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful.
9 * ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND WARRANTIES,
10 * INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY, FITNESS FOR A
11 * PARTICULAR PURPOSE, OR NON-INFRINGEMENT, ARE DISCLAIMED, EXCEPT TO
12 * THE EXTENT THAT SUCH DISCLAIMERS ARE HELD TO BE LEGALLY INVALID.
13 * See the GNU General Public License for more details, a copy of which
14 * can be found in the file COPYING included with this package
15 *
16 */
17#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
18#include <linux/module.h>
19#include <linux/parser.h>
20#include <uapi/scsi/fc/fc_fs.h>
21#include <uapi/scsi/fc/fc_els.h>
James Smart61bff8e2017-04-23 08:30:08 -070022#include <linux/delay.h>
James Smarte3994412016-12-02 00:28:42 -080023
24#include "nvme.h"
25#include "fabrics.h"
26#include <linux/nvme-fc-driver.h>
27#include <linux/nvme-fc.h>
28
29
30/* *************************** Data Structures/Defines ****************** */
31
32
33/*
34 * We handle AEN commands ourselves and don't even let the
35 * block layer know about them.
36 */
37#define NVME_FC_NR_AEN_COMMANDS 1
38#define NVME_FC_AQ_BLKMQ_DEPTH \
Sagi Grimberg7aa1f422017-06-18 16:15:59 +030039 (NVME_AQ_DEPTH - NVME_FC_NR_AEN_COMMANDS)
James Smarte3994412016-12-02 00:28:42 -080040#define AEN_CMDID_BASE (NVME_FC_AQ_BLKMQ_DEPTH + 1)
41
42enum nvme_fc_queue_flags {
43 NVME_FC_Q_CONNECTED = (1 << 0),
44};
45
46#define NVMEFC_QUEUE_DELAY 3 /* ms units */
47
48struct nvme_fc_queue {
49 struct nvme_fc_ctrl *ctrl;
50 struct device *dev;
51 struct blk_mq_hw_ctx *hctx;
52 void *lldd_handle;
53 int queue_size;
54 size_t cmnd_capsule_len;
55 u32 qnum;
56 u32 rqcnt;
57 u32 seqno;
58
59 u64 connection_id;
60 atomic_t csn;
61
62 unsigned long flags;
63} __aligned(sizeof(u64)); /* alignment for other things alloc'd with */
64
James Smart8d64daf2017-04-11 11:35:09 -070065enum nvme_fcop_flags {
66 FCOP_FLAGS_TERMIO = (1 << 0),
67 FCOP_FLAGS_RELEASED = (1 << 1),
68 FCOP_FLAGS_COMPLETE = (1 << 2),
James Smart78a7ac22017-04-23 08:30:07 -070069 FCOP_FLAGS_AEN = (1 << 3),
James Smart8d64daf2017-04-11 11:35:09 -070070};
71
James Smarte3994412016-12-02 00:28:42 -080072struct nvmefc_ls_req_op {
73 struct nvmefc_ls_req ls_req;
74
James Smartc913a8b2017-04-11 11:35:08 -070075 struct nvme_fc_rport *rport;
James Smarte3994412016-12-02 00:28:42 -080076 struct nvme_fc_queue *queue;
77 struct request *rq;
James Smart8d64daf2017-04-11 11:35:09 -070078 u32 flags;
James Smarte3994412016-12-02 00:28:42 -080079
80 int ls_error;
81 struct completion ls_done;
James Smartc913a8b2017-04-11 11:35:08 -070082 struct list_head lsreq_list; /* rport->ls_req_list */
James Smarte3994412016-12-02 00:28:42 -080083 bool req_queued;
84};
85
86enum nvme_fcpop_state {
87 FCPOP_STATE_UNINIT = 0,
88 FCPOP_STATE_IDLE = 1,
89 FCPOP_STATE_ACTIVE = 2,
90 FCPOP_STATE_ABORTED = 3,
James Smart78a7ac22017-04-23 08:30:07 -070091 FCPOP_STATE_COMPLETE = 4,
James Smarte3994412016-12-02 00:28:42 -080092};
93
94struct nvme_fc_fcp_op {
95 struct nvme_request nreq; /*
96 * nvme/host/core.c
97 * requires this to be
98 * the 1st element in the
99 * private structure
100 * associated with the
101 * request.
102 */
103 struct nvmefc_fcp_req fcp_req;
104
105 struct nvme_fc_ctrl *ctrl;
106 struct nvme_fc_queue *queue;
107 struct request *rq;
108
109 atomic_t state;
James Smart78a7ac22017-04-23 08:30:07 -0700110 u32 flags;
James Smarte3994412016-12-02 00:28:42 -0800111 u32 rqno;
112 u32 nents;
113
114 struct nvme_fc_cmd_iu cmd_iu;
115 struct nvme_fc_ersp_iu rsp_iu;
116};
117
118struct nvme_fc_lport {
119 struct nvme_fc_local_port localport;
120
121 struct ida endp_cnt;
122 struct list_head port_list; /* nvme_fc_port_list */
123 struct list_head endp_list;
124 struct device *dev; /* physical device for dma */
125 struct nvme_fc_port_template *ops;
126 struct kref ref;
127} __aligned(sizeof(u64)); /* alignment for other things alloc'd with */
128
129struct nvme_fc_rport {
130 struct nvme_fc_remote_port remoteport;
131
132 struct list_head endp_list; /* for lport->endp_list */
133 struct list_head ctrl_list;
James Smartc913a8b2017-04-11 11:35:08 -0700134 struct list_head ls_req_list;
135 struct device *dev; /* physical device for dma */
136 struct nvme_fc_lport *lport;
James Smarte3994412016-12-02 00:28:42 -0800137 spinlock_t lock;
138 struct kref ref;
139} __aligned(sizeof(u64)); /* alignment for other things alloc'd with */
140
James Smart61bff8e2017-04-23 08:30:08 -0700141enum nvme_fcctrl_flags {
142 FCCTRL_TERMIO = (1 << 0),
James Smarte3994412016-12-02 00:28:42 -0800143};
144
145struct nvme_fc_ctrl {
146 spinlock_t lock;
147 struct nvme_fc_queue *queues;
James Smarte3994412016-12-02 00:28:42 -0800148 struct device *dev;
149 struct nvme_fc_lport *lport;
150 struct nvme_fc_rport *rport;
151 u32 cnum;
152
153 u64 association_id;
154
James Smarte3994412016-12-02 00:28:42 -0800155 struct list_head ctrl_list; /* rport->ctrl_list */
James Smarte3994412016-12-02 00:28:42 -0800156
157 struct blk_mq_tag_set admin_tag_set;
158 struct blk_mq_tag_set tag_set;
159
160 struct work_struct delete_work;
James Smart61bff8e2017-04-23 08:30:08 -0700161 struct delayed_work connect_work;
James Smart61bff8e2017-04-23 08:30:08 -0700162
James Smarte3994412016-12-02 00:28:42 -0800163 struct kref ref;
James Smart61bff8e2017-04-23 08:30:08 -0700164 u32 flags;
165 u32 iocnt;
James Smart36715cf2017-05-22 15:28:42 -0700166 wait_queue_head_t ioabort_wait;
James Smarte3994412016-12-02 00:28:42 -0800167
168 struct nvme_fc_fcp_op aen_ops[NVME_FC_NR_AEN_COMMANDS];
169
170 struct nvme_ctrl ctrl;
171};
172
173static inline struct nvme_fc_ctrl *
174to_fc_ctrl(struct nvme_ctrl *ctrl)
175{
176 return container_of(ctrl, struct nvme_fc_ctrl, ctrl);
177}
178
179static inline struct nvme_fc_lport *
180localport_to_lport(struct nvme_fc_local_port *portptr)
181{
182 return container_of(portptr, struct nvme_fc_lport, localport);
183}
184
185static inline struct nvme_fc_rport *
186remoteport_to_rport(struct nvme_fc_remote_port *portptr)
187{
188 return container_of(portptr, struct nvme_fc_rport, remoteport);
189}
190
191static inline struct nvmefc_ls_req_op *
192ls_req_to_lsop(struct nvmefc_ls_req *lsreq)
193{
194 return container_of(lsreq, struct nvmefc_ls_req_op, ls_req);
195}
196
197static inline struct nvme_fc_fcp_op *
198fcp_req_to_fcp_op(struct nvmefc_fcp_req *fcpreq)
199{
200 return container_of(fcpreq, struct nvme_fc_fcp_op, fcp_req);
201}
202
203
204
205/* *************************** Globals **************************** */
206
207
208static DEFINE_SPINLOCK(nvme_fc_lock);
209
210static LIST_HEAD(nvme_fc_lport_list);
211static DEFINE_IDA(nvme_fc_local_port_cnt);
212static DEFINE_IDA(nvme_fc_ctrl_cnt);
213
James Smarte3994412016-12-02 00:28:42 -0800214
215
James Smart5f568552017-09-14 10:38:41 -0700216/*
217 * These items are short-term. They will eventually be moved into
218 * a generic FC class. See comments in module init.
219 */
220static struct class *fc_class;
221static struct device *fc_udev_device;
222
James Smarte3994412016-12-02 00:28:42 -0800223
224/* *********************** FC-NVME Port Management ************************ */
225
226static int __nvme_fc_del_ctrl(struct nvme_fc_ctrl *);
227static void __nvme_fc_delete_hw_queue(struct nvme_fc_ctrl *,
228 struct nvme_fc_queue *, unsigned int);
229
James Smart5533d422017-07-31 13:20:30 -0700230static void
231nvme_fc_free_lport(struct kref *ref)
232{
233 struct nvme_fc_lport *lport =
234 container_of(ref, struct nvme_fc_lport, ref);
235 unsigned long flags;
236
237 WARN_ON(lport->localport.port_state != FC_OBJSTATE_DELETED);
238 WARN_ON(!list_empty(&lport->endp_list));
239
240 /* remove from transport list */
241 spin_lock_irqsave(&nvme_fc_lock, flags);
242 list_del(&lport->port_list);
243 spin_unlock_irqrestore(&nvme_fc_lock, flags);
244
245 /* let the LLDD know we've finished tearing it down */
246 lport->ops->localport_delete(&lport->localport);
247
248 ida_simple_remove(&nvme_fc_local_port_cnt, lport->localport.port_num);
249 ida_destroy(&lport->endp_cnt);
250
251 put_device(lport->dev);
252
253 kfree(lport);
254}
255
256static void
257nvme_fc_lport_put(struct nvme_fc_lport *lport)
258{
259 kref_put(&lport->ref, nvme_fc_free_lport);
260}
261
262static int
263nvme_fc_lport_get(struct nvme_fc_lport *lport)
264{
265 return kref_get_unless_zero(&lport->ref);
266}
267
268
269static struct nvme_fc_lport *
270nvme_fc_attach_to_unreg_lport(struct nvme_fc_port_info *pinfo)
271{
272 struct nvme_fc_lport *lport;
273 unsigned long flags;
274
275 spin_lock_irqsave(&nvme_fc_lock, flags);
276
277 list_for_each_entry(lport, &nvme_fc_lport_list, port_list) {
278 if (lport->localport.node_name != pinfo->node_name ||
279 lport->localport.port_name != pinfo->port_name)
280 continue;
281
282 if (lport->localport.port_state != FC_OBJSTATE_DELETED) {
283 lport = ERR_PTR(-EEXIST);
284 goto out_done;
285 }
286
287 if (!nvme_fc_lport_get(lport)) {
288 /*
289 * fails if ref cnt already 0. If so,
290 * act as if lport already deleted
291 */
292 lport = NULL;
293 goto out_done;
294 }
295
296 /* resume the lport */
297
298 lport->localport.port_role = pinfo->port_role;
299 lport->localport.port_id = pinfo->port_id;
300 lport->localport.port_state = FC_OBJSTATE_ONLINE;
301
302 spin_unlock_irqrestore(&nvme_fc_lock, flags);
303
304 return lport;
305 }
306
307 lport = NULL;
308
309out_done:
310 spin_unlock_irqrestore(&nvme_fc_lock, flags);
311
312 return lport;
313}
James Smarte3994412016-12-02 00:28:42 -0800314
315/**
316 * nvme_fc_register_localport - transport entry point called by an
317 * LLDD to register the existence of a NVME
318 * host FC port.
319 * @pinfo: pointer to information about the port to be registered
320 * @template: LLDD entrypoints and operational parameters for the port
321 * @dev: physical hardware device node port corresponds to. Will be
322 * used for DMA mappings
323 * @lport_p: pointer to a local port pointer. Upon success, the routine
324 * will allocate a nvme_fc_local_port structure and place its
325 * address in the local port pointer. Upon failure, local port
326 * pointer will be set to 0.
327 *
328 * Returns:
329 * a completion status. Must be 0 upon success; a negative errno
330 * (ex: -ENXIO) upon failure.
331 */
332int
333nvme_fc_register_localport(struct nvme_fc_port_info *pinfo,
334 struct nvme_fc_port_template *template,
335 struct device *dev,
336 struct nvme_fc_local_port **portptr)
337{
338 struct nvme_fc_lport *newrec;
339 unsigned long flags;
340 int ret, idx;
341
342 if (!template->localport_delete || !template->remoteport_delete ||
343 !template->ls_req || !template->fcp_io ||
344 !template->ls_abort || !template->fcp_abort ||
345 !template->max_hw_queues || !template->max_sgl_segments ||
346 !template->max_dif_sgl_segments || !template->dma_boundary) {
347 ret = -EINVAL;
348 goto out_reghost_failed;
349 }
350
James Smart5533d422017-07-31 13:20:30 -0700351 /*
352 * look to see if there is already a localport that had been
353 * deregistered and in the process of waiting for all the
354 * references to fully be removed. If the references haven't
355 * expired, we can simply re-enable the localport. Remoteports
356 * and controller reconnections should resume naturally.
357 */
358 newrec = nvme_fc_attach_to_unreg_lport(pinfo);
359
360 /* found an lport, but something about its state is bad */
361 if (IS_ERR(newrec)) {
362 ret = PTR_ERR(newrec);
363 goto out_reghost_failed;
364
365 /* found existing lport, which was resumed */
366 } else if (newrec) {
367 *portptr = &newrec->localport;
368 return 0;
369 }
370
371 /* nothing found - allocate a new localport struct */
372
James Smarte3994412016-12-02 00:28:42 -0800373 newrec = kmalloc((sizeof(*newrec) + template->local_priv_sz),
374 GFP_KERNEL);
375 if (!newrec) {
376 ret = -ENOMEM;
377 goto out_reghost_failed;
378 }
379
380 idx = ida_simple_get(&nvme_fc_local_port_cnt, 0, 0, GFP_KERNEL);
381 if (idx < 0) {
382 ret = -ENOSPC;
383 goto out_fail_kfree;
384 }
385
386 if (!get_device(dev) && dev) {
387 ret = -ENODEV;
388 goto out_ida_put;
389 }
390
391 INIT_LIST_HEAD(&newrec->port_list);
392 INIT_LIST_HEAD(&newrec->endp_list);
393 kref_init(&newrec->ref);
394 newrec->ops = template;
395 newrec->dev = dev;
396 ida_init(&newrec->endp_cnt);
397 newrec->localport.private = &newrec[1];
398 newrec->localport.node_name = pinfo->node_name;
399 newrec->localport.port_name = pinfo->port_name;
400 newrec->localport.port_role = pinfo->port_role;
401 newrec->localport.port_id = pinfo->port_id;
402 newrec->localport.port_state = FC_OBJSTATE_ONLINE;
403 newrec->localport.port_num = idx;
404
405 spin_lock_irqsave(&nvme_fc_lock, flags);
406 list_add_tail(&newrec->port_list, &nvme_fc_lport_list);
407 spin_unlock_irqrestore(&nvme_fc_lock, flags);
408
409 if (dev)
410 dma_set_seg_boundary(dev, template->dma_boundary);
411
412 *portptr = &newrec->localport;
413 return 0;
414
415out_ida_put:
416 ida_simple_remove(&nvme_fc_local_port_cnt, idx);
417out_fail_kfree:
418 kfree(newrec);
419out_reghost_failed:
420 *portptr = NULL;
421
422 return ret;
423}
424EXPORT_SYMBOL_GPL(nvme_fc_register_localport);
425
James Smarte3994412016-12-02 00:28:42 -0800426/**
427 * nvme_fc_unregister_localport - transport entry point called by an
428 * LLDD to deregister/remove a previously
429 * registered a NVME host FC port.
430 * @localport: pointer to the (registered) local port that is to be
431 * deregistered.
432 *
433 * Returns:
434 * a completion status. Must be 0 upon success; a negative errno
435 * (ex: -ENXIO) upon failure.
436 */
437int
438nvme_fc_unregister_localport(struct nvme_fc_local_port *portptr)
439{
440 struct nvme_fc_lport *lport = localport_to_lport(portptr);
441 unsigned long flags;
442
443 if (!portptr)
444 return -EINVAL;
445
446 spin_lock_irqsave(&nvme_fc_lock, flags);
447
448 if (portptr->port_state != FC_OBJSTATE_ONLINE) {
449 spin_unlock_irqrestore(&nvme_fc_lock, flags);
450 return -EINVAL;
451 }
452 portptr->port_state = FC_OBJSTATE_DELETED;
453
454 spin_unlock_irqrestore(&nvme_fc_lock, flags);
455
456 nvme_fc_lport_put(lport);
457
458 return 0;
459}
460EXPORT_SYMBOL_GPL(nvme_fc_unregister_localport);
461
James Smarteaefd5a2017-09-14 10:38:42 -0700462/*
463 * TRADDR strings, per FC-NVME are fixed format:
464 * "nn-0x<16hexdigits>:pn-0x<16hexdigits>" - 43 characters
465 * udev event will only differ by prefix of what field is
466 * being specified:
467 * "NVMEFC_HOST_TRADDR=" or "NVMEFC_TRADDR=" - 19 max characters
468 * 19 + 43 + null_fudge = 64 characters
469 */
470#define FCNVME_TRADDR_LENGTH 64
471
472static void
473nvme_fc_signal_discovery_scan(struct nvme_fc_lport *lport,
474 struct nvme_fc_rport *rport)
475{
476 char hostaddr[FCNVME_TRADDR_LENGTH]; /* NVMEFC_HOST_TRADDR=...*/
477 char tgtaddr[FCNVME_TRADDR_LENGTH]; /* NVMEFC_TRADDR=...*/
478 char *envp[4] = { "FC_EVENT=nvmediscovery", hostaddr, tgtaddr, NULL };
479
480 if (!(rport->remoteport.port_role & FC_PORT_ROLE_NVME_DISCOVERY))
481 return;
482
483 snprintf(hostaddr, sizeof(hostaddr),
484 "NVMEFC_HOST_TRADDR=nn-0x%016llx:pn-0x%016llx",
485 lport->localport.node_name, lport->localport.port_name);
486 snprintf(tgtaddr, sizeof(tgtaddr),
487 "NVMEFC_TRADDR=nn-0x%016llx:pn-0x%016llx",
488 rport->remoteport.node_name, rport->remoteport.port_name);
489 kobject_uevent_env(&fc_udev_device->kobj, KOBJ_CHANGE, envp);
490}
491
James Smart469d0ef2017-09-26 21:50:45 -0700492static void
493nvme_fc_free_rport(struct kref *ref)
494{
495 struct nvme_fc_rport *rport =
496 container_of(ref, struct nvme_fc_rport, ref);
497 struct nvme_fc_lport *lport =
498 localport_to_lport(rport->remoteport.localport);
499 unsigned long flags;
500
501 WARN_ON(rport->remoteport.port_state != FC_OBJSTATE_DELETED);
502 WARN_ON(!list_empty(&rport->ctrl_list));
503
504 /* remove from lport list */
505 spin_lock_irqsave(&nvme_fc_lock, flags);
506 list_del(&rport->endp_list);
507 spin_unlock_irqrestore(&nvme_fc_lock, flags);
508
509 /* let the LLDD know we've finished tearing it down */
510 lport->ops->remoteport_delete(&rport->remoteport);
511
512 ida_simple_remove(&lport->endp_cnt, rport->remoteport.port_num);
513
514 kfree(rport);
515
516 nvme_fc_lport_put(lport);
517}
518
519static void
520nvme_fc_rport_put(struct nvme_fc_rport *rport)
521{
522 kref_put(&rport->ref, nvme_fc_free_rport);
523}
524
525static int
526nvme_fc_rport_get(struct nvme_fc_rport *rport)
527{
528 return kref_get_unless_zero(&rport->ref);
529}
530
James Smarte3994412016-12-02 00:28:42 -0800531/**
532 * nvme_fc_register_remoteport - transport entry point called by an
533 * LLDD to register the existence of a NVME
534 * subsystem FC port on its fabric.
535 * @localport: pointer to the (registered) local port that the remote
536 * subsystem port is connected to.
537 * @pinfo: pointer to information about the port to be registered
538 * @rport_p: pointer to a remote port pointer. Upon success, the routine
539 * will allocate a nvme_fc_remote_port structure and place its
540 * address in the remote port pointer. Upon failure, remote port
541 * pointer will be set to 0.
542 *
543 * Returns:
544 * a completion status. Must be 0 upon success; a negative errno
545 * (ex: -ENXIO) upon failure.
546 */
547int
548nvme_fc_register_remoteport(struct nvme_fc_local_port *localport,
549 struct nvme_fc_port_info *pinfo,
550 struct nvme_fc_remote_port **portptr)
551{
552 struct nvme_fc_lport *lport = localport_to_lport(localport);
553 struct nvme_fc_rport *newrec;
554 unsigned long flags;
555 int ret, idx;
556
557 newrec = kmalloc((sizeof(*newrec) + lport->ops->remote_priv_sz),
558 GFP_KERNEL);
559 if (!newrec) {
560 ret = -ENOMEM;
561 goto out_reghost_failed;
562 }
563
564 if (!nvme_fc_lport_get(lport)) {
565 ret = -ESHUTDOWN;
566 goto out_kfree_rport;
567 }
568
569 idx = ida_simple_get(&lport->endp_cnt, 0, 0, GFP_KERNEL);
570 if (idx < 0) {
571 ret = -ENOSPC;
572 goto out_lport_put;
573 }
574
575 INIT_LIST_HEAD(&newrec->endp_list);
576 INIT_LIST_HEAD(&newrec->ctrl_list);
James Smartc913a8b2017-04-11 11:35:08 -0700577 INIT_LIST_HEAD(&newrec->ls_req_list);
James Smarte3994412016-12-02 00:28:42 -0800578 kref_init(&newrec->ref);
579 spin_lock_init(&newrec->lock);
580 newrec->remoteport.localport = &lport->localport;
James Smartc913a8b2017-04-11 11:35:08 -0700581 newrec->dev = lport->dev;
582 newrec->lport = lport;
James Smarte3994412016-12-02 00:28:42 -0800583 newrec->remoteport.private = &newrec[1];
584 newrec->remoteport.port_role = pinfo->port_role;
585 newrec->remoteport.node_name = pinfo->node_name;
586 newrec->remoteport.port_name = pinfo->port_name;
587 newrec->remoteport.port_id = pinfo->port_id;
588 newrec->remoteport.port_state = FC_OBJSTATE_ONLINE;
589 newrec->remoteport.port_num = idx;
590
591 spin_lock_irqsave(&nvme_fc_lock, flags);
592 list_add_tail(&newrec->endp_list, &lport->endp_list);
593 spin_unlock_irqrestore(&nvme_fc_lock, flags);
594
James Smarteaefd5a2017-09-14 10:38:42 -0700595 nvme_fc_signal_discovery_scan(lport, newrec);
596
James Smarte3994412016-12-02 00:28:42 -0800597 *portptr = &newrec->remoteport;
598 return 0;
599
600out_lport_put:
601 nvme_fc_lport_put(lport);
602out_kfree_rport:
603 kfree(newrec);
604out_reghost_failed:
605 *portptr = NULL;
606 return ret;
James Smarte3994412016-12-02 00:28:42 -0800607}
608EXPORT_SYMBOL_GPL(nvme_fc_register_remoteport);
609
James Smart8d64daf2017-04-11 11:35:09 -0700610static int
611nvme_fc_abort_lsops(struct nvme_fc_rport *rport)
612{
613 struct nvmefc_ls_req_op *lsop;
614 unsigned long flags;
615
616restart:
617 spin_lock_irqsave(&rport->lock, flags);
618
619 list_for_each_entry(lsop, &rport->ls_req_list, lsreq_list) {
620 if (!(lsop->flags & FCOP_FLAGS_TERMIO)) {
621 lsop->flags |= FCOP_FLAGS_TERMIO;
622 spin_unlock_irqrestore(&rport->lock, flags);
623 rport->lport->ops->ls_abort(&rport->lport->localport,
624 &rport->remoteport,
625 &lsop->ls_req);
626 goto restart;
627 }
628 }
629 spin_unlock_irqrestore(&rport->lock, flags);
630
631 return 0;
632}
633
James Smarte3994412016-12-02 00:28:42 -0800634/**
635 * nvme_fc_unregister_remoteport - transport entry point called by an
636 * LLDD to deregister/remove a previously
637 * registered a NVME subsystem FC port.
638 * @remoteport: pointer to the (registered) remote port that is to be
639 * deregistered.
640 *
641 * Returns:
642 * a completion status. Must be 0 upon success; a negative errno
643 * (ex: -ENXIO) upon failure.
644 */
645int
646nvme_fc_unregister_remoteport(struct nvme_fc_remote_port *portptr)
647{
648 struct nvme_fc_rport *rport = remoteport_to_rport(portptr);
649 struct nvme_fc_ctrl *ctrl;
650 unsigned long flags;
651
652 if (!portptr)
653 return -EINVAL;
654
655 spin_lock_irqsave(&rport->lock, flags);
656
657 if (portptr->port_state != FC_OBJSTATE_ONLINE) {
658 spin_unlock_irqrestore(&rport->lock, flags);
659 return -EINVAL;
660 }
661 portptr->port_state = FC_OBJSTATE_DELETED;
662
663 /* tear down all associations to the remote port */
664 list_for_each_entry(ctrl, &rport->ctrl_list, ctrl_list)
665 __nvme_fc_del_ctrl(ctrl);
666
667 spin_unlock_irqrestore(&rport->lock, flags);
668
James Smart8d64daf2017-04-11 11:35:09 -0700669 nvme_fc_abort_lsops(rport);
670
James Smarte3994412016-12-02 00:28:42 -0800671 nvme_fc_rport_put(rport);
672 return 0;
673}
674EXPORT_SYMBOL_GPL(nvme_fc_unregister_remoteport);
675
James Smarteaefd5a2017-09-14 10:38:42 -0700676/**
677 * nvme_fc_rescan_remoteport - transport entry point called by an
678 * LLDD to request a nvme device rescan.
679 * @remoteport: pointer to the (registered) remote port that is to be
680 * rescanned.
681 *
682 * Returns: N/A
683 */
684void
685nvme_fc_rescan_remoteport(struct nvme_fc_remote_port *remoteport)
686{
687 struct nvme_fc_rport *rport = remoteport_to_rport(remoteport);
688
689 nvme_fc_signal_discovery_scan(rport->lport, rport);
690}
691EXPORT_SYMBOL_GPL(nvme_fc_rescan_remoteport);
692
James Smarte3994412016-12-02 00:28:42 -0800693
694/* *********************** FC-NVME DMA Handling **************************** */
695
696/*
697 * The fcloop device passes in a NULL device pointer. Real LLD's will
698 * pass in a valid device pointer. If NULL is passed to the dma mapping
699 * routines, depending on the platform, it may or may not succeed, and
700 * may crash.
701 *
702 * As such:
703 * Wrapper all the dma routines and check the dev pointer.
704 *
705 * If simple mappings (return just a dma address, we'll noop them,
706 * returning a dma address of 0.
707 *
708 * On more complex mappings (dma_map_sg), a pseudo routine fills
709 * in the scatter list, setting all dma addresses to 0.
710 */
711
712static inline dma_addr_t
713fc_dma_map_single(struct device *dev, void *ptr, size_t size,
714 enum dma_data_direction dir)
715{
716 return dev ? dma_map_single(dev, ptr, size, dir) : (dma_addr_t)0L;
717}
718
719static inline int
720fc_dma_mapping_error(struct device *dev, dma_addr_t dma_addr)
721{
722 return dev ? dma_mapping_error(dev, dma_addr) : 0;
723}
724
725static inline void
726fc_dma_unmap_single(struct device *dev, dma_addr_t addr, size_t size,
727 enum dma_data_direction dir)
728{
729 if (dev)
730 dma_unmap_single(dev, addr, size, dir);
731}
732
733static inline void
734fc_dma_sync_single_for_cpu(struct device *dev, dma_addr_t addr, size_t size,
735 enum dma_data_direction dir)
736{
737 if (dev)
738 dma_sync_single_for_cpu(dev, addr, size, dir);
739}
740
741static inline void
742fc_dma_sync_single_for_device(struct device *dev, dma_addr_t addr, size_t size,
743 enum dma_data_direction dir)
744{
745 if (dev)
746 dma_sync_single_for_device(dev, addr, size, dir);
747}
748
749/* pseudo dma_map_sg call */
750static int
751fc_map_sg(struct scatterlist *sg, int nents)
752{
753 struct scatterlist *s;
754 int i;
755
756 WARN_ON(nents == 0 || sg[0].length == 0);
757
758 for_each_sg(sg, s, nents, i) {
759 s->dma_address = 0L;
760#ifdef CONFIG_NEED_SG_DMA_LENGTH
761 s->dma_length = s->length;
762#endif
763 }
764 return nents;
765}
766
767static inline int
768fc_dma_map_sg(struct device *dev, struct scatterlist *sg, int nents,
769 enum dma_data_direction dir)
770{
771 return dev ? dma_map_sg(dev, sg, nents, dir) : fc_map_sg(sg, nents);
772}
773
774static inline void
775fc_dma_unmap_sg(struct device *dev, struct scatterlist *sg, int nents,
776 enum dma_data_direction dir)
777{
778 if (dev)
779 dma_unmap_sg(dev, sg, nents, dir);
780}
781
782
783/* *********************** FC-NVME LS Handling **************************** */
784
785static void nvme_fc_ctrl_put(struct nvme_fc_ctrl *);
786static int nvme_fc_ctrl_get(struct nvme_fc_ctrl *);
787
788
789static void
James Smartc913a8b2017-04-11 11:35:08 -0700790__nvme_fc_finish_ls_req(struct nvmefc_ls_req_op *lsop)
James Smarte3994412016-12-02 00:28:42 -0800791{
James Smartc913a8b2017-04-11 11:35:08 -0700792 struct nvme_fc_rport *rport = lsop->rport;
James Smarte3994412016-12-02 00:28:42 -0800793 struct nvmefc_ls_req *lsreq = &lsop->ls_req;
794 unsigned long flags;
795
James Smartc913a8b2017-04-11 11:35:08 -0700796 spin_lock_irqsave(&rport->lock, flags);
James Smarte3994412016-12-02 00:28:42 -0800797
798 if (!lsop->req_queued) {
James Smartc913a8b2017-04-11 11:35:08 -0700799 spin_unlock_irqrestore(&rport->lock, flags);
James Smarte3994412016-12-02 00:28:42 -0800800 return;
801 }
802
803 list_del(&lsop->lsreq_list);
804
805 lsop->req_queued = false;
806
James Smartc913a8b2017-04-11 11:35:08 -0700807 spin_unlock_irqrestore(&rport->lock, flags);
James Smarte3994412016-12-02 00:28:42 -0800808
James Smartc913a8b2017-04-11 11:35:08 -0700809 fc_dma_unmap_single(rport->dev, lsreq->rqstdma,
James Smarte3994412016-12-02 00:28:42 -0800810 (lsreq->rqstlen + lsreq->rsplen),
811 DMA_BIDIRECTIONAL);
812
James Smartc913a8b2017-04-11 11:35:08 -0700813 nvme_fc_rport_put(rport);
James Smarte3994412016-12-02 00:28:42 -0800814}
815
816static int
James Smartc913a8b2017-04-11 11:35:08 -0700817__nvme_fc_send_ls_req(struct nvme_fc_rport *rport,
James Smarte3994412016-12-02 00:28:42 -0800818 struct nvmefc_ls_req_op *lsop,
819 void (*done)(struct nvmefc_ls_req *req, int status))
820{
821 struct nvmefc_ls_req *lsreq = &lsop->ls_req;
822 unsigned long flags;
James Smartc913a8b2017-04-11 11:35:08 -0700823 int ret = 0;
James Smarte3994412016-12-02 00:28:42 -0800824
James Smartc913a8b2017-04-11 11:35:08 -0700825 if (rport->remoteport.port_state != FC_OBJSTATE_ONLINE)
826 return -ECONNREFUSED;
827
828 if (!nvme_fc_rport_get(rport))
James Smarte3994412016-12-02 00:28:42 -0800829 return -ESHUTDOWN;
830
831 lsreq->done = done;
James Smartc913a8b2017-04-11 11:35:08 -0700832 lsop->rport = rport;
James Smarte3994412016-12-02 00:28:42 -0800833 lsop->req_queued = false;
834 INIT_LIST_HEAD(&lsop->lsreq_list);
835 init_completion(&lsop->ls_done);
836
James Smartc913a8b2017-04-11 11:35:08 -0700837 lsreq->rqstdma = fc_dma_map_single(rport->dev, lsreq->rqstaddr,
James Smarte3994412016-12-02 00:28:42 -0800838 lsreq->rqstlen + lsreq->rsplen,
839 DMA_BIDIRECTIONAL);
James Smartc913a8b2017-04-11 11:35:08 -0700840 if (fc_dma_mapping_error(rport->dev, lsreq->rqstdma)) {
841 ret = -EFAULT;
842 goto out_putrport;
James Smarte3994412016-12-02 00:28:42 -0800843 }
844 lsreq->rspdma = lsreq->rqstdma + lsreq->rqstlen;
845
James Smartc913a8b2017-04-11 11:35:08 -0700846 spin_lock_irqsave(&rport->lock, flags);
James Smarte3994412016-12-02 00:28:42 -0800847
James Smartc913a8b2017-04-11 11:35:08 -0700848 list_add_tail(&lsop->lsreq_list, &rport->ls_req_list);
James Smarte3994412016-12-02 00:28:42 -0800849
850 lsop->req_queued = true;
851
James Smartc913a8b2017-04-11 11:35:08 -0700852 spin_unlock_irqrestore(&rport->lock, flags);
James Smarte3994412016-12-02 00:28:42 -0800853
James Smartc913a8b2017-04-11 11:35:08 -0700854 ret = rport->lport->ops->ls_req(&rport->lport->localport,
855 &rport->remoteport, lsreq);
James Smarte3994412016-12-02 00:28:42 -0800856 if (ret)
James Smartc913a8b2017-04-11 11:35:08 -0700857 goto out_unlink;
858
859 return 0;
860
861out_unlink:
862 lsop->ls_error = ret;
863 spin_lock_irqsave(&rport->lock, flags);
864 lsop->req_queued = false;
865 list_del(&lsop->lsreq_list);
866 spin_unlock_irqrestore(&rport->lock, flags);
867 fc_dma_unmap_single(rport->dev, lsreq->rqstdma,
868 (lsreq->rqstlen + lsreq->rsplen),
869 DMA_BIDIRECTIONAL);
870out_putrport:
871 nvme_fc_rport_put(rport);
James Smarte3994412016-12-02 00:28:42 -0800872
873 return ret;
874}
875
876static void
877nvme_fc_send_ls_req_done(struct nvmefc_ls_req *lsreq, int status)
878{
879 struct nvmefc_ls_req_op *lsop = ls_req_to_lsop(lsreq);
880
881 lsop->ls_error = status;
882 complete(&lsop->ls_done);
883}
884
885static int
James Smartc913a8b2017-04-11 11:35:08 -0700886nvme_fc_send_ls_req(struct nvme_fc_rport *rport, struct nvmefc_ls_req_op *lsop)
James Smarte3994412016-12-02 00:28:42 -0800887{
888 struct nvmefc_ls_req *lsreq = &lsop->ls_req;
889 struct fcnvme_ls_rjt *rjt = lsreq->rspaddr;
890 int ret;
891
James Smartc913a8b2017-04-11 11:35:08 -0700892 ret = __nvme_fc_send_ls_req(rport, lsop, nvme_fc_send_ls_req_done);
James Smarte3994412016-12-02 00:28:42 -0800893
James Smartc913a8b2017-04-11 11:35:08 -0700894 if (!ret) {
James Smarte3994412016-12-02 00:28:42 -0800895 /*
896 * No timeout/not interruptible as we need the struct
897 * to exist until the lldd calls us back. Thus mandate
898 * wait until driver calls back. lldd responsible for
899 * the timeout action
900 */
901 wait_for_completion(&lsop->ls_done);
902
James Smartc913a8b2017-04-11 11:35:08 -0700903 __nvme_fc_finish_ls_req(lsop);
James Smarte3994412016-12-02 00:28:42 -0800904
James Smartc913a8b2017-04-11 11:35:08 -0700905 ret = lsop->ls_error;
James Smarte3994412016-12-02 00:28:42 -0800906 }
907
James Smartc913a8b2017-04-11 11:35:08 -0700908 if (ret)
909 return ret;
910
James Smarte3994412016-12-02 00:28:42 -0800911 /* ACC or RJT payload ? */
912 if (rjt->w0.ls_cmd == FCNVME_LS_RJT)
913 return -ENXIO;
914
915 return 0;
916}
917
James Smartc913a8b2017-04-11 11:35:08 -0700918static int
919nvme_fc_send_ls_req_async(struct nvme_fc_rport *rport,
James Smarte3994412016-12-02 00:28:42 -0800920 struct nvmefc_ls_req_op *lsop,
921 void (*done)(struct nvmefc_ls_req *req, int status))
922{
James Smarte3994412016-12-02 00:28:42 -0800923 /* don't wait for completion */
924
James Smartc913a8b2017-04-11 11:35:08 -0700925 return __nvme_fc_send_ls_req(rport, lsop, done);
James Smarte3994412016-12-02 00:28:42 -0800926}
927
928/* Validation Error indexes into the string table below */
929enum {
930 VERR_NO_ERROR = 0,
931 VERR_LSACC = 1,
932 VERR_LSDESC_RQST = 2,
933 VERR_LSDESC_RQST_LEN = 3,
934 VERR_ASSOC_ID = 4,
935 VERR_ASSOC_ID_LEN = 5,
936 VERR_CONN_ID = 6,
937 VERR_CONN_ID_LEN = 7,
938 VERR_CR_ASSOC = 8,
939 VERR_CR_ASSOC_ACC_LEN = 9,
940 VERR_CR_CONN = 10,
941 VERR_CR_CONN_ACC_LEN = 11,
942 VERR_DISCONN = 12,
943 VERR_DISCONN_ACC_LEN = 13,
944};
945
946static char *validation_errors[] = {
947 "OK",
948 "Not LS_ACC",
949 "Not LSDESC_RQST",
950 "Bad LSDESC_RQST Length",
951 "Not Association ID",
952 "Bad Association ID Length",
953 "Not Connection ID",
954 "Bad Connection ID Length",
955 "Not CR_ASSOC Rqst",
956 "Bad CR_ASSOC ACC Length",
957 "Not CR_CONN Rqst",
958 "Bad CR_CONN ACC Length",
959 "Not Disconnect Rqst",
960 "Bad Disconnect ACC Length",
961};
962
963static int
964nvme_fc_connect_admin_queue(struct nvme_fc_ctrl *ctrl,
965 struct nvme_fc_queue *queue, u16 qsize, u16 ersp_ratio)
966{
967 struct nvmefc_ls_req_op *lsop;
968 struct nvmefc_ls_req *lsreq;
969 struct fcnvme_ls_cr_assoc_rqst *assoc_rqst;
970 struct fcnvme_ls_cr_assoc_acc *assoc_acc;
971 int ret, fcret = 0;
972
973 lsop = kzalloc((sizeof(*lsop) +
974 ctrl->lport->ops->lsrqst_priv_sz +
975 sizeof(*assoc_rqst) + sizeof(*assoc_acc)), GFP_KERNEL);
976 if (!lsop) {
977 ret = -ENOMEM;
978 goto out_no_memory;
979 }
980 lsreq = &lsop->ls_req;
981
982 lsreq->private = (void *)&lsop[1];
983 assoc_rqst = (struct fcnvme_ls_cr_assoc_rqst *)
984 (lsreq->private + ctrl->lport->ops->lsrqst_priv_sz);
985 assoc_acc = (struct fcnvme_ls_cr_assoc_acc *)&assoc_rqst[1];
986
987 assoc_rqst->w0.ls_cmd = FCNVME_LS_CREATE_ASSOCIATION;
988 assoc_rqst->desc_list_len =
989 cpu_to_be32(sizeof(struct fcnvme_lsdesc_cr_assoc_cmd));
990
991 assoc_rqst->assoc_cmd.desc_tag =
992 cpu_to_be32(FCNVME_LSDESC_CREATE_ASSOC_CMD);
993 assoc_rqst->assoc_cmd.desc_len =
994 fcnvme_lsdesc_len(
995 sizeof(struct fcnvme_lsdesc_cr_assoc_cmd));
996
997 assoc_rqst->assoc_cmd.ersp_ratio = cpu_to_be16(ersp_ratio);
998 assoc_rqst->assoc_cmd.sqsize = cpu_to_be16(qsize);
999 /* Linux supports only Dynamic controllers */
1000 assoc_rqst->assoc_cmd.cntlid = cpu_to_be16(0xffff);
Christoph Hellwig8e412262017-05-17 09:54:27 +02001001 uuid_copy(&assoc_rqst->assoc_cmd.hostid, &ctrl->ctrl.opts->host->id);
James Smarte3994412016-12-02 00:28:42 -08001002 strncpy(assoc_rqst->assoc_cmd.hostnqn, ctrl->ctrl.opts->host->nqn,
1003 min(FCNVME_ASSOC_HOSTNQN_LEN, NVMF_NQN_SIZE));
1004 strncpy(assoc_rqst->assoc_cmd.subnqn, ctrl->ctrl.opts->subsysnqn,
1005 min(FCNVME_ASSOC_SUBNQN_LEN, NVMF_NQN_SIZE));
1006
1007 lsop->queue = queue;
1008 lsreq->rqstaddr = assoc_rqst;
1009 lsreq->rqstlen = sizeof(*assoc_rqst);
1010 lsreq->rspaddr = assoc_acc;
1011 lsreq->rsplen = sizeof(*assoc_acc);
1012 lsreq->timeout = NVME_FC_CONNECT_TIMEOUT_SEC;
1013
James Smartc913a8b2017-04-11 11:35:08 -07001014 ret = nvme_fc_send_ls_req(ctrl->rport, lsop);
James Smarte3994412016-12-02 00:28:42 -08001015 if (ret)
1016 goto out_free_buffer;
1017
1018 /* process connect LS completion */
1019
1020 /* validate the ACC response */
1021 if (assoc_acc->hdr.w0.ls_cmd != FCNVME_LS_ACC)
1022 fcret = VERR_LSACC;
James Smartf77fc872017-03-23 20:41:25 -07001023 else if (assoc_acc->hdr.desc_list_len !=
James Smarte3994412016-12-02 00:28:42 -08001024 fcnvme_lsdesc_len(
1025 sizeof(struct fcnvme_ls_cr_assoc_acc)))
1026 fcret = VERR_CR_ASSOC_ACC_LEN;
James Smartf77fc872017-03-23 20:41:25 -07001027 else if (assoc_acc->hdr.rqst.desc_tag !=
1028 cpu_to_be32(FCNVME_LSDESC_RQST))
James Smarte3994412016-12-02 00:28:42 -08001029 fcret = VERR_LSDESC_RQST;
1030 else if (assoc_acc->hdr.rqst.desc_len !=
1031 fcnvme_lsdesc_len(sizeof(struct fcnvme_lsdesc_rqst)))
1032 fcret = VERR_LSDESC_RQST_LEN;
1033 else if (assoc_acc->hdr.rqst.w0.ls_cmd != FCNVME_LS_CREATE_ASSOCIATION)
1034 fcret = VERR_CR_ASSOC;
1035 else if (assoc_acc->associd.desc_tag !=
1036 cpu_to_be32(FCNVME_LSDESC_ASSOC_ID))
1037 fcret = VERR_ASSOC_ID;
1038 else if (assoc_acc->associd.desc_len !=
1039 fcnvme_lsdesc_len(
1040 sizeof(struct fcnvme_lsdesc_assoc_id)))
1041 fcret = VERR_ASSOC_ID_LEN;
1042 else if (assoc_acc->connectid.desc_tag !=
1043 cpu_to_be32(FCNVME_LSDESC_CONN_ID))
1044 fcret = VERR_CONN_ID;
1045 else if (assoc_acc->connectid.desc_len !=
1046 fcnvme_lsdesc_len(sizeof(struct fcnvme_lsdesc_conn_id)))
1047 fcret = VERR_CONN_ID_LEN;
1048
1049 if (fcret) {
1050 ret = -EBADF;
1051 dev_err(ctrl->dev,
1052 "q %d connect failed: %s\n",
1053 queue->qnum, validation_errors[fcret]);
1054 } else {
1055 ctrl->association_id =
1056 be64_to_cpu(assoc_acc->associd.association_id);
1057 queue->connection_id =
1058 be64_to_cpu(assoc_acc->connectid.connection_id);
1059 set_bit(NVME_FC_Q_CONNECTED, &queue->flags);
1060 }
1061
1062out_free_buffer:
1063 kfree(lsop);
1064out_no_memory:
1065 if (ret)
1066 dev_err(ctrl->dev,
1067 "queue %d connect admin queue failed (%d).\n",
1068 queue->qnum, ret);
1069 return ret;
1070}
1071
1072static int
1073nvme_fc_connect_queue(struct nvme_fc_ctrl *ctrl, struct nvme_fc_queue *queue,
1074 u16 qsize, u16 ersp_ratio)
1075{
1076 struct nvmefc_ls_req_op *lsop;
1077 struct nvmefc_ls_req *lsreq;
1078 struct fcnvme_ls_cr_conn_rqst *conn_rqst;
1079 struct fcnvme_ls_cr_conn_acc *conn_acc;
1080 int ret, fcret = 0;
1081
1082 lsop = kzalloc((sizeof(*lsop) +
1083 ctrl->lport->ops->lsrqst_priv_sz +
1084 sizeof(*conn_rqst) + sizeof(*conn_acc)), GFP_KERNEL);
1085 if (!lsop) {
1086 ret = -ENOMEM;
1087 goto out_no_memory;
1088 }
1089 lsreq = &lsop->ls_req;
1090
1091 lsreq->private = (void *)&lsop[1];
1092 conn_rqst = (struct fcnvme_ls_cr_conn_rqst *)
1093 (lsreq->private + ctrl->lport->ops->lsrqst_priv_sz);
1094 conn_acc = (struct fcnvme_ls_cr_conn_acc *)&conn_rqst[1];
1095
1096 conn_rqst->w0.ls_cmd = FCNVME_LS_CREATE_CONNECTION;
1097 conn_rqst->desc_list_len = cpu_to_be32(
1098 sizeof(struct fcnvme_lsdesc_assoc_id) +
1099 sizeof(struct fcnvme_lsdesc_cr_conn_cmd));
1100
1101 conn_rqst->associd.desc_tag = cpu_to_be32(FCNVME_LSDESC_ASSOC_ID);
1102 conn_rqst->associd.desc_len =
1103 fcnvme_lsdesc_len(
1104 sizeof(struct fcnvme_lsdesc_assoc_id));
1105 conn_rqst->associd.association_id = cpu_to_be64(ctrl->association_id);
1106 conn_rqst->connect_cmd.desc_tag =
1107 cpu_to_be32(FCNVME_LSDESC_CREATE_CONN_CMD);
1108 conn_rqst->connect_cmd.desc_len =
1109 fcnvme_lsdesc_len(
1110 sizeof(struct fcnvme_lsdesc_cr_conn_cmd));
1111 conn_rqst->connect_cmd.ersp_ratio = cpu_to_be16(ersp_ratio);
1112 conn_rqst->connect_cmd.qid = cpu_to_be16(queue->qnum);
1113 conn_rqst->connect_cmd.sqsize = cpu_to_be16(qsize);
1114
1115 lsop->queue = queue;
1116 lsreq->rqstaddr = conn_rqst;
1117 lsreq->rqstlen = sizeof(*conn_rqst);
1118 lsreq->rspaddr = conn_acc;
1119 lsreq->rsplen = sizeof(*conn_acc);
1120 lsreq->timeout = NVME_FC_CONNECT_TIMEOUT_SEC;
1121
James Smartc913a8b2017-04-11 11:35:08 -07001122 ret = nvme_fc_send_ls_req(ctrl->rport, lsop);
James Smarte3994412016-12-02 00:28:42 -08001123 if (ret)
1124 goto out_free_buffer;
1125
1126 /* process connect LS completion */
1127
1128 /* validate the ACC response */
1129 if (conn_acc->hdr.w0.ls_cmd != FCNVME_LS_ACC)
1130 fcret = VERR_LSACC;
James Smartf77fc872017-03-23 20:41:25 -07001131 else if (conn_acc->hdr.desc_list_len !=
James Smarte3994412016-12-02 00:28:42 -08001132 fcnvme_lsdesc_len(sizeof(struct fcnvme_ls_cr_conn_acc)))
1133 fcret = VERR_CR_CONN_ACC_LEN;
James Smartf77fc872017-03-23 20:41:25 -07001134 else if (conn_acc->hdr.rqst.desc_tag != cpu_to_be32(FCNVME_LSDESC_RQST))
James Smarte3994412016-12-02 00:28:42 -08001135 fcret = VERR_LSDESC_RQST;
1136 else if (conn_acc->hdr.rqst.desc_len !=
1137 fcnvme_lsdesc_len(sizeof(struct fcnvme_lsdesc_rqst)))
1138 fcret = VERR_LSDESC_RQST_LEN;
1139 else if (conn_acc->hdr.rqst.w0.ls_cmd != FCNVME_LS_CREATE_CONNECTION)
1140 fcret = VERR_CR_CONN;
1141 else if (conn_acc->connectid.desc_tag !=
1142 cpu_to_be32(FCNVME_LSDESC_CONN_ID))
1143 fcret = VERR_CONN_ID;
1144 else if (conn_acc->connectid.desc_len !=
1145 fcnvme_lsdesc_len(sizeof(struct fcnvme_lsdesc_conn_id)))
1146 fcret = VERR_CONN_ID_LEN;
1147
1148 if (fcret) {
1149 ret = -EBADF;
1150 dev_err(ctrl->dev,
1151 "q %d connect failed: %s\n",
1152 queue->qnum, validation_errors[fcret]);
1153 } else {
1154 queue->connection_id =
1155 be64_to_cpu(conn_acc->connectid.connection_id);
1156 set_bit(NVME_FC_Q_CONNECTED, &queue->flags);
1157 }
1158
1159out_free_buffer:
1160 kfree(lsop);
1161out_no_memory:
1162 if (ret)
1163 dev_err(ctrl->dev,
1164 "queue %d connect command failed (%d).\n",
1165 queue->qnum, ret);
1166 return ret;
1167}
1168
1169static void
1170nvme_fc_disconnect_assoc_done(struct nvmefc_ls_req *lsreq, int status)
1171{
1172 struct nvmefc_ls_req_op *lsop = ls_req_to_lsop(lsreq);
James Smarte3994412016-12-02 00:28:42 -08001173
James Smartc913a8b2017-04-11 11:35:08 -07001174 __nvme_fc_finish_ls_req(lsop);
James Smarte3994412016-12-02 00:28:42 -08001175
1176 /* fc-nvme iniator doesn't care about success or failure of cmd */
1177
1178 kfree(lsop);
1179}
1180
1181/*
1182 * This routine sends a FC-NVME LS to disconnect (aka terminate)
1183 * the FC-NVME Association. Terminating the association also
1184 * terminates the FC-NVME connections (per queue, both admin and io
1185 * queues) that are part of the association. E.g. things are torn
1186 * down, and the related FC-NVME Association ID and Connection IDs
1187 * become invalid.
1188 *
1189 * The behavior of the fc-nvme initiator is such that it's
1190 * understanding of the association and connections will implicitly
1191 * be torn down. The action is implicit as it may be due to a loss of
1192 * connectivity with the fc-nvme target, so you may never get a
1193 * response even if you tried. As such, the action of this routine
1194 * is to asynchronously send the LS, ignore any results of the LS, and
1195 * continue on with terminating the association. If the fc-nvme target
1196 * is present and receives the LS, it too can tear down.
1197 */
1198static void
1199nvme_fc_xmt_disconnect_assoc(struct nvme_fc_ctrl *ctrl)
1200{
1201 struct fcnvme_ls_disconnect_rqst *discon_rqst;
1202 struct fcnvme_ls_disconnect_acc *discon_acc;
1203 struct nvmefc_ls_req_op *lsop;
1204 struct nvmefc_ls_req *lsreq;
James Smartc913a8b2017-04-11 11:35:08 -07001205 int ret;
James Smarte3994412016-12-02 00:28:42 -08001206
1207 lsop = kzalloc((sizeof(*lsop) +
1208 ctrl->lport->ops->lsrqst_priv_sz +
1209 sizeof(*discon_rqst) + sizeof(*discon_acc)),
1210 GFP_KERNEL);
1211 if (!lsop)
1212 /* couldn't sent it... too bad */
1213 return;
1214
1215 lsreq = &lsop->ls_req;
1216
1217 lsreq->private = (void *)&lsop[1];
1218 discon_rqst = (struct fcnvme_ls_disconnect_rqst *)
1219 (lsreq->private + ctrl->lport->ops->lsrqst_priv_sz);
1220 discon_acc = (struct fcnvme_ls_disconnect_acc *)&discon_rqst[1];
1221
1222 discon_rqst->w0.ls_cmd = FCNVME_LS_DISCONNECT;
1223 discon_rqst->desc_list_len = cpu_to_be32(
1224 sizeof(struct fcnvme_lsdesc_assoc_id) +
1225 sizeof(struct fcnvme_lsdesc_disconn_cmd));
1226
1227 discon_rqst->associd.desc_tag = cpu_to_be32(FCNVME_LSDESC_ASSOC_ID);
1228 discon_rqst->associd.desc_len =
1229 fcnvme_lsdesc_len(
1230 sizeof(struct fcnvme_lsdesc_assoc_id));
1231
1232 discon_rqst->associd.association_id = cpu_to_be64(ctrl->association_id);
1233
1234 discon_rqst->discon_cmd.desc_tag = cpu_to_be32(
1235 FCNVME_LSDESC_DISCONN_CMD);
1236 discon_rqst->discon_cmd.desc_len =
1237 fcnvme_lsdesc_len(
1238 sizeof(struct fcnvme_lsdesc_disconn_cmd));
1239 discon_rqst->discon_cmd.scope = FCNVME_DISCONN_ASSOCIATION;
1240 discon_rqst->discon_cmd.id = cpu_to_be64(ctrl->association_id);
1241
1242 lsreq->rqstaddr = discon_rqst;
1243 lsreq->rqstlen = sizeof(*discon_rqst);
1244 lsreq->rspaddr = discon_acc;
1245 lsreq->rsplen = sizeof(*discon_acc);
1246 lsreq->timeout = NVME_FC_CONNECT_TIMEOUT_SEC;
1247
James Smartc913a8b2017-04-11 11:35:08 -07001248 ret = nvme_fc_send_ls_req_async(ctrl->rport, lsop,
1249 nvme_fc_disconnect_assoc_done);
1250 if (ret)
1251 kfree(lsop);
James Smarte3994412016-12-02 00:28:42 -08001252
1253 /* only meaningful part to terminating the association */
1254 ctrl->association_id = 0;
1255}
1256
1257
1258/* *********************** NVME Ctrl Routines **************************** */
1259
James Smart78a7ac22017-04-23 08:30:07 -07001260static void __nvme_fc_final_op_cleanup(struct request *rq);
James Smartf874d5d2017-06-01 22:54:21 -07001261static void nvme_fc_error_recovery(struct nvme_fc_ctrl *ctrl, char *errmsg);
James Smarte3994412016-12-02 00:28:42 -08001262
1263static int
1264nvme_fc_reinit_request(void *data, struct request *rq)
1265{
1266 struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq);
1267 struct nvme_fc_cmd_iu *cmdiu = &op->cmd_iu;
1268
1269 memset(cmdiu, 0, sizeof(*cmdiu));
1270 cmdiu->scsi_id = NVME_CMD_SCSI_ID;
1271 cmdiu->fc_id = NVME_CMD_FC_ID;
1272 cmdiu->iu_len = cpu_to_be16(sizeof(*cmdiu) / sizeof(u32));
1273 memset(&op->rsp_iu, 0, sizeof(op->rsp_iu));
1274
1275 return 0;
1276}
1277
1278static void
1279__nvme_fc_exit_request(struct nvme_fc_ctrl *ctrl,
1280 struct nvme_fc_fcp_op *op)
1281{
1282 fc_dma_unmap_single(ctrl->lport->dev, op->fcp_req.rspdma,
1283 sizeof(op->rsp_iu), DMA_FROM_DEVICE);
1284 fc_dma_unmap_single(ctrl->lport->dev, op->fcp_req.cmddma,
1285 sizeof(op->cmd_iu), DMA_TO_DEVICE);
1286
1287 atomic_set(&op->state, FCPOP_STATE_UNINIT);
1288}
1289
1290static void
Christoph Hellwigd6296d392017-05-01 10:19:08 -06001291nvme_fc_exit_request(struct blk_mq_tag_set *set, struct request *rq,
1292 unsigned int hctx_idx)
James Smarte3994412016-12-02 00:28:42 -08001293{
1294 struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq);
1295
Christoph Hellwigd6296d392017-05-01 10:19:08 -06001296 return __nvme_fc_exit_request(set->driver_data, op);
James Smarte3994412016-12-02 00:28:42 -08001297}
1298
James Smart78a7ac22017-04-23 08:30:07 -07001299static int
1300__nvme_fc_abort_op(struct nvme_fc_ctrl *ctrl, struct nvme_fc_fcp_op *op)
1301{
1302 int state;
1303
1304 state = atomic_xchg(&op->state, FCPOP_STATE_ABORTED);
1305 if (state != FCPOP_STATE_ACTIVE) {
1306 atomic_set(&op->state, state);
1307 return -ECANCELED;
1308 }
1309
1310 ctrl->lport->ops->fcp_abort(&ctrl->lport->localport,
1311 &ctrl->rport->remoteport,
1312 op->queue->lldd_handle,
1313 &op->fcp_req);
1314
1315 return 0;
1316}
1317
James Smarte3994412016-12-02 00:28:42 -08001318static void
James Smart78a7ac22017-04-23 08:30:07 -07001319nvme_fc_abort_aen_ops(struct nvme_fc_ctrl *ctrl)
James Smarte3994412016-12-02 00:28:42 -08001320{
1321 struct nvme_fc_fcp_op *aen_op = ctrl->aen_ops;
James Smart78a7ac22017-04-23 08:30:07 -07001322 unsigned long flags;
1323 int i, ret;
James Smarte3994412016-12-02 00:28:42 -08001324
1325 for (i = 0; i < NVME_FC_NR_AEN_COMMANDS; i++, aen_op++) {
James Smart78a7ac22017-04-23 08:30:07 -07001326 if (atomic_read(&aen_op->state) != FCPOP_STATE_ACTIVE)
James Smarte3994412016-12-02 00:28:42 -08001327 continue;
James Smart78a7ac22017-04-23 08:30:07 -07001328
1329 spin_lock_irqsave(&ctrl->lock, flags);
James Smart61bff8e2017-04-23 08:30:08 -07001330 if (ctrl->flags & FCCTRL_TERMIO) {
1331 ctrl->iocnt++;
1332 aen_op->flags |= FCOP_FLAGS_TERMIO;
1333 }
James Smart78a7ac22017-04-23 08:30:07 -07001334 spin_unlock_irqrestore(&ctrl->lock, flags);
1335
1336 ret = __nvme_fc_abort_op(ctrl, aen_op);
1337 if (ret) {
1338 /*
1339 * if __nvme_fc_abort_op failed the io wasn't
1340 * active. Thus this call path is running in
1341 * parallel to the io complete. Treat as non-error.
1342 */
1343
1344 /* back out the flags/counters */
1345 spin_lock_irqsave(&ctrl->lock, flags);
James Smart61bff8e2017-04-23 08:30:08 -07001346 if (ctrl->flags & FCCTRL_TERMIO)
1347 ctrl->iocnt--;
James Smart78a7ac22017-04-23 08:30:07 -07001348 aen_op->flags &= ~FCOP_FLAGS_TERMIO;
1349 spin_unlock_irqrestore(&ctrl->lock, flags);
1350 return;
1351 }
James Smarte3994412016-12-02 00:28:42 -08001352 }
1353}
1354
James Smart78a7ac22017-04-23 08:30:07 -07001355static inline int
1356__nvme_fc_fcpop_chk_teardowns(struct nvme_fc_ctrl *ctrl,
1357 struct nvme_fc_fcp_op *op)
1358{
1359 unsigned long flags;
1360 bool complete_rq = false;
1361
1362 spin_lock_irqsave(&ctrl->lock, flags);
James Smart61bff8e2017-04-23 08:30:08 -07001363 if (unlikely(op->flags & FCOP_FLAGS_TERMIO)) {
James Smart36715cf2017-05-22 15:28:42 -07001364 if (ctrl->flags & FCCTRL_TERMIO) {
1365 if (!--ctrl->iocnt)
1366 wake_up(&ctrl->ioabort_wait);
1367 }
James Smart61bff8e2017-04-23 08:30:08 -07001368 }
James Smart78a7ac22017-04-23 08:30:07 -07001369 if (op->flags & FCOP_FLAGS_RELEASED)
1370 complete_rq = true;
1371 else
1372 op->flags |= FCOP_FLAGS_COMPLETE;
1373 spin_unlock_irqrestore(&ctrl->lock, flags);
1374
1375 return complete_rq;
1376}
1377
Christoph Hellwigbaee29a2017-04-21 10:44:06 +02001378static void
James Smarte3994412016-12-02 00:28:42 -08001379nvme_fc_fcpio_done(struct nvmefc_fcp_req *req)
1380{
1381 struct nvme_fc_fcp_op *op = fcp_req_to_fcp_op(req);
1382 struct request *rq = op->rq;
1383 struct nvmefc_fcp_req *freq = &op->fcp_req;
1384 struct nvme_fc_ctrl *ctrl = op->ctrl;
1385 struct nvme_fc_queue *queue = op->queue;
1386 struct nvme_completion *cqe = &op->rsp_iu.cqe;
James Smart458f2802017-04-23 08:30:06 -07001387 struct nvme_command *sqe = &op->cmd_iu.sqe;
Christoph Hellwigd663b692017-04-20 16:02:56 +02001388 __le16 status = cpu_to_le16(NVME_SC_SUCCESS << 1);
Christoph Hellwig27fa9bc2017-04-20 16:02:57 +02001389 union nvme_result result;
James Smart0a02e392017-10-19 16:11:38 -07001390 bool terminate_assoc = true;
James Smarte3994412016-12-02 00:28:42 -08001391
1392 /*
1393 * WARNING:
1394 * The current linux implementation of a nvme controller
1395 * allocates a single tag set for all io queues and sizes
1396 * the io queues to fully hold all possible tags. Thus, the
1397 * implementation does not reference or care about the sqhd
1398 * value as it never needs to use the sqhd/sqtail pointers
1399 * for submission pacing.
1400 *
1401 * This affects the FC-NVME implementation in two ways:
1402 * 1) As the value doesn't matter, we don't need to waste
1403 * cycles extracting it from ERSPs and stamping it in the
1404 * cases where the transport fabricates CQEs on successful
1405 * completions.
1406 * 2) The FC-NVME implementation requires that delivery of
1407 * ERSP completions are to go back to the nvme layer in order
1408 * relative to the rsn, such that the sqhd value will always
1409 * be "in order" for the nvme layer. As the nvme layer in
1410 * linux doesn't care about sqhd, there's no need to return
1411 * them in order.
1412 *
1413 * Additionally:
1414 * As the core nvme layer in linux currently does not look at
1415 * every field in the cqe - in cases where the FC transport must
1416 * fabricate a CQE, the following fields will not be set as they
1417 * are not referenced:
1418 * cqe.sqid, cqe.sqhd, cqe.command_id
James Smartf874d5d2017-06-01 22:54:21 -07001419 *
1420 * Failure or error of an individual i/o, in a transport
1421 * detected fashion unrelated to the nvme completion status,
1422 * potentially cause the initiator and target sides to get out
1423 * of sync on SQ head/tail (aka outstanding io count allowed).
1424 * Per FC-NVME spec, failure of an individual command requires
1425 * the connection to be terminated, which in turn requires the
1426 * association to be terminated.
James Smarte3994412016-12-02 00:28:42 -08001427 */
1428
1429 fc_dma_sync_single_for_cpu(ctrl->lport->dev, op->fcp_req.rspdma,
1430 sizeof(op->rsp_iu), DMA_FROM_DEVICE);
1431
James Smart0a02e392017-10-19 16:11:38 -07001432 if (atomic_read(&op->state) == FCPOP_STATE_ABORTED ||
1433 op->flags & FCOP_FLAGS_TERMIO)
1434 status = cpu_to_le16(NVME_SC_ABORT_REQ << 1);
James Smart62eeacb2017-03-23 20:41:27 -07001435 else if (freq->status)
James Smart56b7103a2017-09-07 16:27:26 -07001436 status = cpu_to_le16(NVME_SC_INTERNAL << 1);
James Smarte3994412016-12-02 00:28:42 -08001437
1438 /*
1439 * For the linux implementation, if we have an unsuccesful
1440 * status, they blk-mq layer can typically be called with the
1441 * non-zero status and the content of the cqe isn't important.
1442 */
1443 if (status)
1444 goto done;
1445
1446 /*
1447 * command completed successfully relative to the wire
1448 * protocol. However, validate anything received and
1449 * extract the status and result from the cqe (create it
1450 * where necessary).
1451 */
1452
1453 switch (freq->rcv_rsplen) {
1454
1455 case 0:
1456 case NVME_FC_SIZEOF_ZEROS_RSP:
1457 /*
1458 * No response payload or 12 bytes of payload (which
1459 * should all be zeros) are considered successful and
1460 * no payload in the CQE by the transport.
1461 */
1462 if (freq->transferred_length !=
1463 be32_to_cpu(op->cmd_iu.data_len)) {
James Smart56b7103a2017-09-07 16:27:26 -07001464 status = cpu_to_le16(NVME_SC_INTERNAL << 1);
James Smarte3994412016-12-02 00:28:42 -08001465 goto done;
1466 }
Christoph Hellwig27fa9bc2017-04-20 16:02:57 +02001467 result.u64 = 0;
James Smarte3994412016-12-02 00:28:42 -08001468 break;
1469
1470 case sizeof(struct nvme_fc_ersp_iu):
1471 /*
1472 * The ERSP IU contains a full completion with CQE.
1473 * Validate ERSP IU and look at cqe.
1474 */
1475 if (unlikely(be16_to_cpu(op->rsp_iu.iu_len) !=
1476 (freq->rcv_rsplen / 4) ||
1477 be32_to_cpu(op->rsp_iu.xfrd_len) !=
1478 freq->transferred_length ||
James Smart726a1082017-03-23 20:41:23 -07001479 op->rsp_iu.status_code ||
James Smart458f2802017-04-23 08:30:06 -07001480 sqe->common.command_id != cqe->command_id)) {
James Smart56b7103a2017-09-07 16:27:26 -07001481 status = cpu_to_le16(NVME_SC_INTERNAL << 1);
James Smarte3994412016-12-02 00:28:42 -08001482 goto done;
1483 }
Christoph Hellwig27fa9bc2017-04-20 16:02:57 +02001484 result = cqe->result;
Christoph Hellwigd663b692017-04-20 16:02:56 +02001485 status = cqe->status;
James Smarte3994412016-12-02 00:28:42 -08001486 break;
1487
1488 default:
James Smart56b7103a2017-09-07 16:27:26 -07001489 status = cpu_to_le16(NVME_SC_INTERNAL << 1);
James Smarte3994412016-12-02 00:28:42 -08001490 goto done;
1491 }
1492
James Smartf874d5d2017-06-01 22:54:21 -07001493 terminate_assoc = false;
1494
James Smarte3994412016-12-02 00:28:42 -08001495done:
James Smart78a7ac22017-04-23 08:30:07 -07001496 if (op->flags & FCOP_FLAGS_AEN) {
Christoph Hellwig27fa9bc2017-04-20 16:02:57 +02001497 nvme_complete_async_event(&queue->ctrl->ctrl, status, &result);
James Smart0a02e392017-10-19 16:11:38 -07001498 __nvme_fc_fcpop_chk_teardowns(ctrl, op);
James Smart78a7ac22017-04-23 08:30:07 -07001499 atomic_set(&op->state, FCPOP_STATE_IDLE);
1500 op->flags = FCOP_FLAGS_AEN; /* clear other flags */
James Smarte3994412016-12-02 00:28:42 -08001501 nvme_fc_ctrl_put(ctrl);
James Smartf874d5d2017-06-01 22:54:21 -07001502 goto check_error;
James Smarte3994412016-12-02 00:28:42 -08001503 }
1504
James Smart0a02e392017-10-19 16:11:38 -07001505 /*
1506 * Force failures of commands if we're killing the controller
1507 * or have an error on a command used to create an new association
1508 */
1509 if (status &&
1510 (blk_queue_dying(rq->q) ||
1511 ctrl->ctrl.state == NVME_CTRL_NEW ||
1512 ctrl->ctrl.state == NVME_CTRL_RECONNECTING))
1513 status |= cpu_to_le16(NVME_SC_DNR << 1);
1514
1515 if (__nvme_fc_fcpop_chk_teardowns(ctrl, op))
James Smart78a7ac22017-04-23 08:30:07 -07001516 __nvme_fc_final_op_cleanup(rq);
James Smart0a02e392017-10-19 16:11:38 -07001517 else
1518 nvme_end_request(rq, status, result);
James Smartf874d5d2017-06-01 22:54:21 -07001519
1520check_error:
1521 if (terminate_assoc)
1522 nvme_fc_error_recovery(ctrl, "transport detected io error");
James Smarte3994412016-12-02 00:28:42 -08001523}
1524
1525static int
1526__nvme_fc_init_request(struct nvme_fc_ctrl *ctrl,
1527 struct nvme_fc_queue *queue, struct nvme_fc_fcp_op *op,
1528 struct request *rq, u32 rqno)
1529{
1530 struct nvme_fc_cmd_iu *cmdiu = &op->cmd_iu;
1531 int ret = 0;
1532
1533 memset(op, 0, sizeof(*op));
1534 op->fcp_req.cmdaddr = &op->cmd_iu;
1535 op->fcp_req.cmdlen = sizeof(op->cmd_iu);
1536 op->fcp_req.rspaddr = &op->rsp_iu;
1537 op->fcp_req.rsplen = sizeof(op->rsp_iu);
1538 op->fcp_req.done = nvme_fc_fcpio_done;
1539 op->fcp_req.first_sgl = (struct scatterlist *)&op[1];
1540 op->fcp_req.private = &op->fcp_req.first_sgl[SG_CHUNK_SIZE];
1541 op->ctrl = ctrl;
1542 op->queue = queue;
1543 op->rq = rq;
1544 op->rqno = rqno;
1545
1546 cmdiu->scsi_id = NVME_CMD_SCSI_ID;
1547 cmdiu->fc_id = NVME_CMD_FC_ID;
1548 cmdiu->iu_len = cpu_to_be16(sizeof(*cmdiu) / sizeof(u32));
1549
1550 op->fcp_req.cmddma = fc_dma_map_single(ctrl->lport->dev,
1551 &op->cmd_iu, sizeof(op->cmd_iu), DMA_TO_DEVICE);
1552 if (fc_dma_mapping_error(ctrl->lport->dev, op->fcp_req.cmddma)) {
1553 dev_err(ctrl->dev,
1554 "FCP Op failed - cmdiu dma mapping failed.\n");
1555 ret = EFAULT;
1556 goto out_on_error;
1557 }
1558
1559 op->fcp_req.rspdma = fc_dma_map_single(ctrl->lport->dev,
1560 &op->rsp_iu, sizeof(op->rsp_iu),
1561 DMA_FROM_DEVICE);
1562 if (fc_dma_mapping_error(ctrl->lport->dev, op->fcp_req.rspdma)) {
1563 dev_err(ctrl->dev,
1564 "FCP Op failed - rspiu dma mapping failed.\n");
1565 ret = EFAULT;
1566 }
1567
1568 atomic_set(&op->state, FCPOP_STATE_IDLE);
1569out_on_error:
1570 return ret;
1571}
1572
1573static int
Christoph Hellwigd6296d392017-05-01 10:19:08 -06001574nvme_fc_init_request(struct blk_mq_tag_set *set, struct request *rq,
1575 unsigned int hctx_idx, unsigned int numa_node)
James Smarte3994412016-12-02 00:28:42 -08001576{
Christoph Hellwigd6296d392017-05-01 10:19:08 -06001577 struct nvme_fc_ctrl *ctrl = set->driver_data;
James Smarte3994412016-12-02 00:28:42 -08001578 struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq);
Christoph Hellwig76f983c2017-06-13 09:15:20 +02001579 int queue_idx = (set == &ctrl->tag_set) ? hctx_idx + 1 : 0;
1580 struct nvme_fc_queue *queue = &ctrl->queues[queue_idx];
James Smarte3994412016-12-02 00:28:42 -08001581
1582 return __nvme_fc_init_request(ctrl, queue, op, rq, queue->rqcnt++);
1583}
1584
1585static int
1586nvme_fc_init_aen_ops(struct nvme_fc_ctrl *ctrl)
1587{
1588 struct nvme_fc_fcp_op *aen_op;
1589 struct nvme_fc_cmd_iu *cmdiu;
1590 struct nvme_command *sqe;
James Smart61bff8e2017-04-23 08:30:08 -07001591 void *private;
James Smarte3994412016-12-02 00:28:42 -08001592 int i, ret;
1593
1594 aen_op = ctrl->aen_ops;
1595 for (i = 0; i < NVME_FC_NR_AEN_COMMANDS; i++, aen_op++) {
James Smart61bff8e2017-04-23 08:30:08 -07001596 private = kzalloc(ctrl->lport->ops->fcprqst_priv_sz,
1597 GFP_KERNEL);
1598 if (!private)
1599 return -ENOMEM;
1600
James Smarte3994412016-12-02 00:28:42 -08001601 cmdiu = &aen_op->cmd_iu;
1602 sqe = &cmdiu->sqe;
1603 ret = __nvme_fc_init_request(ctrl, &ctrl->queues[0],
1604 aen_op, (struct request *)NULL,
1605 (AEN_CMDID_BASE + i));
James Smart61bff8e2017-04-23 08:30:08 -07001606 if (ret) {
1607 kfree(private);
James Smarte3994412016-12-02 00:28:42 -08001608 return ret;
James Smart61bff8e2017-04-23 08:30:08 -07001609 }
James Smarte3994412016-12-02 00:28:42 -08001610
James Smart78a7ac22017-04-23 08:30:07 -07001611 aen_op->flags = FCOP_FLAGS_AEN;
James Smart61bff8e2017-04-23 08:30:08 -07001612 aen_op->fcp_req.first_sgl = NULL; /* no sg list */
1613 aen_op->fcp_req.private = private;
James Smart78a7ac22017-04-23 08:30:07 -07001614
James Smarte3994412016-12-02 00:28:42 -08001615 memset(sqe, 0, sizeof(*sqe));
1616 sqe->common.opcode = nvme_admin_async_event;
James Smart78a7ac22017-04-23 08:30:07 -07001617 /* Note: core layer may overwrite the sqe.command_id value */
James Smarte3994412016-12-02 00:28:42 -08001618 sqe->common.command_id = AEN_CMDID_BASE + i;
1619 }
1620 return 0;
1621}
1622
James Smart61bff8e2017-04-23 08:30:08 -07001623static void
1624nvme_fc_term_aen_ops(struct nvme_fc_ctrl *ctrl)
1625{
1626 struct nvme_fc_fcp_op *aen_op;
1627 int i;
1628
1629 aen_op = ctrl->aen_ops;
1630 for (i = 0; i < NVME_FC_NR_AEN_COMMANDS; i++, aen_op++) {
1631 if (!aen_op->fcp_req.private)
1632 continue;
1633
1634 __nvme_fc_exit_request(ctrl, aen_op);
1635
1636 kfree(aen_op->fcp_req.private);
1637 aen_op->fcp_req.private = NULL;
1638 }
1639}
James Smarte3994412016-12-02 00:28:42 -08001640
1641static inline void
1642__nvme_fc_init_hctx(struct blk_mq_hw_ctx *hctx, struct nvme_fc_ctrl *ctrl,
1643 unsigned int qidx)
1644{
1645 struct nvme_fc_queue *queue = &ctrl->queues[qidx];
1646
1647 hctx->driver_data = queue;
1648 queue->hctx = hctx;
1649}
1650
1651static int
1652nvme_fc_init_hctx(struct blk_mq_hw_ctx *hctx, void *data,
1653 unsigned int hctx_idx)
1654{
1655 struct nvme_fc_ctrl *ctrl = data;
1656
1657 __nvme_fc_init_hctx(hctx, ctrl, hctx_idx + 1);
1658
1659 return 0;
1660}
1661
1662static int
1663nvme_fc_init_admin_hctx(struct blk_mq_hw_ctx *hctx, void *data,
1664 unsigned int hctx_idx)
1665{
1666 struct nvme_fc_ctrl *ctrl = data;
1667
1668 __nvme_fc_init_hctx(hctx, ctrl, hctx_idx);
1669
1670 return 0;
1671}
1672
1673static void
1674nvme_fc_init_queue(struct nvme_fc_ctrl *ctrl, int idx, size_t queue_size)
1675{
1676 struct nvme_fc_queue *queue;
1677
1678 queue = &ctrl->queues[idx];
1679 memset(queue, 0, sizeof(*queue));
1680 queue->ctrl = ctrl;
1681 queue->qnum = idx;
1682 atomic_set(&queue->csn, 1);
1683 queue->dev = ctrl->dev;
1684
1685 if (idx > 0)
1686 queue->cmnd_capsule_len = ctrl->ctrl.ioccsz * 16;
1687 else
1688 queue->cmnd_capsule_len = sizeof(struct nvme_command);
1689
1690 queue->queue_size = queue_size;
1691
1692 /*
1693 * Considered whether we should allocate buffers for all SQEs
1694 * and CQEs and dma map them - mapping their respective entries
1695 * into the request structures (kernel vm addr and dma address)
1696 * thus the driver could use the buffers/mappings directly.
1697 * It only makes sense if the LLDD would use them for its
1698 * messaging api. It's very unlikely most adapter api's would use
1699 * a native NVME sqe/cqe. More reasonable if FC-NVME IU payload
1700 * structures were used instead.
1701 */
1702}
1703
1704/*
1705 * This routine terminates a queue at the transport level.
1706 * The transport has already ensured that all outstanding ios on
1707 * the queue have been terminated.
1708 * The transport will send a Disconnect LS request to terminate
1709 * the queue's connection. Termination of the admin queue will also
1710 * terminate the association at the target.
1711 */
1712static void
1713nvme_fc_free_queue(struct nvme_fc_queue *queue)
1714{
1715 if (!test_and_clear_bit(NVME_FC_Q_CONNECTED, &queue->flags))
1716 return;
1717
1718 /*
1719 * Current implementation never disconnects a single queue.
1720 * It always terminates a whole association. So there is never
1721 * a disconnect(queue) LS sent to the target.
1722 */
1723
1724 queue->connection_id = 0;
1725 clear_bit(NVME_FC_Q_CONNECTED, &queue->flags);
1726}
1727
1728static void
1729__nvme_fc_delete_hw_queue(struct nvme_fc_ctrl *ctrl,
1730 struct nvme_fc_queue *queue, unsigned int qidx)
1731{
1732 if (ctrl->lport->ops->delete_queue)
1733 ctrl->lport->ops->delete_queue(&ctrl->lport->localport, qidx,
1734 queue->lldd_handle);
1735 queue->lldd_handle = NULL;
1736}
1737
1738static void
James Smarte3994412016-12-02 00:28:42 -08001739nvme_fc_free_io_queues(struct nvme_fc_ctrl *ctrl)
1740{
1741 int i;
1742
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03001743 for (i = 1; i < ctrl->ctrl.queue_count; i++)
James Smarte3994412016-12-02 00:28:42 -08001744 nvme_fc_free_queue(&ctrl->queues[i]);
1745}
1746
1747static int
1748__nvme_fc_create_hw_queue(struct nvme_fc_ctrl *ctrl,
1749 struct nvme_fc_queue *queue, unsigned int qidx, u16 qsize)
1750{
1751 int ret = 0;
1752
1753 queue->lldd_handle = NULL;
1754 if (ctrl->lport->ops->create_queue)
1755 ret = ctrl->lport->ops->create_queue(&ctrl->lport->localport,
1756 qidx, qsize, &queue->lldd_handle);
1757
1758 return ret;
1759}
1760
1761static void
1762nvme_fc_delete_hw_io_queues(struct nvme_fc_ctrl *ctrl)
1763{
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03001764 struct nvme_fc_queue *queue = &ctrl->queues[ctrl->ctrl.queue_count - 1];
James Smarte3994412016-12-02 00:28:42 -08001765 int i;
1766
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03001767 for (i = ctrl->ctrl.queue_count - 1; i >= 1; i--, queue--)
James Smarte3994412016-12-02 00:28:42 -08001768 __nvme_fc_delete_hw_queue(ctrl, queue, i);
1769}
1770
1771static int
1772nvme_fc_create_hw_io_queues(struct nvme_fc_ctrl *ctrl, u16 qsize)
1773{
1774 struct nvme_fc_queue *queue = &ctrl->queues[1];
Johannes Thumshirn17a1ec02016-12-15 14:20:48 +01001775 int i, ret;
James Smarte3994412016-12-02 00:28:42 -08001776
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03001777 for (i = 1; i < ctrl->ctrl.queue_count; i++, queue++) {
James Smarte3994412016-12-02 00:28:42 -08001778 ret = __nvme_fc_create_hw_queue(ctrl, queue, i, qsize);
Johannes Thumshirn17a1ec02016-12-15 14:20:48 +01001779 if (ret)
1780 goto delete_queues;
James Smarte3994412016-12-02 00:28:42 -08001781 }
1782
1783 return 0;
Johannes Thumshirn17a1ec02016-12-15 14:20:48 +01001784
1785delete_queues:
1786 for (; i >= 0; i--)
1787 __nvme_fc_delete_hw_queue(ctrl, &ctrl->queues[i], i);
1788 return ret;
James Smarte3994412016-12-02 00:28:42 -08001789}
1790
1791static int
1792nvme_fc_connect_io_queues(struct nvme_fc_ctrl *ctrl, u16 qsize)
1793{
1794 int i, ret = 0;
1795
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03001796 for (i = 1; i < ctrl->ctrl.queue_count; i++) {
James Smarte3994412016-12-02 00:28:42 -08001797 ret = nvme_fc_connect_queue(ctrl, &ctrl->queues[i], qsize,
1798 (qsize / 5));
1799 if (ret)
1800 break;
1801 ret = nvmf_connect_io_queue(&ctrl->ctrl, i);
1802 if (ret)
1803 break;
1804 }
1805
1806 return ret;
1807}
1808
1809static void
1810nvme_fc_init_io_queues(struct nvme_fc_ctrl *ctrl)
1811{
1812 int i;
1813
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03001814 for (i = 1; i < ctrl->ctrl.queue_count; i++)
James Smarte3994412016-12-02 00:28:42 -08001815 nvme_fc_init_queue(ctrl, i, ctrl->ctrl.sqsize);
1816}
1817
1818static void
1819nvme_fc_ctrl_free(struct kref *ref)
1820{
1821 struct nvme_fc_ctrl *ctrl =
1822 container_of(ref, struct nvme_fc_ctrl, ref);
1823 unsigned long flags;
1824
James Smart61bff8e2017-04-23 08:30:08 -07001825 if (ctrl->ctrl.tagset) {
1826 blk_cleanup_queue(ctrl->ctrl.connect_q);
1827 blk_mq_free_tag_set(&ctrl->tag_set);
James Smarte3994412016-12-02 00:28:42 -08001828 }
1829
James Smart61bff8e2017-04-23 08:30:08 -07001830 /* remove from rport list */
1831 spin_lock_irqsave(&ctrl->rport->lock, flags);
1832 list_del(&ctrl->ctrl_list);
1833 spin_unlock_irqrestore(&ctrl->rport->lock, flags);
1834
Sagi Grimbergf9c5af52017-07-02 15:39:34 +03001835 blk_mq_unquiesce_queue(ctrl->ctrl.admin_q);
James Smart61bff8e2017-04-23 08:30:08 -07001836 blk_cleanup_queue(ctrl->ctrl.admin_q);
1837 blk_mq_free_tag_set(&ctrl->admin_tag_set);
1838
1839 kfree(ctrl->queues);
1840
James Smarte3994412016-12-02 00:28:42 -08001841 put_device(ctrl->dev);
1842 nvme_fc_rport_put(ctrl->rport);
1843
James Smarte3994412016-12-02 00:28:42 -08001844 ida_simple_remove(&nvme_fc_ctrl_cnt, ctrl->cnum);
Ewan D. Milnede414472017-04-24 13:24:16 -04001845 if (ctrl->ctrl.opts)
1846 nvmf_free_options(ctrl->ctrl.opts);
James Smarte3994412016-12-02 00:28:42 -08001847 kfree(ctrl);
1848}
1849
1850static void
1851nvme_fc_ctrl_put(struct nvme_fc_ctrl *ctrl)
1852{
1853 kref_put(&ctrl->ref, nvme_fc_ctrl_free);
1854}
1855
1856static int
1857nvme_fc_ctrl_get(struct nvme_fc_ctrl *ctrl)
1858{
1859 return kref_get_unless_zero(&ctrl->ref);
1860}
1861
1862/*
1863 * All accesses from nvme core layer done - can now free the
1864 * controller. Called after last nvme_put_ctrl() call
1865 */
1866static void
James Smart61bff8e2017-04-23 08:30:08 -07001867nvme_fc_nvme_ctrl_freed(struct nvme_ctrl *nctrl)
James Smarte3994412016-12-02 00:28:42 -08001868{
1869 struct nvme_fc_ctrl *ctrl = to_fc_ctrl(nctrl);
1870
1871 WARN_ON(nctrl != &ctrl->ctrl);
1872
James Smart61bff8e2017-04-23 08:30:08 -07001873 nvme_fc_ctrl_put(ctrl);
1874}
James Smarte3994412016-12-02 00:28:42 -08001875
James Smart61bff8e2017-04-23 08:30:08 -07001876static void
1877nvme_fc_error_recovery(struct nvme_fc_ctrl *ctrl, char *errmsg)
1878{
James Smart69fa9642017-06-21 17:43:21 -07001879 /* only proceed if in LIVE state - e.g. on first error */
1880 if (ctrl->ctrl.state != NVME_CTRL_LIVE)
1881 return;
1882
James Smart61bff8e2017-04-23 08:30:08 -07001883 dev_warn(ctrl->ctrl.device,
1884 "NVME-FC{%d}: transport association error detected: %s\n",
1885 ctrl->cnum, errmsg);
James Smart589ff772017-05-15 17:10:19 -07001886 dev_warn(ctrl->ctrl.device,
James Smart61bff8e2017-04-23 08:30:08 -07001887 "NVME-FC{%d}: resetting controller\n", ctrl->cnum);
James Smarte3994412016-12-02 00:28:42 -08001888
James Smart61bff8e2017-04-23 08:30:08 -07001889 if (!nvme_change_ctrl_state(&ctrl->ctrl, NVME_CTRL_RECONNECTING)) {
1890 dev_err(ctrl->ctrl.device,
1891 "NVME-FC{%d}: error_recovery: Couldn't change state "
1892 "to RECONNECTING\n", ctrl->cnum);
1893 return;
James Smarte3994412016-12-02 00:28:42 -08001894 }
1895
Christoph Hellwigd86c4d82017-06-15 15:41:08 +02001896 nvme_reset_ctrl(&ctrl->ctrl);
James Smarte3994412016-12-02 00:28:42 -08001897}
1898
Christoph Hellwigbaee29a2017-04-21 10:44:06 +02001899static enum blk_eh_timer_return
James Smarte3994412016-12-02 00:28:42 -08001900nvme_fc_timeout(struct request *rq, bool reserved)
1901{
1902 struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq);
1903 struct nvme_fc_ctrl *ctrl = op->ctrl;
1904 int ret;
1905
1906 if (reserved)
1907 return BLK_EH_RESET_TIMER;
1908
1909 ret = __nvme_fc_abort_op(ctrl, op);
1910 if (ret)
1911 /* io wasn't active to abort consider it done */
1912 return BLK_EH_HANDLED;
1913
1914 /*
James Smart61bff8e2017-04-23 08:30:08 -07001915 * we can't individually ABTS an io without affecting the queue,
1916 * thus killing the queue, adn thus the association.
1917 * So resolve by performing a controller reset, which will stop
1918 * the host/io stack, terminate the association on the link,
1919 * and recreate an association on the link.
James Smarte3994412016-12-02 00:28:42 -08001920 */
James Smart61bff8e2017-04-23 08:30:08 -07001921 nvme_fc_error_recovery(ctrl, "io timeout error");
James Smarte3994412016-12-02 00:28:42 -08001922
1923 return BLK_EH_HANDLED;
1924}
1925
1926static int
1927nvme_fc_map_data(struct nvme_fc_ctrl *ctrl, struct request *rq,
1928 struct nvme_fc_fcp_op *op)
1929{
1930 struct nvmefc_fcp_req *freq = &op->fcp_req;
James Smarte3994412016-12-02 00:28:42 -08001931 enum dma_data_direction dir;
1932 int ret;
1933
1934 freq->sg_cnt = 0;
1935
Christoph Hellwigb131c612017-01-13 12:29:12 +01001936 if (!blk_rq_payload_bytes(rq))
James Smarte3994412016-12-02 00:28:42 -08001937 return 0;
1938
1939 freq->sg_table.sgl = freq->first_sgl;
Christoph Hellwig19e420b2017-01-19 16:55:57 +01001940 ret = sg_alloc_table_chained(&freq->sg_table,
1941 blk_rq_nr_phys_segments(rq), freq->sg_table.sgl);
James Smarte3994412016-12-02 00:28:42 -08001942 if (ret)
1943 return -ENOMEM;
1944
1945 op->nents = blk_rq_map_sg(rq->q, rq, freq->sg_table.sgl);
Christoph Hellwig19e420b2017-01-19 16:55:57 +01001946 WARN_ON(op->nents > blk_rq_nr_phys_segments(rq));
James Smarte3994412016-12-02 00:28:42 -08001947 dir = (rq_data_dir(rq) == WRITE) ? DMA_TO_DEVICE : DMA_FROM_DEVICE;
1948 freq->sg_cnt = fc_dma_map_sg(ctrl->lport->dev, freq->sg_table.sgl,
1949 op->nents, dir);
1950 if (unlikely(freq->sg_cnt <= 0)) {
1951 sg_free_table_chained(&freq->sg_table, true);
1952 freq->sg_cnt = 0;
1953 return -EFAULT;
1954 }
1955
1956 /*
1957 * TODO: blk_integrity_rq(rq) for DIF
1958 */
1959 return 0;
1960}
1961
1962static void
1963nvme_fc_unmap_data(struct nvme_fc_ctrl *ctrl, struct request *rq,
1964 struct nvme_fc_fcp_op *op)
1965{
1966 struct nvmefc_fcp_req *freq = &op->fcp_req;
1967
1968 if (!freq->sg_cnt)
1969 return;
1970
1971 fc_dma_unmap_sg(ctrl->lport->dev, freq->sg_table.sgl, op->nents,
1972 ((rq_data_dir(rq) == WRITE) ?
1973 DMA_TO_DEVICE : DMA_FROM_DEVICE));
1974
1975 nvme_cleanup_cmd(rq);
1976
1977 sg_free_table_chained(&freq->sg_table, true);
1978
1979 freq->sg_cnt = 0;
1980}
1981
1982/*
1983 * In FC, the queue is a logical thing. At transport connect, the target
1984 * creates its "queue" and returns a handle that is to be given to the
1985 * target whenever it posts something to the corresponding SQ. When an
1986 * SQE is sent on a SQ, FC effectively considers the SQE, or rather the
1987 * command contained within the SQE, an io, and assigns a FC exchange
1988 * to it. The SQE and the associated SQ handle are sent in the initial
1989 * CMD IU sents on the exchange. All transfers relative to the io occur
1990 * as part of the exchange. The CQE is the last thing for the io,
1991 * which is transferred (explicitly or implicitly) with the RSP IU
1992 * sent on the exchange. After the CQE is received, the FC exchange is
1993 * terminaed and the Exchange may be used on a different io.
1994 *
1995 * The transport to LLDD api has the transport making a request for a
1996 * new fcp io request to the LLDD. The LLDD then allocates a FC exchange
1997 * resource and transfers the command. The LLDD will then process all
1998 * steps to complete the io. Upon completion, the transport done routine
1999 * is called.
2000 *
2001 * So - while the operation is outstanding to the LLDD, there is a link
2002 * level FC exchange resource that is also outstanding. This must be
2003 * considered in all cleanup operations.
2004 */
Christoph Hellwigfc17b652017-06-03 09:38:05 +02002005static blk_status_t
James Smarte3994412016-12-02 00:28:42 -08002006nvme_fc_start_fcp_op(struct nvme_fc_ctrl *ctrl, struct nvme_fc_queue *queue,
2007 struct nvme_fc_fcp_op *op, u32 data_len,
2008 enum nvmefc_fcp_datadir io_dir)
2009{
2010 struct nvme_fc_cmd_iu *cmdiu = &op->cmd_iu;
2011 struct nvme_command *sqe = &cmdiu->sqe;
2012 u32 csn;
2013 int ret;
2014
James Smart61bff8e2017-04-23 08:30:08 -07002015 /*
2016 * before attempting to send the io, check to see if we believe
2017 * the target device is present
2018 */
2019 if (ctrl->rport->remoteport.port_state != FC_OBJSTATE_ONLINE)
James Smart8b25f352017-07-18 14:29:34 -07002020 goto busy;
James Smart61bff8e2017-04-23 08:30:08 -07002021
James Smarte3994412016-12-02 00:28:42 -08002022 if (!nvme_fc_ctrl_get(ctrl))
Christoph Hellwigfc17b652017-06-03 09:38:05 +02002023 return BLK_STS_IOERR;
James Smarte3994412016-12-02 00:28:42 -08002024
2025 /* format the FC-NVME CMD IU and fcp_req */
2026 cmdiu->connection_id = cpu_to_be64(queue->connection_id);
2027 csn = atomic_inc_return(&queue->csn);
2028 cmdiu->csn = cpu_to_be32(csn);
2029 cmdiu->data_len = cpu_to_be32(data_len);
2030 switch (io_dir) {
2031 case NVMEFC_FCP_WRITE:
2032 cmdiu->flags = FCNVME_CMD_FLAGS_WRITE;
2033 break;
2034 case NVMEFC_FCP_READ:
2035 cmdiu->flags = FCNVME_CMD_FLAGS_READ;
2036 break;
2037 case NVMEFC_FCP_NODATA:
2038 cmdiu->flags = 0;
2039 break;
2040 }
2041 op->fcp_req.payload_length = data_len;
2042 op->fcp_req.io_dir = io_dir;
2043 op->fcp_req.transferred_length = 0;
2044 op->fcp_req.rcv_rsplen = 0;
James Smart62eeacb2017-03-23 20:41:27 -07002045 op->fcp_req.status = NVME_SC_SUCCESS;
James Smarte3994412016-12-02 00:28:42 -08002046 op->fcp_req.sqid = cpu_to_le16(queue->qnum);
2047
2048 /*
2049 * validate per fabric rules, set fields mandated by fabric spec
2050 * as well as those by FC-NVME spec.
2051 */
2052 WARN_ON_ONCE(sqe->common.metadata);
James Smarte3994412016-12-02 00:28:42 -08002053 sqe->common.flags |= NVME_CMD_SGL_METABUF;
2054
2055 /*
James Smartd9d34c02017-09-07 13:20:24 -07002056 * format SQE DPTR field per FC-NVME rules:
2057 * type=0x5 Transport SGL Data Block Descriptor
2058 * subtype=0xA Transport-specific value
2059 * address=0
2060 * length=length of the data series
James Smarte3994412016-12-02 00:28:42 -08002061 */
James Smartd9d34c02017-09-07 13:20:24 -07002062 sqe->rw.dptr.sgl.type = (NVME_TRANSPORT_SGL_DATA_DESC << 4) |
2063 NVME_SGL_FMT_TRANSPORT_A;
James Smarte3994412016-12-02 00:28:42 -08002064 sqe->rw.dptr.sgl.length = cpu_to_le32(data_len);
2065 sqe->rw.dptr.sgl.addr = 0;
2066
James Smart78a7ac22017-04-23 08:30:07 -07002067 if (!(op->flags & FCOP_FLAGS_AEN)) {
James Smarte3994412016-12-02 00:28:42 -08002068 ret = nvme_fc_map_data(ctrl, op->rq, op);
2069 if (ret < 0) {
James Smarte3994412016-12-02 00:28:42 -08002070 nvme_cleanup_cmd(op->rq);
2071 nvme_fc_ctrl_put(ctrl);
Christoph Hellwigfc17b652017-06-03 09:38:05 +02002072 if (ret == -ENOMEM || ret == -EAGAIN)
2073 return BLK_STS_RESOURCE;
2074 return BLK_STS_IOERR;
James Smarte3994412016-12-02 00:28:42 -08002075 }
2076 }
2077
2078 fc_dma_sync_single_for_device(ctrl->lport->dev, op->fcp_req.cmddma,
2079 sizeof(op->cmd_iu), DMA_TO_DEVICE);
2080
2081 atomic_set(&op->state, FCPOP_STATE_ACTIVE);
2082
James Smart78a7ac22017-04-23 08:30:07 -07002083 if (!(op->flags & FCOP_FLAGS_AEN))
James Smarte3994412016-12-02 00:28:42 -08002084 blk_mq_start_request(op->rq);
2085
2086 ret = ctrl->lport->ops->fcp_io(&ctrl->lport->localport,
2087 &ctrl->rport->remoteport,
2088 queue->lldd_handle, &op->fcp_req);
2089
2090 if (ret) {
James Smart8b25f352017-07-18 14:29:34 -07002091 if (!(op->flags & FCOP_FLAGS_AEN))
James Smarte3994412016-12-02 00:28:42 -08002092 nvme_fc_unmap_data(ctrl, op->rq, op);
James Smarte3994412016-12-02 00:28:42 -08002093
2094 nvme_fc_ctrl_put(ctrl);
2095
James Smart8b25f352017-07-18 14:29:34 -07002096 if (ctrl->rport->remoteport.port_state == FC_OBJSTATE_ONLINE &&
2097 ret != -EBUSY)
Christoph Hellwigfc17b652017-06-03 09:38:05 +02002098 return BLK_STS_IOERR;
James Smarte3994412016-12-02 00:28:42 -08002099
James Smart8b25f352017-07-18 14:29:34 -07002100 goto busy;
James Smarte3994412016-12-02 00:28:42 -08002101 }
2102
Christoph Hellwigfc17b652017-06-03 09:38:05 +02002103 return BLK_STS_OK;
James Smart8b25f352017-07-18 14:29:34 -07002104
2105busy:
2106 if (!(op->flags & FCOP_FLAGS_AEN) && queue->hctx)
2107 blk_mq_delay_run_hw_queue(queue->hctx, NVMEFC_QUEUE_DELAY);
2108
2109 return BLK_STS_RESOURCE;
James Smarte3994412016-12-02 00:28:42 -08002110}
2111
Christoph Hellwigfc17b652017-06-03 09:38:05 +02002112static blk_status_t
James Smarte3994412016-12-02 00:28:42 -08002113nvme_fc_queue_rq(struct blk_mq_hw_ctx *hctx,
2114 const struct blk_mq_queue_data *bd)
2115{
2116 struct nvme_ns *ns = hctx->queue->queuedata;
2117 struct nvme_fc_queue *queue = hctx->driver_data;
2118 struct nvme_fc_ctrl *ctrl = queue->ctrl;
2119 struct request *rq = bd->rq;
2120 struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq);
2121 struct nvme_fc_cmd_iu *cmdiu = &op->cmd_iu;
2122 struct nvme_command *sqe = &cmdiu->sqe;
2123 enum nvmefc_fcp_datadir io_dir;
2124 u32 data_len;
Christoph Hellwigfc17b652017-06-03 09:38:05 +02002125 blk_status_t ret;
James Smarte3994412016-12-02 00:28:42 -08002126
2127 ret = nvme_setup_cmd(ns, rq, sqe);
2128 if (ret)
2129 return ret;
2130
Christoph Hellwigb131c612017-01-13 12:29:12 +01002131 data_len = blk_rq_payload_bytes(rq);
James Smarte3994412016-12-02 00:28:42 -08002132 if (data_len)
2133 io_dir = ((rq_data_dir(rq) == WRITE) ?
2134 NVMEFC_FCP_WRITE : NVMEFC_FCP_READ);
2135 else
2136 io_dir = NVMEFC_FCP_NODATA;
2137
2138 return nvme_fc_start_fcp_op(ctrl, queue, op, data_len, io_dir);
2139}
2140
2141static struct blk_mq_tags *
2142nvme_fc_tagset(struct nvme_fc_queue *queue)
2143{
2144 if (queue->qnum == 0)
2145 return queue->ctrl->admin_tag_set.tags[queue->qnum];
2146
2147 return queue->ctrl->tag_set.tags[queue->qnum - 1];
2148}
2149
2150static int
2151nvme_fc_poll(struct blk_mq_hw_ctx *hctx, unsigned int tag)
2152
2153{
2154 struct nvme_fc_queue *queue = hctx->driver_data;
2155 struct nvme_fc_ctrl *ctrl = queue->ctrl;
2156 struct request *req;
2157 struct nvme_fc_fcp_op *op;
2158
2159 req = blk_mq_tag_to_rq(nvme_fc_tagset(queue), tag);
James Smart61bff8e2017-04-23 08:30:08 -07002160 if (!req)
James Smarte3994412016-12-02 00:28:42 -08002161 return 0;
James Smarte3994412016-12-02 00:28:42 -08002162
2163 op = blk_mq_rq_to_pdu(req);
2164
2165 if ((atomic_read(&op->state) == FCPOP_STATE_ACTIVE) &&
2166 (ctrl->lport->ops->poll_queue))
2167 ctrl->lport->ops->poll_queue(&ctrl->lport->localport,
2168 queue->lldd_handle);
2169
2170 return ((atomic_read(&op->state) != FCPOP_STATE_ACTIVE));
2171}
2172
2173static void
2174nvme_fc_submit_async_event(struct nvme_ctrl *arg, int aer_idx)
2175{
2176 struct nvme_fc_ctrl *ctrl = to_fc_ctrl(arg);
2177 struct nvme_fc_fcp_op *aen_op;
James Smart61bff8e2017-04-23 08:30:08 -07002178 unsigned long flags;
2179 bool terminating = false;
Christoph Hellwigfc17b652017-06-03 09:38:05 +02002180 blk_status_t ret;
James Smarte3994412016-12-02 00:28:42 -08002181
2182 if (aer_idx > NVME_FC_NR_AEN_COMMANDS)
2183 return;
2184
James Smart61bff8e2017-04-23 08:30:08 -07002185 spin_lock_irqsave(&ctrl->lock, flags);
2186 if (ctrl->flags & FCCTRL_TERMIO)
2187 terminating = true;
2188 spin_unlock_irqrestore(&ctrl->lock, flags);
2189
2190 if (terminating)
2191 return;
2192
James Smarte3994412016-12-02 00:28:42 -08002193 aen_op = &ctrl->aen_ops[aer_idx];
2194
2195 ret = nvme_fc_start_fcp_op(ctrl, aen_op->queue, aen_op, 0,
2196 NVMEFC_FCP_NODATA);
2197 if (ret)
2198 dev_err(ctrl->ctrl.device,
2199 "failed async event work [%d]\n", aer_idx);
2200}
2201
2202static void
James Smart78a7ac22017-04-23 08:30:07 -07002203__nvme_fc_final_op_cleanup(struct request *rq)
James Smarte3994412016-12-02 00:28:42 -08002204{
2205 struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq);
2206 struct nvme_fc_ctrl *ctrl = op->ctrl;
James Smarte3994412016-12-02 00:28:42 -08002207
James Smart78a7ac22017-04-23 08:30:07 -07002208 atomic_set(&op->state, FCPOP_STATE_IDLE);
2209 op->flags &= ~(FCOP_FLAGS_TERMIO | FCOP_FLAGS_RELEASED |
2210 FCOP_FLAGS_COMPLETE);
James Smarte3994412016-12-02 00:28:42 -08002211
James Smarte3994412016-12-02 00:28:42 -08002212 nvme_fc_unmap_data(ctrl, rq, op);
Christoph Hellwig77f02a72017-03-30 13:41:32 +02002213 nvme_complete_rq(rq);
James Smarte3994412016-12-02 00:28:42 -08002214 nvme_fc_ctrl_put(ctrl);
2215
James Smarte3994412016-12-02 00:28:42 -08002216}
2217
James Smart78a7ac22017-04-23 08:30:07 -07002218static void
2219nvme_fc_complete_rq(struct request *rq)
2220{
2221 struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq);
2222 struct nvme_fc_ctrl *ctrl = op->ctrl;
2223 unsigned long flags;
2224 bool completed = false;
2225
2226 /*
2227 * the core layer, on controller resets after calling
2228 * nvme_shutdown_ctrl(), calls complete_rq without our
2229 * calling blk_mq_complete_request(), thus there may still
2230 * be live i/o outstanding with the LLDD. Means transport has
2231 * to track complete calls vs fcpio_done calls to know what
2232 * path to take on completes and dones.
2233 */
2234 spin_lock_irqsave(&ctrl->lock, flags);
2235 if (op->flags & FCOP_FLAGS_COMPLETE)
2236 completed = true;
2237 else
2238 op->flags |= FCOP_FLAGS_RELEASED;
2239 spin_unlock_irqrestore(&ctrl->lock, flags);
2240
2241 if (completed)
2242 __nvme_fc_final_op_cleanup(rq);
2243}
2244
James Smarte3994412016-12-02 00:28:42 -08002245/*
2246 * This routine is used by the transport when it needs to find active
2247 * io on a queue that is to be terminated. The transport uses
2248 * blk_mq_tagset_busy_itr() to find the busy requests, which then invoke
2249 * this routine to kill them on a 1 by 1 basis.
2250 *
2251 * As FC allocates FC exchange for each io, the transport must contact
2252 * the LLDD to terminate the exchange, thus releasing the FC exchange.
2253 * After terminating the exchange the LLDD will call the transport's
2254 * normal io done path for the request, but it will have an aborted
2255 * status. The done path will return the io request back to the block
2256 * layer with an error status.
2257 */
2258static void
2259nvme_fc_terminate_exchange(struct request *req, void *data, bool reserved)
2260{
2261 struct nvme_ctrl *nctrl = data;
2262 struct nvme_fc_ctrl *ctrl = to_fc_ctrl(nctrl);
2263 struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(req);
James Smart78a7ac22017-04-23 08:30:07 -07002264 unsigned long flags;
2265 int status;
James Smarte3994412016-12-02 00:28:42 -08002266
2267 if (!blk_mq_request_started(req))
2268 return;
2269
James Smart78a7ac22017-04-23 08:30:07 -07002270 spin_lock_irqsave(&ctrl->lock, flags);
James Smart61bff8e2017-04-23 08:30:08 -07002271 if (ctrl->flags & FCCTRL_TERMIO) {
2272 ctrl->iocnt++;
2273 op->flags |= FCOP_FLAGS_TERMIO;
2274 }
James Smart78a7ac22017-04-23 08:30:07 -07002275 spin_unlock_irqrestore(&ctrl->lock, flags);
James Smarte3994412016-12-02 00:28:42 -08002276
James Smart78a7ac22017-04-23 08:30:07 -07002277 status = __nvme_fc_abort_op(ctrl, op);
2278 if (status) {
2279 /*
2280 * if __nvme_fc_abort_op failed the io wasn't
2281 * active. Thus this call path is running in
2282 * parallel to the io complete. Treat as non-error.
2283 */
2284
2285 /* back out the flags/counters */
2286 spin_lock_irqsave(&ctrl->lock, flags);
James Smart61bff8e2017-04-23 08:30:08 -07002287 if (ctrl->flags & FCCTRL_TERMIO)
2288 ctrl->iocnt--;
James Smart78a7ac22017-04-23 08:30:07 -07002289 op->flags &= ~FCOP_FLAGS_TERMIO;
2290 spin_unlock_irqrestore(&ctrl->lock, flags);
2291 return;
2292 }
2293}
James Smarte3994412016-12-02 00:28:42 -08002294
James Smarte3994412016-12-02 00:28:42 -08002295
James Smart61bff8e2017-04-23 08:30:08 -07002296static const struct blk_mq_ops nvme_fc_mq_ops = {
2297 .queue_rq = nvme_fc_queue_rq,
2298 .complete = nvme_fc_complete_rq,
2299 .init_request = nvme_fc_init_request,
2300 .exit_request = nvme_fc_exit_request,
James Smart61bff8e2017-04-23 08:30:08 -07002301 .init_hctx = nvme_fc_init_hctx,
2302 .poll = nvme_fc_poll,
2303 .timeout = nvme_fc_timeout,
James Smarte3994412016-12-02 00:28:42 -08002304};
2305
2306static int
2307nvme_fc_create_io_queues(struct nvme_fc_ctrl *ctrl)
2308{
2309 struct nvmf_ctrl_options *opts = ctrl->ctrl.opts;
Sagi Grimberg73141832017-06-29 11:16:49 +03002310 unsigned int nr_io_queues;
James Smarte3994412016-12-02 00:28:42 -08002311 int ret;
2312
Sagi Grimberg73141832017-06-29 11:16:49 +03002313 nr_io_queues = min(min(opts->nr_io_queues, num_online_cpus()),
2314 ctrl->lport->ops->max_hw_queues);
2315 ret = nvme_set_queue_count(&ctrl->ctrl, &nr_io_queues);
James Smarte3994412016-12-02 00:28:42 -08002316 if (ret) {
2317 dev_info(ctrl->ctrl.device,
2318 "set_queue_count failed: %d\n", ret);
2319 return ret;
2320 }
2321
Sagi Grimberg73141832017-06-29 11:16:49 +03002322 ctrl->ctrl.queue_count = nr_io_queues + 1;
2323 if (!nr_io_queues)
James Smarte3994412016-12-02 00:28:42 -08002324 return 0;
2325
James Smarte3994412016-12-02 00:28:42 -08002326 nvme_fc_init_io_queues(ctrl);
2327
2328 memset(&ctrl->tag_set, 0, sizeof(ctrl->tag_set));
2329 ctrl->tag_set.ops = &nvme_fc_mq_ops;
2330 ctrl->tag_set.queue_depth = ctrl->ctrl.opts->queue_size;
2331 ctrl->tag_set.reserved_tags = 1; /* fabric connect */
2332 ctrl->tag_set.numa_node = NUMA_NO_NODE;
2333 ctrl->tag_set.flags = BLK_MQ_F_SHOULD_MERGE;
2334 ctrl->tag_set.cmd_size = sizeof(struct nvme_fc_fcp_op) +
2335 (SG_CHUNK_SIZE *
2336 sizeof(struct scatterlist)) +
2337 ctrl->lport->ops->fcprqst_priv_sz;
2338 ctrl->tag_set.driver_data = ctrl;
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03002339 ctrl->tag_set.nr_hw_queues = ctrl->ctrl.queue_count - 1;
James Smarte3994412016-12-02 00:28:42 -08002340 ctrl->tag_set.timeout = NVME_IO_TIMEOUT;
2341
2342 ret = blk_mq_alloc_tag_set(&ctrl->tag_set);
2343 if (ret)
2344 return ret;
2345
2346 ctrl->ctrl.tagset = &ctrl->tag_set;
2347
2348 ctrl->ctrl.connect_q = blk_mq_init_queue(&ctrl->tag_set);
2349 if (IS_ERR(ctrl->ctrl.connect_q)) {
2350 ret = PTR_ERR(ctrl->ctrl.connect_q);
2351 goto out_free_tag_set;
2352 }
2353
2354 ret = nvme_fc_create_hw_io_queues(ctrl, ctrl->ctrl.opts->queue_size);
2355 if (ret)
2356 goto out_cleanup_blk_queue;
2357
2358 ret = nvme_fc_connect_io_queues(ctrl, ctrl->ctrl.opts->queue_size);
2359 if (ret)
2360 goto out_delete_hw_queues;
2361
2362 return 0;
2363
2364out_delete_hw_queues:
2365 nvme_fc_delete_hw_io_queues(ctrl);
2366out_cleanup_blk_queue:
James Smarte3994412016-12-02 00:28:42 -08002367 blk_cleanup_queue(ctrl->ctrl.connect_q);
2368out_free_tag_set:
2369 blk_mq_free_tag_set(&ctrl->tag_set);
2370 nvme_fc_free_io_queues(ctrl);
2371
2372 /* force put free routine to ignore io queues */
2373 ctrl->ctrl.tagset = NULL;
2374
2375 return ret;
2376}
2377
James Smart61bff8e2017-04-23 08:30:08 -07002378static int
2379nvme_fc_reinit_io_queues(struct nvme_fc_ctrl *ctrl)
2380{
2381 struct nvmf_ctrl_options *opts = ctrl->ctrl.opts;
Sagi Grimberg73141832017-06-29 11:16:49 +03002382 unsigned int nr_io_queues;
James Smart61bff8e2017-04-23 08:30:08 -07002383 int ret;
2384
Sagi Grimberg73141832017-06-29 11:16:49 +03002385 nr_io_queues = min(min(opts->nr_io_queues, num_online_cpus()),
2386 ctrl->lport->ops->max_hw_queues);
2387 ret = nvme_set_queue_count(&ctrl->ctrl, &nr_io_queues);
James Smart61bff8e2017-04-23 08:30:08 -07002388 if (ret) {
2389 dev_info(ctrl->ctrl.device,
2390 "set_queue_count failed: %d\n", ret);
2391 return ret;
2392 }
2393
Sagi Grimberg73141832017-06-29 11:16:49 +03002394 ctrl->ctrl.queue_count = nr_io_queues + 1;
James Smart61bff8e2017-04-23 08:30:08 -07002395 /* check for io queues existing */
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03002396 if (ctrl->ctrl.queue_count == 1)
James Smart61bff8e2017-04-23 08:30:08 -07002397 return 0;
2398
James Smart61bff8e2017-04-23 08:30:08 -07002399 nvme_fc_init_io_queues(ctrl);
2400
Sagi Grimberg31b84462017-10-11 12:53:07 +03002401 ret = nvme_reinit_tagset(&ctrl->ctrl, ctrl->ctrl.tagset);
James Smart61bff8e2017-04-23 08:30:08 -07002402 if (ret)
2403 goto out_free_io_queues;
2404
2405 ret = nvme_fc_create_hw_io_queues(ctrl, ctrl->ctrl.opts->queue_size);
2406 if (ret)
2407 goto out_free_io_queues;
2408
2409 ret = nvme_fc_connect_io_queues(ctrl, ctrl->ctrl.opts->queue_size);
2410 if (ret)
2411 goto out_delete_hw_queues;
2412
Sagi Grimbergcda5fd12017-06-29 11:20:10 +03002413 blk_mq_update_nr_hw_queues(&ctrl->tag_set, nr_io_queues);
2414
James Smart61bff8e2017-04-23 08:30:08 -07002415 return 0;
2416
2417out_delete_hw_queues:
2418 nvme_fc_delete_hw_io_queues(ctrl);
2419out_free_io_queues:
2420 nvme_fc_free_io_queues(ctrl);
2421 return ret;
2422}
2423
2424/*
2425 * This routine restarts the controller on the host side, and
2426 * on the link side, recreates the controller association.
2427 */
2428static int
2429nvme_fc_create_association(struct nvme_fc_ctrl *ctrl)
2430{
2431 struct nvmf_ctrl_options *opts = ctrl->ctrl.opts;
2432 u32 segs;
2433 int ret;
2434 bool changed;
2435
Sagi Grimbergfdf9dfa2017-05-04 13:33:15 +03002436 ++ctrl->ctrl.nr_reconnects;
James Smart61bff8e2017-04-23 08:30:08 -07002437
2438 /*
2439 * Create the admin queue
2440 */
2441
2442 nvme_fc_init_queue(ctrl, 0, NVME_FC_AQ_BLKMQ_DEPTH);
2443
2444 ret = __nvme_fc_create_hw_queue(ctrl, &ctrl->queues[0], 0,
2445 NVME_FC_AQ_BLKMQ_DEPTH);
2446 if (ret)
2447 goto out_free_queue;
2448
2449 ret = nvme_fc_connect_admin_queue(ctrl, &ctrl->queues[0],
2450 NVME_FC_AQ_BLKMQ_DEPTH,
2451 (NVME_FC_AQ_BLKMQ_DEPTH / 4));
2452 if (ret)
2453 goto out_delete_hw_queue;
2454
2455 if (ctrl->ctrl.state != NVME_CTRL_NEW)
Sagi Grimbergf9c5af52017-07-02 15:39:34 +03002456 blk_mq_unquiesce_queue(ctrl->ctrl.admin_q);
James Smart61bff8e2017-04-23 08:30:08 -07002457
2458 ret = nvmf_connect_admin_queue(&ctrl->ctrl);
2459 if (ret)
2460 goto out_disconnect_admin_queue;
2461
2462 /*
2463 * Check controller capabilities
2464 *
2465 * todo:- add code to check if ctrl attributes changed from
2466 * prior connection values
2467 */
2468
Sagi Grimberg20d0dfe2017-06-27 22:16:38 +03002469 ret = nvmf_reg_read64(&ctrl->ctrl, NVME_REG_CAP, &ctrl->ctrl.cap);
James Smart61bff8e2017-04-23 08:30:08 -07002470 if (ret) {
2471 dev_err(ctrl->ctrl.device,
2472 "prop_get NVME_REG_CAP failed\n");
2473 goto out_disconnect_admin_queue;
2474 }
2475
2476 ctrl->ctrl.sqsize =
Sagi Grimberg20d0dfe2017-06-27 22:16:38 +03002477 min_t(int, NVME_CAP_MQES(ctrl->ctrl.cap) + 1, ctrl->ctrl.sqsize);
James Smart61bff8e2017-04-23 08:30:08 -07002478
Sagi Grimberg20d0dfe2017-06-27 22:16:38 +03002479 ret = nvme_enable_ctrl(&ctrl->ctrl, ctrl->ctrl.cap);
James Smart61bff8e2017-04-23 08:30:08 -07002480 if (ret)
2481 goto out_disconnect_admin_queue;
2482
2483 segs = min_t(u32, NVME_FC_MAX_SEGMENTS,
2484 ctrl->lport->ops->max_sgl_segments);
2485 ctrl->ctrl.max_hw_sectors = (segs - 1) << (PAGE_SHIFT - 9);
2486
2487 ret = nvme_init_identify(&ctrl->ctrl);
2488 if (ret)
2489 goto out_disconnect_admin_queue;
2490
2491 /* sanity checks */
2492
2493 /* FC-NVME does not have other data in the capsule */
2494 if (ctrl->ctrl.icdoff) {
2495 dev_err(ctrl->ctrl.device, "icdoff %d is not supported!\n",
2496 ctrl->ctrl.icdoff);
2497 goto out_disconnect_admin_queue;
2498 }
2499
James Smart61bff8e2017-04-23 08:30:08 -07002500 /* FC-NVME supports normal SGL Data Block Descriptors */
2501
2502 if (opts->queue_size > ctrl->ctrl.maxcmd) {
2503 /* warn if maxcmd is lower than queue_size */
2504 dev_warn(ctrl->ctrl.device,
2505 "queue_size %zu > ctrl maxcmd %u, reducing "
2506 "to queue_size\n",
2507 opts->queue_size, ctrl->ctrl.maxcmd);
2508 opts->queue_size = ctrl->ctrl.maxcmd;
2509 }
2510
2511 ret = nvme_fc_init_aen_ops(ctrl);
2512 if (ret)
2513 goto out_term_aen_ops;
2514
2515 /*
2516 * Create the io queues
2517 */
2518
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03002519 if (ctrl->ctrl.queue_count > 1) {
James Smart61bff8e2017-04-23 08:30:08 -07002520 if (ctrl->ctrl.state == NVME_CTRL_NEW)
2521 ret = nvme_fc_create_io_queues(ctrl);
2522 else
2523 ret = nvme_fc_reinit_io_queues(ctrl);
2524 if (ret)
2525 goto out_term_aen_ops;
2526 }
2527
2528 changed = nvme_change_ctrl_state(&ctrl->ctrl, NVME_CTRL_LIVE);
2529 WARN_ON_ONCE(!changed);
2530
Sagi Grimbergfdf9dfa2017-05-04 13:33:15 +03002531 ctrl->ctrl.nr_reconnects = 0;
James Smart61bff8e2017-04-23 08:30:08 -07002532
Sagi Grimbergd09f2b42017-07-02 10:56:43 +03002533 nvme_start_ctrl(&ctrl->ctrl);
James Smart61bff8e2017-04-23 08:30:08 -07002534
2535 return 0; /* Success */
2536
2537out_term_aen_ops:
2538 nvme_fc_term_aen_ops(ctrl);
James Smart61bff8e2017-04-23 08:30:08 -07002539out_disconnect_admin_queue:
2540 /* send a Disconnect(association) LS to fc-nvme target */
2541 nvme_fc_xmt_disconnect_assoc(ctrl);
2542out_delete_hw_queue:
2543 __nvme_fc_delete_hw_queue(ctrl, &ctrl->queues[0], 0);
2544out_free_queue:
2545 nvme_fc_free_queue(&ctrl->queues[0]);
2546
2547 return ret;
2548}
2549
2550/*
2551 * This routine stops operation of the controller on the host side.
2552 * On the host os stack side: Admin and IO queues are stopped,
2553 * outstanding ios on them terminated via FC ABTS.
2554 * On the link side: the association is terminated.
2555 */
2556static void
2557nvme_fc_delete_association(struct nvme_fc_ctrl *ctrl)
2558{
2559 unsigned long flags;
2560
James Smart61bff8e2017-04-23 08:30:08 -07002561 spin_lock_irqsave(&ctrl->lock, flags);
2562 ctrl->flags |= FCCTRL_TERMIO;
2563 ctrl->iocnt = 0;
2564 spin_unlock_irqrestore(&ctrl->lock, flags);
2565
2566 /*
2567 * If io queues are present, stop them and terminate all outstanding
2568 * ios on them. As FC allocates FC exchange for each io, the
2569 * transport must contact the LLDD to terminate the exchange,
2570 * thus releasing the FC exchange. We use blk_mq_tagset_busy_itr()
2571 * to tell us what io's are busy and invoke a transport routine
2572 * to kill them with the LLDD. After terminating the exchange
2573 * the LLDD will call the transport's normal io done path, but it
2574 * will have an aborted status. The done path will return the
2575 * io requests back to the block layer as part of normal completions
2576 * (but with error status).
2577 */
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03002578 if (ctrl->ctrl.queue_count > 1) {
James Smart61bff8e2017-04-23 08:30:08 -07002579 nvme_stop_queues(&ctrl->ctrl);
2580 blk_mq_tagset_busy_iter(&ctrl->tag_set,
2581 nvme_fc_terminate_exchange, &ctrl->ctrl);
2582 }
2583
2584 /*
2585 * Other transports, which don't have link-level contexts bound
2586 * to sqe's, would try to gracefully shutdown the controller by
2587 * writing the registers for shutdown and polling (call
2588 * nvme_shutdown_ctrl()). Given a bunch of i/o was potentially
2589 * just aborted and we will wait on those contexts, and given
2590 * there was no indication of how live the controlelr is on the
2591 * link, don't send more io to create more contexts for the
2592 * shutdown. Let the controller fail via keepalive failure if
2593 * its still present.
2594 */
2595
2596 /*
2597 * clean up the admin queue. Same thing as above.
2598 * use blk_mq_tagset_busy_itr() and the transport routine to
2599 * terminate the exchanges.
2600 */
Sagi Grimbergf9c5af52017-07-02 15:39:34 +03002601 blk_mq_quiesce_queue(ctrl->ctrl.admin_q);
James Smart61bff8e2017-04-23 08:30:08 -07002602 blk_mq_tagset_busy_iter(&ctrl->admin_tag_set,
2603 nvme_fc_terminate_exchange, &ctrl->ctrl);
2604
2605 /* kill the aens as they are a separate path */
2606 nvme_fc_abort_aen_ops(ctrl);
2607
2608 /* wait for all io that had to be aborted */
2609 spin_lock_irqsave(&ctrl->lock, flags);
James Smart36715cf2017-05-22 15:28:42 -07002610 wait_event_lock_irq(ctrl->ioabort_wait, ctrl->iocnt == 0, ctrl->lock);
James Smart61bff8e2017-04-23 08:30:08 -07002611 ctrl->flags &= ~FCCTRL_TERMIO;
2612 spin_unlock_irqrestore(&ctrl->lock, flags);
2613
2614 nvme_fc_term_aen_ops(ctrl);
2615
2616 /*
2617 * send a Disconnect(association) LS to fc-nvme target
2618 * Note: could have been sent at top of process, but
2619 * cleaner on link traffic if after the aborts complete.
2620 * Note: if association doesn't exist, association_id will be 0
2621 */
2622 if (ctrl->association_id)
2623 nvme_fc_xmt_disconnect_assoc(ctrl);
2624
2625 if (ctrl->ctrl.tagset) {
2626 nvme_fc_delete_hw_io_queues(ctrl);
2627 nvme_fc_free_io_queues(ctrl);
2628 }
2629
2630 __nvme_fc_delete_hw_queue(ctrl, &ctrl->queues[0], 0);
2631 nvme_fc_free_queue(&ctrl->queues[0]);
2632}
2633
2634static void
2635nvme_fc_delete_ctrl_work(struct work_struct *work)
2636{
2637 struct nvme_fc_ctrl *ctrl =
2638 container_of(work, struct nvme_fc_ctrl, delete_work);
2639
Christoph Hellwigd86c4d82017-06-15 15:41:08 +02002640 cancel_work_sync(&ctrl->ctrl.reset_work);
James Smart61bff8e2017-04-23 08:30:08 -07002641 cancel_delayed_work_sync(&ctrl->connect_work);
Sagi Grimbergd09f2b42017-07-02 10:56:43 +03002642 nvme_stop_ctrl(&ctrl->ctrl);
2643 nvme_remove_namespaces(&ctrl->ctrl);
James Smart61bff8e2017-04-23 08:30:08 -07002644 /*
2645 * kill the association on the link side. this will block
2646 * waiting for io to terminate
2647 */
2648 nvme_fc_delete_association(ctrl);
2649
2650 /*
2651 * tear down the controller
James Smarta5321aa2017-05-15 17:10:18 -07002652 * After the last reference on the nvme ctrl is removed,
2653 * the transport nvme_fc_nvme_ctrl_freed() callback will be
2654 * invoked. From there, the transport will tear down it's
2655 * logical queues and association.
James Smart61bff8e2017-04-23 08:30:08 -07002656 */
2657 nvme_uninit_ctrl(&ctrl->ctrl);
2658
2659 nvme_put_ctrl(&ctrl->ctrl);
2660}
2661
James Smart5bbecdb2017-05-15 17:10:16 -07002662static bool
2663__nvme_fc_schedule_delete_work(struct nvme_fc_ctrl *ctrl)
2664{
2665 if (!nvme_change_ctrl_state(&ctrl->ctrl, NVME_CTRL_DELETING))
2666 return true;
2667
Sagi Grimberg9a6327d2017-06-07 20:31:55 +02002668 if (!queue_work(nvme_wq, &ctrl->delete_work))
James Smart5bbecdb2017-05-15 17:10:16 -07002669 return true;
2670
2671 return false;
2672}
2673
James Smart61bff8e2017-04-23 08:30:08 -07002674static int
2675__nvme_fc_del_ctrl(struct nvme_fc_ctrl *ctrl)
2676{
James Smart5bbecdb2017-05-15 17:10:16 -07002677 return __nvme_fc_schedule_delete_work(ctrl) ? -EBUSY : 0;
James Smart61bff8e2017-04-23 08:30:08 -07002678}
2679
2680/*
2681 * Request from nvme core layer to delete the controller
2682 */
2683static int
2684nvme_fc_del_nvme_ctrl(struct nvme_ctrl *nctrl)
2685{
2686 struct nvme_fc_ctrl *ctrl = to_fc_ctrl(nctrl);
2687 int ret;
2688
2689 if (!kref_get_unless_zero(&ctrl->ctrl.kref))
2690 return -EBUSY;
2691
2692 ret = __nvme_fc_del_ctrl(ctrl);
2693
2694 if (!ret)
Sagi Grimberg9a6327d2017-06-07 20:31:55 +02002695 flush_workqueue(nvme_wq);
James Smart61bff8e2017-04-23 08:30:08 -07002696
2697 nvme_put_ctrl(&ctrl->ctrl);
2698
2699 return ret;
2700}
2701
2702static void
James Smart5bbecdb2017-05-15 17:10:16 -07002703nvme_fc_reconnect_or_delete(struct nvme_fc_ctrl *ctrl, int status)
2704{
2705 /* If we are resetting/deleting then do nothing */
2706 if (ctrl->ctrl.state != NVME_CTRL_RECONNECTING) {
2707 WARN_ON_ONCE(ctrl->ctrl.state == NVME_CTRL_NEW ||
2708 ctrl->ctrl.state == NVME_CTRL_LIVE);
2709 return;
2710 }
2711
James Smart589ff772017-05-15 17:10:19 -07002712 dev_info(ctrl->ctrl.device,
James Smart5bbecdb2017-05-15 17:10:16 -07002713 "NVME-FC{%d}: reset: Reconnect attempt failed (%d)\n",
2714 ctrl->cnum, status);
2715
2716 if (nvmf_should_reconnect(&ctrl->ctrl)) {
2717 dev_info(ctrl->ctrl.device,
2718 "NVME-FC{%d}: Reconnect attempt in %d seconds.\n",
2719 ctrl->cnum, ctrl->ctrl.opts->reconnect_delay);
Sagi Grimberg9a6327d2017-06-07 20:31:55 +02002720 queue_delayed_work(nvme_wq, &ctrl->connect_work,
James Smart5bbecdb2017-05-15 17:10:16 -07002721 ctrl->ctrl.opts->reconnect_delay * HZ);
2722 } else {
James Smart589ff772017-05-15 17:10:19 -07002723 dev_warn(ctrl->ctrl.device,
James Smart5bbecdb2017-05-15 17:10:16 -07002724 "NVME-FC{%d}: Max reconnect attempts (%d) "
2725 "reached. Removing controller\n",
Sagi Grimbergfdf9dfa2017-05-04 13:33:15 +03002726 ctrl->cnum, ctrl->ctrl.nr_reconnects);
James Smart5bbecdb2017-05-15 17:10:16 -07002727 WARN_ON(__nvme_fc_schedule_delete_work(ctrl));
2728 }
2729}
2730
2731static void
James Smart61bff8e2017-04-23 08:30:08 -07002732nvme_fc_reset_ctrl_work(struct work_struct *work)
2733{
2734 struct nvme_fc_ctrl *ctrl =
Christoph Hellwigd86c4d82017-06-15 15:41:08 +02002735 container_of(work, struct nvme_fc_ctrl, ctrl.reset_work);
James Smart61bff8e2017-04-23 08:30:08 -07002736 int ret;
2737
Sagi Grimbergd09f2b42017-07-02 10:56:43 +03002738 nvme_stop_ctrl(&ctrl->ctrl);
James Smart61bff8e2017-04-23 08:30:08 -07002739 /* will block will waiting for io to terminate */
2740 nvme_fc_delete_association(ctrl);
2741
2742 ret = nvme_fc_create_association(ctrl);
James Smart5bbecdb2017-05-15 17:10:16 -07002743 if (ret)
2744 nvme_fc_reconnect_or_delete(ctrl, ret);
2745 else
James Smart61bff8e2017-04-23 08:30:08 -07002746 dev_info(ctrl->ctrl.device,
2747 "NVME-FC{%d}: controller reset complete\n", ctrl->cnum);
2748}
2749
James Smart61bff8e2017-04-23 08:30:08 -07002750static const struct nvme_ctrl_ops nvme_fc_ctrl_ops = {
2751 .name = "fc",
2752 .module = THIS_MODULE,
Christoph Hellwigd3d5b872017-05-20 15:14:44 +02002753 .flags = NVME_F_FABRICS,
James Smart61bff8e2017-04-23 08:30:08 -07002754 .reg_read32 = nvmf_reg_read32,
2755 .reg_read64 = nvmf_reg_read64,
2756 .reg_write32 = nvmf_reg_write32,
James Smart61bff8e2017-04-23 08:30:08 -07002757 .free_ctrl = nvme_fc_nvme_ctrl_freed,
2758 .submit_async_event = nvme_fc_submit_async_event,
2759 .delete_ctrl = nvme_fc_del_nvme_ctrl,
James Smart61bff8e2017-04-23 08:30:08 -07002760 .get_address = nvmf_get_address,
Sagi Grimberg31b84462017-10-11 12:53:07 +03002761 .reinit_request = nvme_fc_reinit_request,
James Smart61bff8e2017-04-23 08:30:08 -07002762};
2763
2764static void
2765nvme_fc_connect_ctrl_work(struct work_struct *work)
2766{
2767 int ret;
2768
2769 struct nvme_fc_ctrl *ctrl =
2770 container_of(to_delayed_work(work),
2771 struct nvme_fc_ctrl, connect_work);
2772
2773 ret = nvme_fc_create_association(ctrl);
James Smart5bbecdb2017-05-15 17:10:16 -07002774 if (ret)
2775 nvme_fc_reconnect_or_delete(ctrl, ret);
2776 else
James Smart61bff8e2017-04-23 08:30:08 -07002777 dev_info(ctrl->ctrl.device,
2778 "NVME-FC{%d}: controller reconnect complete\n",
2779 ctrl->cnum);
2780}
2781
2782
2783static const struct blk_mq_ops nvme_fc_admin_mq_ops = {
2784 .queue_rq = nvme_fc_queue_rq,
2785 .complete = nvme_fc_complete_rq,
Christoph Hellwig76f983c2017-06-13 09:15:20 +02002786 .init_request = nvme_fc_init_request,
James Smart61bff8e2017-04-23 08:30:08 -07002787 .exit_request = nvme_fc_exit_request,
James Smart61bff8e2017-04-23 08:30:08 -07002788 .init_hctx = nvme_fc_init_admin_hctx,
2789 .timeout = nvme_fc_timeout,
2790};
2791
James Smarte3994412016-12-02 00:28:42 -08002792
2793static struct nvme_ctrl *
James Smart61bff8e2017-04-23 08:30:08 -07002794nvme_fc_init_ctrl(struct device *dev, struct nvmf_ctrl_options *opts,
James Smarte3994412016-12-02 00:28:42 -08002795 struct nvme_fc_lport *lport, struct nvme_fc_rport *rport)
2796{
2797 struct nvme_fc_ctrl *ctrl;
2798 unsigned long flags;
2799 int ret, idx;
James Smarte3994412016-12-02 00:28:42 -08002800
James Smart85e6a6a2017-05-05 16:13:15 -07002801 if (!(rport->remoteport.port_role &
2802 (FC_PORT_ROLE_NVME_DISCOVERY | FC_PORT_ROLE_NVME_TARGET))) {
2803 ret = -EBADR;
2804 goto out_fail;
2805 }
2806
James Smarte3994412016-12-02 00:28:42 -08002807 ctrl = kzalloc(sizeof(*ctrl), GFP_KERNEL);
2808 if (!ctrl) {
2809 ret = -ENOMEM;
2810 goto out_fail;
2811 }
2812
2813 idx = ida_simple_get(&nvme_fc_ctrl_cnt, 0, 0, GFP_KERNEL);
2814 if (idx < 0) {
2815 ret = -ENOSPC;
2816 goto out_free_ctrl;
2817 }
2818
2819 ctrl->ctrl.opts = opts;
2820 INIT_LIST_HEAD(&ctrl->ctrl_list);
James Smarte3994412016-12-02 00:28:42 -08002821 ctrl->lport = lport;
2822 ctrl->rport = rport;
2823 ctrl->dev = lport->dev;
James Smarte3994412016-12-02 00:28:42 -08002824 ctrl->cnum = idx;
2825
James Smarte3994412016-12-02 00:28:42 -08002826 get_device(ctrl->dev);
2827 kref_init(&ctrl->ref);
2828
James Smart61bff8e2017-04-23 08:30:08 -07002829 INIT_WORK(&ctrl->delete_work, nvme_fc_delete_ctrl_work);
Christoph Hellwigd86c4d82017-06-15 15:41:08 +02002830 INIT_WORK(&ctrl->ctrl.reset_work, nvme_fc_reset_ctrl_work);
James Smart61bff8e2017-04-23 08:30:08 -07002831 INIT_DELAYED_WORK(&ctrl->connect_work, nvme_fc_connect_ctrl_work);
James Smarte3994412016-12-02 00:28:42 -08002832 spin_lock_init(&ctrl->lock);
2833
2834 /* io queue count */
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03002835 ctrl->ctrl.queue_count = min_t(unsigned int,
James Smarte3994412016-12-02 00:28:42 -08002836 opts->nr_io_queues,
2837 lport->ops->max_hw_queues);
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03002838 ctrl->ctrl.queue_count++; /* +1 for admin queue */
James Smarte3994412016-12-02 00:28:42 -08002839
2840 ctrl->ctrl.sqsize = opts->queue_size - 1;
2841 ctrl->ctrl.kato = opts->kato;
2842
2843 ret = -ENOMEM;
Sagi Grimbergd858e5f2017-04-24 10:58:29 +03002844 ctrl->queues = kcalloc(ctrl->ctrl.queue_count,
2845 sizeof(struct nvme_fc_queue), GFP_KERNEL);
James Smarte3994412016-12-02 00:28:42 -08002846 if (!ctrl->queues)
James Smart61bff8e2017-04-23 08:30:08 -07002847 goto out_free_ida;
James Smarte3994412016-12-02 00:28:42 -08002848
James Smart61bff8e2017-04-23 08:30:08 -07002849 memset(&ctrl->admin_tag_set, 0, sizeof(ctrl->admin_tag_set));
2850 ctrl->admin_tag_set.ops = &nvme_fc_admin_mq_ops;
2851 ctrl->admin_tag_set.queue_depth = NVME_FC_AQ_BLKMQ_DEPTH;
2852 ctrl->admin_tag_set.reserved_tags = 2; /* fabric connect + Keep-Alive */
2853 ctrl->admin_tag_set.numa_node = NUMA_NO_NODE;
2854 ctrl->admin_tag_set.cmd_size = sizeof(struct nvme_fc_fcp_op) +
2855 (SG_CHUNK_SIZE *
2856 sizeof(struct scatterlist)) +
2857 ctrl->lport->ops->fcprqst_priv_sz;
2858 ctrl->admin_tag_set.driver_data = ctrl;
2859 ctrl->admin_tag_set.nr_hw_queues = 1;
2860 ctrl->admin_tag_set.timeout = ADMIN_TIMEOUT;
Israel Rukshin5a22e2b2017-10-18 12:38:25 +00002861 ctrl->admin_tag_set.flags = BLK_MQ_F_NO_SCHED;
James Smart61bff8e2017-04-23 08:30:08 -07002862
2863 ret = blk_mq_alloc_tag_set(&ctrl->admin_tag_set);
James Smarte3994412016-12-02 00:28:42 -08002864 if (ret)
James Smart61bff8e2017-04-23 08:30:08 -07002865 goto out_free_queues;
Sagi Grimberg34b6c232017-07-10 09:22:29 +03002866 ctrl->ctrl.admin_tagset = &ctrl->admin_tag_set;
James Smarte3994412016-12-02 00:28:42 -08002867
James Smart61bff8e2017-04-23 08:30:08 -07002868 ctrl->ctrl.admin_q = blk_mq_init_queue(&ctrl->admin_tag_set);
2869 if (IS_ERR(ctrl->ctrl.admin_q)) {
2870 ret = PTR_ERR(ctrl->ctrl.admin_q);
2871 goto out_free_admin_tag_set;
James Smarte3994412016-12-02 00:28:42 -08002872 }
2873
James Smart61bff8e2017-04-23 08:30:08 -07002874 /*
2875 * Would have been nice to init io queues tag set as well.
2876 * However, we require interaction from the controller
2877 * for max io queue count before we can do so.
2878 * Defer this to the connect path.
2879 */
James Smarte3994412016-12-02 00:28:42 -08002880
James Smart61bff8e2017-04-23 08:30:08 -07002881 ret = nvme_init_ctrl(&ctrl->ctrl, dev, &nvme_fc_ctrl_ops, 0);
James Smarte3994412016-12-02 00:28:42 -08002882 if (ret)
James Smart61bff8e2017-04-23 08:30:08 -07002883 goto out_cleanup_admin_q;
James Smarte3994412016-12-02 00:28:42 -08002884
James Smart61bff8e2017-04-23 08:30:08 -07002885 /* at this point, teardown path changes to ref counting on nvme ctrl */
James Smarte3994412016-12-02 00:28:42 -08002886
2887 spin_lock_irqsave(&rport->lock, flags);
2888 list_add_tail(&ctrl->ctrl_list, &rport->ctrl_list);
2889 spin_unlock_irqrestore(&rport->lock, flags);
2890
James Smart61bff8e2017-04-23 08:30:08 -07002891 ret = nvme_fc_create_association(ctrl);
2892 if (ret) {
Ewan D. Milnede414472017-04-24 13:24:16 -04002893 ctrl->ctrl.opts = NULL;
James Smart61bff8e2017-04-23 08:30:08 -07002894 /* initiate nvme ctrl ref counting teardown */
2895 nvme_uninit_ctrl(&ctrl->ctrl);
James Smart24b7f052017-06-05 15:03:42 -07002896 nvme_put_ctrl(&ctrl->ctrl);
James Smart61bff8e2017-04-23 08:30:08 -07002897
James Smart0b5a7662017-06-15 23:40:54 -07002898 /* Remove core ctrl ref. */
2899 nvme_put_ctrl(&ctrl->ctrl);
2900
James Smart61bff8e2017-04-23 08:30:08 -07002901 /* as we're past the point where we transition to the ref
2902 * counting teardown path, if we return a bad pointer here,
2903 * the calling routine, thinking it's prior to the
2904 * transition, will do an rport put. Since the teardown
2905 * path also does a rport put, we do an extra get here to
2906 * so proper order/teardown happens.
2907 */
2908 nvme_fc_rport_get(rport);
2909
2910 if (ret > 0)
2911 ret = -EIO;
2912 return ERR_PTR(ret);
James Smarte3994412016-12-02 00:28:42 -08002913 }
2914
James Smart2cb657b2017-05-15 17:10:22 -07002915 kref_get(&ctrl->ctrl.kref);
2916
James Smart61bff8e2017-04-23 08:30:08 -07002917 dev_info(ctrl->ctrl.device,
2918 "NVME-FC{%d}: new ctrl: NQN \"%s\"\n",
2919 ctrl->cnum, ctrl->ctrl.opts->subsysnqn);
2920
James Smarte3994412016-12-02 00:28:42 -08002921 return &ctrl->ctrl;
2922
James Smart61bff8e2017-04-23 08:30:08 -07002923out_cleanup_admin_q:
2924 blk_cleanup_queue(ctrl->ctrl.admin_q);
2925out_free_admin_tag_set:
2926 blk_mq_free_tag_set(&ctrl->admin_tag_set);
2927out_free_queues:
2928 kfree(ctrl->queues);
James Smarte3994412016-12-02 00:28:42 -08002929out_free_ida:
James Smart61bff8e2017-04-23 08:30:08 -07002930 put_device(ctrl->dev);
James Smarte3994412016-12-02 00:28:42 -08002931 ida_simple_remove(&nvme_fc_ctrl_cnt, ctrl->cnum);
2932out_free_ctrl:
2933 kfree(ctrl);
2934out_fail:
James Smarte3994412016-12-02 00:28:42 -08002935 /* exit via here doesn't follow ctlr ref points */
2936 return ERR_PTR(ret);
2937}
2938
James Smarte3994412016-12-02 00:28:42 -08002939
2940struct nvmet_fc_traddr {
2941 u64 nn;
2942 u64 pn;
2943};
2944
James Smarte3994412016-12-02 00:28:42 -08002945static int
James Smart9c5358e2017-07-17 13:59:39 -07002946__nvme_fc_parse_u64(substring_t *sstr, u64 *val)
James Smarte3994412016-12-02 00:28:42 -08002947{
James Smarte3994412016-12-02 00:28:42 -08002948 u64 token64;
2949
James Smart9c5358e2017-07-17 13:59:39 -07002950 if (match_u64(sstr, &token64))
2951 return -EINVAL;
2952 *val = token64;
James Smarte3994412016-12-02 00:28:42 -08002953
James Smart9c5358e2017-07-17 13:59:39 -07002954 return 0;
2955}
James Smarte3994412016-12-02 00:28:42 -08002956
James Smart9c5358e2017-07-17 13:59:39 -07002957/*
2958 * This routine validates and extracts the WWN's from the TRADDR string.
2959 * As kernel parsers need the 0x to determine number base, universally
2960 * build string to parse with 0x prefix before parsing name strings.
2961 */
2962static int
2963nvme_fc_parse_traddr(struct nvmet_fc_traddr *traddr, char *buf, size_t blen)
2964{
2965 char name[2 + NVME_FC_TRADDR_HEXNAMELEN + 1];
2966 substring_t wwn = { name, &name[sizeof(name)-1] };
2967 int nnoffset, pnoffset;
James Smarte3994412016-12-02 00:28:42 -08002968
James Smart9c5358e2017-07-17 13:59:39 -07002969 /* validate it string one of the 2 allowed formats */
2970 if (strnlen(buf, blen) == NVME_FC_TRADDR_MAXLENGTH &&
2971 !strncmp(buf, "nn-0x", NVME_FC_TRADDR_OXNNLEN) &&
2972 !strncmp(&buf[NVME_FC_TRADDR_MAX_PN_OFFSET],
2973 "pn-0x", NVME_FC_TRADDR_OXNNLEN)) {
2974 nnoffset = NVME_FC_TRADDR_OXNNLEN;
2975 pnoffset = NVME_FC_TRADDR_MAX_PN_OFFSET +
2976 NVME_FC_TRADDR_OXNNLEN;
2977 } else if ((strnlen(buf, blen) == NVME_FC_TRADDR_MINLENGTH &&
2978 !strncmp(buf, "nn-", NVME_FC_TRADDR_NNLEN) &&
2979 !strncmp(&buf[NVME_FC_TRADDR_MIN_PN_OFFSET],
2980 "pn-", NVME_FC_TRADDR_NNLEN))) {
2981 nnoffset = NVME_FC_TRADDR_NNLEN;
2982 pnoffset = NVME_FC_TRADDR_MIN_PN_OFFSET + NVME_FC_TRADDR_NNLEN;
2983 } else
2984 goto out_einval;
2985
2986 name[0] = '0';
2987 name[1] = 'x';
2988 name[2 + NVME_FC_TRADDR_HEXNAMELEN] = 0;
2989
2990 memcpy(&name[2], &buf[nnoffset], NVME_FC_TRADDR_HEXNAMELEN);
2991 if (__nvme_fc_parse_u64(&wwn, &traddr->nn))
2992 goto out_einval;
2993
2994 memcpy(&name[2], &buf[pnoffset], NVME_FC_TRADDR_HEXNAMELEN);
2995 if (__nvme_fc_parse_u64(&wwn, &traddr->pn))
2996 goto out_einval;
2997
2998 return 0;
2999
3000out_einval:
3001 pr_warn("%s: bad traddr string\n", __func__);
3002 return -EINVAL;
James Smarte3994412016-12-02 00:28:42 -08003003}
3004
3005static struct nvme_ctrl *
3006nvme_fc_create_ctrl(struct device *dev, struct nvmf_ctrl_options *opts)
3007{
3008 struct nvme_fc_lport *lport;
3009 struct nvme_fc_rport *rport;
James Smart61bff8e2017-04-23 08:30:08 -07003010 struct nvme_ctrl *ctrl;
James Smarte3994412016-12-02 00:28:42 -08003011 struct nvmet_fc_traddr laddr = { 0L, 0L };
3012 struct nvmet_fc_traddr raddr = { 0L, 0L };
3013 unsigned long flags;
3014 int ret;
3015
James Smart9c5358e2017-07-17 13:59:39 -07003016 ret = nvme_fc_parse_traddr(&raddr, opts->traddr, NVMF_TRADDR_SIZE);
James Smarte3994412016-12-02 00:28:42 -08003017 if (ret || !raddr.nn || !raddr.pn)
3018 return ERR_PTR(-EINVAL);
3019
James Smart9c5358e2017-07-17 13:59:39 -07003020 ret = nvme_fc_parse_traddr(&laddr, opts->host_traddr, NVMF_TRADDR_SIZE);
James Smarte3994412016-12-02 00:28:42 -08003021 if (ret || !laddr.nn || !laddr.pn)
3022 return ERR_PTR(-EINVAL);
3023
3024 /* find the host and remote ports to connect together */
3025 spin_lock_irqsave(&nvme_fc_lock, flags);
3026 list_for_each_entry(lport, &nvme_fc_lport_list, port_list) {
3027 if (lport->localport.node_name != laddr.nn ||
3028 lport->localport.port_name != laddr.pn)
3029 continue;
3030
3031 list_for_each_entry(rport, &lport->endp_list, endp_list) {
3032 if (rport->remoteport.node_name != raddr.nn ||
3033 rport->remoteport.port_name != raddr.pn)
3034 continue;
3035
3036 /* if fail to get reference fall through. Will error */
3037 if (!nvme_fc_rport_get(rport))
3038 break;
3039
3040 spin_unlock_irqrestore(&nvme_fc_lock, flags);
3041
James Smart61bff8e2017-04-23 08:30:08 -07003042 ctrl = nvme_fc_init_ctrl(dev, opts, lport, rport);
3043 if (IS_ERR(ctrl))
3044 nvme_fc_rport_put(rport);
3045 return ctrl;
James Smarte3994412016-12-02 00:28:42 -08003046 }
3047 }
3048 spin_unlock_irqrestore(&nvme_fc_lock, flags);
3049
3050 return ERR_PTR(-ENOENT);
3051}
3052
3053
3054static struct nvmf_transport_ops nvme_fc_transport = {
3055 .name = "fc",
3056 .required_opts = NVMF_OPT_TRADDR | NVMF_OPT_HOST_TRADDR,
James Smart5bbecdb2017-05-15 17:10:16 -07003057 .allowed_opts = NVMF_OPT_RECONNECT_DELAY | NVMF_OPT_CTRL_LOSS_TMO,
James Smarte3994412016-12-02 00:28:42 -08003058 .create_ctrl = nvme_fc_create_ctrl,
3059};
3060
3061static int __init nvme_fc_init_module(void)
3062{
James Smart5f568552017-09-14 10:38:41 -07003063 int ret;
3064
3065 /*
3066 * NOTE:
3067 * It is expected that in the future the kernel will combine
3068 * the FC-isms that are currently under scsi and now being
3069 * added to by NVME into a new standalone FC class. The SCSI
3070 * and NVME protocols and their devices would be under this
3071 * new FC class.
3072 *
3073 * As we need something to post FC-specific udev events to,
3074 * specifically for nvme probe events, start by creating the
3075 * new device class. When the new standalone FC class is
3076 * put in place, this code will move to a more generic
3077 * location for the class.
3078 */
3079 fc_class = class_create(THIS_MODULE, "fc");
3080 if (IS_ERR(fc_class)) {
3081 pr_err("couldn't register class fc\n");
3082 return PTR_ERR(fc_class);
3083 }
3084
3085 /*
3086 * Create a device for the FC-centric udev events
3087 */
3088 fc_udev_device = device_create(fc_class, NULL, MKDEV(0, 0), NULL,
3089 "fc_udev_device");
3090 if (IS_ERR(fc_udev_device)) {
3091 pr_err("couldn't create fc_udev device!\n");
3092 ret = PTR_ERR(fc_udev_device);
3093 goto out_destroy_class;
3094 }
3095
3096 ret = nvmf_register_transport(&nvme_fc_transport);
3097 if (ret)
3098 goto out_destroy_device;
3099
3100 return 0;
3101
3102out_destroy_device:
3103 device_destroy(fc_class, MKDEV(0, 0));
3104out_destroy_class:
3105 class_destroy(fc_class);
3106 return ret;
James Smarte3994412016-12-02 00:28:42 -08003107}
3108
3109static void __exit nvme_fc_exit_module(void)
3110{
3111 /* sanity check - all lports should be removed */
3112 if (!list_empty(&nvme_fc_lport_list))
3113 pr_warn("%s: localport list not empty\n", __func__);
3114
3115 nvmf_unregister_transport(&nvme_fc_transport);
3116
James Smarte3994412016-12-02 00:28:42 -08003117 ida_destroy(&nvme_fc_local_port_cnt);
3118 ida_destroy(&nvme_fc_ctrl_cnt);
James Smart5f568552017-09-14 10:38:41 -07003119
3120 device_destroy(fc_class, MKDEV(0, 0));
3121 class_destroy(fc_class);
James Smarte3994412016-12-02 00:28:42 -08003122}
3123
3124module_init(nvme_fc_init_module);
3125module_exit(nvme_fc_exit_module);
3126
3127MODULE_LICENSE("GPL v2");