xref: /openbmc/linux/drivers/scsi/libfc/fc_rport.c (revision 3b709150)
1 /*
2  * Copyright(c) 2007 - 2008 Intel Corporation. All rights reserved.
3  *
4  * This program is free software; you can redistribute it and/or modify it
5  * under the terms and conditions of the GNU General Public License,
6  * version 2, as published by the Free Software Foundation.
7  *
8  * This program is distributed in the hope it will be useful, but WITHOUT
9  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
11  * more details.
12  *
13  * You should have received a copy of the GNU General Public License along with
14  * this program; if not, write to the Free Software Foundation, Inc.,
15  * 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
16  *
17  * Maintained at www.Open-FCoE.org
18  */
19 
20 /*
21  * RPORT GENERAL INFO
22  *
23  * This file contains all processing regarding fc_rports. It contains the
24  * rport state machine and does all rport interaction with the transport class.
25  * There should be no other places in libfc that interact directly with the
26  * transport class in regards to adding and deleting rports.
27  *
28  * fc_rport's represent N_Port's within the fabric.
29  */
30 
31 /*
32  * RPORT LOCKING
33  *
34  * The rport should never hold the rport mutex and then attempt to acquire
35  * either the lport or disc mutexes. The rport's mutex is considered lesser
36  * than both the lport's mutex and the disc mutex. Refer to fc_lport.c for
37  * more comments on the heirarchy.
38  *
39  * The locking strategy is similar to the lport's strategy. The lock protects
40  * the rport's states and is held and released by the entry points to the rport
41  * block. All _enter_* functions correspond to rport states and expect the rport
42  * mutex to be locked before calling them. This means that rports only handle
43  * one request or response at a time, since they're not critical for the I/O
44  * path this potential over-use of the mutex is acceptable.
45  */
46 
47 #include <linux/kernel.h>
48 #include <linux/spinlock.h>
49 #include <linux/interrupt.h>
50 #include <linux/rcupdate.h>
51 #include <linux/timer.h>
52 #include <linux/workqueue.h>
53 #include <asm/unaligned.h>
54 
55 #include <scsi/libfc.h>
56 #include <scsi/fc_encode.h>
57 
58 #include "fc_libfc.h"
59 
60 struct workqueue_struct *rport_event_queue;
61 
62 static void fc_rport_enter_plogi(struct fc_rport_priv *);
63 static void fc_rport_enter_prli(struct fc_rport_priv *);
64 static void fc_rport_enter_rtv(struct fc_rport_priv *);
65 static void fc_rport_enter_ready(struct fc_rport_priv *);
66 static void fc_rport_enter_logo(struct fc_rport_priv *);
67 static void fc_rport_enter_adisc(struct fc_rport_priv *);
68 
69 static void fc_rport_recv_plogi_req(struct fc_lport *,
70 				    struct fc_seq *, struct fc_frame *);
71 static void fc_rport_recv_prli_req(struct fc_rport_priv *,
72 				   struct fc_seq *, struct fc_frame *);
73 static void fc_rport_recv_prlo_req(struct fc_rport_priv *,
74 				   struct fc_seq *, struct fc_frame *);
75 static void fc_rport_recv_logo_req(struct fc_lport *,
76 				   struct fc_seq *, struct fc_frame *);
77 static void fc_rport_timeout(struct work_struct *);
78 static void fc_rport_error(struct fc_rport_priv *, struct fc_frame *);
79 static void fc_rport_error_retry(struct fc_rport_priv *, struct fc_frame *);
80 static void fc_rport_work(struct work_struct *);
81 
82 static const char *fc_rport_state_names[] = {
83 	[RPORT_ST_INIT] = "Init",
84 	[RPORT_ST_PLOGI] = "PLOGI",
85 	[RPORT_ST_PRLI] = "PRLI",
86 	[RPORT_ST_RTV] = "RTV",
87 	[RPORT_ST_READY] = "Ready",
88 	[RPORT_ST_LOGO] = "LOGO",
89 	[RPORT_ST_ADISC] = "ADISC",
90 	[RPORT_ST_DELETE] = "Delete",
91 	[RPORT_ST_RESTART] = "Restart",
92 };
93 
94 /**
95  * fc_rport_lookup() - Lookup a remote port by port_id
96  * @lport:   The local port to lookup the remote port on
97  * @port_id: The remote port ID to look up
98  */
99 static struct fc_rport_priv *fc_rport_lookup(const struct fc_lport *lport,
100 					     u32 port_id)
101 {
102 	struct fc_rport_priv *rdata;
103 
104 	list_for_each_entry(rdata, &lport->disc.rports, peers)
105 		if (rdata->ids.port_id == port_id)
106 			return rdata;
107 	return NULL;
108 }
109 
110 /**
111  * fc_rport_create() - Create a new remote port
112  * @lport: The local port this remote port will be associated with
113  * @ids:   The identifiers for the new remote port
114  *
115  * The remote port will start in the INIT state.
116  *
117  * Locking note:  must be called with the disc_mutex held.
118  */
119 static struct fc_rport_priv *fc_rport_create(struct fc_lport *lport,
120 					     u32 port_id)
121 {
122 	struct fc_rport_priv *rdata;
123 
124 	rdata = lport->tt.rport_lookup(lport, port_id);
125 	if (rdata)
126 		return rdata;
127 
128 	rdata = kzalloc(sizeof(*rdata), GFP_KERNEL);
129 	if (!rdata)
130 		return NULL;
131 
132 	rdata->ids.node_name = -1;
133 	rdata->ids.port_name = -1;
134 	rdata->ids.port_id = port_id;
135 	rdata->ids.roles = FC_RPORT_ROLE_UNKNOWN;
136 
137 	kref_init(&rdata->kref);
138 	mutex_init(&rdata->rp_mutex);
139 	rdata->local_port = lport;
140 	rdata->rp_state = RPORT_ST_INIT;
141 	rdata->event = RPORT_EV_NONE;
142 	rdata->flags = FC_RP_FLAGS_REC_SUPPORTED;
143 	rdata->e_d_tov = lport->e_d_tov;
144 	rdata->r_a_tov = lport->r_a_tov;
145 	rdata->maxframe_size = FC_MIN_MAX_PAYLOAD;
146 	INIT_DELAYED_WORK(&rdata->retry_work, fc_rport_timeout);
147 	INIT_WORK(&rdata->event_work, fc_rport_work);
148 	if (port_id != FC_FID_DIR_SERV)
149 		list_add(&rdata->peers, &lport->disc.rports);
150 	return rdata;
151 }
152 
153 /**
154  * fc_rport_destroy() - Free a remote port after last reference is released
155  * @kref: The remote port's kref
156  */
157 static void fc_rport_destroy(struct kref *kref)
158 {
159 	struct fc_rport_priv *rdata;
160 
161 	rdata = container_of(kref, struct fc_rport_priv, kref);
162 	kfree(rdata);
163 }
164 
165 /**
166  * fc_rport_state() - Return a string identifying the remote port's state
167  * @rdata: The remote port
168  */
169 static const char *fc_rport_state(struct fc_rport_priv *rdata)
170 {
171 	const char *cp;
172 
173 	cp = fc_rport_state_names[rdata->rp_state];
174 	if (!cp)
175 		cp = "Unknown";
176 	return cp;
177 }
178 
179 /**
180  * fc_set_rport_loss_tmo() - Set the remote port loss timeout
181  * @rport:   The remote port that gets a new timeout value
182  * @timeout: The new timeout value (in seconds)
183  */
184 void fc_set_rport_loss_tmo(struct fc_rport *rport, u32 timeout)
185 {
186 	if (timeout)
187 		rport->dev_loss_tmo = timeout + 5;
188 	else
189 		rport->dev_loss_tmo = 30;
190 }
191 EXPORT_SYMBOL(fc_set_rport_loss_tmo);
192 
193 /**
194  * fc_plogi_get_maxframe() - Get the maximum payload from the common service
195  *			     parameters in a FLOGI frame
196  * @flp:    The FLOGI payload
197  * @maxval: The maximum frame size upper limit; this may be less than what
198  *	    is in the service parameters
199  */
200 static unsigned int fc_plogi_get_maxframe(struct fc_els_flogi *flp,
201 					  unsigned int maxval)
202 {
203 	unsigned int mfs;
204 
205 	/*
206 	 * Get max payload from the common service parameters and the
207 	 * class 3 receive data field size.
208 	 */
209 	mfs = ntohs(flp->fl_csp.sp_bb_data) & FC_SP_BB_DATA_MASK;
210 	if (mfs >= FC_SP_MIN_MAX_PAYLOAD && mfs < maxval)
211 		maxval = mfs;
212 	mfs = ntohs(flp->fl_cssp[3 - 1].cp_rdfs);
213 	if (mfs >= FC_SP_MIN_MAX_PAYLOAD && mfs < maxval)
214 		maxval = mfs;
215 	return maxval;
216 }
217 
218 /**
219  * fc_rport_state_enter() - Change the state of a remote port
220  * @rdata: The remote port whose state should change
221  * @new:   The new state
222  *
223  * Locking Note: Called with the rport lock held
224  */
225 static void fc_rport_state_enter(struct fc_rport_priv *rdata,
226 				 enum fc_rport_state new)
227 {
228 	if (rdata->rp_state != new)
229 		rdata->retries = 0;
230 	rdata->rp_state = new;
231 }
232 
233 /**
234  * fc_rport_work() - Handler for remote port events in the rport_event_queue
235  * @work: Handle to the remote port being dequeued
236  */
237 static void fc_rport_work(struct work_struct *work)
238 {
239 	u32 port_id;
240 	struct fc_rport_priv *rdata =
241 		container_of(work, struct fc_rport_priv, event_work);
242 	struct fc_rport_libfc_priv *rpriv;
243 	enum fc_rport_event event;
244 	struct fc_lport *lport = rdata->local_port;
245 	struct fc_rport_operations *rport_ops;
246 	struct fc_rport_identifiers ids;
247 	struct fc_rport *rport;
248 	int restart = 0;
249 
250 	mutex_lock(&rdata->rp_mutex);
251 	event = rdata->event;
252 	rport_ops = rdata->ops;
253 	rport = rdata->rport;
254 
255 	FC_RPORT_DBG(rdata, "work event %u\n", event);
256 
257 	switch (event) {
258 	case RPORT_EV_READY:
259 		ids = rdata->ids;
260 		rdata->event = RPORT_EV_NONE;
261 		kref_get(&rdata->kref);
262 		mutex_unlock(&rdata->rp_mutex);
263 
264 		if (!rport)
265 			rport = fc_remote_port_add(lport->host, 0, &ids);
266 		if (!rport) {
267 			FC_RPORT_DBG(rdata, "Failed to add the rport\n");
268 			lport->tt.rport_logoff(rdata);
269 			kref_put(&rdata->kref, lport->tt.rport_destroy);
270 			return;
271 		}
272 		mutex_lock(&rdata->rp_mutex);
273 		if (rdata->rport)
274 			FC_RPORT_DBG(rdata, "rport already allocated\n");
275 		rdata->rport = rport;
276 		rport->maxframe_size = rdata->maxframe_size;
277 		rport->supported_classes = rdata->supported_classes;
278 
279 		rpriv = rport->dd_data;
280 		rpriv->local_port = lport;
281 		rpriv->rp_state = rdata->rp_state;
282 		rpriv->flags = rdata->flags;
283 		rpriv->e_d_tov = rdata->e_d_tov;
284 		rpriv->r_a_tov = rdata->r_a_tov;
285 		mutex_unlock(&rdata->rp_mutex);
286 
287 		if (rport_ops && rport_ops->event_callback) {
288 			FC_RPORT_DBG(rdata, "callback ev %d\n", event);
289 			rport_ops->event_callback(lport, rdata, event);
290 		}
291 		kref_put(&rdata->kref, lport->tt.rport_destroy);
292 		break;
293 
294 	case RPORT_EV_FAILED:
295 	case RPORT_EV_LOGO:
296 	case RPORT_EV_STOP:
297 		port_id = rdata->ids.port_id;
298 		mutex_unlock(&rdata->rp_mutex);
299 
300 		if (port_id != FC_FID_DIR_SERV) {
301 			/*
302 			 * We must drop rp_mutex before taking disc_mutex.
303 			 * Re-evaluate state to allow for restart.
304 			 * A transition to RESTART state must only happen
305 			 * while disc_mutex is held and rdata is on the list.
306 			 */
307 			mutex_lock(&lport->disc.disc_mutex);
308 			mutex_lock(&rdata->rp_mutex);
309 			if (rdata->rp_state == RPORT_ST_RESTART)
310 				restart = 1;
311 			else
312 				list_del(&rdata->peers);
313 			rdata->event = RPORT_EV_NONE;
314 			mutex_unlock(&rdata->rp_mutex);
315 			mutex_unlock(&lport->disc.disc_mutex);
316 		}
317 
318 		if (rport_ops && rport_ops->event_callback) {
319 			FC_RPORT_DBG(rdata, "callback ev %d\n", event);
320 			rport_ops->event_callback(lport, rdata, event);
321 		}
322 		cancel_delayed_work_sync(&rdata->retry_work);
323 
324 		/*
325 		 * Reset any outstanding exchanges before freeing rport.
326 		 */
327 		lport->tt.exch_mgr_reset(lport, 0, port_id);
328 		lport->tt.exch_mgr_reset(lport, port_id, 0);
329 
330 		if (rport) {
331 			rpriv = rport->dd_data;
332 			rpriv->rp_state = RPORT_ST_DELETE;
333 			mutex_lock(&rdata->rp_mutex);
334 			rdata->rport = NULL;
335 			mutex_unlock(&rdata->rp_mutex);
336 			fc_remote_port_delete(rport);
337 		}
338 		if (restart) {
339 			mutex_lock(&rdata->rp_mutex);
340 			FC_RPORT_DBG(rdata, "work restart\n");
341 			fc_rport_enter_plogi(rdata);
342 			mutex_unlock(&rdata->rp_mutex);
343 		} else
344 			kref_put(&rdata->kref, lport->tt.rport_destroy);
345 		break;
346 
347 	default:
348 		mutex_unlock(&rdata->rp_mutex);
349 		break;
350 	}
351 }
352 
353 /**
354  * fc_rport_login() - Start the remote port login state machine
355  * @rdata: The remote port to be logged in to
356  *
357  * Locking Note: Called without the rport lock held. This
358  * function will hold the rport lock, call an _enter_*
359  * function and then unlock the rport.
360  *
361  * This indicates the intent to be logged into the remote port.
362  * If it appears we are already logged in, ADISC is used to verify
363  * the setup.
364  */
365 int fc_rport_login(struct fc_rport_priv *rdata)
366 {
367 	mutex_lock(&rdata->rp_mutex);
368 
369 	switch (rdata->rp_state) {
370 	case RPORT_ST_READY:
371 		FC_RPORT_DBG(rdata, "ADISC port\n");
372 		fc_rport_enter_adisc(rdata);
373 		break;
374 	case RPORT_ST_RESTART:
375 		break;
376 	case RPORT_ST_DELETE:
377 		FC_RPORT_DBG(rdata, "Restart deleted port\n");
378 		fc_rport_state_enter(rdata, RPORT_ST_RESTART);
379 		break;
380 	default:
381 		FC_RPORT_DBG(rdata, "Login to port\n");
382 		fc_rport_enter_plogi(rdata);
383 		break;
384 	}
385 	mutex_unlock(&rdata->rp_mutex);
386 
387 	return 0;
388 }
389 
390 /**
391  * fc_rport_enter_delete() - Schedule a remote port to be deleted
392  * @rdata: The remote port to be deleted
393  * @event: The event to report as the reason for deletion
394  *
395  * Locking Note: Called with the rport lock held.
396  *
397  * Allow state change into DELETE only once.
398  *
399  * Call queue_work only if there's no event already pending.
400  * Set the new event so that the old pending event will not occur.
401  * Since we have the mutex, even if fc_rport_work() is already started,
402  * it'll see the new event.
403  */
404 static void fc_rport_enter_delete(struct fc_rport_priv *rdata,
405 				  enum fc_rport_event event)
406 {
407 	if (rdata->rp_state == RPORT_ST_DELETE)
408 		return;
409 
410 	FC_RPORT_DBG(rdata, "Delete port\n");
411 
412 	fc_rport_state_enter(rdata, RPORT_ST_DELETE);
413 
414 	if (rdata->event == RPORT_EV_NONE)
415 		queue_work(rport_event_queue, &rdata->event_work);
416 	rdata->event = event;
417 }
418 
419 /**
420  * fc_rport_logoff() - Logoff and remove a remote port
421  * @rdata: The remote port to be logged off of
422  *
423  * Locking Note: Called without the rport lock held. This
424  * function will hold the rport lock, call an _enter_*
425  * function and then unlock the rport.
426  */
427 int fc_rport_logoff(struct fc_rport_priv *rdata)
428 {
429 	mutex_lock(&rdata->rp_mutex);
430 
431 	FC_RPORT_DBG(rdata, "Remove port\n");
432 
433 	if (rdata->rp_state == RPORT_ST_DELETE) {
434 		FC_RPORT_DBG(rdata, "Port in Delete state, not removing\n");
435 		goto out;
436 	}
437 
438 	if (rdata->rp_state == RPORT_ST_RESTART)
439 		FC_RPORT_DBG(rdata, "Port in Restart state, deleting\n");
440 	else
441 		fc_rport_enter_logo(rdata);
442 
443 	/*
444 	 * Change the state to Delete so that we discard
445 	 * the response.
446 	 */
447 	fc_rport_enter_delete(rdata, RPORT_EV_STOP);
448 out:
449 	mutex_unlock(&rdata->rp_mutex);
450 	return 0;
451 }
452 
453 /**
454  * fc_rport_enter_ready() - Transition to the RPORT_ST_READY state
455  * @rdata: The remote port that is ready
456  *
457  * Locking Note: The rport lock is expected to be held before calling
458  * this routine.
459  */
460 static void fc_rport_enter_ready(struct fc_rport_priv *rdata)
461 {
462 	fc_rport_state_enter(rdata, RPORT_ST_READY);
463 
464 	FC_RPORT_DBG(rdata, "Port is Ready\n");
465 
466 	if (rdata->event == RPORT_EV_NONE)
467 		queue_work(rport_event_queue, &rdata->event_work);
468 	rdata->event = RPORT_EV_READY;
469 }
470 
471 /**
472  * fc_rport_timeout() - Handler for the retry_work timer
473  * @work: Handle to the remote port that has timed out
474  *
475  * Locking Note: Called without the rport lock held. This
476  * function will hold the rport lock, call an _enter_*
477  * function and then unlock the rport.
478  */
479 static void fc_rport_timeout(struct work_struct *work)
480 {
481 	struct fc_rport_priv *rdata =
482 		container_of(work, struct fc_rport_priv, retry_work.work);
483 
484 	mutex_lock(&rdata->rp_mutex);
485 
486 	switch (rdata->rp_state) {
487 	case RPORT_ST_PLOGI:
488 		fc_rport_enter_plogi(rdata);
489 		break;
490 	case RPORT_ST_PRLI:
491 		fc_rport_enter_prli(rdata);
492 		break;
493 	case RPORT_ST_RTV:
494 		fc_rport_enter_rtv(rdata);
495 		break;
496 	case RPORT_ST_LOGO:
497 		fc_rport_enter_logo(rdata);
498 		break;
499 	case RPORT_ST_ADISC:
500 		fc_rport_enter_adisc(rdata);
501 		break;
502 	case RPORT_ST_READY:
503 	case RPORT_ST_INIT:
504 	case RPORT_ST_DELETE:
505 	case RPORT_ST_RESTART:
506 		break;
507 	}
508 
509 	mutex_unlock(&rdata->rp_mutex);
510 }
511 
512 /**
513  * fc_rport_error() - Error handler, called once retries have been exhausted
514  * @rdata: The remote port the error is happened on
515  * @fp:	   The error code encapsulated in a frame pointer
516  *
517  * Locking Note: The rport lock is expected to be held before
518  * calling this routine
519  */
520 static void fc_rport_error(struct fc_rport_priv *rdata, struct fc_frame *fp)
521 {
522 	FC_RPORT_DBG(rdata, "Error %ld in state %s, retries %d\n",
523 		     IS_ERR(fp) ? -PTR_ERR(fp) : 0,
524 		     fc_rport_state(rdata), rdata->retries);
525 
526 	switch (rdata->rp_state) {
527 	case RPORT_ST_PLOGI:
528 	case RPORT_ST_LOGO:
529 		fc_rport_enter_delete(rdata, RPORT_EV_FAILED);
530 		break;
531 	case RPORT_ST_RTV:
532 		fc_rport_enter_ready(rdata);
533 		break;
534 	case RPORT_ST_PRLI:
535 	case RPORT_ST_ADISC:
536 		fc_rport_enter_logo(rdata);
537 		break;
538 	case RPORT_ST_DELETE:
539 	case RPORT_ST_RESTART:
540 	case RPORT_ST_READY:
541 	case RPORT_ST_INIT:
542 		break;
543 	}
544 }
545 
546 /**
547  * fc_rport_error_retry() - Handler for remote port state retries
548  * @rdata: The remote port whose state is to be retried
549  * @fp:	   The error code encapsulated in a frame pointer
550  *
551  * If the error was an exchange timeout retry immediately,
552  * otherwise wait for E_D_TOV.
553  *
554  * Locking Note: The rport lock is expected to be held before
555  * calling this routine
556  */
557 static void fc_rport_error_retry(struct fc_rport_priv *rdata,
558 				 struct fc_frame *fp)
559 {
560 	unsigned long delay = FC_DEF_E_D_TOV;
561 
562 	/* make sure this isn't an FC_EX_CLOSED error, never retry those */
563 	if (PTR_ERR(fp) == -FC_EX_CLOSED)
564 		return fc_rport_error(rdata, fp);
565 
566 	if (rdata->retries < rdata->local_port->max_rport_retry_count) {
567 		FC_RPORT_DBG(rdata, "Error %ld in state %s, retrying\n",
568 			     PTR_ERR(fp), fc_rport_state(rdata));
569 		rdata->retries++;
570 		/* no additional delay on exchange timeouts */
571 		if (PTR_ERR(fp) == -FC_EX_TIMEOUT)
572 			delay = 0;
573 		schedule_delayed_work(&rdata->retry_work, delay);
574 		return;
575 	}
576 
577 	return fc_rport_error(rdata, fp);
578 }
579 
580 /**
581  * fc_rport_plogi_recv_resp() - Handler for ELS PLOGI responses
582  * @sp:	       The sequence the PLOGI is on
583  * @fp:	       The PLOGI response frame
584  * @rdata_arg: The remote port that sent the PLOGI response
585  *
586  * Locking Note: This function will be called without the rport lock
587  * held, but it will lock, call an _enter_* function or fc_rport_error
588  * and then unlock the rport.
589  */
590 static void fc_rport_plogi_resp(struct fc_seq *sp, struct fc_frame *fp,
591 				void *rdata_arg)
592 {
593 	struct fc_rport_priv *rdata = rdata_arg;
594 	struct fc_lport *lport = rdata->local_port;
595 	struct fc_els_flogi *plp = NULL;
596 	unsigned int tov;
597 	u16 csp_seq;
598 	u16 cssp_seq;
599 	u8 op;
600 
601 	mutex_lock(&rdata->rp_mutex);
602 
603 	FC_RPORT_DBG(rdata, "Received a PLOGI %s\n", fc_els_resp_type(fp));
604 
605 	if (rdata->rp_state != RPORT_ST_PLOGI) {
606 		FC_RPORT_DBG(rdata, "Received a PLOGI response, but in state "
607 			     "%s\n", fc_rport_state(rdata));
608 		if (IS_ERR(fp))
609 			goto err;
610 		goto out;
611 	}
612 
613 	if (IS_ERR(fp)) {
614 		fc_rport_error_retry(rdata, fp);
615 		goto err;
616 	}
617 
618 	op = fc_frame_payload_op(fp);
619 	if (op == ELS_LS_ACC &&
620 	    (plp = fc_frame_payload_get(fp, sizeof(*plp))) != NULL) {
621 		rdata->ids.port_name = get_unaligned_be64(&plp->fl_wwpn);
622 		rdata->ids.node_name = get_unaligned_be64(&plp->fl_wwnn);
623 
624 		tov = ntohl(plp->fl_csp.sp_e_d_tov);
625 		if (ntohs(plp->fl_csp.sp_features) & FC_SP_FT_EDTR)
626 			tov /= 1000000;
627 		if (tov > rdata->e_d_tov)
628 			rdata->e_d_tov = tov;
629 		csp_seq = ntohs(plp->fl_csp.sp_tot_seq);
630 		cssp_seq = ntohs(plp->fl_cssp[3 - 1].cp_con_seq);
631 		if (cssp_seq < csp_seq)
632 			csp_seq = cssp_seq;
633 		rdata->max_seq = csp_seq;
634 		rdata->maxframe_size = fc_plogi_get_maxframe(plp, lport->mfs);
635 		fc_rport_enter_prli(rdata);
636 	} else
637 		fc_rport_error_retry(rdata, fp);
638 
639 out:
640 	fc_frame_free(fp);
641 err:
642 	mutex_unlock(&rdata->rp_mutex);
643 	kref_put(&rdata->kref, rdata->local_port->tt.rport_destroy);
644 }
645 
646 /**
647  * fc_rport_enter_plogi() - Send Port Login (PLOGI) request
648  * @rdata: The remote port to send a PLOGI to
649  *
650  * Locking Note: The rport lock is expected to be held before calling
651  * this routine.
652  */
653 static void fc_rport_enter_plogi(struct fc_rport_priv *rdata)
654 {
655 	struct fc_lport *lport = rdata->local_port;
656 	struct fc_frame *fp;
657 
658 	FC_RPORT_DBG(rdata, "Port entered PLOGI state from %s state\n",
659 		     fc_rport_state(rdata));
660 
661 	fc_rport_state_enter(rdata, RPORT_ST_PLOGI);
662 
663 	rdata->maxframe_size = FC_MIN_MAX_PAYLOAD;
664 	fp = fc_frame_alloc(lport, sizeof(struct fc_els_flogi));
665 	if (!fp) {
666 		fc_rport_error_retry(rdata, fp);
667 		return;
668 	}
669 	rdata->e_d_tov = lport->e_d_tov;
670 
671 	if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_PLOGI,
672 				  fc_rport_plogi_resp, rdata,
673 				  2 * lport->r_a_tov))
674 		fc_rport_error_retry(rdata, NULL);
675 	else
676 		kref_get(&rdata->kref);
677 }
678 
679 /**
680  * fc_rport_prli_resp() - Process Login (PRLI) response handler
681  * @sp:	       The sequence the PRLI response was on
682  * @fp:	       The PRLI response frame
683  * @rdata_arg: The remote port that sent the PRLI response
684  *
685  * Locking Note: This function will be called without the rport lock
686  * held, but it will lock, call an _enter_* function or fc_rport_error
687  * and then unlock the rport.
688  */
689 static void fc_rport_prli_resp(struct fc_seq *sp, struct fc_frame *fp,
690 			       void *rdata_arg)
691 {
692 	struct fc_rport_priv *rdata = rdata_arg;
693 	struct {
694 		struct fc_els_prli prli;
695 		struct fc_els_spp spp;
696 	} *pp;
697 	u32 roles = FC_RPORT_ROLE_UNKNOWN;
698 	u32 fcp_parm = 0;
699 	u8 op;
700 
701 	mutex_lock(&rdata->rp_mutex);
702 
703 	FC_RPORT_DBG(rdata, "Received a PRLI %s\n", fc_els_resp_type(fp));
704 
705 	if (rdata->rp_state != RPORT_ST_PRLI) {
706 		FC_RPORT_DBG(rdata, "Received a PRLI response, but in state "
707 			     "%s\n", fc_rport_state(rdata));
708 		if (IS_ERR(fp))
709 			goto err;
710 		goto out;
711 	}
712 
713 	if (IS_ERR(fp)) {
714 		fc_rport_error_retry(rdata, fp);
715 		goto err;
716 	}
717 
718 	/* reinitialize remote port roles */
719 	rdata->ids.roles = FC_RPORT_ROLE_UNKNOWN;
720 
721 	op = fc_frame_payload_op(fp);
722 	if (op == ELS_LS_ACC) {
723 		pp = fc_frame_payload_get(fp, sizeof(*pp));
724 		if (pp && pp->prli.prli_spp_len >= sizeof(pp->spp)) {
725 			fcp_parm = ntohl(pp->spp.spp_params);
726 			if (fcp_parm & FCP_SPPF_RETRY)
727 				rdata->flags |= FC_RP_FLAGS_RETRY;
728 		}
729 
730 		rdata->supported_classes = FC_COS_CLASS3;
731 		if (fcp_parm & FCP_SPPF_INIT_FCN)
732 			roles |= FC_RPORT_ROLE_FCP_INITIATOR;
733 		if (fcp_parm & FCP_SPPF_TARG_FCN)
734 			roles |= FC_RPORT_ROLE_FCP_TARGET;
735 
736 		rdata->ids.roles = roles;
737 		fc_rport_enter_rtv(rdata);
738 
739 	} else {
740 		FC_RPORT_DBG(rdata, "Bad ELS response for PRLI command\n");
741 		fc_rport_enter_delete(rdata, RPORT_EV_FAILED);
742 	}
743 
744 out:
745 	fc_frame_free(fp);
746 err:
747 	mutex_unlock(&rdata->rp_mutex);
748 	kref_put(&rdata->kref, rdata->local_port->tt.rport_destroy);
749 }
750 
751 /**
752  * fc_rport_logo_resp() - Handler for logout (LOGO) responses
753  * @sp:	       The sequence the LOGO was on
754  * @fp:	       The LOGO response frame
755  * @rdata_arg: The remote port that sent the LOGO response
756  *
757  * Locking Note: This function will be called without the rport lock
758  * held, but it will lock, call an _enter_* function or fc_rport_error
759  * and then unlock the rport.
760  */
761 static void fc_rport_logo_resp(struct fc_seq *sp, struct fc_frame *fp,
762 			       void *rdata_arg)
763 {
764 	struct fc_rport_priv *rdata = rdata_arg;
765 	u8 op;
766 
767 	mutex_lock(&rdata->rp_mutex);
768 
769 	FC_RPORT_DBG(rdata, "Received a LOGO %s\n", fc_els_resp_type(fp));
770 
771 	if (rdata->rp_state != RPORT_ST_LOGO) {
772 		FC_RPORT_DBG(rdata, "Received a LOGO response, but in state "
773 			     "%s\n", fc_rport_state(rdata));
774 		if (IS_ERR(fp))
775 			goto err;
776 		goto out;
777 	}
778 
779 	if (IS_ERR(fp)) {
780 		fc_rport_error_retry(rdata, fp);
781 		goto err;
782 	}
783 
784 	op = fc_frame_payload_op(fp);
785 	if (op != ELS_LS_ACC)
786 		FC_RPORT_DBG(rdata, "Bad ELS response op %x for LOGO command\n",
787 			     op);
788 	fc_rport_enter_delete(rdata, RPORT_EV_LOGO);
789 
790 out:
791 	fc_frame_free(fp);
792 err:
793 	mutex_unlock(&rdata->rp_mutex);
794 	kref_put(&rdata->kref, rdata->local_port->tt.rport_destroy);
795 }
796 
797 /**
798  * fc_rport_enter_prli() - Send Process Login (PRLI) request
799  * @rdata: The remote port to send the PRLI request to
800  *
801  * Locking Note: The rport lock is expected to be held before calling
802  * this routine.
803  */
804 static void fc_rport_enter_prli(struct fc_rport_priv *rdata)
805 {
806 	struct fc_lport *lport = rdata->local_port;
807 	struct {
808 		struct fc_els_prli prli;
809 		struct fc_els_spp spp;
810 	} *pp;
811 	struct fc_frame *fp;
812 
813 	/*
814 	 * If the rport is one of the well known addresses
815 	 * we skip PRLI and RTV and go straight to READY.
816 	 */
817 	if (rdata->ids.port_id >= FC_FID_DOM_MGR) {
818 		fc_rport_enter_ready(rdata);
819 		return;
820 	}
821 
822 	FC_RPORT_DBG(rdata, "Port entered PRLI state from %s state\n",
823 		     fc_rport_state(rdata));
824 
825 	fc_rport_state_enter(rdata, RPORT_ST_PRLI);
826 
827 	fp = fc_frame_alloc(lport, sizeof(*pp));
828 	if (!fp) {
829 		fc_rport_error_retry(rdata, fp);
830 		return;
831 	}
832 
833 	if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_PRLI,
834 				  fc_rport_prli_resp, rdata,
835 				  2 * lport->r_a_tov))
836 		fc_rport_error_retry(rdata, NULL);
837 	else
838 		kref_get(&rdata->kref);
839 }
840 
841 /**
842  * fc_rport_els_rtv_resp() - Handler for Request Timeout Value (RTV) responses
843  * @sp:	       The sequence the RTV was on
844  * @fp:	       The RTV response frame
845  * @rdata_arg: The remote port that sent the RTV response
846  *
847  * Many targets don't seem to support this.
848  *
849  * Locking Note: This function will be called without the rport lock
850  * held, but it will lock, call an _enter_* function or fc_rport_error
851  * and then unlock the rport.
852  */
853 static void fc_rport_rtv_resp(struct fc_seq *sp, struct fc_frame *fp,
854 			      void *rdata_arg)
855 {
856 	struct fc_rport_priv *rdata = rdata_arg;
857 	u8 op;
858 
859 	mutex_lock(&rdata->rp_mutex);
860 
861 	FC_RPORT_DBG(rdata, "Received a RTV %s\n", fc_els_resp_type(fp));
862 
863 	if (rdata->rp_state != RPORT_ST_RTV) {
864 		FC_RPORT_DBG(rdata, "Received a RTV response, but in state "
865 			     "%s\n", fc_rport_state(rdata));
866 		if (IS_ERR(fp))
867 			goto err;
868 		goto out;
869 	}
870 
871 	if (IS_ERR(fp)) {
872 		fc_rport_error(rdata, fp);
873 		goto err;
874 	}
875 
876 	op = fc_frame_payload_op(fp);
877 	if (op == ELS_LS_ACC) {
878 		struct fc_els_rtv_acc *rtv;
879 		u32 toq;
880 		u32 tov;
881 
882 		rtv = fc_frame_payload_get(fp, sizeof(*rtv));
883 		if (rtv) {
884 			toq = ntohl(rtv->rtv_toq);
885 			tov = ntohl(rtv->rtv_r_a_tov);
886 			if (tov == 0)
887 				tov = 1;
888 			rdata->r_a_tov = tov;
889 			tov = ntohl(rtv->rtv_e_d_tov);
890 			if (toq & FC_ELS_RTV_EDRES)
891 				tov /= 1000000;
892 			if (tov == 0)
893 				tov = 1;
894 			rdata->e_d_tov = tov;
895 		}
896 	}
897 
898 	fc_rport_enter_ready(rdata);
899 
900 out:
901 	fc_frame_free(fp);
902 err:
903 	mutex_unlock(&rdata->rp_mutex);
904 	kref_put(&rdata->kref, rdata->local_port->tt.rport_destroy);
905 }
906 
907 /**
908  * fc_rport_enter_rtv() - Send Request Timeout Value (RTV) request
909  * @rdata: The remote port to send the RTV request to
910  *
911  * Locking Note: The rport lock is expected to be held before calling
912  * this routine.
913  */
914 static void fc_rport_enter_rtv(struct fc_rport_priv *rdata)
915 {
916 	struct fc_frame *fp;
917 	struct fc_lport *lport = rdata->local_port;
918 
919 	FC_RPORT_DBG(rdata, "Port entered RTV state from %s state\n",
920 		     fc_rport_state(rdata));
921 
922 	fc_rport_state_enter(rdata, RPORT_ST_RTV);
923 
924 	fp = fc_frame_alloc(lport, sizeof(struct fc_els_rtv));
925 	if (!fp) {
926 		fc_rport_error_retry(rdata, fp);
927 		return;
928 	}
929 
930 	if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_RTV,
931 				  fc_rport_rtv_resp, rdata,
932 				  2 * lport->r_a_tov))
933 		fc_rport_error_retry(rdata, NULL);
934 	else
935 		kref_get(&rdata->kref);
936 }
937 
938 /**
939  * fc_rport_enter_logo() - Send a logout (LOGO) request
940  * @rdata: The remote port to send the LOGO request to
941  *
942  * Locking Note: The rport lock is expected to be held before calling
943  * this routine.
944  */
945 static void fc_rport_enter_logo(struct fc_rport_priv *rdata)
946 {
947 	struct fc_lport *lport = rdata->local_port;
948 	struct fc_frame *fp;
949 
950 	FC_RPORT_DBG(rdata, "Port entered LOGO state from %s state\n",
951 		     fc_rport_state(rdata));
952 
953 	fc_rport_state_enter(rdata, RPORT_ST_LOGO);
954 
955 	fp = fc_frame_alloc(lport, sizeof(struct fc_els_logo));
956 	if (!fp) {
957 		fc_rport_error_retry(rdata, fp);
958 		return;
959 	}
960 
961 	if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_LOGO,
962 				  fc_rport_logo_resp, rdata,
963 				  2 * lport->r_a_tov))
964 		fc_rport_error_retry(rdata, NULL);
965 	else
966 		kref_get(&rdata->kref);
967 }
968 
969 /**
970  * fc_rport_els_adisc_resp() - Handler for Address Discovery (ADISC) responses
971  * @sp:	       The sequence the ADISC response was on
972  * @fp:	       The ADISC response frame
973  * @rdata_arg: The remote port that sent the ADISC response
974  *
975  * Locking Note: This function will be called without the rport lock
976  * held, but it will lock, call an _enter_* function or fc_rport_error
977  * and then unlock the rport.
978  */
979 static void fc_rport_adisc_resp(struct fc_seq *sp, struct fc_frame *fp,
980 				void *rdata_arg)
981 {
982 	struct fc_rport_priv *rdata = rdata_arg;
983 	struct fc_els_adisc *adisc;
984 	u8 op;
985 
986 	mutex_lock(&rdata->rp_mutex);
987 
988 	FC_RPORT_DBG(rdata, "Received a ADISC response\n");
989 
990 	if (rdata->rp_state != RPORT_ST_ADISC) {
991 		FC_RPORT_DBG(rdata, "Received a ADISC resp but in state %s\n",
992 			     fc_rport_state(rdata));
993 		if (IS_ERR(fp))
994 			goto err;
995 		goto out;
996 	}
997 
998 	if (IS_ERR(fp)) {
999 		fc_rport_error(rdata, fp);
1000 		goto err;
1001 	}
1002 
1003 	/*
1004 	 * If address verification failed.  Consider us logged out of the rport.
1005 	 * Since the rport is still in discovery, we want to be
1006 	 * logged in, so go to PLOGI state.  Otherwise, go back to READY.
1007 	 */
1008 	op = fc_frame_payload_op(fp);
1009 	adisc = fc_frame_payload_get(fp, sizeof(*adisc));
1010 	if (op != ELS_LS_ACC || !adisc ||
1011 	    ntoh24(adisc->adisc_port_id) != rdata->ids.port_id ||
1012 	    get_unaligned_be64(&adisc->adisc_wwpn) != rdata->ids.port_name ||
1013 	    get_unaligned_be64(&adisc->adisc_wwnn) != rdata->ids.node_name) {
1014 		FC_RPORT_DBG(rdata, "ADISC error or mismatch\n");
1015 		fc_rport_enter_plogi(rdata);
1016 	} else {
1017 		FC_RPORT_DBG(rdata, "ADISC OK\n");
1018 		fc_rport_enter_ready(rdata);
1019 	}
1020 out:
1021 	fc_frame_free(fp);
1022 err:
1023 	mutex_unlock(&rdata->rp_mutex);
1024 	kref_put(&rdata->kref, rdata->local_port->tt.rport_destroy);
1025 }
1026 
1027 /**
1028  * fc_rport_enter_adisc() - Send Address Discover (ADISC) request
1029  * @rdata: The remote port to send the ADISC request to
1030  *
1031  * Locking Note: The rport lock is expected to be held before calling
1032  * this routine.
1033  */
1034 static void fc_rport_enter_adisc(struct fc_rport_priv *rdata)
1035 {
1036 	struct fc_lport *lport = rdata->local_port;
1037 	struct fc_frame *fp;
1038 
1039 	FC_RPORT_DBG(rdata, "sending ADISC from %s state\n",
1040 		     fc_rport_state(rdata));
1041 
1042 	fc_rport_state_enter(rdata, RPORT_ST_ADISC);
1043 
1044 	fp = fc_frame_alloc(lport, sizeof(struct fc_els_adisc));
1045 	if (!fp) {
1046 		fc_rport_error_retry(rdata, fp);
1047 		return;
1048 	}
1049 	if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_ADISC,
1050 				  fc_rport_adisc_resp, rdata,
1051 				  2 * lport->r_a_tov))
1052 		fc_rport_error_retry(rdata, NULL);
1053 	else
1054 		kref_get(&rdata->kref);
1055 }
1056 
1057 /**
1058  * fc_rport_recv_adisc_req() - Handler for Address Discovery (ADISC) requests
1059  * @rdata: The remote port that sent the ADISC request
1060  * @sp:	   The sequence the ADISC request was on
1061  * @in_fp: The ADISC request frame
1062  *
1063  * Locking Note:  Called with the lport and rport locks held.
1064  */
1065 static void fc_rport_recv_adisc_req(struct fc_rport_priv *rdata,
1066 				    struct fc_seq *sp, struct fc_frame *in_fp)
1067 {
1068 	struct fc_lport *lport = rdata->local_port;
1069 	struct fc_frame *fp;
1070 	struct fc_exch *ep = fc_seq_exch(sp);
1071 	struct fc_els_adisc *adisc;
1072 	struct fc_seq_els_data rjt_data;
1073 	u32 f_ctl;
1074 
1075 	FC_RPORT_DBG(rdata, "Received ADISC request\n");
1076 
1077 	adisc = fc_frame_payload_get(in_fp, sizeof(*adisc));
1078 	if (!adisc) {
1079 		rjt_data.fp = NULL;
1080 		rjt_data.reason = ELS_RJT_PROT;
1081 		rjt_data.explan = ELS_EXPL_INV_LEN;
1082 		lport->tt.seq_els_rsp_send(sp, ELS_LS_RJT, &rjt_data);
1083 		goto drop;
1084 	}
1085 
1086 	fp = fc_frame_alloc(lport, sizeof(*adisc));
1087 	if (!fp)
1088 		goto drop;
1089 	fc_adisc_fill(lport, fp);
1090 	adisc = fc_frame_payload_get(fp, sizeof(*adisc));
1091 	adisc->adisc_cmd = ELS_LS_ACC;
1092 	sp = lport->tt.seq_start_next(sp);
1093 	f_ctl = FC_FC_EX_CTX | FC_FC_LAST_SEQ | FC_FC_END_SEQ | FC_FC_SEQ_INIT;
1094 	fc_fill_fc_hdr(fp, FC_RCTL_ELS_REP, ep->did, ep->sid,
1095 		       FC_TYPE_ELS, f_ctl, 0);
1096 	lport->tt.seq_send(lport, sp, fp);
1097 drop:
1098 	fc_frame_free(in_fp);
1099 }
1100 
1101 /**
1102  * fc_rport_recv_rls_req() - Handle received Read Link Status request
1103  * @rdata: The remote port that sent the RLS request
1104  * @sp:	The sequence that the RLS was on
1105  * @rx_fp: The PRLI request frame
1106  *
1107  * Locking Note: The rport lock is expected to be held before calling
1108  * this function.
1109  */
1110 static void fc_rport_recv_rls_req(struct fc_rport_priv *rdata,
1111 				  struct fc_seq *sp, struct fc_frame *rx_fp)
1112 
1113 {
1114 	struct fc_lport *lport = rdata->local_port;
1115 	struct fc_frame *fp;
1116 	struct fc_exch *ep = fc_seq_exch(sp);
1117 	struct fc_els_rls *rls;
1118 	struct fc_els_rls_resp *rsp;
1119 	struct fc_els_lesb *lesb;
1120 	struct fc_seq_els_data rjt_data;
1121 	struct fc_host_statistics *hst;
1122 	u32 f_ctl;
1123 
1124 	FC_RPORT_DBG(rdata, "Received RLS request while in state %s\n",
1125 		     fc_rport_state(rdata));
1126 
1127 	rls = fc_frame_payload_get(rx_fp, sizeof(*rls));
1128 	if (!rls) {
1129 		rjt_data.reason = ELS_RJT_PROT;
1130 		rjt_data.explan = ELS_EXPL_INV_LEN;
1131 		goto out_rjt;
1132 	}
1133 
1134 	fp = fc_frame_alloc(lport, sizeof(*rsp));
1135 	if (!fp) {
1136 		rjt_data.reason = ELS_RJT_UNAB;
1137 		rjt_data.explan = ELS_EXPL_INSUF_RES;
1138 		goto out_rjt;
1139 	}
1140 
1141 	rsp = fc_frame_payload_get(fp, sizeof(*rsp));
1142 	memset(rsp, 0, sizeof(*rsp));
1143 	rsp->rls_cmd = ELS_LS_ACC;
1144 	lesb = &rsp->rls_lesb;
1145 	if (lport->tt.get_lesb) {
1146 		/* get LESB from LLD if it supports it */
1147 		lport->tt.get_lesb(lport, lesb);
1148 	} else {
1149 		fc_get_host_stats(lport->host);
1150 		hst = &lport->host_stats;
1151 		lesb->lesb_link_fail = htonl(hst->link_failure_count);
1152 		lesb->lesb_sync_loss = htonl(hst->loss_of_sync_count);
1153 		lesb->lesb_sig_loss = htonl(hst->loss_of_signal_count);
1154 		lesb->lesb_prim_err = htonl(hst->prim_seq_protocol_err_count);
1155 		lesb->lesb_inv_word = htonl(hst->invalid_tx_word_count);
1156 		lesb->lesb_inv_crc = htonl(hst->invalid_crc_count);
1157 	}
1158 
1159 	sp = lport->tt.seq_start_next(sp);
1160 	f_ctl = FC_FC_EX_CTX | FC_FC_LAST_SEQ | FC_FC_END_SEQ;
1161 	fc_fill_fc_hdr(fp, FC_RCTL_ELS_REP, ep->did, ep->sid,
1162 		       FC_TYPE_ELS, f_ctl, 0);
1163 	lport->tt.seq_send(lport, sp, fp);
1164 	goto out;
1165 
1166 out_rjt:
1167 	rjt_data.fp = NULL;
1168 	lport->tt.seq_els_rsp_send(sp, ELS_LS_RJT, &rjt_data);
1169 out:
1170 	fc_frame_free(rx_fp);
1171 }
1172 
1173 /**
1174  * fc_rport_recv_els_req() - Handler for validated ELS requests
1175  * @lport: The local port that received the ELS request
1176  * @sp:	   The sequence that the ELS request was on
1177  * @fp:	   The ELS request frame
1178  *
1179  * Handle incoming ELS requests that require port login.
1180  * The ELS opcode has already been validated by the caller.
1181  *
1182  * Locking Note: Called with the lport lock held.
1183  */
1184 static void fc_rport_recv_els_req(struct fc_lport *lport,
1185 				  struct fc_seq *sp, struct fc_frame *fp)
1186 {
1187 	struct fc_rport_priv *rdata;
1188 	struct fc_frame_header *fh;
1189 	struct fc_seq_els_data els_data;
1190 
1191 	els_data.fp = NULL;
1192 	els_data.reason = ELS_RJT_UNAB;
1193 	els_data.explan = ELS_EXPL_PLOGI_REQD;
1194 
1195 	fh = fc_frame_header_get(fp);
1196 
1197 	mutex_lock(&lport->disc.disc_mutex);
1198 	rdata = lport->tt.rport_lookup(lport, ntoh24(fh->fh_s_id));
1199 	if (!rdata) {
1200 		mutex_unlock(&lport->disc.disc_mutex);
1201 		goto reject;
1202 	}
1203 	mutex_lock(&rdata->rp_mutex);
1204 	mutex_unlock(&lport->disc.disc_mutex);
1205 
1206 	switch (rdata->rp_state) {
1207 	case RPORT_ST_PRLI:
1208 	case RPORT_ST_RTV:
1209 	case RPORT_ST_READY:
1210 	case RPORT_ST_ADISC:
1211 		break;
1212 	default:
1213 		mutex_unlock(&rdata->rp_mutex);
1214 		goto reject;
1215 	}
1216 
1217 	switch (fc_frame_payload_op(fp)) {
1218 	case ELS_PRLI:
1219 		fc_rport_recv_prli_req(rdata, sp, fp);
1220 		break;
1221 	case ELS_PRLO:
1222 		fc_rport_recv_prlo_req(rdata, sp, fp);
1223 		break;
1224 	case ELS_ADISC:
1225 		fc_rport_recv_adisc_req(rdata, sp, fp);
1226 		break;
1227 	case ELS_RRQ:
1228 		els_data.fp = fp;
1229 		lport->tt.seq_els_rsp_send(sp, ELS_RRQ, &els_data);
1230 		break;
1231 	case ELS_REC:
1232 		els_data.fp = fp;
1233 		lport->tt.seq_els_rsp_send(sp, ELS_REC, &els_data);
1234 		break;
1235 	case ELS_RLS:
1236 		fc_rport_recv_rls_req(rdata, sp, fp);
1237 		break;
1238 	default:
1239 		fc_frame_free(fp);	/* can't happen */
1240 		break;
1241 	}
1242 
1243 	mutex_unlock(&rdata->rp_mutex);
1244 	return;
1245 
1246 reject:
1247 	lport->tt.seq_els_rsp_send(sp, ELS_LS_RJT, &els_data);
1248 	fc_frame_free(fp);
1249 }
1250 
1251 /**
1252  * fc_rport_recv_req() - Handler for requests
1253  * @sp:	   The sequence the request was on
1254  * @fp:	   The request frame
1255  * @lport: The local port that received the request
1256  *
1257  * Locking Note: Called with the lport lock held.
1258  */
1259 void fc_rport_recv_req(struct fc_seq *sp, struct fc_frame *fp,
1260 		       struct fc_lport *lport)
1261 {
1262 	struct fc_seq_els_data els_data;
1263 
1264 	/*
1265 	 * Handle PLOGI and LOGO requests separately, since they
1266 	 * don't require prior login.
1267 	 * Check for unsupported opcodes first and reject them.
1268 	 * For some ops, it would be incorrect to reject with "PLOGI required".
1269 	 */
1270 	switch (fc_frame_payload_op(fp)) {
1271 	case ELS_PLOGI:
1272 		fc_rport_recv_plogi_req(lport, sp, fp);
1273 		break;
1274 	case ELS_LOGO:
1275 		fc_rport_recv_logo_req(lport, sp, fp);
1276 		break;
1277 	case ELS_PRLI:
1278 	case ELS_PRLO:
1279 	case ELS_ADISC:
1280 	case ELS_RRQ:
1281 	case ELS_REC:
1282 	case ELS_RLS:
1283 		fc_rport_recv_els_req(lport, sp, fp);
1284 		break;
1285 	default:
1286 		fc_frame_free(fp);
1287 		els_data.fp = NULL;
1288 		els_data.reason = ELS_RJT_UNSUP;
1289 		els_data.explan = ELS_EXPL_NONE;
1290 		lport->tt.seq_els_rsp_send(sp, ELS_LS_RJT, &els_data);
1291 		break;
1292 	}
1293 }
1294 
1295 /**
1296  * fc_rport_recv_plogi_req() - Handler for Port Login (PLOGI) requests
1297  * @lport: The local port that received the PLOGI request
1298  * @sp:	   The sequence that the PLOGI request was on
1299  * @rx_fp: The PLOGI request frame
1300  *
1301  * Locking Note: The rport lock is held before calling this function.
1302  */
1303 static void fc_rport_recv_plogi_req(struct fc_lport *lport,
1304 				    struct fc_seq *sp, struct fc_frame *rx_fp)
1305 {
1306 	struct fc_disc *disc;
1307 	struct fc_rport_priv *rdata;
1308 	struct fc_frame *fp = rx_fp;
1309 	struct fc_exch *ep;
1310 	struct fc_frame_header *fh;
1311 	struct fc_els_flogi *pl;
1312 	struct fc_seq_els_data rjt_data;
1313 	u32 sid, f_ctl;
1314 
1315 	rjt_data.fp = NULL;
1316 	fh = fc_frame_header_get(fp);
1317 	sid = ntoh24(fh->fh_s_id);
1318 
1319 	FC_RPORT_ID_DBG(lport, sid, "Received PLOGI request\n");
1320 
1321 	pl = fc_frame_payload_get(fp, sizeof(*pl));
1322 	if (!pl) {
1323 		FC_RPORT_ID_DBG(lport, sid, "Received PLOGI too short\n");
1324 		rjt_data.reason = ELS_RJT_PROT;
1325 		rjt_data.explan = ELS_EXPL_INV_LEN;
1326 		goto reject;
1327 	}
1328 
1329 	disc = &lport->disc;
1330 	mutex_lock(&disc->disc_mutex);
1331 	rdata = lport->tt.rport_create(lport, sid);
1332 	if (!rdata) {
1333 		mutex_unlock(&disc->disc_mutex);
1334 		rjt_data.reason = ELS_RJT_UNAB;
1335 		rjt_data.explan = ELS_EXPL_INSUF_RES;
1336 		goto reject;
1337 	}
1338 
1339 	mutex_lock(&rdata->rp_mutex);
1340 	mutex_unlock(&disc->disc_mutex);
1341 
1342 	rdata->ids.port_name = get_unaligned_be64(&pl->fl_wwpn);
1343 	rdata->ids.node_name = get_unaligned_be64(&pl->fl_wwnn);
1344 
1345 	/*
1346 	 * If the rport was just created, possibly due to the incoming PLOGI,
1347 	 * set the state appropriately and accept the PLOGI.
1348 	 *
1349 	 * If we had also sent a PLOGI, and if the received PLOGI is from a
1350 	 * higher WWPN, we accept it, otherwise an LS_RJT is sent with reason
1351 	 * "command already in progress".
1352 	 *
1353 	 * XXX TBD: If the session was ready before, the PLOGI should result in
1354 	 * all outstanding exchanges being reset.
1355 	 */
1356 	switch (rdata->rp_state) {
1357 	case RPORT_ST_INIT:
1358 		FC_RPORT_DBG(rdata, "Received PLOGI in INIT state\n");
1359 		break;
1360 	case RPORT_ST_PLOGI:
1361 		FC_RPORT_DBG(rdata, "Received PLOGI in PLOGI state\n");
1362 		if (rdata->ids.port_name < lport->wwpn) {
1363 			mutex_unlock(&rdata->rp_mutex);
1364 			rjt_data.reason = ELS_RJT_INPROG;
1365 			rjt_data.explan = ELS_EXPL_NONE;
1366 			goto reject;
1367 		}
1368 		break;
1369 	case RPORT_ST_PRLI:
1370 	case RPORT_ST_RTV:
1371 	case RPORT_ST_READY:
1372 	case RPORT_ST_ADISC:
1373 		FC_RPORT_DBG(rdata, "Received PLOGI in logged-in state %d "
1374 			     "- ignored for now\n", rdata->rp_state);
1375 		/* XXX TBD - should reset */
1376 		break;
1377 	case RPORT_ST_DELETE:
1378 	case RPORT_ST_LOGO:
1379 	case RPORT_ST_RESTART:
1380 		FC_RPORT_DBG(rdata, "Received PLOGI in state %s - send busy\n",
1381 			     fc_rport_state(rdata));
1382 		mutex_unlock(&rdata->rp_mutex);
1383 		rjt_data.reason = ELS_RJT_BUSY;
1384 		rjt_data.explan = ELS_EXPL_NONE;
1385 		goto reject;
1386 	}
1387 
1388 	/*
1389 	 * Get session payload size from incoming PLOGI.
1390 	 */
1391 	rdata->maxframe_size = fc_plogi_get_maxframe(pl, lport->mfs);
1392 	fc_frame_free(rx_fp);
1393 
1394 	/*
1395 	 * Send LS_ACC.	 If this fails, the originator should retry.
1396 	 */
1397 	sp = lport->tt.seq_start_next(sp);
1398 	if (!sp)
1399 		goto out;
1400 	fp = fc_frame_alloc(lport, sizeof(*pl));
1401 	if (!fp)
1402 		goto out;
1403 
1404 	fc_plogi_fill(lport, fp, ELS_LS_ACC);
1405 	f_ctl = FC_FC_EX_CTX | FC_FC_LAST_SEQ | FC_FC_END_SEQ | FC_FC_SEQ_INIT;
1406 	ep = fc_seq_exch(sp);
1407 	fc_fill_fc_hdr(fp, FC_RCTL_ELS_REP, ep->did, ep->sid,
1408 		       FC_TYPE_ELS, f_ctl, 0);
1409 	lport->tt.seq_send(lport, sp, fp);
1410 	fc_rport_enter_prli(rdata);
1411 out:
1412 	mutex_unlock(&rdata->rp_mutex);
1413 	return;
1414 
1415 reject:
1416 	lport->tt.seq_els_rsp_send(sp, ELS_LS_RJT, &rjt_data);
1417 	fc_frame_free(fp);
1418 }
1419 
1420 /**
1421  * fc_rport_recv_prli_req() - Handler for process login (PRLI) requests
1422  * @rdata: The remote port that sent the PRLI request
1423  * @sp:	   The sequence that the PRLI was on
1424  * @rx_fp: The PRLI request frame
1425  *
1426  * Locking Note: The rport lock is exected to be held before calling
1427  * this function.
1428  */
1429 static void fc_rport_recv_prli_req(struct fc_rport_priv *rdata,
1430 				   struct fc_seq *sp, struct fc_frame *rx_fp)
1431 {
1432 	struct fc_lport *lport = rdata->local_port;
1433 	struct fc_exch *ep;
1434 	struct fc_frame *fp;
1435 	struct fc_frame_header *fh;
1436 	struct {
1437 		struct fc_els_prli prli;
1438 		struct fc_els_spp spp;
1439 	} *pp;
1440 	struct fc_els_spp *rspp;	/* request service param page */
1441 	struct fc_els_spp *spp;	/* response spp */
1442 	unsigned int len;
1443 	unsigned int plen;
1444 	enum fc_els_rjt_reason reason = ELS_RJT_UNAB;
1445 	enum fc_els_rjt_explan explan = ELS_EXPL_NONE;
1446 	enum fc_els_spp_resp resp;
1447 	struct fc_seq_els_data rjt_data;
1448 	u32 f_ctl;
1449 	u32 fcp_parm;
1450 	u32 roles = FC_RPORT_ROLE_UNKNOWN;
1451 	rjt_data.fp = NULL;
1452 
1453 	fh = fc_frame_header_get(rx_fp);
1454 
1455 	FC_RPORT_DBG(rdata, "Received PRLI request while in state %s\n",
1456 		     fc_rport_state(rdata));
1457 
1458 	switch (rdata->rp_state) {
1459 	case RPORT_ST_PRLI:
1460 	case RPORT_ST_RTV:
1461 	case RPORT_ST_READY:
1462 	case RPORT_ST_ADISC:
1463 		reason = ELS_RJT_NONE;
1464 		break;
1465 	default:
1466 		fc_frame_free(rx_fp);
1467 		return;
1468 		break;
1469 	}
1470 	len = fr_len(rx_fp) - sizeof(*fh);
1471 	pp = fc_frame_payload_get(rx_fp, sizeof(*pp));
1472 	if (pp == NULL) {
1473 		reason = ELS_RJT_PROT;
1474 		explan = ELS_EXPL_INV_LEN;
1475 	} else {
1476 		plen = ntohs(pp->prli.prli_len);
1477 		if ((plen % 4) != 0 || plen > len) {
1478 			reason = ELS_RJT_PROT;
1479 			explan = ELS_EXPL_INV_LEN;
1480 		} else if (plen < len) {
1481 			len = plen;
1482 		}
1483 		plen = pp->prli.prli_spp_len;
1484 		if ((plen % 4) != 0 || plen < sizeof(*spp) ||
1485 		    plen > len || len < sizeof(*pp)) {
1486 			reason = ELS_RJT_PROT;
1487 			explan = ELS_EXPL_INV_LEN;
1488 		}
1489 		rspp = &pp->spp;
1490 	}
1491 	if (reason != ELS_RJT_NONE ||
1492 	    (fp = fc_frame_alloc(lport, len)) == NULL) {
1493 		rjt_data.reason = reason;
1494 		rjt_data.explan = explan;
1495 		lport->tt.seq_els_rsp_send(sp, ELS_LS_RJT, &rjt_data);
1496 	} else {
1497 		sp = lport->tt.seq_start_next(sp);
1498 		WARN_ON(!sp);
1499 		pp = fc_frame_payload_get(fp, len);
1500 		WARN_ON(!pp);
1501 		memset(pp, 0, len);
1502 		pp->prli.prli_cmd = ELS_LS_ACC;
1503 		pp->prli.prli_spp_len = plen;
1504 		pp->prli.prli_len = htons(len);
1505 		len -= sizeof(struct fc_els_prli);
1506 
1507 		/* reinitialize remote port roles */
1508 		rdata->ids.roles = FC_RPORT_ROLE_UNKNOWN;
1509 
1510 		/*
1511 		 * Go through all the service parameter pages and build
1512 		 * response.  If plen indicates longer SPP than standard,
1513 		 * use that.  The entire response has been pre-cleared above.
1514 		 */
1515 		spp = &pp->spp;
1516 		while (len >= plen) {
1517 			spp->spp_type = rspp->spp_type;
1518 			spp->spp_type_ext = rspp->spp_type_ext;
1519 			spp->spp_flags = rspp->spp_flags & FC_SPP_EST_IMG_PAIR;
1520 			resp = FC_SPP_RESP_ACK;
1521 			if (rspp->spp_flags & FC_SPP_RPA_VAL)
1522 				resp = FC_SPP_RESP_NO_PA;
1523 			switch (rspp->spp_type) {
1524 			case 0:	/* common to all FC-4 types */
1525 				break;
1526 			case FC_TYPE_FCP:
1527 				fcp_parm = ntohl(rspp->spp_params);
1528 				if (fcp_parm & FCP_SPPF_RETRY)
1529 					rdata->flags |= FC_RP_FLAGS_RETRY;
1530 				rdata->supported_classes = FC_COS_CLASS3;
1531 				if (fcp_parm & FCP_SPPF_INIT_FCN)
1532 					roles |= FC_RPORT_ROLE_FCP_INITIATOR;
1533 				if (fcp_parm & FCP_SPPF_TARG_FCN)
1534 					roles |= FC_RPORT_ROLE_FCP_TARGET;
1535 				rdata->ids.roles = roles;
1536 
1537 				spp->spp_params =
1538 					htonl(lport->service_params);
1539 				break;
1540 			default:
1541 				resp = FC_SPP_RESP_INVL;
1542 				break;
1543 			}
1544 			spp->spp_flags |= resp;
1545 			len -= plen;
1546 			rspp = (struct fc_els_spp *)((char *)rspp + plen);
1547 			spp = (struct fc_els_spp *)((char *)spp + plen);
1548 		}
1549 
1550 		/*
1551 		 * Send LS_ACC.	 If this fails, the originator should retry.
1552 		 */
1553 		f_ctl = FC_FC_EX_CTX | FC_FC_LAST_SEQ;
1554 		f_ctl |= FC_FC_END_SEQ | FC_FC_SEQ_INIT;
1555 		ep = fc_seq_exch(sp);
1556 		fc_fill_fc_hdr(fp, FC_RCTL_ELS_REP, ep->did, ep->sid,
1557 			       FC_TYPE_ELS, f_ctl, 0);
1558 		lport->tt.seq_send(lport, sp, fp);
1559 
1560 		/*
1561 		 * Get lock and re-check state.
1562 		 */
1563 		switch (rdata->rp_state) {
1564 		case RPORT_ST_PRLI:
1565 			fc_rport_enter_ready(rdata);
1566 			break;
1567 		case RPORT_ST_READY:
1568 		case RPORT_ST_ADISC:
1569 			break;
1570 		default:
1571 			break;
1572 		}
1573 	}
1574 	fc_frame_free(rx_fp);
1575 }
1576 
1577 /**
1578  * fc_rport_recv_prlo_req() - Handler for process logout (PRLO) requests
1579  * @rdata: The remote port that sent the PRLO request
1580  * @sp:	   The sequence that the PRLO was on
1581  * @fp:	   The PRLO request frame
1582  *
1583  * Locking Note: The rport lock is exected to be held before calling
1584  * this function.
1585  */
1586 static void fc_rport_recv_prlo_req(struct fc_rport_priv *rdata,
1587 				   struct fc_seq *sp,
1588 				   struct fc_frame *fp)
1589 {
1590 	struct fc_lport *lport = rdata->local_port;
1591 
1592 	struct fc_frame_header *fh;
1593 	struct fc_seq_els_data rjt_data;
1594 
1595 	fh = fc_frame_header_get(fp);
1596 
1597 	FC_RPORT_DBG(rdata, "Received PRLO request while in state %s\n",
1598 		     fc_rport_state(rdata));
1599 
1600 	rjt_data.fp = NULL;
1601 	rjt_data.reason = ELS_RJT_UNAB;
1602 	rjt_data.explan = ELS_EXPL_NONE;
1603 	lport->tt.seq_els_rsp_send(sp, ELS_LS_RJT, &rjt_data);
1604 	fc_frame_free(fp);
1605 }
1606 
1607 /**
1608  * fc_rport_recv_logo_req() - Handler for logout (LOGO) requests
1609  * @lport: The local port that received the LOGO request
1610  * @sp:	   The sequence that the LOGO request was on
1611  * @fp:	   The LOGO request frame
1612  *
1613  * Locking Note: The rport lock is exected to be held before calling
1614  * this function.
1615  */
1616 static void fc_rport_recv_logo_req(struct fc_lport *lport,
1617 				   struct fc_seq *sp,
1618 				   struct fc_frame *fp)
1619 {
1620 	struct fc_frame_header *fh;
1621 	struct fc_rport_priv *rdata;
1622 	u32 sid;
1623 
1624 	lport->tt.seq_els_rsp_send(sp, ELS_LS_ACC, NULL);
1625 
1626 	fh = fc_frame_header_get(fp);
1627 	sid = ntoh24(fh->fh_s_id);
1628 
1629 	mutex_lock(&lport->disc.disc_mutex);
1630 	rdata = lport->tt.rport_lookup(lport, sid);
1631 	if (rdata) {
1632 		mutex_lock(&rdata->rp_mutex);
1633 		FC_RPORT_DBG(rdata, "Received LOGO request while in state %s\n",
1634 			     fc_rport_state(rdata));
1635 
1636 		fc_rport_enter_delete(rdata, RPORT_EV_LOGO);
1637 
1638 		/*
1639 		 * If the remote port was created due to discovery, set state
1640 		 * to log back in.  It may have seen a stale RSCN about us.
1641 		 */
1642 		if (rdata->disc_id)
1643 			fc_rport_state_enter(rdata, RPORT_ST_RESTART);
1644 		mutex_unlock(&rdata->rp_mutex);
1645 	} else
1646 		FC_RPORT_ID_DBG(lport, sid,
1647 				"Received LOGO from non-logged-in port\n");
1648 	mutex_unlock(&lport->disc.disc_mutex);
1649 	fc_frame_free(fp);
1650 }
1651 
1652 /**
1653  * fc_rport_flush_queue() - Flush the rport_event_queue
1654  */
1655 static void fc_rport_flush_queue(void)
1656 {
1657 	flush_workqueue(rport_event_queue);
1658 }
1659 
1660 /**
1661  * fc_rport_init() - Initialize the remote port layer for a local port
1662  * @lport: The local port to initialize the remote port layer for
1663  */
1664 int fc_rport_init(struct fc_lport *lport)
1665 {
1666 	if (!lport->tt.rport_lookup)
1667 		lport->tt.rport_lookup = fc_rport_lookup;
1668 
1669 	if (!lport->tt.rport_create)
1670 		lport->tt.rport_create = fc_rport_create;
1671 
1672 	if (!lport->tt.rport_login)
1673 		lport->tt.rport_login = fc_rport_login;
1674 
1675 	if (!lport->tt.rport_logoff)
1676 		lport->tt.rport_logoff = fc_rport_logoff;
1677 
1678 	if (!lport->tt.rport_recv_req)
1679 		lport->tt.rport_recv_req = fc_rport_recv_req;
1680 
1681 	if (!lport->tt.rport_flush_queue)
1682 		lport->tt.rport_flush_queue = fc_rport_flush_queue;
1683 
1684 	if (!lport->tt.rport_destroy)
1685 		lport->tt.rport_destroy = fc_rport_destroy;
1686 
1687 	return 0;
1688 }
1689 EXPORT_SYMBOL(fc_rport_init);
1690 
1691 /**
1692  * fc_setup_rport() - Initialize the rport_event_queue
1693  */
1694 int fc_setup_rport()
1695 {
1696 	rport_event_queue = create_singlethread_workqueue("fc_rport_eq");
1697 	if (!rport_event_queue)
1698 		return -ENOMEM;
1699 	return 0;
1700 }
1701 
1702 /**
1703  * fc_destroy_rport() - Destroy the rport_event_queue
1704  */
1705 void fc_destroy_rport()
1706 {
1707 	destroy_workqueue(rport_event_queue);
1708 }
1709 
1710 /**
1711  * fc_rport_terminate_io() - Stop all outstanding I/O on a remote port
1712  * @rport: The remote port whose I/O should be terminated
1713  */
1714 void fc_rport_terminate_io(struct fc_rport *rport)
1715 {
1716 	struct fc_rport_libfc_priv *rpriv = rport->dd_data;
1717 	struct fc_lport *lport = rpriv->local_port;
1718 
1719 	lport->tt.exch_mgr_reset(lport, 0, rport->port_id);
1720 	lport->tt.exch_mgr_reset(lport, rport->port_id, 0);
1721 }
1722 EXPORT_SYMBOL(fc_rport_terminate_io);
1723