2 * NVMe over Fabrics common host code.
3 * Copyright (c) 2015-2016 HGST, a Western Digital Company.
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms and conditions of the GNU General Public License,
7 * version 2, as published by the Free Software Foundation.
9 * This program is distributed in the hope it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
14 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
15 #include <linux/init.h>
16 #include <linux/miscdevice.h>
17 #include <linux/module.h>
18 #include <linux/mutex.h>
19 #include <linux/parser.h>
20 #include <linux/seq_file.h>
24 static LIST_HEAD(nvmf_transports
);
25 static DEFINE_MUTEX(nvmf_transports_mutex
);
27 static LIST_HEAD(nvmf_hosts
);
28 static DEFINE_MUTEX(nvmf_hosts_mutex
);
30 static struct nvmf_host
*nvmf_default_host
;
32 static struct nvmf_host
*__nvmf_host_find(const char *hostnqn
)
34 struct nvmf_host
*host
;
36 list_for_each_entry(host
, &nvmf_hosts
, list
) {
37 if (!strcmp(host
->nqn
, hostnqn
))
44 static struct nvmf_host
*nvmf_host_add(const char *hostnqn
)
46 struct nvmf_host
*host
;
48 mutex_lock(&nvmf_hosts_mutex
);
49 host
= __nvmf_host_find(hostnqn
);
55 host
= kmalloc(sizeof(*host
), GFP_KERNEL
);
59 kref_init(&host
->ref
);
60 memcpy(host
->nqn
, hostnqn
, NVMF_NQN_SIZE
);
61 uuid_be_gen(&host
->id
);
63 list_add_tail(&host
->list
, &nvmf_hosts
);
65 mutex_unlock(&nvmf_hosts_mutex
);
69 static struct nvmf_host
*nvmf_host_default(void)
71 struct nvmf_host
*host
;
73 host
= kmalloc(sizeof(*host
), GFP_KERNEL
);
77 kref_init(&host
->ref
);
78 uuid_be_gen(&host
->id
);
79 snprintf(host
->nqn
, NVMF_NQN_SIZE
,
80 "nqn.2014-08.org.nvmexpress:uuid:%pUb", &host
->id
);
82 mutex_lock(&nvmf_hosts_mutex
);
83 list_add_tail(&host
->list
, &nvmf_hosts
);
84 mutex_unlock(&nvmf_hosts_mutex
);
89 static void nvmf_host_destroy(struct kref
*ref
)
91 struct nvmf_host
*host
= container_of(ref
, struct nvmf_host
, ref
);
93 mutex_lock(&nvmf_hosts_mutex
);
94 list_del(&host
->list
);
95 mutex_unlock(&nvmf_hosts_mutex
);
100 static void nvmf_host_put(struct nvmf_host
*host
)
103 kref_put(&host
->ref
, nvmf_host_destroy
);
107 * nvmf_get_address() - Get address/port
108 * @ctrl: Host NVMe controller instance which we got the address
109 * @buf: OUTPUT parameter that will contain the address/port
112 int nvmf_get_address(struct nvme_ctrl
*ctrl
, char *buf
, int size
)
116 if (ctrl
->opts
->mask
& NVMF_OPT_TRADDR
)
117 len
+= snprintf(buf
, size
, "traddr=%s", ctrl
->opts
->traddr
);
118 if (ctrl
->opts
->mask
& NVMF_OPT_TRSVCID
)
119 len
+= snprintf(buf
+ len
, size
- len
, "%strsvcid=%s",
120 (len
) ? "," : "", ctrl
->opts
->trsvcid
);
121 if (ctrl
->opts
->mask
& NVMF_OPT_HOST_TRADDR
)
122 len
+= snprintf(buf
+ len
, size
- len
, "%shost_traddr=%s",
123 (len
) ? "," : "", ctrl
->opts
->host_traddr
);
124 len
+= snprintf(buf
+ len
, size
- len
, "\n");
128 EXPORT_SYMBOL_GPL(nvmf_get_address
);
131 * nvmf_get_subsysnqn() - Get subsystem NQN
132 * @ctrl: Host NVMe controller instance which we got the NQN
134 const char *nvmf_get_subsysnqn(struct nvme_ctrl
*ctrl
)
136 return ctrl
->opts
->subsysnqn
;
138 EXPORT_SYMBOL_GPL(nvmf_get_subsysnqn
);
141 * nvmf_reg_read32() - NVMe Fabrics "Property Get" API function.
142 * @ctrl: Host NVMe controller instance maintaining the admin
143 * queue used to submit the property read command to
144 * the allocated NVMe controller resource on the target system.
145 * @off: Starting offset value of the targeted property
146 * register (see the fabrics section of the NVMe standard).
147 * @val: OUTPUT parameter that will contain the value of
148 * the property after a successful read.
150 * Used by the host system to retrieve a 32-bit capsule property value
151 * from an NVMe controller on the target system.
153 * ("Capsule property" is an "PCIe register concept" applied to the
154 * NVMe fabrics space.)
158 * > 0: NVMe error status code
159 * < 0: Linux errno error code
161 int nvmf_reg_read32(struct nvme_ctrl
*ctrl
, u32 off
, u32
*val
)
163 struct nvme_command cmd
;
164 struct nvme_completion cqe
;
167 memset(&cmd
, 0, sizeof(cmd
));
168 cmd
.prop_get
.opcode
= nvme_fabrics_command
;
169 cmd
.prop_get
.fctype
= nvme_fabrics_type_property_get
;
170 cmd
.prop_get
.offset
= cpu_to_le32(off
);
172 ret
= __nvme_submit_sync_cmd(ctrl
->admin_q
, &cmd
, &cqe
, NULL
, 0, 0,
176 *val
= le64_to_cpu(cqe
.result64
);
177 if (unlikely(ret
!= 0))
178 dev_err(ctrl
->device
,
179 "Property Get error: %d, offset %#x\n",
180 ret
> 0 ? ret
& ~NVME_SC_DNR
: ret
, off
);
184 EXPORT_SYMBOL_GPL(nvmf_reg_read32
);
187 * nvmf_reg_read64() - NVMe Fabrics "Property Get" API function.
188 * @ctrl: Host NVMe controller instance maintaining the admin
189 * queue used to submit the property read command to
190 * the allocated controller resource on the target system.
191 * @off: Starting offset value of the targeted property
192 * register (see the fabrics section of the NVMe standard).
193 * @val: OUTPUT parameter that will contain the value of
194 * the property after a successful read.
196 * Used by the host system to retrieve a 64-bit capsule property value
197 * from an NVMe controller on the target system.
199 * ("Capsule property" is an "PCIe register concept" applied to the
200 * NVMe fabrics space.)
204 * > 0: NVMe error status code
205 * < 0: Linux errno error code
207 int nvmf_reg_read64(struct nvme_ctrl
*ctrl
, u32 off
, u64
*val
)
209 struct nvme_command cmd
;
210 struct nvme_completion cqe
;
213 memset(&cmd
, 0, sizeof(cmd
));
214 cmd
.prop_get
.opcode
= nvme_fabrics_command
;
215 cmd
.prop_get
.fctype
= nvme_fabrics_type_property_get
;
216 cmd
.prop_get
.attrib
= 1;
217 cmd
.prop_get
.offset
= cpu_to_le32(off
);
219 ret
= __nvme_submit_sync_cmd(ctrl
->admin_q
, &cmd
, &cqe
, NULL
, 0, 0,
223 *val
= le64_to_cpu(cqe
.result64
);
224 if (unlikely(ret
!= 0))
225 dev_err(ctrl
->device
,
226 "Property Get error: %d, offset %#x\n",
227 ret
> 0 ? ret
& ~NVME_SC_DNR
: ret
, off
);
230 EXPORT_SYMBOL_GPL(nvmf_reg_read64
);
233 * nvmf_reg_write32() - NVMe Fabrics "Property Write" API function.
234 * @ctrl: Host NVMe controller instance maintaining the admin
235 * queue used to submit the property read command to
236 * the allocated NVMe controller resource on the target system.
237 * @off: Starting offset value of the targeted property
238 * register (see the fabrics section of the NVMe standard).
239 * @val: Input parameter that contains the value to be
240 * written to the property.
242 * Used by the NVMe host system to write a 32-bit capsule property value
243 * to an NVMe controller on the target system.
245 * ("Capsule property" is an "PCIe register concept" applied to the
246 * NVMe fabrics space.)
249 * 0: successful write
250 * > 0: NVMe error status code
251 * < 0: Linux errno error code
253 int nvmf_reg_write32(struct nvme_ctrl
*ctrl
, u32 off
, u32 val
)
255 struct nvme_command cmd
;
258 memset(&cmd
, 0, sizeof(cmd
));
259 cmd
.prop_set
.opcode
= nvme_fabrics_command
;
260 cmd
.prop_set
.fctype
= nvme_fabrics_type_property_set
;
261 cmd
.prop_set
.attrib
= 0;
262 cmd
.prop_set
.offset
= cpu_to_le32(off
);
263 cmd
.prop_set
.value
= cpu_to_le64(val
);
265 ret
= __nvme_submit_sync_cmd(ctrl
->admin_q
, &cmd
, NULL
, NULL
, 0, 0,
268 dev_err(ctrl
->device
,
269 "Property Set error: %d, offset %#x\n",
270 ret
> 0 ? ret
& ~NVME_SC_DNR
: ret
, off
);
273 EXPORT_SYMBOL_GPL(nvmf_reg_write32
);
276 * nvmf_log_connect_error() - Error-parsing-diagnostic print
277 * out function for connect() errors.
279 * @ctrl: the specific /dev/nvmeX device that had the error.
281 * @errval: Error code to be decoded in a more human-friendly
284 * @offset: For use with the NVMe error code NVME_SC_CONNECT_INVALID_PARAM.
286 * @cmd: This is the SQE portion of a submission capsule.
288 * @data: This is the "Data" portion of a submission capsule.
290 static void nvmf_log_connect_error(struct nvme_ctrl
*ctrl
,
291 int errval
, int offset
, struct nvme_command
*cmd
,
292 struct nvmf_connect_data
*data
)
294 int err_sctype
= errval
& (~NVME_SC_DNR
);
296 switch (err_sctype
) {
298 case (NVME_SC_CONNECT_INVALID_PARAM
):
300 char *inv_data
= "Connect Invalid Data Parameter";
302 switch (offset
& 0xffff) {
303 case (offsetof(struct nvmf_connect_data
, cntlid
)):
304 dev_err(ctrl
->device
,
306 inv_data
, data
->cntlid
);
308 case (offsetof(struct nvmf_connect_data
, hostnqn
)):
309 dev_err(ctrl
->device
,
310 "%s, hostnqn \"%s\"\n",
311 inv_data
, data
->hostnqn
);
313 case (offsetof(struct nvmf_connect_data
, subsysnqn
)):
314 dev_err(ctrl
->device
,
315 "%s, subsysnqn \"%s\"\n",
316 inv_data
, data
->subsysnqn
);
319 dev_err(ctrl
->device
,
320 "%s, starting byte offset: %d\n",
321 inv_data
, offset
& 0xffff);
325 char *inv_sqe
= "Connect Invalid SQE Parameter";
328 case (offsetof(struct nvmf_connect_command
, qid
)):
329 dev_err(ctrl
->device
,
331 inv_sqe
, cmd
->connect
.qid
);
334 dev_err(ctrl
->device
,
335 "%s, starting byte offset: %d\n",
341 dev_err(ctrl
->device
,
342 "Connect command failed, error wo/DNR bit: %d\n",
345 } /* switch (err_sctype) */
349 * nvmf_connect_admin_queue() - NVMe Fabrics Admin Queue "Connect"
351 * @ctrl: Host nvme controller instance used to request
352 * a new NVMe controller allocation on the target
353 * system and establish an NVMe Admin connection to
356 * This function enables an NVMe host device to request a new allocation of
357 * an NVMe controller resource on a target system as well establish a
358 * fabrics-protocol connection of the NVMe Admin queue between the
359 * host system device and the allocated NVMe controller on the
360 * target system via a NVMe Fabrics "Connect" command.
364 * > 0: NVMe error status code
365 * < 0: Linux errno error code
368 int nvmf_connect_admin_queue(struct nvme_ctrl
*ctrl
)
370 struct nvme_command cmd
;
371 struct nvme_completion cqe
;
372 struct nvmf_connect_data
*data
;
375 memset(&cmd
, 0, sizeof(cmd
));
376 cmd
.connect
.opcode
= nvme_fabrics_command
;
377 cmd
.connect
.fctype
= nvme_fabrics_type_connect
;
381 * fabrics spec sets a minimum of depth 32 for admin queue,
382 * so set the queue with this depth always until
383 * justification otherwise.
385 cmd
.connect
.sqsize
= cpu_to_le16(NVMF_AQ_DEPTH
- 1);
388 * Set keep-alive timeout in seconds granularity (ms * 1000)
389 * and add a grace period for controller kato enforcement
391 cmd
.connect
.kato
= ctrl
->opts
->discovery_nqn
? 0 :
392 cpu_to_le32((ctrl
->kato
+ NVME_KATO_GRACE
) * 1000);
394 data
= kzalloc(sizeof(*data
), GFP_KERNEL
);
398 memcpy(&data
->hostid
, &ctrl
->opts
->host
->id
, sizeof(uuid_be
));
399 data
->cntlid
= cpu_to_le16(0xffff);
400 strncpy(data
->subsysnqn
, ctrl
->opts
->subsysnqn
, NVMF_NQN_SIZE
);
401 strncpy(data
->hostnqn
, ctrl
->opts
->host
->nqn
, NVMF_NQN_SIZE
);
403 ret
= __nvme_submit_sync_cmd(ctrl
->admin_q
, &cmd
, &cqe
,
404 data
, sizeof(*data
), 0, NVME_QID_ANY
, 1,
405 BLK_MQ_REQ_RESERVED
| BLK_MQ_REQ_NOWAIT
);
407 nvmf_log_connect_error(ctrl
, ret
, le32_to_cpu(cqe
.result
),
412 ctrl
->cntlid
= le16_to_cpu(cqe
.result16
);
418 EXPORT_SYMBOL_GPL(nvmf_connect_admin_queue
);
421 * nvmf_connect_io_queue() - NVMe Fabrics I/O Queue "Connect"
423 * @ctrl: Host nvme controller instance used to establish an
424 * NVMe I/O queue connection to the already allocated NVMe
425 * controller on the target system.
426 * @qid: NVMe I/O queue number for the new I/O connection between
427 * host and target (note qid == 0 is illegal as this is
428 * the Admin queue, per NVMe standard).
430 * This function issues a fabrics-protocol connection
431 * of a NVMe I/O queue (via NVMe Fabrics "Connect" command)
432 * between the host system device and the allocated NVMe controller
433 * on the target system.
437 * > 0: NVMe error status code
438 * < 0: Linux errno error code
440 int nvmf_connect_io_queue(struct nvme_ctrl
*ctrl
, u16 qid
)
442 struct nvme_command cmd
;
443 struct nvmf_connect_data
*data
;
444 struct nvme_completion cqe
;
447 memset(&cmd
, 0, sizeof(cmd
));
448 cmd
.connect
.opcode
= nvme_fabrics_command
;
449 cmd
.connect
.fctype
= nvme_fabrics_type_connect
;
450 cmd
.connect
.qid
= cpu_to_le16(qid
);
451 cmd
.connect
.sqsize
= cpu_to_le16(ctrl
->sqsize
);
453 data
= kzalloc(sizeof(*data
), GFP_KERNEL
);
457 memcpy(&data
->hostid
, &ctrl
->opts
->host
->id
, sizeof(uuid_be
));
458 data
->cntlid
= cpu_to_le16(ctrl
->cntlid
);
459 strncpy(data
->subsysnqn
, ctrl
->opts
->subsysnqn
, NVMF_NQN_SIZE
);
460 strncpy(data
->hostnqn
, ctrl
->opts
->host
->nqn
, NVMF_NQN_SIZE
);
462 ret
= __nvme_submit_sync_cmd(ctrl
->connect_q
, &cmd
, &cqe
,
463 data
, sizeof(*data
), 0, qid
, 1,
464 BLK_MQ_REQ_RESERVED
| BLK_MQ_REQ_NOWAIT
);
466 nvmf_log_connect_error(ctrl
, ret
, le32_to_cpu(cqe
.result
),
472 EXPORT_SYMBOL_GPL(nvmf_connect_io_queue
);
475 * nvmf_register_transport() - NVMe Fabrics Library registration function.
476 * @ops: Transport ops instance to be registered to the
477 * common fabrics library.
479 * API function that registers the type of specific transport fabric
480 * being implemented to the common NVMe fabrics library. Part of
481 * the overall init sequence of starting up a fabrics driver.
483 void nvmf_register_transport(struct nvmf_transport_ops
*ops
)
485 mutex_lock(&nvmf_transports_mutex
);
486 list_add_tail(&ops
->entry
, &nvmf_transports
);
487 mutex_unlock(&nvmf_transports_mutex
);
489 EXPORT_SYMBOL_GPL(nvmf_register_transport
);
492 * nvmf_unregister_transport() - NVMe Fabrics Library unregistration function.
493 * @ops: Transport ops instance to be unregistered from the
494 * common fabrics library.
496 * Fabrics API function that unregisters the type of specific transport
497 * fabric being implemented from the common NVMe fabrics library.
498 * Part of the overall exit sequence of unloading the implemented driver.
500 void nvmf_unregister_transport(struct nvmf_transport_ops
*ops
)
502 mutex_lock(&nvmf_transports_mutex
);
503 list_del(&ops
->entry
);
504 mutex_unlock(&nvmf_transports_mutex
);
506 EXPORT_SYMBOL_GPL(nvmf_unregister_transport
);
508 static struct nvmf_transport_ops
*nvmf_lookup_transport(
509 struct nvmf_ctrl_options
*opts
)
511 struct nvmf_transport_ops
*ops
;
513 lockdep_assert_held(&nvmf_transports_mutex
);
515 list_for_each_entry(ops
, &nvmf_transports
, entry
) {
516 if (strcmp(ops
->name
, opts
->transport
) == 0)
523 static const match_table_t opt_tokens
= {
524 { NVMF_OPT_TRANSPORT
, "transport=%s" },
525 { NVMF_OPT_TRADDR
, "traddr=%s" },
526 { NVMF_OPT_TRSVCID
, "trsvcid=%s" },
527 { NVMF_OPT_NQN
, "nqn=%s" },
528 { NVMF_OPT_QUEUE_SIZE
, "queue_size=%d" },
529 { NVMF_OPT_NR_IO_QUEUES
, "nr_io_queues=%d" },
530 { NVMF_OPT_RECONNECT_DELAY
, "reconnect_delay=%d" },
531 { NVMF_OPT_KATO
, "keep_alive_tmo=%d" },
532 { NVMF_OPT_HOSTNQN
, "hostnqn=%s" },
533 { NVMF_OPT_HOST_TRADDR
, "host_traddr=%s" },
534 { NVMF_OPT_ERR
, NULL
}
537 static int nvmf_parse_options(struct nvmf_ctrl_options
*opts
,
540 substring_t args
[MAX_OPT_ARGS
];
541 char *options
, *o
, *p
;
546 opts
->queue_size
= NVMF_DEF_QUEUE_SIZE
;
547 opts
->nr_io_queues
= num_online_cpus();
548 opts
->reconnect_delay
= NVMF_DEF_RECONNECT_DELAY
;
550 options
= o
= kstrdup(buf
, GFP_KERNEL
);
554 while ((p
= strsep(&o
, ",\n")) != NULL
) {
558 token
= match_token(p
, opt_tokens
, args
);
561 case NVMF_OPT_TRANSPORT
:
562 p
= match_strdup(args
);
570 p
= match_strdup(args
);
576 nqnlen
= strlen(opts
->subsysnqn
);
577 if (nqnlen
>= NVMF_NQN_SIZE
) {
578 pr_err("%s needs to be < %d bytes\n",
579 opts
->subsysnqn
, NVMF_NQN_SIZE
);
583 opts
->discovery_nqn
=
584 !(strcmp(opts
->subsysnqn
,
585 NVME_DISC_SUBSYS_NAME
));
586 if (opts
->discovery_nqn
) {
588 opts
->nr_io_queues
= 0;
591 case NVMF_OPT_TRADDR
:
592 p
= match_strdup(args
);
599 case NVMF_OPT_TRSVCID
:
600 p
= match_strdup(args
);
607 case NVMF_OPT_QUEUE_SIZE
:
608 if (match_int(args
, &token
)) {
612 if (token
< NVMF_MIN_QUEUE_SIZE
||
613 token
> NVMF_MAX_QUEUE_SIZE
) {
614 pr_err("Invalid queue_size %d\n", token
);
618 opts
->queue_size
= token
;
620 case NVMF_OPT_NR_IO_QUEUES
:
621 if (match_int(args
, &token
)) {
626 pr_err("Invalid number of IOQs %d\n", token
);
630 opts
->nr_io_queues
= min_t(unsigned int,
631 num_online_cpus(), token
);
634 if (match_int(args
, &token
)) {
639 if (opts
->discovery_nqn
) {
640 pr_err("Discovery controllers cannot accept keep_alive_tmo != 0\n");
646 pr_err("Invalid keep_alive_tmo %d\n", token
);
649 } else if (token
== 0) {
650 /* Allowed for debug */
651 pr_warn("keep_alive_tmo 0 won't execute keep alives!!!\n");
655 case NVMF_OPT_HOSTNQN
:
657 pr_err("hostnqn already user-assigned: %s\n",
662 p
= match_strdup(args
);
668 if (nqnlen
>= NVMF_NQN_SIZE
) {
669 pr_err("%s needs to be < %d bytes\n",
674 opts
->host
= nvmf_host_add(p
);
680 case NVMF_OPT_RECONNECT_DELAY
:
681 if (match_int(args
, &token
)) {
686 pr_err("Invalid reconnect_delay %d\n", token
);
690 opts
->reconnect_delay
= token
;
692 case NVMF_OPT_HOST_TRADDR
:
693 p
= match_strdup(args
);
698 opts
->host_traddr
= p
;
701 pr_warn("unknown parameter or missing value '%s' in ctrl creation request\n",
709 kref_get(&nvmf_default_host
->ref
);
710 opts
->host
= nvmf_default_host
;
714 if (!opts
->discovery_nqn
&& !opts
->kato
)
715 opts
->kato
= NVME_DEFAULT_KATO
;
720 static int nvmf_check_required_opts(struct nvmf_ctrl_options
*opts
,
721 unsigned int required_opts
)
723 if ((opts
->mask
& required_opts
) != required_opts
) {
726 for (i
= 0; i
< ARRAY_SIZE(opt_tokens
); i
++) {
727 if ((opt_tokens
[i
].token
& required_opts
) &&
728 !(opt_tokens
[i
].token
& opts
->mask
)) {
729 pr_warn("missing parameter '%s'\n",
730 opt_tokens
[i
].pattern
);
740 static int nvmf_check_allowed_opts(struct nvmf_ctrl_options
*opts
,
741 unsigned int allowed_opts
)
743 if (opts
->mask
& ~allowed_opts
) {
746 for (i
= 0; i
< ARRAY_SIZE(opt_tokens
); i
++) {
747 if (opt_tokens
[i
].token
& ~allowed_opts
) {
748 pr_warn("invalid parameter '%s'\n",
749 opt_tokens
[i
].pattern
);
759 void nvmf_free_options(struct nvmf_ctrl_options
*opts
)
761 nvmf_host_put(opts
->host
);
762 kfree(opts
->transport
);
764 kfree(opts
->trsvcid
);
765 kfree(opts
->subsysnqn
);
766 kfree(opts
->host_traddr
);
769 EXPORT_SYMBOL_GPL(nvmf_free_options
);
771 #define NVMF_REQUIRED_OPTS (NVMF_OPT_TRANSPORT | NVMF_OPT_NQN)
772 #define NVMF_ALLOWED_OPTS (NVMF_OPT_QUEUE_SIZE | NVMF_OPT_NR_IO_QUEUES | \
773 NVMF_OPT_KATO | NVMF_OPT_HOSTNQN)
775 static struct nvme_ctrl
*
776 nvmf_create_ctrl(struct device
*dev
, const char *buf
, size_t count
)
778 struct nvmf_ctrl_options
*opts
;
779 struct nvmf_transport_ops
*ops
;
780 struct nvme_ctrl
*ctrl
;
783 opts
= kzalloc(sizeof(*opts
), GFP_KERNEL
);
785 return ERR_PTR(-ENOMEM
);
787 ret
= nvmf_parse_options(opts
, buf
);
792 * Check the generic options first as we need a valid transport for
793 * the lookup below. Then clear the generic flags so that transport
794 * drivers don't have to care about them.
796 ret
= nvmf_check_required_opts(opts
, NVMF_REQUIRED_OPTS
);
799 opts
->mask
&= ~NVMF_REQUIRED_OPTS
;
801 mutex_lock(&nvmf_transports_mutex
);
802 ops
= nvmf_lookup_transport(opts
);
804 pr_info("no handler found for transport %s.\n",
810 ret
= nvmf_check_required_opts(opts
, ops
->required_opts
);
813 ret
= nvmf_check_allowed_opts(opts
, NVMF_ALLOWED_OPTS
|
814 ops
->allowed_opts
| ops
->required_opts
);
818 ctrl
= ops
->create_ctrl(dev
, opts
);
824 mutex_unlock(&nvmf_transports_mutex
);
828 mutex_unlock(&nvmf_transports_mutex
);
830 nvmf_host_put(opts
->host
);
835 static struct class *nvmf_class
;
836 static struct device
*nvmf_device
;
837 static DEFINE_MUTEX(nvmf_dev_mutex
);
839 static ssize_t
nvmf_dev_write(struct file
*file
, const char __user
*ubuf
,
840 size_t count
, loff_t
*pos
)
842 struct seq_file
*seq_file
= file
->private_data
;
843 struct nvme_ctrl
*ctrl
;
847 if (count
> PAGE_SIZE
)
850 buf
= memdup_user_nul(ubuf
, count
);
854 mutex_lock(&nvmf_dev_mutex
);
855 if (seq_file
->private) {
860 ctrl
= nvmf_create_ctrl(nvmf_device
, buf
, count
);
866 seq_file
->private = ctrl
;
869 mutex_unlock(&nvmf_dev_mutex
);
871 return ret
? ret
: count
;
874 static int nvmf_dev_show(struct seq_file
*seq_file
, void *private)
876 struct nvme_ctrl
*ctrl
;
879 mutex_lock(&nvmf_dev_mutex
);
880 ctrl
= seq_file
->private;
886 seq_printf(seq_file
, "instance=%d,cntlid=%d\n",
887 ctrl
->instance
, ctrl
->cntlid
);
890 mutex_unlock(&nvmf_dev_mutex
);
894 static int nvmf_dev_open(struct inode
*inode
, struct file
*file
)
897 * The miscdevice code initializes file->private_data, but doesn't
898 * make use of it later.
900 file
->private_data
= NULL
;
901 return single_open(file
, nvmf_dev_show
, NULL
);
904 static int nvmf_dev_release(struct inode
*inode
, struct file
*file
)
906 struct seq_file
*seq_file
= file
->private_data
;
907 struct nvme_ctrl
*ctrl
= seq_file
->private;
911 return single_release(inode
, file
);
914 static const struct file_operations nvmf_dev_fops
= {
915 .owner
= THIS_MODULE
,
916 .write
= nvmf_dev_write
,
918 .open
= nvmf_dev_open
,
919 .release
= nvmf_dev_release
,
922 static struct miscdevice nvmf_misc
= {
923 .minor
= MISC_DYNAMIC_MINOR
,
924 .name
= "nvme-fabrics",
925 .fops
= &nvmf_dev_fops
,
928 static int __init
nvmf_init(void)
932 nvmf_default_host
= nvmf_host_default();
933 if (!nvmf_default_host
)
936 nvmf_class
= class_create(THIS_MODULE
, "nvme-fabrics");
937 if (IS_ERR(nvmf_class
)) {
938 pr_err("couldn't register class nvme-fabrics\n");
939 ret
= PTR_ERR(nvmf_class
);
944 device_create(nvmf_class
, NULL
, MKDEV(0, 0), NULL
, "ctl");
945 if (IS_ERR(nvmf_device
)) {
946 pr_err("couldn't create nvme-fabris device!\n");
947 ret
= PTR_ERR(nvmf_device
);
948 goto out_destroy_class
;
951 ret
= misc_register(&nvmf_misc
);
953 pr_err("couldn't register misc device: %d\n", ret
);
954 goto out_destroy_device
;
960 device_destroy(nvmf_class
, MKDEV(0, 0));
962 class_destroy(nvmf_class
);
964 nvmf_host_put(nvmf_default_host
);
968 static void __exit
nvmf_exit(void)
970 misc_deregister(&nvmf_misc
);
971 device_destroy(nvmf_class
, MKDEV(0, 0));
972 class_destroy(nvmf_class
);
973 nvmf_host_put(nvmf_default_host
);
975 BUILD_BUG_ON(sizeof(struct nvmf_connect_command
) != 64);
976 BUILD_BUG_ON(sizeof(struct nvmf_property_get_command
) != 64);
977 BUILD_BUG_ON(sizeof(struct nvmf_property_set_command
) != 64);
978 BUILD_BUG_ON(sizeof(struct nvmf_connect_data
) != 1024);
981 MODULE_LICENSE("GPL v2");
983 module_init(nvmf_init
);
984 module_exit(nvmf_exit
);