xref: /spdk/lib/nvmf/nvmf.c (revision a1246d4df98c50190ddaa9be43d18e00f2a83c12)
1 /*   SPDX-License-Identifier: BSD-3-Clause
2  *   Copyright (C) 2016 Intel Corporation. All rights reserved.
3  *   Copyright (c) 2018-2019, 2021 Mellanox Technologies LTD. All rights reserved.
4  *   Copyright (c) 2021, 2023 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
5  */
6 
7 #include "spdk/stdinc.h"
8 
9 #include "spdk/bdev.h"
10 #include "spdk/bit_array.h"
11 #include "spdk/thread.h"
12 #include "spdk/nvmf.h"
13 #include "spdk/endian.h"
14 #include "spdk/string.h"
15 #include "spdk/log.h"
16 #include "spdk_internal/usdt.h"
17 
18 #include "nvmf_internal.h"
19 #include "transport.h"
20 
21 SPDK_LOG_REGISTER_COMPONENT(nvmf)
22 
23 #define SPDK_NVMF_DEFAULT_MAX_SUBSYSTEMS 1024
24 
25 static TAILQ_HEAD(, spdk_nvmf_tgt) g_nvmf_tgts = TAILQ_HEAD_INITIALIZER(g_nvmf_tgts);
26 
27 typedef void (*nvmf_qpair_disconnect_cpl)(void *ctx, int status);
28 
29 /* supplied to a single call to nvmf_qpair_disconnect */
30 struct nvmf_qpair_disconnect_ctx {
31 	struct spdk_nvmf_qpair *qpair;
32 	struct spdk_nvmf_ctrlr *ctrlr;
33 	nvmf_qpair_disconnect_cb cb_fn;
34 	struct spdk_thread *thread;
35 	void *ctx;
36 	uint16_t qid;
37 };
38 
39 /*
40  * There are several times when we need to iterate through the list of all qpairs and selectively delete them.
41  * In order to do this sequentially without overlap, we must provide a context to recover the next qpair from
42  * to enable calling nvmf_qpair_disconnect on the next desired qpair.
43  */
44 struct nvmf_qpair_disconnect_many_ctx {
45 	struct spdk_nvmf_subsystem *subsystem;
46 	struct spdk_nvmf_poll_group *group;
47 	spdk_nvmf_poll_group_mod_done cpl_fn;
48 	void *cpl_ctx;
49 };
50 
51 static struct spdk_nvmf_referral *
52 nvmf_tgt_find_referral(struct spdk_nvmf_tgt *tgt,
53 		       const struct spdk_nvme_transport_id *trid)
54 {
55 	struct spdk_nvmf_referral *referral;
56 
57 	TAILQ_FOREACH(referral, &tgt->referrals, link) {
58 		if (spdk_nvme_transport_id_compare(&referral->trid, trid) == 0) {
59 			return referral;
60 		}
61 	}
62 
63 	return NULL;
64 }
65 
66 int
67 spdk_nvmf_tgt_add_referral(struct spdk_nvmf_tgt *tgt,
68 			   struct spdk_nvme_transport_id *trid,
69 			   bool secure_channel)
70 {
71 	struct spdk_nvmf_referral *referral;
72 
73 	/* If the entry already exists, just ignore it. */
74 	if (nvmf_tgt_find_referral(tgt, trid)) {
75 		return 0;
76 	}
77 
78 	referral = calloc(1, sizeof(*referral));
79 	if (!referral) {
80 		SPDK_ERRLOG("Failed to allocate memory for a referral\n");
81 		return -ENOMEM;
82 	}
83 
84 	referral->entry.subtype = SPDK_NVMF_SUBTYPE_DISCOVERY;
85 	referral->entry.treq.secure_channel = secure_channel ?
86 					      SPDK_NVMF_TREQ_SECURE_CHANNEL_REQUIRED
87 					      : SPDK_NVMF_TREQ_SECURE_CHANNEL_NOT_REQUIRED;
88 	referral->entry.cntlid =
89 		0xffff; /* Discovery controller shall support the dynamic controller model */
90 	referral->entry.trtype = trid->trtype;
91 	referral->entry.adrfam = trid->adrfam;
92 	snprintf(referral->entry.subnqn, sizeof(referral->entry.subnqn), "%s", SPDK_NVMF_DISCOVERY_NQN);
93 	memcpy(&referral->trid, trid, sizeof(struct spdk_nvme_transport_id));
94 	spdk_strcpy_pad(referral->entry.trsvcid, trid->trsvcid, sizeof(referral->entry.trsvcid), ' ');
95 	spdk_strcpy_pad(referral->entry.traddr, trid->traddr, sizeof(referral->entry.traddr), ' ');
96 
97 	TAILQ_INSERT_HEAD(&tgt->referrals, referral, link);
98 	nvmf_update_discovery_log(tgt, NULL);
99 
100 	return 0;
101 }
102 
103 int
104 spdk_nvmf_tgt_remove_referral(struct spdk_nvmf_tgt *tgt,
105 			      struct spdk_nvme_transport_id *trid)
106 {
107 	struct spdk_nvmf_referral *referral;
108 
109 	referral = nvmf_tgt_find_referral(tgt, trid);
110 	if (referral == NULL) {
111 		return -ENOENT;
112 	}
113 
114 	TAILQ_REMOVE(&tgt->referrals, referral, link);
115 	nvmf_update_discovery_log(tgt, NULL);
116 
117 	free(referral);
118 
119 	return 0;
120 }
121 
122 static void
123 nvmf_qpair_set_state(struct spdk_nvmf_qpair *qpair,
124 		     enum spdk_nvmf_qpair_state state)
125 {
126 	assert(qpair != NULL);
127 	assert(qpair->group->thread == spdk_get_thread());
128 
129 	qpair->state = state;
130 }
131 
132 static int
133 nvmf_poll_group_poll(void *ctx)
134 {
135 	struct spdk_nvmf_poll_group *group = ctx;
136 	int rc;
137 	int count = 0;
138 	struct spdk_nvmf_transport_poll_group *tgroup;
139 
140 	TAILQ_FOREACH(tgroup, &group->tgroups, link) {
141 		rc = nvmf_transport_poll_group_poll(tgroup);
142 		if (rc < 0) {
143 			return SPDK_POLLER_BUSY;
144 		}
145 		count += rc;
146 	}
147 
148 	return count > 0 ? SPDK_POLLER_BUSY : SPDK_POLLER_IDLE;
149 }
150 
151 /*
152  * Reset and clean up the poll group (I/O channel code will actually free the
153  * group).
154  */
155 static void
156 nvmf_tgt_cleanup_poll_group(struct spdk_nvmf_poll_group *group)
157 {
158 	struct spdk_nvmf_transport_poll_group *tgroup, *tmp;
159 	struct spdk_nvmf_subsystem_poll_group *sgroup;
160 	uint32_t sid, nsid;
161 
162 	TAILQ_FOREACH_SAFE(tgroup, &group->tgroups, link, tmp) {
163 		TAILQ_REMOVE(&group->tgroups, tgroup, link);
164 		nvmf_transport_poll_group_destroy(tgroup);
165 	}
166 
167 	for (sid = 0; sid < group->num_sgroups; sid++) {
168 		sgroup = &group->sgroups[sid];
169 
170 		assert(sgroup != NULL);
171 
172 		for (nsid = 0; nsid < sgroup->num_ns; nsid++) {
173 			if (sgroup->ns_info[nsid].channel) {
174 				spdk_put_io_channel(sgroup->ns_info[nsid].channel);
175 				sgroup->ns_info[nsid].channel = NULL;
176 			}
177 		}
178 
179 		free(sgroup->ns_info);
180 	}
181 
182 	free(group->sgroups);
183 
184 	spdk_poller_unregister(&group->poller);
185 
186 	if (group->destroy_cb_fn) {
187 		group->destroy_cb_fn(group->destroy_cb_arg, 0);
188 	}
189 }
190 
191 /*
192  * Callback to unregister a poll group from the target, and clean up its state.
193  */
194 static void
195 nvmf_tgt_destroy_poll_group(void *io_device, void *ctx_buf)
196 {
197 	struct spdk_nvmf_tgt *tgt = io_device;
198 	struct spdk_nvmf_poll_group *group = ctx_buf;
199 
200 	SPDK_DTRACE_PROBE1_TICKS(nvmf_destroy_poll_group, spdk_thread_get_id(group->thread));
201 
202 	pthread_mutex_lock(&tgt->mutex);
203 	TAILQ_REMOVE(&tgt->poll_groups, group, link);
204 	tgt->num_poll_groups--;
205 	pthread_mutex_unlock(&tgt->mutex);
206 
207 	assert(!(tgt->state == NVMF_TGT_PAUSING || tgt->state == NVMF_TGT_RESUMING));
208 	nvmf_tgt_cleanup_poll_group(group);
209 }
210 
211 static int
212 nvmf_poll_group_add_transport(struct spdk_nvmf_poll_group *group,
213 			      struct spdk_nvmf_transport *transport)
214 {
215 	struct spdk_nvmf_transport_poll_group *tgroup;
216 
217 	TAILQ_FOREACH(tgroup, &group->tgroups, link) {
218 		if (tgroup->transport == transport) {
219 			/* Transport already in the poll group */
220 			return 0;
221 		}
222 	}
223 
224 	tgroup = nvmf_transport_poll_group_create(transport, group);
225 	if (!tgroup) {
226 		SPDK_ERRLOG("Unable to create poll group for transport\n");
227 		return -1;
228 	}
229 	SPDK_DTRACE_PROBE2_TICKS(nvmf_transport_poll_group_create, transport,
230 				 spdk_thread_get_id(group->thread));
231 
232 	tgroup->group = group;
233 	TAILQ_INSERT_TAIL(&group->tgroups, tgroup, link);
234 
235 	return 0;
236 }
237 
238 static int
239 nvmf_tgt_create_poll_group(void *io_device, void *ctx_buf)
240 {
241 	struct spdk_nvmf_tgt *tgt = io_device;
242 	struct spdk_nvmf_poll_group *group = ctx_buf;
243 	struct spdk_nvmf_transport *transport;
244 	struct spdk_nvmf_subsystem *subsystem;
245 	struct spdk_thread *thread = spdk_get_thread();
246 	int rc;
247 
248 	group->tgt = tgt;
249 	TAILQ_INIT(&group->tgroups);
250 	TAILQ_INIT(&group->qpairs);
251 	group->thread = thread;
252 	pthread_mutex_init(&group->mutex, NULL);
253 
254 	group->poller = SPDK_POLLER_REGISTER(nvmf_poll_group_poll, group, 0);
255 
256 	SPDK_DTRACE_PROBE1_TICKS(nvmf_create_poll_group, spdk_thread_get_id(thread));
257 
258 	TAILQ_FOREACH(transport, &tgt->transports, link) {
259 		rc = nvmf_poll_group_add_transport(group, transport);
260 		if (rc != 0) {
261 			nvmf_tgt_cleanup_poll_group(group);
262 			return rc;
263 		}
264 	}
265 
266 	group->num_sgroups = tgt->max_subsystems;
267 	group->sgroups = calloc(tgt->max_subsystems, sizeof(struct spdk_nvmf_subsystem_poll_group));
268 	if (!group->sgroups) {
269 		nvmf_tgt_cleanup_poll_group(group);
270 		return -ENOMEM;
271 	}
272 
273 	for (subsystem = spdk_nvmf_subsystem_get_first(tgt);
274 	     subsystem != NULL;
275 	     subsystem = spdk_nvmf_subsystem_get_next(subsystem)) {
276 		if (nvmf_poll_group_add_subsystem(group, subsystem, NULL, NULL) != 0) {
277 			nvmf_tgt_cleanup_poll_group(group);
278 			return -1;
279 		}
280 	}
281 
282 	pthread_mutex_lock(&tgt->mutex);
283 	tgt->num_poll_groups++;
284 	TAILQ_INSERT_TAIL(&tgt->poll_groups, group, link);
285 	pthread_mutex_unlock(&tgt->mutex);
286 
287 	return 0;
288 }
289 
290 static void
291 _nvmf_tgt_disconnect_qpairs(void *ctx)
292 {
293 	struct spdk_nvmf_qpair *qpair, *qpair_tmp;
294 	struct nvmf_qpair_disconnect_many_ctx *qpair_ctx = ctx;
295 	struct spdk_nvmf_poll_group *group = qpair_ctx->group;
296 	struct spdk_io_channel *ch;
297 	int rc;
298 
299 	TAILQ_FOREACH_SAFE(qpair, &group->qpairs, link, qpair_tmp) {
300 		rc = spdk_nvmf_qpair_disconnect(qpair, NULL, NULL);
301 		if (rc && rc != -EINPROGRESS) {
302 			break;
303 		}
304 	}
305 
306 	if (TAILQ_EMPTY(&group->qpairs)) {
307 		/* When the refcount from the channels reaches 0, nvmf_tgt_destroy_poll_group will be called. */
308 		ch = spdk_io_channel_from_ctx(group);
309 		spdk_put_io_channel(ch);
310 		free(qpair_ctx);
311 		return;
312 	}
313 
314 	/* Some qpairs are in process of being disconnected. Send a message and try to remove them again */
315 	spdk_thread_send_msg(spdk_get_thread(), _nvmf_tgt_disconnect_qpairs, ctx);
316 }
317 
318 static void
319 nvmf_tgt_destroy_poll_group_qpairs(struct spdk_nvmf_poll_group *group)
320 {
321 	struct nvmf_qpair_disconnect_many_ctx *ctx;
322 
323 	SPDK_DTRACE_PROBE1_TICKS(nvmf_destroy_poll_group_qpairs, spdk_thread_get_id(group->thread));
324 
325 	ctx = calloc(1, sizeof(struct nvmf_qpair_disconnect_many_ctx));
326 	if (!ctx) {
327 		SPDK_ERRLOG("Failed to allocate memory for destroy poll group ctx\n");
328 		return;
329 	}
330 
331 	ctx->group = group;
332 	_nvmf_tgt_disconnect_qpairs(ctx);
333 }
334 
335 struct spdk_nvmf_tgt *
336 spdk_nvmf_tgt_create(struct spdk_nvmf_target_opts *opts)
337 {
338 	struct spdk_nvmf_tgt *tgt, *tmp_tgt;
339 
340 	if (strnlen(opts->name, NVMF_TGT_NAME_MAX_LENGTH) == NVMF_TGT_NAME_MAX_LENGTH) {
341 		SPDK_ERRLOG("Provided target name exceeds the max length of %u.\n", NVMF_TGT_NAME_MAX_LENGTH);
342 		return NULL;
343 	}
344 
345 	TAILQ_FOREACH(tmp_tgt, &g_nvmf_tgts, link) {
346 		if (!strncmp(opts->name, tmp_tgt->name, NVMF_TGT_NAME_MAX_LENGTH)) {
347 			SPDK_ERRLOG("Provided target name must be unique.\n");
348 			return NULL;
349 		}
350 	}
351 
352 	tgt = calloc(1, sizeof(*tgt));
353 	if (!tgt) {
354 		return NULL;
355 	}
356 
357 	snprintf(tgt->name, NVMF_TGT_NAME_MAX_LENGTH, "%s", opts->name);
358 
359 	if (!opts || !opts->max_subsystems) {
360 		tgt->max_subsystems = SPDK_NVMF_DEFAULT_MAX_SUBSYSTEMS;
361 	} else {
362 		tgt->max_subsystems = opts->max_subsystems;
363 	}
364 
365 	if (!opts) {
366 		tgt->crdt[0] = 0;
367 		tgt->crdt[1] = 0;
368 		tgt->crdt[2] = 0;
369 	} else {
370 		tgt->crdt[0] = opts->crdt[0];
371 		tgt->crdt[1] = opts->crdt[1];
372 		tgt->crdt[2] = opts->crdt[2];
373 	}
374 
375 	if (!opts) {
376 		tgt->discovery_filter = SPDK_NVMF_TGT_DISCOVERY_MATCH_ANY;
377 	} else {
378 		tgt->discovery_filter = opts->discovery_filter;
379 	}
380 
381 	tgt->discovery_genctr = 0;
382 	TAILQ_INIT(&tgt->transports);
383 	TAILQ_INIT(&tgt->poll_groups);
384 	TAILQ_INIT(&tgt->referrals);
385 	tgt->num_poll_groups = 0;
386 
387 	tgt->subsystem_ids = spdk_bit_array_create(tgt->max_subsystems);
388 	if (tgt->subsystem_ids == NULL) {
389 		free(tgt);
390 		return NULL;
391 	}
392 
393 	RB_INIT(&tgt->subsystems);
394 
395 	pthread_mutex_init(&tgt->mutex, NULL);
396 
397 	spdk_io_device_register(tgt,
398 				nvmf_tgt_create_poll_group,
399 				nvmf_tgt_destroy_poll_group,
400 				sizeof(struct spdk_nvmf_poll_group),
401 				tgt->name);
402 
403 	tgt->state = NVMF_TGT_RUNNING;
404 
405 	TAILQ_INSERT_HEAD(&g_nvmf_tgts, tgt, link);
406 
407 	return tgt;
408 }
409 
410 static void
411 _nvmf_tgt_destroy_next_transport(void *ctx)
412 {
413 	struct spdk_nvmf_tgt *tgt = ctx;
414 	struct spdk_nvmf_transport *transport;
415 
416 	if (!TAILQ_EMPTY(&tgt->transports)) {
417 		transport = TAILQ_FIRST(&tgt->transports);
418 		TAILQ_REMOVE(&tgt->transports, transport, link);
419 		spdk_nvmf_transport_destroy(transport, _nvmf_tgt_destroy_next_transport, tgt);
420 	} else {
421 		spdk_nvmf_tgt_destroy_done_fn *destroy_cb_fn = tgt->destroy_cb_fn;
422 		void *destroy_cb_arg = tgt->destroy_cb_arg;
423 
424 		pthread_mutex_destroy(&tgt->mutex);
425 		free(tgt);
426 
427 		if (destroy_cb_fn) {
428 			destroy_cb_fn(destroy_cb_arg, 0);
429 		}
430 	}
431 }
432 
433 static void
434 nvmf_tgt_destroy_cb(void *io_device)
435 {
436 	struct spdk_nvmf_tgt *tgt = io_device;
437 	struct spdk_nvmf_subsystem *subsystem, *subsystem_next;
438 	int rc;
439 	struct spdk_nvmf_referral *referral;
440 
441 	while ((referral = TAILQ_FIRST(&tgt->referrals))) {
442 		TAILQ_REMOVE(&tgt->referrals, referral, link);
443 		free(referral);
444 	}
445 
446 	/* We will be freeing subsystems in this loop, so we always need to get the next one
447 	 * ahead of time, since we can't call get_next() on a subsystem that's been freed.
448 	 */
449 	for (subsystem = spdk_nvmf_subsystem_get_first(tgt),
450 	     subsystem_next = spdk_nvmf_subsystem_get_next(subsystem);
451 	     subsystem != NULL;
452 	     subsystem = subsystem_next,
453 	     subsystem_next = spdk_nvmf_subsystem_get_next(subsystem_next)) {
454 		nvmf_subsystem_remove_all_listeners(subsystem, true);
455 
456 		rc = spdk_nvmf_subsystem_destroy(subsystem, nvmf_tgt_destroy_cb, tgt);
457 		if (rc) {
458 			if (rc == -EINPROGRESS) {
459 				/* If rc is -EINPROGRESS, nvmf_tgt_destroy_cb will be called again when subsystem #i
460 				 * is destroyed, nvmf_tgt_destroy_cb will continue to destroy other subsystems if any */
461 				return;
462 			} else {
463 				SPDK_ERRLOG("Failed to destroy subsystem %s, rc %d\n", subsystem->subnqn, rc);
464 			}
465 		}
466 	}
467 	spdk_bit_array_free(&tgt->subsystem_ids);
468 	_nvmf_tgt_destroy_next_transport(tgt);
469 }
470 
471 void
472 spdk_nvmf_tgt_destroy(struct spdk_nvmf_tgt *tgt,
473 		      spdk_nvmf_tgt_destroy_done_fn cb_fn,
474 		      void *cb_arg)
475 {
476 	assert(!(tgt->state == NVMF_TGT_PAUSING || tgt->state == NVMF_TGT_RESUMING));
477 
478 	tgt->destroy_cb_fn = cb_fn;
479 	tgt->destroy_cb_arg = cb_arg;
480 
481 	TAILQ_REMOVE(&g_nvmf_tgts, tgt, link);
482 
483 	spdk_io_device_unregister(tgt, nvmf_tgt_destroy_cb);
484 }
485 
486 const char *
487 spdk_nvmf_tgt_get_name(struct spdk_nvmf_tgt *tgt)
488 {
489 	return tgt->name;
490 }
491 
492 struct spdk_nvmf_tgt *
493 spdk_nvmf_get_tgt(const char *name)
494 {
495 	struct spdk_nvmf_tgt *tgt;
496 	uint32_t num_targets = 0;
497 
498 	TAILQ_FOREACH(tgt, &g_nvmf_tgts, link) {
499 		if (name) {
500 			if (!strncmp(tgt->name, name, NVMF_TGT_NAME_MAX_LENGTH)) {
501 				return tgt;
502 			}
503 		}
504 		num_targets++;
505 	}
506 
507 	/*
508 	 * special case. If there is only one target and
509 	 * no name was specified, return the only available
510 	 * target. If there is more than one target, name must
511 	 * be specified.
512 	 */
513 	if (!name && num_targets == 1) {
514 		return TAILQ_FIRST(&g_nvmf_tgts);
515 	}
516 
517 	return NULL;
518 }
519 
520 struct spdk_nvmf_tgt *
521 spdk_nvmf_get_first_tgt(void)
522 {
523 	return TAILQ_FIRST(&g_nvmf_tgts);
524 }
525 
526 struct spdk_nvmf_tgt *
527 spdk_nvmf_get_next_tgt(struct spdk_nvmf_tgt *prev)
528 {
529 	return TAILQ_NEXT(prev, link);
530 }
531 
532 static void
533 nvmf_write_subsystem_config_json(struct spdk_json_write_ctx *w,
534 				 struct spdk_nvmf_subsystem *subsystem)
535 {
536 	struct spdk_nvmf_host *host;
537 	struct spdk_nvmf_subsystem_listener *listener;
538 	const struct spdk_nvme_transport_id *trid;
539 	struct spdk_nvmf_ns *ns;
540 	struct spdk_nvmf_ns_opts ns_opts;
541 	uint32_t max_namespaces;
542 	char uuid_str[SPDK_UUID_STRING_LEN];
543 	struct spdk_nvmf_transport *transport;
544 
545 	if (spdk_nvmf_subsystem_get_type(subsystem) != SPDK_NVMF_SUBTYPE_NVME) {
546 		return;
547 	}
548 
549 	/* { */
550 	spdk_json_write_object_begin(w);
551 	spdk_json_write_named_string(w, "method", "nvmf_create_subsystem");
552 
553 	/*     "params" : { */
554 	spdk_json_write_named_object_begin(w, "params");
555 	spdk_json_write_named_string(w, "nqn", spdk_nvmf_subsystem_get_nqn(subsystem));
556 	spdk_json_write_named_bool(w, "allow_any_host", spdk_nvmf_subsystem_get_allow_any_host(subsystem));
557 	spdk_json_write_named_string(w, "serial_number", spdk_nvmf_subsystem_get_sn(subsystem));
558 	spdk_json_write_named_string(w, "model_number", spdk_nvmf_subsystem_get_mn(subsystem));
559 
560 	max_namespaces = spdk_nvmf_subsystem_get_max_namespaces(subsystem);
561 	if (max_namespaces != 0) {
562 		spdk_json_write_named_uint32(w, "max_namespaces", max_namespaces);
563 	}
564 
565 	spdk_json_write_named_uint32(w, "min_cntlid", spdk_nvmf_subsystem_get_min_cntlid(subsystem));
566 	spdk_json_write_named_uint32(w, "max_cntlid", spdk_nvmf_subsystem_get_max_cntlid(subsystem));
567 	spdk_json_write_named_bool(w, "ana_reporting", nvmf_subsystem_get_ana_reporting(subsystem));
568 
569 	/*     } "params" */
570 	spdk_json_write_object_end(w);
571 
572 	/* } */
573 	spdk_json_write_object_end(w);
574 
575 	for (host = spdk_nvmf_subsystem_get_first_host(subsystem); host != NULL;
576 	     host = spdk_nvmf_subsystem_get_next_host(subsystem, host)) {
577 
578 		spdk_json_write_object_begin(w);
579 		spdk_json_write_named_string(w, "method", "nvmf_subsystem_add_host");
580 
581 		/*     "params" : { */
582 		spdk_json_write_named_object_begin(w, "params");
583 
584 		spdk_json_write_named_string(w, "nqn", spdk_nvmf_subsystem_get_nqn(subsystem));
585 		spdk_json_write_named_string(w, "host", spdk_nvmf_host_get_nqn(host));
586 
587 		TAILQ_FOREACH(transport, &subsystem->tgt->transports, link) {
588 			if (transport->ops->subsystem_dump_host != NULL) {
589 				transport->ops->subsystem_dump_host(transport, subsystem, host->nqn, w);
590 			}
591 		}
592 
593 		/*     } "params" */
594 		spdk_json_write_object_end(w);
595 
596 		/* } */
597 		spdk_json_write_object_end(w);
598 	}
599 
600 	for (ns = spdk_nvmf_subsystem_get_first_ns(subsystem); ns != NULL;
601 	     ns = spdk_nvmf_subsystem_get_next_ns(subsystem, ns)) {
602 		spdk_nvmf_ns_get_opts(ns, &ns_opts, sizeof(ns_opts));
603 
604 		spdk_json_write_object_begin(w);
605 		spdk_json_write_named_string(w, "method", "nvmf_subsystem_add_ns");
606 
607 		/*     "params" : { */
608 		spdk_json_write_named_object_begin(w, "params");
609 
610 		spdk_json_write_named_string(w, "nqn", spdk_nvmf_subsystem_get_nqn(subsystem));
611 
612 		/*     "namespace" : { */
613 		spdk_json_write_named_object_begin(w, "namespace");
614 
615 		spdk_json_write_named_uint32(w, "nsid", spdk_nvmf_ns_get_id(ns));
616 		spdk_json_write_named_string(w, "bdev_name", spdk_bdev_get_name(spdk_nvmf_ns_get_bdev(ns)));
617 
618 		if (!spdk_mem_all_zero(ns_opts.nguid, sizeof(ns_opts.nguid))) {
619 			SPDK_STATIC_ASSERT(sizeof(ns_opts.nguid) == sizeof(uint64_t) * 2, "size mismatch");
620 			spdk_json_write_named_string_fmt(w, "nguid", "%016"PRIX64"%016"PRIX64, from_be64(&ns_opts.nguid[0]),
621 							 from_be64(&ns_opts.nguid[8]));
622 		}
623 
624 		if (!spdk_mem_all_zero(ns_opts.eui64, sizeof(ns_opts.eui64))) {
625 			SPDK_STATIC_ASSERT(sizeof(ns_opts.eui64) == sizeof(uint64_t), "size mismatch");
626 			spdk_json_write_named_string_fmt(w, "eui64", "%016"PRIX64, from_be64(&ns_opts.eui64));
627 		}
628 
629 		if (!spdk_uuid_is_null(&ns_opts.uuid)) {
630 			spdk_uuid_fmt_lower(uuid_str, sizeof(uuid_str), &ns_opts.uuid);
631 			spdk_json_write_named_string(w, "uuid",  uuid_str);
632 		}
633 
634 		if (nvmf_subsystem_get_ana_reporting(subsystem)) {
635 			spdk_json_write_named_uint32(w, "anagrpid", ns_opts.anagrpid);
636 		}
637 
638 		/*     "namespace" */
639 		spdk_json_write_object_end(w);
640 
641 		/*     } "params" */
642 		spdk_json_write_object_end(w);
643 
644 		/* } */
645 		spdk_json_write_object_end(w);
646 	}
647 
648 	for (listener = spdk_nvmf_subsystem_get_first_listener(subsystem); listener != NULL;
649 	     listener = spdk_nvmf_subsystem_get_next_listener(subsystem, listener)) {
650 		transport = listener->transport;
651 		trid = spdk_nvmf_subsystem_listener_get_trid(listener);
652 
653 		spdk_json_write_object_begin(w);
654 		spdk_json_write_named_string(w, "method", "nvmf_subsystem_add_listener");
655 
656 		/*     "params" : { */
657 		spdk_json_write_named_object_begin(w, "params");
658 
659 		spdk_json_write_named_string(w, "nqn", spdk_nvmf_subsystem_get_nqn(subsystem));
660 
661 		spdk_json_write_named_object_begin(w, "listen_address");
662 		nvmf_transport_listen_dump_trid(trid, w);
663 		spdk_json_write_object_end(w);
664 		if (transport->ops->listen_dump_opts) {
665 			transport->ops->listen_dump_opts(transport, trid, w);
666 		}
667 
668 		spdk_json_write_named_bool(w, "secure_channel", listener->opts.secure_channel);
669 
670 		/*     } "params" */
671 		spdk_json_write_object_end(w);
672 
673 		/* } */
674 		spdk_json_write_object_end(w);
675 	}
676 
677 }
678 
679 void
680 spdk_nvmf_tgt_write_config_json(struct spdk_json_write_ctx *w, struct spdk_nvmf_tgt *tgt)
681 {
682 	struct spdk_nvmf_subsystem *subsystem;
683 	struct spdk_nvmf_transport *transport;
684 
685 	spdk_json_write_object_begin(w);
686 	spdk_json_write_named_string(w, "method", "nvmf_set_max_subsystems");
687 
688 	spdk_json_write_named_object_begin(w, "params");
689 	spdk_json_write_named_uint32(w, "max_subsystems", tgt->max_subsystems);
690 	spdk_json_write_object_end(w);
691 
692 	spdk_json_write_object_end(w);
693 
694 	spdk_json_write_object_begin(w);
695 	spdk_json_write_named_string(w, "method", "nvmf_set_crdt");
696 	spdk_json_write_named_object_begin(w, "params");
697 	spdk_json_write_named_uint32(w, "crdt1", tgt->crdt[0]);
698 	spdk_json_write_named_uint32(w, "crdt2", tgt->crdt[1]);
699 	spdk_json_write_named_uint32(w, "crdt3", tgt->crdt[2]);
700 	spdk_json_write_object_end(w);
701 	spdk_json_write_object_end(w);
702 
703 	/* write transports */
704 	TAILQ_FOREACH(transport, &tgt->transports, link) {
705 		spdk_json_write_object_begin(w);
706 		spdk_json_write_named_string(w, "method", "nvmf_create_transport");
707 		nvmf_transport_dump_opts(transport, w, true);
708 		spdk_json_write_object_end(w);
709 	}
710 
711 	subsystem = spdk_nvmf_subsystem_get_first(tgt);
712 	while (subsystem) {
713 		nvmf_write_subsystem_config_json(w, subsystem);
714 		subsystem = spdk_nvmf_subsystem_get_next(subsystem);
715 	}
716 }
717 
718 static void
719 nvmf_listen_opts_copy(struct spdk_nvmf_listen_opts *opts,
720 		      const struct spdk_nvmf_listen_opts *opts_src, size_t opts_size)
721 {
722 	assert(opts);
723 	assert(opts_src);
724 
725 	opts->opts_size = opts_size;
726 
727 #define SET_FIELD(field) \
728     if (offsetof(struct spdk_nvmf_listen_opts, field) + sizeof(opts->field) <= opts_size) { \
729                  opts->field = opts_src->field; \
730     } \
731 
732 	SET_FIELD(transport_specific);
733 	SET_FIELD(secure_channel);
734 #undef SET_FIELD
735 
736 	/* Do not remove this statement, you should always update this statement when you adding a new field,
737 	 * and do not forget to add the SET_FIELD statement for your added field. */
738 	SPDK_STATIC_ASSERT(sizeof(struct spdk_nvmf_listen_opts) == 17, "Incorrect size");
739 }
740 
741 void
742 spdk_nvmf_listen_opts_init(struct spdk_nvmf_listen_opts *opts, size_t opts_size)
743 {
744 	struct spdk_nvmf_listen_opts opts_local = {};
745 
746 	/* local version of opts should have defaults set here */
747 
748 	nvmf_listen_opts_copy(opts, &opts_local, opts_size);
749 }
750 
751 int
752 spdk_nvmf_tgt_listen_ext(struct spdk_nvmf_tgt *tgt, const struct spdk_nvme_transport_id *trid,
753 			 struct spdk_nvmf_listen_opts *opts)
754 {
755 	struct spdk_nvmf_transport *transport;
756 	int rc;
757 	struct spdk_nvmf_listen_opts opts_local = {};
758 
759 	if (!opts) {
760 		SPDK_ERRLOG("opts should not be NULL\n");
761 		return -EINVAL;
762 	}
763 
764 	if (!opts->opts_size) {
765 		SPDK_ERRLOG("The opts_size in opts structure should not be zero\n");
766 		return -EINVAL;
767 	}
768 
769 	transport = spdk_nvmf_tgt_get_transport(tgt, trid->trstring);
770 	if (!transport) {
771 		SPDK_ERRLOG("Unable to find %s transport. The transport must be created first also make sure it is properly registered.\n",
772 			    trid->trstring);
773 		return -EINVAL;
774 	}
775 
776 	nvmf_listen_opts_copy(&opts_local, opts, opts->opts_size);
777 	rc = spdk_nvmf_transport_listen(transport, trid, &opts_local);
778 	if (rc < 0) {
779 		SPDK_ERRLOG("Unable to listen on address '%s'\n", trid->traddr);
780 	}
781 
782 	return rc;
783 }
784 
785 int
786 spdk_nvmf_tgt_stop_listen(struct spdk_nvmf_tgt *tgt,
787 			  struct spdk_nvme_transport_id *trid)
788 {
789 	struct spdk_nvmf_transport *transport;
790 	int rc;
791 
792 	transport = spdk_nvmf_tgt_get_transport(tgt, trid->trstring);
793 	if (!transport) {
794 		SPDK_ERRLOG("Unable to find %s transport. The transport must be created first also make sure it is properly registered.\n",
795 			    trid->trstring);
796 		return -EINVAL;
797 	}
798 
799 	rc = spdk_nvmf_transport_stop_listen(transport, trid);
800 	if (rc < 0) {
801 		SPDK_ERRLOG("Failed to stop listening on address '%s'\n", trid->traddr);
802 		return rc;
803 	}
804 	return 0;
805 }
806 
807 struct spdk_nvmf_tgt_add_transport_ctx {
808 	struct spdk_nvmf_tgt *tgt;
809 	struct spdk_nvmf_transport *transport;
810 	spdk_nvmf_tgt_add_transport_done_fn cb_fn;
811 	void *cb_arg;
812 	int status;
813 };
814 
815 static void
816 _nvmf_tgt_remove_transport_done(struct spdk_io_channel_iter *i, int status)
817 {
818 	struct spdk_nvmf_tgt_add_transport_ctx *ctx = spdk_io_channel_iter_get_ctx(i);
819 
820 	ctx->cb_fn(ctx->cb_arg, ctx->status);
821 	free(ctx);
822 }
823 
824 static void
825 _nvmf_tgt_remove_transport(struct spdk_io_channel_iter *i)
826 {
827 	struct spdk_nvmf_tgt_add_transport_ctx *ctx = spdk_io_channel_iter_get_ctx(i);
828 	struct spdk_io_channel *ch = spdk_io_channel_iter_get_channel(i);
829 	struct spdk_nvmf_poll_group *group = spdk_io_channel_get_ctx(ch);
830 	struct spdk_nvmf_transport_poll_group *tgroup, *tmp;
831 
832 	TAILQ_FOREACH_SAFE(tgroup, &group->tgroups, link, tmp) {
833 		if (tgroup->transport == ctx->transport) {
834 			TAILQ_REMOVE(&group->tgroups, tgroup, link);
835 			nvmf_transport_poll_group_destroy(tgroup);
836 		}
837 	}
838 
839 	spdk_for_each_channel_continue(i, 0);
840 }
841 
842 static void
843 _nvmf_tgt_add_transport_done(struct spdk_io_channel_iter *i, int status)
844 {
845 	struct spdk_nvmf_tgt_add_transport_ctx *ctx = spdk_io_channel_iter_get_ctx(i);
846 
847 	if (status) {
848 		ctx->status = status;
849 		spdk_for_each_channel(ctx->tgt,
850 				      _nvmf_tgt_remove_transport,
851 				      ctx,
852 				      _nvmf_tgt_remove_transport_done);
853 		return;
854 	}
855 
856 	ctx->transport->tgt = ctx->tgt;
857 	TAILQ_INSERT_TAIL(&ctx->tgt->transports, ctx->transport, link);
858 	ctx->cb_fn(ctx->cb_arg, status);
859 	free(ctx);
860 }
861 
862 static void
863 _nvmf_tgt_add_transport(struct spdk_io_channel_iter *i)
864 {
865 	struct spdk_nvmf_tgt_add_transport_ctx *ctx = spdk_io_channel_iter_get_ctx(i);
866 	struct spdk_io_channel *ch = spdk_io_channel_iter_get_channel(i);
867 	struct spdk_nvmf_poll_group *group = spdk_io_channel_get_ctx(ch);
868 	int rc;
869 
870 	rc = nvmf_poll_group_add_transport(group, ctx->transport);
871 	spdk_for_each_channel_continue(i, rc);
872 }
873 
874 void
875 spdk_nvmf_tgt_add_transport(struct spdk_nvmf_tgt *tgt,
876 			    struct spdk_nvmf_transport *transport,
877 			    spdk_nvmf_tgt_add_transport_done_fn cb_fn,
878 			    void *cb_arg)
879 {
880 	struct spdk_nvmf_tgt_add_transport_ctx *ctx;
881 
882 	SPDK_DTRACE_PROBE2_TICKS(nvmf_tgt_add_transport, transport, tgt->name);
883 
884 	if (spdk_nvmf_tgt_get_transport(tgt, transport->ops->name)) {
885 		cb_fn(cb_arg, -EEXIST);
886 		return; /* transport already created */
887 	}
888 
889 	ctx = calloc(1, sizeof(*ctx));
890 	if (!ctx) {
891 		cb_fn(cb_arg, -ENOMEM);
892 		return;
893 	}
894 
895 	ctx->tgt = tgt;
896 	ctx->transport = transport;
897 	ctx->cb_fn = cb_fn;
898 	ctx->cb_arg = cb_arg;
899 
900 	spdk_for_each_channel(tgt,
901 			      _nvmf_tgt_add_transport,
902 			      ctx,
903 			      _nvmf_tgt_add_transport_done);
904 }
905 
906 struct nvmf_tgt_pause_ctx {
907 	struct spdk_nvmf_tgt *tgt;
908 	spdk_nvmf_tgt_pause_polling_cb_fn cb_fn;
909 	void *cb_arg;
910 };
911 
912 static void
913 _nvmf_tgt_pause_polling_done(struct spdk_io_channel_iter *i, int status)
914 {
915 	struct nvmf_tgt_pause_ctx *ctx = spdk_io_channel_iter_get_ctx(i);
916 
917 	ctx->tgt->state = NVMF_TGT_PAUSED;
918 
919 	ctx->cb_fn(ctx->cb_arg, status);
920 	free(ctx);
921 }
922 
923 static void
924 _nvmf_tgt_pause_polling(struct spdk_io_channel_iter *i)
925 {
926 	struct spdk_io_channel *ch = spdk_io_channel_iter_get_channel(i);
927 	struct spdk_nvmf_poll_group *group = spdk_io_channel_get_ctx(ch);
928 
929 	spdk_poller_unregister(&group->poller);
930 
931 	spdk_for_each_channel_continue(i, 0);
932 }
933 
934 int
935 spdk_nvmf_tgt_pause_polling(struct spdk_nvmf_tgt *tgt, spdk_nvmf_tgt_pause_polling_cb_fn cb_fn,
936 			    void *cb_arg)
937 {
938 	struct nvmf_tgt_pause_ctx *ctx;
939 
940 	SPDK_DTRACE_PROBE2_TICKS(nvmf_tgt_pause_polling, tgt, tgt->name);
941 
942 	switch (tgt->state) {
943 	case NVMF_TGT_PAUSING:
944 	case NVMF_TGT_RESUMING:
945 		return -EBUSY;
946 	case NVMF_TGT_RUNNING:
947 		break;
948 	default:
949 		return -EINVAL;
950 	}
951 
952 	ctx = calloc(1, sizeof(*ctx));
953 	if (!ctx) {
954 		return -ENOMEM;
955 	}
956 
957 
958 	tgt->state = NVMF_TGT_PAUSING;
959 
960 	ctx->tgt = tgt;
961 	ctx->cb_fn = cb_fn;
962 	ctx->cb_arg = cb_arg;
963 
964 	spdk_for_each_channel(tgt,
965 			      _nvmf_tgt_pause_polling,
966 			      ctx,
967 			      _nvmf_tgt_pause_polling_done);
968 	return 0;
969 }
970 
971 static void
972 _nvmf_tgt_resume_polling_done(struct spdk_io_channel_iter *i, int status)
973 {
974 	struct nvmf_tgt_pause_ctx *ctx = spdk_io_channel_iter_get_ctx(i);
975 
976 	ctx->tgt->state = NVMF_TGT_RUNNING;
977 
978 	ctx->cb_fn(ctx->cb_arg, status);
979 	free(ctx);
980 }
981 
982 static void
983 _nvmf_tgt_resume_polling(struct spdk_io_channel_iter *i)
984 {
985 	struct spdk_io_channel *ch = spdk_io_channel_iter_get_channel(i);
986 	struct spdk_nvmf_poll_group *group = spdk_io_channel_get_ctx(ch);
987 
988 	assert(group->poller == NULL);
989 	group->poller = SPDK_POLLER_REGISTER(nvmf_poll_group_poll, group, 0);
990 
991 	spdk_for_each_channel_continue(i, 0);
992 }
993 
994 int
995 spdk_nvmf_tgt_resume_polling(struct spdk_nvmf_tgt *tgt, spdk_nvmf_tgt_resume_polling_cb_fn cb_fn,
996 			     void *cb_arg)
997 {
998 	struct nvmf_tgt_pause_ctx *ctx;
999 
1000 	SPDK_DTRACE_PROBE2_TICKS(nvmf_tgt_resume_polling, tgt, tgt->name);
1001 
1002 	switch (tgt->state) {
1003 	case NVMF_TGT_PAUSING:
1004 	case NVMF_TGT_RESUMING:
1005 		return -EBUSY;
1006 	case NVMF_TGT_PAUSED:
1007 		break;
1008 	default:
1009 		return -EINVAL;
1010 	}
1011 
1012 	ctx = calloc(1, sizeof(*ctx));
1013 	if (!ctx) {
1014 		return -ENOMEM;
1015 	}
1016 
1017 	tgt->state = NVMF_TGT_RESUMING;
1018 
1019 	ctx->tgt = tgt;
1020 	ctx->cb_fn = cb_fn;
1021 	ctx->cb_arg = cb_arg;
1022 
1023 	spdk_for_each_channel(tgt,
1024 			      _nvmf_tgt_resume_polling,
1025 			      ctx,
1026 			      _nvmf_tgt_resume_polling_done);
1027 	return 0;
1028 }
1029 
1030 struct spdk_nvmf_subsystem *
1031 spdk_nvmf_tgt_find_subsystem(struct spdk_nvmf_tgt *tgt, const char *subnqn)
1032 {
1033 	struct spdk_nvmf_subsystem subsystem;
1034 
1035 	if (!subnqn) {
1036 		return NULL;
1037 	}
1038 
1039 	/* Ensure that subnqn is null terminated */
1040 	if (!memchr(subnqn, '\0', SPDK_NVMF_NQN_MAX_LEN + 1)) {
1041 		SPDK_ERRLOG("Connect SUBNQN is not null terminated\n");
1042 		return NULL;
1043 	}
1044 
1045 	snprintf(subsystem.subnqn, sizeof(subsystem.subnqn), "%s", subnqn);
1046 	return RB_FIND(subsystem_tree, &tgt->subsystems, &subsystem);
1047 }
1048 
1049 struct spdk_nvmf_transport *
1050 spdk_nvmf_tgt_get_transport(struct spdk_nvmf_tgt *tgt, const char *transport_name)
1051 {
1052 	struct spdk_nvmf_transport *transport;
1053 
1054 	TAILQ_FOREACH(transport, &tgt->transports, link) {
1055 		if (!strncasecmp(transport->ops->name, transport_name, SPDK_NVMF_TRSTRING_MAX_LEN)) {
1056 			return transport;
1057 		}
1058 	}
1059 	return NULL;
1060 }
1061 
1062 struct nvmf_new_qpair_ctx {
1063 	struct spdk_nvmf_qpair *qpair;
1064 	struct spdk_nvmf_poll_group *group;
1065 };
1066 
1067 static void
1068 _nvmf_poll_group_add(void *_ctx)
1069 {
1070 	struct nvmf_new_qpair_ctx *ctx = _ctx;
1071 	struct spdk_nvmf_qpair *qpair = ctx->qpair;
1072 	struct spdk_nvmf_poll_group *group = ctx->group;
1073 
1074 	free(_ctx);
1075 
1076 	if (spdk_nvmf_poll_group_add(group, qpair) != 0) {
1077 		SPDK_ERRLOG("Unable to add the qpair to a poll group.\n");
1078 		spdk_nvmf_qpair_disconnect(qpair, NULL, NULL);
1079 	}
1080 }
1081 
1082 void
1083 spdk_nvmf_tgt_new_qpair(struct spdk_nvmf_tgt *tgt, struct spdk_nvmf_qpair *qpair)
1084 {
1085 	struct spdk_nvmf_poll_group *group;
1086 	struct nvmf_new_qpair_ctx *ctx;
1087 
1088 	group = spdk_nvmf_get_optimal_poll_group(qpair);
1089 	if (group == NULL) {
1090 		if (tgt->next_poll_group == NULL) {
1091 			tgt->next_poll_group = TAILQ_FIRST(&tgt->poll_groups);
1092 			if (tgt->next_poll_group == NULL) {
1093 				SPDK_ERRLOG("No poll groups exist.\n");
1094 				spdk_nvmf_qpair_disconnect(qpair, NULL, NULL);
1095 				return;
1096 			}
1097 		}
1098 		group = tgt->next_poll_group;
1099 		tgt->next_poll_group = TAILQ_NEXT(group, link);
1100 	}
1101 
1102 	ctx = calloc(1, sizeof(*ctx));
1103 	if (!ctx) {
1104 		SPDK_ERRLOG("Unable to send message to poll group.\n");
1105 		spdk_nvmf_qpair_disconnect(qpair, NULL, NULL);
1106 		return;
1107 	}
1108 
1109 	ctx->qpair = qpair;
1110 	ctx->group = group;
1111 
1112 	pthread_mutex_lock(&group->mutex);
1113 	group->current_unassociated_qpairs++;
1114 	pthread_mutex_unlock(&group->mutex);
1115 
1116 	spdk_thread_send_msg(group->thread, _nvmf_poll_group_add, ctx);
1117 }
1118 
1119 struct spdk_nvmf_poll_group *
1120 spdk_nvmf_poll_group_create(struct spdk_nvmf_tgt *tgt)
1121 {
1122 	struct spdk_io_channel *ch;
1123 
1124 	ch = spdk_get_io_channel(tgt);
1125 	if (!ch) {
1126 		SPDK_ERRLOG("Unable to get I/O channel for target\n");
1127 		return NULL;
1128 	}
1129 
1130 	return spdk_io_channel_get_ctx(ch);
1131 }
1132 
1133 void
1134 spdk_nvmf_poll_group_destroy(struct spdk_nvmf_poll_group *group,
1135 			     spdk_nvmf_poll_group_destroy_done_fn cb_fn,
1136 			     void *cb_arg)
1137 {
1138 	assert(group->destroy_cb_fn == NULL);
1139 	group->destroy_cb_fn = cb_fn;
1140 	group->destroy_cb_arg = cb_arg;
1141 
1142 	/* This function will put the io_channel associated with this poll group */
1143 	nvmf_tgt_destroy_poll_group_qpairs(group);
1144 }
1145 
1146 int
1147 spdk_nvmf_poll_group_add(struct spdk_nvmf_poll_group *group,
1148 			 struct spdk_nvmf_qpair *qpair)
1149 {
1150 	int rc = -1;
1151 	struct spdk_nvmf_transport_poll_group *tgroup;
1152 
1153 	TAILQ_INIT(&qpair->outstanding);
1154 	qpair->group = group;
1155 	qpair->ctrlr = NULL;
1156 	qpair->disconnect_started = false;
1157 
1158 	TAILQ_FOREACH(tgroup, &group->tgroups, link) {
1159 		if (tgroup->transport == qpair->transport) {
1160 			rc = nvmf_transport_poll_group_add(tgroup, qpair);
1161 			break;
1162 		}
1163 	}
1164 
1165 	/* We add the qpair to the group only it is successfully added into the tgroup */
1166 	if (rc == 0) {
1167 		SPDK_DTRACE_PROBE2_TICKS(nvmf_poll_group_add_qpair, qpair, spdk_thread_get_id(group->thread));
1168 		TAILQ_INSERT_TAIL(&group->qpairs, qpair, link);
1169 		nvmf_qpair_set_state(qpair, SPDK_NVMF_QPAIR_ACTIVE);
1170 	}
1171 
1172 	return rc;
1173 }
1174 
1175 static void
1176 _nvmf_ctrlr_destruct(void *ctx)
1177 {
1178 	struct spdk_nvmf_ctrlr *ctrlr = ctx;
1179 
1180 	nvmf_ctrlr_destruct(ctrlr);
1181 }
1182 
1183 static void
1184 _nvmf_ctrlr_free_from_qpair(void *ctx)
1185 {
1186 	struct nvmf_qpair_disconnect_ctx *qpair_ctx = ctx;
1187 	struct spdk_nvmf_ctrlr *ctrlr = qpair_ctx->ctrlr;
1188 	uint32_t count;
1189 
1190 	spdk_bit_array_clear(ctrlr->qpair_mask, qpair_ctx->qid);
1191 	count = spdk_bit_array_count_set(ctrlr->qpair_mask);
1192 	if (count == 0) {
1193 		assert(!ctrlr->in_destruct);
1194 		SPDK_DEBUGLOG(nvmf, "Last qpair %u, destroy ctrlr 0x%hx\n", qpair_ctx->qid, ctrlr->cntlid);
1195 		ctrlr->in_destruct = true;
1196 		spdk_thread_send_msg(ctrlr->subsys->thread, _nvmf_ctrlr_destruct, ctrlr);
1197 	}
1198 	free(qpair_ctx);
1199 }
1200 
1201 static void
1202 _nvmf_transport_qpair_fini_complete(void *cb_ctx)
1203 {
1204 	struct nvmf_qpair_disconnect_ctx *qpair_ctx = cb_ctx;
1205 	struct spdk_nvmf_ctrlr *ctrlr;
1206 	/* Store cb args since cb_ctx can be freed in _nvmf_ctrlr_free_from_qpair */
1207 	nvmf_qpair_disconnect_cb cb_fn = qpair_ctx->cb_fn;
1208 	void *cb_arg = qpair_ctx->ctx;
1209 	struct spdk_thread *cb_thread = qpair_ctx->thread;
1210 
1211 	ctrlr = qpair_ctx->ctrlr;
1212 	SPDK_DEBUGLOG(nvmf, "Finish destroying qid %u\n", qpair_ctx->qid);
1213 
1214 	if (ctrlr) {
1215 		if (qpair_ctx->qid == 0) {
1216 			/* Admin qpair is removed, so set the pointer to NULL.
1217 			 * This operation is safe since we are on ctrlr thread now, admin qpair's thread is the same
1218 			 * as controller's thread */
1219 			assert(ctrlr->thread == spdk_get_thread());
1220 			ctrlr->admin_qpair = NULL;
1221 		}
1222 		/* Free qpair id from controller's bit mask and destroy the controller if it is the last qpair */
1223 		if (ctrlr->thread) {
1224 			spdk_thread_send_msg(ctrlr->thread, _nvmf_ctrlr_free_from_qpair, qpair_ctx);
1225 		} else {
1226 			_nvmf_ctrlr_free_from_qpair(qpair_ctx);
1227 		}
1228 	} else {
1229 		free(qpair_ctx);
1230 	}
1231 
1232 	if (cb_fn) {
1233 		spdk_thread_send_msg(cb_thread, cb_fn, cb_arg);
1234 	}
1235 }
1236 
1237 void
1238 spdk_nvmf_poll_group_remove(struct spdk_nvmf_qpair *qpair)
1239 {
1240 	struct spdk_nvmf_transport_poll_group *tgroup;
1241 	int rc;
1242 
1243 	SPDK_DTRACE_PROBE2_TICKS(nvmf_poll_group_remove_qpair, qpair,
1244 				 spdk_thread_get_id(qpair->group->thread));
1245 	nvmf_qpair_set_state(qpair, SPDK_NVMF_QPAIR_ERROR);
1246 
1247 	/* Find the tgroup and remove the qpair from the tgroup */
1248 	TAILQ_FOREACH(tgroup, &qpair->group->tgroups, link) {
1249 		if (tgroup->transport == qpair->transport) {
1250 			rc = nvmf_transport_poll_group_remove(tgroup, qpair);
1251 			if (rc && (rc != ENOTSUP)) {
1252 				SPDK_ERRLOG("Cannot remove qpair=%p from transport group=%p\n",
1253 					    qpair, tgroup);
1254 			}
1255 			break;
1256 		}
1257 	}
1258 
1259 	TAILQ_REMOVE(&qpair->group->qpairs, qpair, link);
1260 	qpair->group = NULL;
1261 }
1262 
1263 static void
1264 _nvmf_qpair_sgroup_req_clean(struct spdk_nvmf_subsystem_poll_group *sgroup,
1265 			     const struct spdk_nvmf_qpair *qpair)
1266 {
1267 	struct spdk_nvmf_request *req, *tmp;
1268 	TAILQ_FOREACH_SAFE(req, &sgroup->queued, link, tmp) {
1269 		if (req->qpair == qpair) {
1270 			TAILQ_REMOVE(&sgroup->queued, req, link);
1271 			if (nvmf_transport_req_free(req)) {
1272 				SPDK_ERRLOG("Transport request free error!\n");
1273 			}
1274 		}
1275 	}
1276 }
1277 
1278 static void
1279 _nvmf_qpair_destroy(void *ctx, int status)
1280 {
1281 	struct nvmf_qpair_disconnect_ctx *qpair_ctx = ctx;
1282 	struct spdk_nvmf_qpair *qpair = qpair_ctx->qpair;
1283 	struct spdk_nvmf_ctrlr *ctrlr = qpair->ctrlr;
1284 	struct spdk_nvmf_subsystem_poll_group *sgroup;
1285 	uint32_t sid;
1286 
1287 	assert(qpair->state == SPDK_NVMF_QPAIR_DEACTIVATING);
1288 	qpair_ctx->qid = qpair->qid;
1289 
1290 	if (qpair->connect_received) {
1291 		if (0 == qpair->qid) {
1292 			assert(qpair->group->stat.current_admin_qpairs > 0);
1293 			qpair->group->stat.current_admin_qpairs--;
1294 		} else {
1295 			assert(qpair->group->stat.current_io_qpairs > 0);
1296 			qpair->group->stat.current_io_qpairs--;
1297 		}
1298 	} else {
1299 		pthread_mutex_lock(&qpair->group->mutex);
1300 		qpair->group->current_unassociated_qpairs--;
1301 		pthread_mutex_unlock(&qpair->group->mutex);
1302 	}
1303 
1304 	if (ctrlr) {
1305 		sgroup = &qpair->group->sgroups[ctrlr->subsys->id];
1306 		_nvmf_qpair_sgroup_req_clean(sgroup, qpair);
1307 	} else {
1308 		for (sid = 0; sid < qpair->group->num_sgroups; sid++) {
1309 			sgroup = &qpair->group->sgroups[sid];
1310 			assert(sgroup != NULL);
1311 			_nvmf_qpair_sgroup_req_clean(sgroup, qpair);
1312 		}
1313 	}
1314 
1315 	qpair_ctx->ctrlr = ctrlr;
1316 	spdk_nvmf_poll_group_remove(qpair);
1317 	nvmf_transport_qpair_fini(qpair, _nvmf_transport_qpair_fini_complete, qpair_ctx);
1318 }
1319 
1320 static void
1321 _nvmf_qpair_disconnect_msg(void *ctx)
1322 {
1323 	struct nvmf_qpair_disconnect_ctx *qpair_ctx = ctx;
1324 
1325 	spdk_nvmf_qpair_disconnect(qpair_ctx->qpair, qpair_ctx->cb_fn, qpair_ctx->ctx);
1326 	free(ctx);
1327 }
1328 
1329 SPDK_LOG_DEPRECATION_REGISTER(spdk_nvmf_qpair_disconnect, "cb_fn and ctx are deprecated", "v24.01",
1330 			      0);
1331 
1332 int
1333 spdk_nvmf_qpair_disconnect(struct spdk_nvmf_qpair *qpair, nvmf_qpair_disconnect_cb cb_fn, void *ctx)
1334 {
1335 	struct spdk_nvmf_poll_group *group = qpair->group;
1336 	struct nvmf_qpair_disconnect_ctx *qpair_ctx;
1337 
1338 	if (__atomic_test_and_set(&qpair->disconnect_started, __ATOMIC_RELAXED)) {
1339 		return -EINPROGRESS;
1340 	}
1341 
1342 	if (cb_fn || ctx) {
1343 		SPDK_LOG_DEPRECATED(spdk_nvmf_qpair_disconnect);
1344 	}
1345 
1346 	/* If we get a qpair in the uninitialized state, we can just destroy it immediately */
1347 	if (qpair->state == SPDK_NVMF_QPAIR_UNINITIALIZED) {
1348 		nvmf_transport_qpair_fini(qpair, NULL, NULL);
1349 		if (cb_fn) {
1350 			cb_fn(ctx);
1351 		}
1352 		return 0;
1353 	}
1354 
1355 	assert(group != NULL);
1356 	if (spdk_get_thread() != group->thread) {
1357 		/* clear the atomic so we can set it on the next call on the proper thread. */
1358 		__atomic_clear(&qpair->disconnect_started, __ATOMIC_RELAXED);
1359 		qpair_ctx = calloc(1, sizeof(struct nvmf_qpair_disconnect_ctx));
1360 		if (!qpair_ctx) {
1361 			SPDK_ERRLOG("Unable to allocate context for nvmf_qpair_disconnect\n");
1362 			return -ENOMEM;
1363 		}
1364 		qpair_ctx->qpair = qpair;
1365 		qpair_ctx->cb_fn = cb_fn;
1366 		qpair_ctx->thread = group->thread;
1367 		qpair_ctx->ctx = ctx;
1368 		spdk_thread_send_msg(group->thread, _nvmf_qpair_disconnect_msg, qpair_ctx);
1369 		return 0;
1370 	}
1371 
1372 	SPDK_DTRACE_PROBE2_TICKS(nvmf_qpair_disconnect, qpair, spdk_thread_get_id(group->thread));
1373 	assert(qpair->state == SPDK_NVMF_QPAIR_ACTIVE);
1374 	nvmf_qpair_set_state(qpair, SPDK_NVMF_QPAIR_DEACTIVATING);
1375 
1376 	qpair_ctx = calloc(1, sizeof(struct nvmf_qpair_disconnect_ctx));
1377 	if (!qpair_ctx) {
1378 		SPDK_ERRLOG("Unable to allocate context for nvmf_qpair_disconnect\n");
1379 		return -ENOMEM;
1380 	}
1381 
1382 	qpair_ctx->qpair = qpair;
1383 	qpair_ctx->cb_fn = cb_fn;
1384 	qpair_ctx->thread = group->thread;
1385 	qpair_ctx->ctx = ctx;
1386 
1387 	/* Check for outstanding I/O */
1388 	if (!TAILQ_EMPTY(&qpair->outstanding)) {
1389 		SPDK_DTRACE_PROBE2_TICKS(nvmf_poll_group_drain_qpair, qpair, spdk_thread_get_id(group->thread));
1390 		qpair->state_cb = _nvmf_qpair_destroy;
1391 		qpair->state_cb_arg = qpair_ctx;
1392 		nvmf_qpair_abort_pending_zcopy_reqs(qpair);
1393 		nvmf_qpair_free_aer(qpair);
1394 		return 0;
1395 	}
1396 
1397 	_nvmf_qpair_destroy(qpair_ctx, 0);
1398 
1399 	return 0;
1400 }
1401 
1402 int
1403 spdk_nvmf_qpair_get_peer_trid(struct spdk_nvmf_qpair *qpair,
1404 			      struct spdk_nvme_transport_id *trid)
1405 {
1406 	memset(trid, 0, sizeof(*trid));
1407 	return nvmf_transport_qpair_get_peer_trid(qpair, trid);
1408 }
1409 
1410 int
1411 spdk_nvmf_qpair_get_local_trid(struct spdk_nvmf_qpair *qpair,
1412 			       struct spdk_nvme_transport_id *trid)
1413 {
1414 	memset(trid, 0, sizeof(*trid));
1415 	return nvmf_transport_qpair_get_local_trid(qpair, trid);
1416 }
1417 
1418 int
1419 spdk_nvmf_qpair_get_listen_trid(struct spdk_nvmf_qpair *qpair,
1420 				struct spdk_nvme_transport_id *trid)
1421 {
1422 	memset(trid, 0, sizeof(*trid));
1423 	return nvmf_transport_qpair_get_listen_trid(qpair, trid);
1424 }
1425 
1426 static int
1427 poll_group_update_subsystem(struct spdk_nvmf_poll_group *group,
1428 			    struct spdk_nvmf_subsystem *subsystem)
1429 {
1430 	struct spdk_nvmf_subsystem_poll_group *sgroup;
1431 	uint32_t new_num_ns, old_num_ns;
1432 	uint32_t i, j;
1433 	struct spdk_nvmf_ns *ns;
1434 	struct spdk_nvmf_registrant *reg, *tmp;
1435 	struct spdk_io_channel *ch;
1436 	struct spdk_nvmf_subsystem_pg_ns_info *ns_info;
1437 	struct spdk_nvmf_ctrlr *ctrlr;
1438 	bool ns_changed;
1439 
1440 	/* Make sure our poll group has memory for this subsystem allocated */
1441 	if (subsystem->id >= group->num_sgroups) {
1442 		return -ENOMEM;
1443 	}
1444 
1445 	sgroup = &group->sgroups[subsystem->id];
1446 
1447 	/* Make sure the array of namespace information is the correct size */
1448 	new_num_ns = subsystem->max_nsid;
1449 	old_num_ns = sgroup->num_ns;
1450 
1451 	ns_changed = false;
1452 
1453 	if (old_num_ns == 0) {
1454 		if (new_num_ns > 0) {
1455 			/* First allocation */
1456 			sgroup->ns_info = calloc(new_num_ns, sizeof(struct spdk_nvmf_subsystem_pg_ns_info));
1457 			if (!sgroup->ns_info) {
1458 				return -ENOMEM;
1459 			}
1460 		}
1461 	} else if (new_num_ns > old_num_ns) {
1462 		void *buf;
1463 
1464 		/* Make the array larger */
1465 		buf = realloc(sgroup->ns_info, new_num_ns * sizeof(struct spdk_nvmf_subsystem_pg_ns_info));
1466 		if (!buf) {
1467 			return -ENOMEM;
1468 		}
1469 
1470 		sgroup->ns_info = buf;
1471 
1472 		/* Null out the new namespace information slots */
1473 		for (i = old_num_ns; i < new_num_ns; i++) {
1474 			memset(&sgroup->ns_info[i], 0, sizeof(struct spdk_nvmf_subsystem_pg_ns_info));
1475 		}
1476 	} else if (new_num_ns < old_num_ns) {
1477 		void *buf;
1478 
1479 		/* Free the extra I/O channels */
1480 		for (i = new_num_ns; i < old_num_ns; i++) {
1481 			ns_info = &sgroup->ns_info[i];
1482 
1483 			if (ns_info->channel) {
1484 				spdk_put_io_channel(ns_info->channel);
1485 				ns_info->channel = NULL;
1486 			}
1487 		}
1488 
1489 		/* Make the array smaller */
1490 		if (new_num_ns > 0) {
1491 			buf = realloc(sgroup->ns_info, new_num_ns * sizeof(struct spdk_nvmf_subsystem_pg_ns_info));
1492 			if (!buf) {
1493 				return -ENOMEM;
1494 			}
1495 			sgroup->ns_info = buf;
1496 		} else {
1497 			free(sgroup->ns_info);
1498 			sgroup->ns_info = NULL;
1499 		}
1500 	}
1501 
1502 	sgroup->num_ns = new_num_ns;
1503 
1504 	/* Detect bdevs that were added or removed */
1505 	for (i = 0; i < sgroup->num_ns; i++) {
1506 		ns = subsystem->ns[i];
1507 		ns_info = &sgroup->ns_info[i];
1508 		ch = ns_info->channel;
1509 
1510 		if (ns == NULL && ch == NULL) {
1511 			/* Both NULL. Leave empty */
1512 		} else if (ns == NULL && ch != NULL) {
1513 			/* There was a channel here, but the namespace is gone. */
1514 			ns_changed = true;
1515 			spdk_put_io_channel(ch);
1516 			ns_info->channel = NULL;
1517 		} else if (ns != NULL && ch == NULL) {
1518 			/* A namespace appeared but there is no channel yet */
1519 			ns_changed = true;
1520 			ch = spdk_bdev_get_io_channel(ns->desc);
1521 			if (ch == NULL) {
1522 				SPDK_ERRLOG("Could not allocate I/O channel.\n");
1523 				return -ENOMEM;
1524 			}
1525 			ns_info->channel = ch;
1526 		} else if (spdk_uuid_compare(&ns_info->uuid, spdk_bdev_get_uuid(ns->bdev)) != 0) {
1527 			/* A namespace was here before, but was replaced by a new one. */
1528 			ns_changed = true;
1529 			spdk_put_io_channel(ns_info->channel);
1530 			memset(ns_info, 0, sizeof(*ns_info));
1531 
1532 			ch = spdk_bdev_get_io_channel(ns->desc);
1533 			if (ch == NULL) {
1534 				SPDK_ERRLOG("Could not allocate I/O channel.\n");
1535 				return -ENOMEM;
1536 			}
1537 			ns_info->channel = ch;
1538 		} else if (ns_info->num_blocks != spdk_bdev_get_num_blocks(ns->bdev)) {
1539 			/* Namespace is still there but size has changed */
1540 			SPDK_DEBUGLOG(nvmf, "Namespace resized: subsystem_id %u,"
1541 				      " nsid %u, pg %p, old %" PRIu64 ", new %" PRIu64 "\n",
1542 				      subsystem->id,
1543 				      ns->nsid,
1544 				      group,
1545 				      ns_info->num_blocks,
1546 				      spdk_bdev_get_num_blocks(ns->bdev));
1547 			ns_changed = true;
1548 		}
1549 
1550 		if (ns == NULL) {
1551 			memset(ns_info, 0, sizeof(*ns_info));
1552 		} else {
1553 			ns_info->uuid = *spdk_bdev_get_uuid(ns->bdev);
1554 			ns_info->num_blocks = spdk_bdev_get_num_blocks(ns->bdev);
1555 			ns_info->crkey = ns->crkey;
1556 			ns_info->rtype = ns->rtype;
1557 			if (ns->holder) {
1558 				ns_info->holder_id = ns->holder->hostid;
1559 			}
1560 
1561 			memset(&ns_info->reg_hostid, 0, SPDK_NVMF_MAX_NUM_REGISTRANTS * sizeof(struct spdk_uuid));
1562 			j = 0;
1563 			TAILQ_FOREACH_SAFE(reg, &ns->registrants, link, tmp) {
1564 				if (j >= SPDK_NVMF_MAX_NUM_REGISTRANTS) {
1565 					SPDK_ERRLOG("Maximum %u registrants can support.\n", SPDK_NVMF_MAX_NUM_REGISTRANTS);
1566 					return -EINVAL;
1567 				}
1568 				ns_info->reg_hostid[j++] = reg->hostid;
1569 			}
1570 		}
1571 	}
1572 
1573 	if (ns_changed) {
1574 		TAILQ_FOREACH(ctrlr, &subsystem->ctrlrs, link) {
1575 			if (ctrlr->thread != spdk_get_thread()) {
1576 				continue;
1577 			}
1578 			/* It is possible that a ctrlr was added but the admin_qpair hasn't been
1579 			 * assigned yet.
1580 			 */
1581 			if (!ctrlr->admin_qpair) {
1582 				continue;
1583 			}
1584 			if (ctrlr->admin_qpair->group == group) {
1585 				nvmf_ctrlr_async_event_ns_notice(ctrlr);
1586 				nvmf_ctrlr_async_event_ana_change_notice(ctrlr);
1587 			}
1588 		}
1589 	}
1590 
1591 	return 0;
1592 }
1593 
1594 int
1595 nvmf_poll_group_update_subsystem(struct spdk_nvmf_poll_group *group,
1596 				 struct spdk_nvmf_subsystem *subsystem)
1597 {
1598 	return poll_group_update_subsystem(group, subsystem);
1599 }
1600 
1601 int
1602 nvmf_poll_group_add_subsystem(struct spdk_nvmf_poll_group *group,
1603 			      struct spdk_nvmf_subsystem *subsystem,
1604 			      spdk_nvmf_poll_group_mod_done cb_fn, void *cb_arg)
1605 {
1606 	int rc = 0;
1607 	struct spdk_nvmf_subsystem_poll_group *sgroup = &group->sgroups[subsystem->id];
1608 	uint32_t i;
1609 
1610 	TAILQ_INIT(&sgroup->queued);
1611 
1612 	rc = poll_group_update_subsystem(group, subsystem);
1613 	if (rc) {
1614 		nvmf_poll_group_remove_subsystem(group, subsystem, NULL, NULL);
1615 		goto fini;
1616 	}
1617 
1618 	sgroup->state = SPDK_NVMF_SUBSYSTEM_ACTIVE;
1619 
1620 	for (i = 0; i < sgroup->num_ns; i++) {
1621 		sgroup->ns_info[i].state = SPDK_NVMF_SUBSYSTEM_ACTIVE;
1622 	}
1623 
1624 fini:
1625 	if (cb_fn) {
1626 		cb_fn(cb_arg, rc);
1627 	}
1628 
1629 	SPDK_DTRACE_PROBE2_TICKS(nvmf_poll_group_add_subsystem, spdk_thread_get_id(group->thread),
1630 				 subsystem->subnqn);
1631 
1632 	return rc;
1633 }
1634 
1635 static void
1636 _nvmf_poll_group_remove_subsystem_cb(void *ctx, int status)
1637 {
1638 	struct nvmf_qpair_disconnect_many_ctx *qpair_ctx = ctx;
1639 	struct spdk_nvmf_subsystem *subsystem;
1640 	struct spdk_nvmf_poll_group *group;
1641 	struct spdk_nvmf_subsystem_poll_group *sgroup;
1642 	spdk_nvmf_poll_group_mod_done cpl_fn = NULL;
1643 	void *cpl_ctx = NULL;
1644 	uint32_t nsid;
1645 
1646 	group = qpair_ctx->group;
1647 	subsystem = qpair_ctx->subsystem;
1648 	cpl_fn = qpair_ctx->cpl_fn;
1649 	cpl_ctx = qpair_ctx->cpl_ctx;
1650 	sgroup = &group->sgroups[subsystem->id];
1651 
1652 	if (status) {
1653 		goto fini;
1654 	}
1655 
1656 	for (nsid = 0; nsid < sgroup->num_ns; nsid++) {
1657 		if (sgroup->ns_info[nsid].channel) {
1658 			spdk_put_io_channel(sgroup->ns_info[nsid].channel);
1659 			sgroup->ns_info[nsid].channel = NULL;
1660 		}
1661 	}
1662 
1663 	sgroup->num_ns = 0;
1664 	free(sgroup->ns_info);
1665 	sgroup->ns_info = NULL;
1666 fini:
1667 	free(qpair_ctx);
1668 	if (cpl_fn) {
1669 		cpl_fn(cpl_ctx, status);
1670 	}
1671 }
1672 
1673 static void nvmf_poll_group_remove_subsystem_msg(void *ctx);
1674 
1675 static void
1676 nvmf_poll_group_remove_subsystem_msg(void *ctx)
1677 {
1678 	struct spdk_nvmf_qpair *qpair, *qpair_tmp;
1679 	struct spdk_nvmf_subsystem *subsystem;
1680 	struct spdk_nvmf_poll_group *group;
1681 	struct nvmf_qpair_disconnect_many_ctx *qpair_ctx = ctx;
1682 	bool qpairs_found = false;
1683 	int rc = 0;
1684 
1685 	group = qpair_ctx->group;
1686 	subsystem = qpair_ctx->subsystem;
1687 
1688 	TAILQ_FOREACH_SAFE(qpair, &group->qpairs, link, qpair_tmp) {
1689 		if ((qpair->ctrlr != NULL) && (qpair->ctrlr->subsys == subsystem)) {
1690 			qpairs_found = true;
1691 			rc = spdk_nvmf_qpair_disconnect(qpair, NULL, NULL);
1692 			if (rc && rc != -EINPROGRESS) {
1693 				break;
1694 			}
1695 		}
1696 	}
1697 
1698 	if (!qpairs_found) {
1699 		_nvmf_poll_group_remove_subsystem_cb(ctx, 0);
1700 		return;
1701 	}
1702 
1703 	/* Some qpairs are in process of being disconnected. Send a message and try to remove them again */
1704 	spdk_thread_send_msg(spdk_get_thread(), nvmf_poll_group_remove_subsystem_msg, ctx);
1705 }
1706 
1707 void
1708 nvmf_poll_group_remove_subsystem(struct spdk_nvmf_poll_group *group,
1709 				 struct spdk_nvmf_subsystem *subsystem,
1710 				 spdk_nvmf_poll_group_mod_done cb_fn, void *cb_arg)
1711 {
1712 	struct spdk_nvmf_subsystem_poll_group *sgroup;
1713 	struct nvmf_qpair_disconnect_many_ctx *ctx;
1714 	uint32_t i;
1715 
1716 	SPDK_DTRACE_PROBE3_TICKS(nvmf_poll_group_remove_subsystem, group, spdk_thread_get_id(group->thread),
1717 				 subsystem->subnqn);
1718 
1719 	ctx = calloc(1, sizeof(struct nvmf_qpair_disconnect_many_ctx));
1720 	if (!ctx) {
1721 		SPDK_ERRLOG("Unable to allocate memory for context to remove poll subsystem\n");
1722 		if (cb_fn) {
1723 			cb_fn(cb_arg, -1);
1724 		}
1725 		return;
1726 	}
1727 
1728 	ctx->group = group;
1729 	ctx->subsystem = subsystem;
1730 	ctx->cpl_fn = cb_fn;
1731 	ctx->cpl_ctx = cb_arg;
1732 
1733 	sgroup = &group->sgroups[subsystem->id];
1734 	sgroup->state = SPDK_NVMF_SUBSYSTEM_INACTIVE;
1735 
1736 	for (i = 0; i < sgroup->num_ns; i++) {
1737 		sgroup->ns_info[i].state = SPDK_NVMF_SUBSYSTEM_INACTIVE;
1738 	}
1739 
1740 	nvmf_poll_group_remove_subsystem_msg(ctx);
1741 }
1742 
1743 void
1744 nvmf_poll_group_pause_subsystem(struct spdk_nvmf_poll_group *group,
1745 				struct spdk_nvmf_subsystem *subsystem,
1746 				uint32_t nsid,
1747 				spdk_nvmf_poll_group_mod_done cb_fn, void *cb_arg)
1748 {
1749 	struct spdk_nvmf_subsystem_poll_group *sgroup;
1750 	struct spdk_nvmf_subsystem_pg_ns_info *ns_info = NULL;
1751 	int rc = 0;
1752 	uint32_t i;
1753 
1754 	if (subsystem->id >= group->num_sgroups) {
1755 		rc = -1;
1756 		goto fini;
1757 	}
1758 
1759 	sgroup = &group->sgroups[subsystem->id];
1760 	if (sgroup->state == SPDK_NVMF_SUBSYSTEM_PAUSED) {
1761 		goto fini;
1762 	}
1763 	sgroup->state = SPDK_NVMF_SUBSYSTEM_PAUSING;
1764 
1765 	if (nsid == SPDK_NVME_GLOBAL_NS_TAG) {
1766 		for (i = 0; i < sgroup->num_ns; i++) {
1767 			ns_info = &sgroup->ns_info[i];
1768 			ns_info->state = SPDK_NVMF_SUBSYSTEM_PAUSING;
1769 		}
1770 	} else {
1771 		/* NOTE: This implicitly also checks for 0, since 0 - 1 wraps around to UINT32_MAX. */
1772 		if (nsid - 1 < sgroup->num_ns) {
1773 			ns_info  = &sgroup->ns_info[nsid - 1];
1774 			ns_info->state = SPDK_NVMF_SUBSYSTEM_PAUSING;
1775 		}
1776 	}
1777 
1778 	if (sgroup->mgmt_io_outstanding > 0) {
1779 		assert(sgroup->cb_fn == NULL);
1780 		sgroup->cb_fn = cb_fn;
1781 		assert(sgroup->cb_arg == NULL);
1782 		sgroup->cb_arg = cb_arg;
1783 		return;
1784 	}
1785 
1786 	if (nsid == SPDK_NVME_GLOBAL_NS_TAG) {
1787 		for (i = 0; i < sgroup->num_ns; i++) {
1788 			ns_info = &sgroup->ns_info[i];
1789 
1790 			if (ns_info->io_outstanding > 0) {
1791 				assert(sgroup->cb_fn == NULL);
1792 				sgroup->cb_fn = cb_fn;
1793 				assert(sgroup->cb_arg == NULL);
1794 				sgroup->cb_arg = cb_arg;
1795 				return;
1796 			}
1797 		}
1798 	} else {
1799 		if (ns_info != NULL && ns_info->io_outstanding > 0) {
1800 			assert(sgroup->cb_fn == NULL);
1801 			sgroup->cb_fn = cb_fn;
1802 			assert(sgroup->cb_arg == NULL);
1803 			sgroup->cb_arg = cb_arg;
1804 			return;
1805 		}
1806 	}
1807 
1808 	assert(sgroup->mgmt_io_outstanding == 0);
1809 	sgroup->state = SPDK_NVMF_SUBSYSTEM_PAUSED;
1810 fini:
1811 	if (cb_fn) {
1812 		cb_fn(cb_arg, rc);
1813 	}
1814 }
1815 
1816 void
1817 nvmf_poll_group_resume_subsystem(struct spdk_nvmf_poll_group *group,
1818 				 struct spdk_nvmf_subsystem *subsystem,
1819 				 spdk_nvmf_poll_group_mod_done cb_fn, void *cb_arg)
1820 {
1821 	struct spdk_nvmf_request *req, *tmp;
1822 	struct spdk_nvmf_subsystem_poll_group *sgroup;
1823 	int rc = 0;
1824 	uint32_t i;
1825 
1826 	if (subsystem->id >= group->num_sgroups) {
1827 		rc = -1;
1828 		goto fini;
1829 	}
1830 
1831 	sgroup = &group->sgroups[subsystem->id];
1832 
1833 	if (sgroup->state == SPDK_NVMF_SUBSYSTEM_ACTIVE) {
1834 		goto fini;
1835 	}
1836 
1837 	rc = poll_group_update_subsystem(group, subsystem);
1838 	if (rc) {
1839 		goto fini;
1840 	}
1841 
1842 	for (i = 0; i < sgroup->num_ns; i++) {
1843 		sgroup->ns_info[i].state = SPDK_NVMF_SUBSYSTEM_ACTIVE;
1844 	}
1845 
1846 	sgroup->state = SPDK_NVMF_SUBSYSTEM_ACTIVE;
1847 
1848 	/* Release all queued requests */
1849 	TAILQ_FOREACH_SAFE(req, &sgroup->queued, link, tmp) {
1850 		TAILQ_REMOVE(&sgroup->queued, req, link);
1851 		if (spdk_nvmf_request_using_zcopy(req)) {
1852 			spdk_nvmf_request_zcopy_start(req);
1853 		} else {
1854 			spdk_nvmf_request_exec(req);
1855 		}
1856 
1857 	}
1858 fini:
1859 	if (cb_fn) {
1860 		cb_fn(cb_arg, rc);
1861 	}
1862 }
1863 
1864 
1865 struct spdk_nvmf_poll_group *
1866 spdk_nvmf_get_optimal_poll_group(struct spdk_nvmf_qpair *qpair)
1867 {
1868 	struct spdk_nvmf_transport_poll_group *tgroup;
1869 
1870 	tgroup = nvmf_transport_get_optimal_poll_group(qpair->transport, qpair);
1871 
1872 	if (tgroup == NULL) {
1873 		return NULL;
1874 	}
1875 
1876 	return tgroup->group;
1877 }
1878 
1879 void
1880 spdk_nvmf_poll_group_dump_stat(struct spdk_nvmf_poll_group *group, struct spdk_json_write_ctx *w)
1881 {
1882 	struct spdk_nvmf_transport_poll_group *tgroup;
1883 
1884 	spdk_json_write_object_begin(w);
1885 
1886 	spdk_json_write_named_string(w, "name", spdk_thread_get_name(spdk_get_thread()));
1887 	spdk_json_write_named_uint32(w, "admin_qpairs", group->stat.admin_qpairs);
1888 	spdk_json_write_named_uint32(w, "io_qpairs", group->stat.io_qpairs);
1889 	spdk_json_write_named_uint32(w, "current_admin_qpairs", group->stat.current_admin_qpairs);
1890 	spdk_json_write_named_uint32(w, "current_io_qpairs", group->stat.current_io_qpairs);
1891 	spdk_json_write_named_uint64(w, "pending_bdev_io", group->stat.pending_bdev_io);
1892 	spdk_json_write_named_uint64(w, "completed_nvme_io", group->stat.completed_nvme_io);
1893 
1894 	spdk_json_write_named_array_begin(w, "transports");
1895 
1896 	TAILQ_FOREACH(tgroup, &group->tgroups, link) {
1897 		spdk_json_write_object_begin(w);
1898 		/*
1899 		 * The trtype field intentionally contains a transport name as this is more informative.
1900 		 * The field has not been renamed for backward compatibility.
1901 		 */
1902 		spdk_json_write_named_string(w, "trtype", spdk_nvmf_get_transport_name(tgroup->transport));
1903 
1904 		if (tgroup->transport->ops->poll_group_dump_stat) {
1905 			tgroup->transport->ops->poll_group_dump_stat(tgroup, w);
1906 		}
1907 
1908 		spdk_json_write_object_end(w);
1909 	}
1910 
1911 	spdk_json_write_array_end(w);
1912 	spdk_json_write_object_end(w);
1913 }
1914