1 /*******************************************************************
2 * This file is part of the Emulex Linux Device Driver for *
3 * Fibre Channel Host Bus Adapters. *
4 * Copyright (C) 2017-2022 Broadcom. All Rights Reserved. The term *
5 * “Broadcom” refers to Broadcom Inc. and/or its subsidiaries. *
6 * Copyright (C) 2004-2016 Emulex. All rights reserved. *
7 * EMULEX and SLI are trademarks of Emulex. *
8 * www.broadcom.com *
9 * Portions Copyright (C) 2004-2005 Christoph Hellwig *
10 * *
11 * This program is free software; you can redistribute it and/or *
12 * modify it under the terms of version 2 of the GNU General *
13 * Public License as published by the Free Software Foundation. *
14 * This program is distributed in the hope that it will be useful. *
15 * ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND *
16 * WARRANTIES, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY, *
17 * FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT, ARE *
18 * DISCLAIMED, EXCEPT TO THE EXTENT THAT SUCH DISCLAIMERS ARE HELD *
19 * TO BE LEGALLY INVALID. See the GNU General Public License for *
20 * more details, a copy of which can be found in the file COPYING *
21 * included with this package. *
22 *******************************************************************/
23
24 #include <linux/blkdev.h>
25 #include <linux/delay.h>
26 #include <linux/slab.h>
27 #include <linux/pci.h>
28 #include <linux/kthread.h>
29 #include <linux/interrupt.h>
30 #include <linux/lockdep.h>
31 #include <linux/utsname.h>
32
33 #include <scsi/scsi.h>
34 #include <scsi/scsi_device.h>
35 #include <scsi/scsi_host.h>
36 #include <scsi/scsi_transport_fc.h>
37 #include <scsi/fc/fc_fs.h>
38
39 #include "lpfc_hw4.h"
40 #include "lpfc_hw.h"
41 #include "lpfc_nl.h"
42 #include "lpfc_disc.h"
43 #include "lpfc_sli.h"
44 #include "lpfc_sli4.h"
45 #include "lpfc.h"
46 #include "lpfc_scsi.h"
47 #include "lpfc_nvme.h"
48 #include "lpfc_logmsg.h"
49 #include "lpfc_crtn.h"
50 #include "lpfc_vport.h"
51 #include "lpfc_debugfs.h"
52
53 /* AlpaArray for assignment of scsid for scan-down and bind_method */
54 static uint8_t lpfcAlpaArray[] = {
55 0xEF, 0xE8, 0xE4, 0xE2, 0xE1, 0xE0, 0xDC, 0xDA, 0xD9, 0xD6,
56 0xD5, 0xD4, 0xD3, 0xD2, 0xD1, 0xCE, 0xCD, 0xCC, 0xCB, 0xCA,
57 0xC9, 0xC7, 0xC6, 0xC5, 0xC3, 0xBC, 0xBA, 0xB9, 0xB6, 0xB5,
58 0xB4, 0xB3, 0xB2, 0xB1, 0xAE, 0xAD, 0xAC, 0xAB, 0xAA, 0xA9,
59 0xA7, 0xA6, 0xA5, 0xA3, 0x9F, 0x9E, 0x9D, 0x9B, 0x98, 0x97,
60 0x90, 0x8F, 0x88, 0x84, 0x82, 0x81, 0x80, 0x7C, 0x7A, 0x79,
61 0x76, 0x75, 0x74, 0x73, 0x72, 0x71, 0x6E, 0x6D, 0x6C, 0x6B,
62 0x6A, 0x69, 0x67, 0x66, 0x65, 0x63, 0x5C, 0x5A, 0x59, 0x56,
63 0x55, 0x54, 0x53, 0x52, 0x51, 0x4E, 0x4D, 0x4C, 0x4B, 0x4A,
64 0x49, 0x47, 0x46, 0x45, 0x43, 0x3C, 0x3A, 0x39, 0x36, 0x35,
65 0x34, 0x33, 0x32, 0x31, 0x2E, 0x2D, 0x2C, 0x2B, 0x2A, 0x29,
66 0x27, 0x26, 0x25, 0x23, 0x1F, 0x1E, 0x1D, 0x1B, 0x18, 0x17,
67 0x10, 0x0F, 0x08, 0x04, 0x02, 0x01
68 };
69
70 static void lpfc_disc_timeout_handler(struct lpfc_vport *);
71 static void lpfc_disc_flush_list(struct lpfc_vport *vport);
72 static void lpfc_unregister_fcfi_cmpl(struct lpfc_hba *, LPFC_MBOXQ_t *);
73 static int lpfc_fcf_inuse(struct lpfc_hba *);
74 static void lpfc_mbx_cmpl_read_sparam(struct lpfc_hba *, LPFC_MBOXQ_t *);
75 static void lpfc_check_inactive_vmid(struct lpfc_hba *phba);
76 static void lpfc_check_vmid_qfpa_issue(struct lpfc_hba *phba);
77
78 static int
lpfc_valid_xpt_node(struct lpfc_nodelist * ndlp)79 lpfc_valid_xpt_node(struct lpfc_nodelist *ndlp)
80 {
81 if (ndlp->nlp_fc4_type ||
82 ndlp->nlp_type & NLP_FABRIC)
83 return 1;
84 return 0;
85 }
86 /* The source of a terminate rport I/O is either a dev_loss_tmo
87 * event or a call to fc_remove_host. While the rport should be
88 * valid during these downcalls, the transport can call twice
89 * in a single event. This routine provides somoe protection
90 * as the NDLP isn't really free, just released to the pool.
91 */
92 static int
lpfc_rport_invalid(struct fc_rport * rport)93 lpfc_rport_invalid(struct fc_rport *rport)
94 {
95 struct lpfc_rport_data *rdata;
96 struct lpfc_nodelist *ndlp;
97
98 if (!rport) {
99 pr_err("**** %s: NULL rport, exit.\n", __func__);
100 return -EINVAL;
101 }
102
103 rdata = rport->dd_data;
104 if (!rdata) {
105 pr_err("**** %s: NULL dd_data on rport x%px SID x%x\n",
106 __func__, rport, rport->scsi_target_id);
107 return -EINVAL;
108 }
109
110 ndlp = rdata->pnode;
111 if (!rdata->pnode) {
112 pr_info("**** %s: NULL ndlp on rport x%px SID x%x\n",
113 __func__, rport, rport->scsi_target_id);
114 return -EINVAL;
115 }
116
117 if (!ndlp->vport) {
118 pr_err("**** %s: Null vport on ndlp x%px, DID x%x rport x%px "
119 "SID x%x\n", __func__, ndlp, ndlp->nlp_DID, rport,
120 rport->scsi_target_id);
121 return -EINVAL;
122 }
123 return 0;
124 }
125
126 void
lpfc_terminate_rport_io(struct fc_rport * rport)127 lpfc_terminate_rport_io(struct fc_rport *rport)
128 {
129 struct lpfc_rport_data *rdata;
130 struct lpfc_nodelist *ndlp;
131 struct lpfc_vport *vport;
132
133 if (lpfc_rport_invalid(rport))
134 return;
135
136 rdata = rport->dd_data;
137 ndlp = rdata->pnode;
138 vport = ndlp->vport;
139 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_RPORT,
140 "rport terminate: sid:x%x did:x%x flg:x%x",
141 ndlp->nlp_sid, ndlp->nlp_DID, ndlp->nlp_flag);
142
143 if (ndlp->nlp_sid != NLP_NO_SID)
144 lpfc_sli_abort_iocb(vport, ndlp->nlp_sid, 0, LPFC_CTX_TGT);
145 }
146
147 /*
148 * This function will be called when dev_loss_tmo fire.
149 */
150 void
lpfc_dev_loss_tmo_callbk(struct fc_rport * rport)151 lpfc_dev_loss_tmo_callbk(struct fc_rport *rport)
152 {
153 struct lpfc_nodelist *ndlp;
154 struct lpfc_vport *vport;
155 struct lpfc_hba *phba;
156 struct lpfc_work_evt *evtp;
157 unsigned long iflags;
158
159 ndlp = ((struct lpfc_rport_data *)rport->dd_data)->pnode;
160 if (!ndlp)
161 return;
162
163 vport = ndlp->vport;
164 phba = vport->phba;
165
166 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_RPORT,
167 "rport devlosscb: sid:x%x did:x%x flg:x%x",
168 ndlp->nlp_sid, ndlp->nlp_DID, ndlp->nlp_flag);
169
170 lpfc_printf_vlog(ndlp->vport, KERN_INFO, LOG_NODE,
171 "3181 dev_loss_callbk x%06x, rport x%px flg x%x "
172 "load_flag x%x refcnt %d state %d xpt x%x\n",
173 ndlp->nlp_DID, ndlp->rport, ndlp->nlp_flag,
174 vport->load_flag, kref_read(&ndlp->kref),
175 ndlp->nlp_state, ndlp->fc4_xpt_flags);
176
177 /* Don't schedule a worker thread event if the vport is going down.
178 * The teardown process cleans up the node via lpfc_drop_node.
179 */
180 if (vport->load_flag & FC_UNLOADING) {
181 ((struct lpfc_rport_data *)rport->dd_data)->pnode = NULL;
182 ndlp->rport = NULL;
183
184 ndlp->fc4_xpt_flags &= ~SCSI_XPT_REGD;
185 /* clear the NLP_XPT_REGD if the node is not registered
186 * with nvme-fc
187 */
188 if (ndlp->fc4_xpt_flags == NLP_XPT_REGD)
189 ndlp->fc4_xpt_flags &= ~NLP_XPT_REGD;
190
191 /* Remove the node reference from remote_port_add now.
192 * The driver will not call remote_port_delete.
193 */
194 lpfc_nlp_put(ndlp);
195 return;
196 }
197
198 if (ndlp->nlp_state == NLP_STE_MAPPED_NODE)
199 return;
200
201 if (rport->port_name != wwn_to_u64(ndlp->nlp_portname.u.wwn))
202 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
203 "6789 rport name %llx != node port name %llx",
204 rport->port_name,
205 wwn_to_u64(ndlp->nlp_portname.u.wwn));
206
207 evtp = &ndlp->dev_loss_evt;
208
209 if (!list_empty(&evtp->evt_listp)) {
210 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
211 "6790 rport name %llx dev_loss_evt pending\n",
212 rport->port_name);
213 return;
214 }
215
216 spin_lock_irqsave(&ndlp->lock, iflags);
217 ndlp->nlp_flag |= NLP_IN_DEV_LOSS;
218
219 /* If there is a PLOGI in progress, and we are in a
220 * NLP_NPR_2B_DISC state, don't turn off the flag.
221 */
222 if (ndlp->nlp_state != NLP_STE_PLOGI_ISSUE)
223 ndlp->nlp_flag &= ~NLP_NPR_2B_DISC;
224
225 /*
226 * The backend does not expect any more calls associated with this
227 * rport. Remove the association between rport and ndlp.
228 */
229 ndlp->fc4_xpt_flags &= ~SCSI_XPT_REGD;
230 ((struct lpfc_rport_data *)rport->dd_data)->pnode = NULL;
231 ndlp->rport = NULL;
232 spin_unlock_irqrestore(&ndlp->lock, iflags);
233
234 if (phba->worker_thread) {
235 /* We need to hold the node by incrementing the reference
236 * count until this queued work is done
237 */
238 evtp->evt_arg1 = lpfc_nlp_get(ndlp);
239
240 spin_lock_irqsave(&phba->hbalock, iflags);
241 if (evtp->evt_arg1) {
242 evtp->evt = LPFC_EVT_DEV_LOSS;
243 list_add_tail(&evtp->evt_listp, &phba->work_list);
244 lpfc_worker_wake_up(phba);
245 }
246 spin_unlock_irqrestore(&phba->hbalock, iflags);
247 } else {
248 lpfc_printf_vlog(ndlp->vport, KERN_INFO, LOG_NODE,
249 "3188 worker thread is stopped %s x%06x, "
250 " rport x%px flg x%x load_flag x%x refcnt "
251 "%d\n", __func__, ndlp->nlp_DID,
252 ndlp->rport, ndlp->nlp_flag,
253 vport->load_flag, kref_read(&ndlp->kref));
254 if (!(ndlp->fc4_xpt_flags & NVME_XPT_REGD)) {
255 spin_lock_irqsave(&ndlp->lock, iflags);
256 /* Node is in dev loss. No further transaction. */
257 ndlp->nlp_flag &= ~NLP_IN_DEV_LOSS;
258 spin_unlock_irqrestore(&ndlp->lock, iflags);
259 lpfc_disc_state_machine(vport, ndlp, NULL,
260 NLP_EVT_DEVICE_RM);
261 }
262
263 }
264
265 return;
266 }
267
268 /**
269 * lpfc_check_inactive_vmid_one - VMID inactivity checker for a vport
270 * @vport: Pointer to vport context object.
271 *
272 * This function checks for idle VMID entries related to a particular vport. If
273 * found unused/idle, free them accordingly.
274 **/
lpfc_check_inactive_vmid_one(struct lpfc_vport * vport)275 static void lpfc_check_inactive_vmid_one(struct lpfc_vport *vport)
276 {
277 u16 keep;
278 u32 difftime = 0, r, bucket;
279 u64 *lta;
280 int cpu;
281 struct lpfc_vmid *vmp;
282
283 write_lock(&vport->vmid_lock);
284
285 if (!vport->cur_vmid_cnt)
286 goto out;
287
288 /* iterate through the table */
289 hash_for_each(vport->hash_table, bucket, vmp, hnode) {
290 keep = 0;
291 if (vmp->flag & LPFC_VMID_REGISTERED) {
292 /* check if the particular VMID is in use */
293 /* for all available per cpu variable */
294 for_each_possible_cpu(cpu) {
295 /* if last access time is less than timeout */
296 lta = per_cpu_ptr(vmp->last_io_time, cpu);
297 if (!lta)
298 continue;
299 difftime = (jiffies) - (*lta);
300 if ((vport->vmid_inactivity_timeout *
301 JIFFIES_PER_HR) > difftime) {
302 keep = 1;
303 break;
304 }
305 }
306
307 /* if none of the cpus have been used by the vm, */
308 /* remove the entry if already registered */
309 if (!keep) {
310 /* mark the entry for deregistration */
311 vmp->flag = LPFC_VMID_DE_REGISTER;
312 write_unlock(&vport->vmid_lock);
313 if (vport->vmid_priority_tagging)
314 r = lpfc_vmid_uvem(vport, vmp, false);
315 else
316 r = lpfc_vmid_cmd(vport,
317 SLI_CTAS_DAPP_IDENT,
318 vmp);
319
320 /* decrement number of active vms and mark */
321 /* entry in slot as free */
322 write_lock(&vport->vmid_lock);
323 if (!r) {
324 struct lpfc_vmid *ht = vmp;
325
326 vport->cur_vmid_cnt--;
327 ht->flag = LPFC_VMID_SLOT_FREE;
328 free_percpu(ht->last_io_time);
329 ht->last_io_time = NULL;
330 hash_del(&ht->hnode);
331 }
332 }
333 }
334 }
335 out:
336 write_unlock(&vport->vmid_lock);
337 }
338
339 /**
340 * lpfc_check_inactive_vmid - VMID inactivity checker
341 * @phba: Pointer to hba context object.
342 *
343 * This function is called from the worker thread to determine if an entry in
344 * the VMID table can be released since there was no I/O activity seen from that
345 * particular VM for the specified time. When this happens, the entry in the
346 * table is released and also the resources on the switch cleared.
347 **/
348
lpfc_check_inactive_vmid(struct lpfc_hba * phba)349 static void lpfc_check_inactive_vmid(struct lpfc_hba *phba)
350 {
351 struct lpfc_vport *vport;
352 struct lpfc_vport **vports;
353 int i;
354
355 vports = lpfc_create_vport_work_array(phba);
356 if (!vports)
357 return;
358
359 for (i = 0; i <= phba->max_vports; i++) {
360 if ((!vports[i]) && (i == 0))
361 vport = phba->pport;
362 else
363 vport = vports[i];
364 if (!vport)
365 break;
366
367 lpfc_check_inactive_vmid_one(vport);
368 }
369 lpfc_destroy_vport_work_array(phba, vports);
370 }
371
372 /**
373 * lpfc_check_nlp_post_devloss - Check to restore ndlp refcnt after devloss
374 * @vport: Pointer to vport object.
375 * @ndlp: Pointer to remote node object.
376 *
377 * If NLP_IN_RECOV_POST_DEV_LOSS flag was set due to outstanding recovery of
378 * node during dev_loss_tmo processing, then this function restores the nlp_put
379 * kref decrement from lpfc_dev_loss_tmo_handler.
380 **/
381 void
lpfc_check_nlp_post_devloss(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)382 lpfc_check_nlp_post_devloss(struct lpfc_vport *vport,
383 struct lpfc_nodelist *ndlp)
384 {
385 unsigned long iflags;
386
387 spin_lock_irqsave(&ndlp->lock, iflags);
388 if (ndlp->save_flags & NLP_IN_RECOV_POST_DEV_LOSS) {
389 ndlp->save_flags &= ~NLP_IN_RECOV_POST_DEV_LOSS;
390 spin_unlock_irqrestore(&ndlp->lock, iflags);
391 lpfc_nlp_get(ndlp);
392 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY | LOG_NODE,
393 "8438 Devloss timeout reversed on DID x%x "
394 "refcnt %d ndlp %p flag x%x "
395 "port_state = x%x\n",
396 ndlp->nlp_DID, kref_read(&ndlp->kref), ndlp,
397 ndlp->nlp_flag, vport->port_state);
398 spin_lock_irqsave(&ndlp->lock, iflags);
399 }
400 spin_unlock_irqrestore(&ndlp->lock, iflags);
401 }
402
403 /**
404 * lpfc_dev_loss_tmo_handler - Remote node devloss timeout handler
405 * @ndlp: Pointer to remote node object.
406 *
407 * This function is called from the worker thread when devloss timeout timer
408 * expires. For SLI4 host, this routine shall return 1 when at lease one
409 * remote node, including this @ndlp, is still in use of FCF; otherwise, this
410 * routine shall return 0 when there is no remote node is still in use of FCF
411 * when devloss timeout happened to this @ndlp.
412 **/
413 static int
lpfc_dev_loss_tmo_handler(struct lpfc_nodelist * ndlp)414 lpfc_dev_loss_tmo_handler(struct lpfc_nodelist *ndlp)
415 {
416 struct lpfc_vport *vport;
417 struct lpfc_hba *phba;
418 uint8_t *name;
419 int warn_on = 0;
420 int fcf_inuse = 0;
421 bool recovering = false;
422 struct fc_vport *fc_vport = NULL;
423 unsigned long iflags;
424
425 vport = ndlp->vport;
426 name = (uint8_t *)&ndlp->nlp_portname;
427 phba = vport->phba;
428
429 spin_lock_irqsave(&ndlp->lock, iflags);
430 ndlp->nlp_flag &= ~NLP_IN_DEV_LOSS;
431 spin_unlock_irqrestore(&ndlp->lock, iflags);
432
433 if (phba->sli_rev == LPFC_SLI_REV4)
434 fcf_inuse = lpfc_fcf_inuse(phba);
435
436 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_RPORT,
437 "rport devlosstmo:did:x%x type:x%x id:x%x",
438 ndlp->nlp_DID, ndlp->nlp_type, ndlp->nlp_sid);
439
440 lpfc_printf_vlog(ndlp->vport, KERN_INFO, LOG_NODE,
441 "3182 %s x%06x, nflag x%x xflags x%x refcnt %d\n",
442 __func__, ndlp->nlp_DID, ndlp->nlp_flag,
443 ndlp->fc4_xpt_flags, kref_read(&ndlp->kref));
444
445 /* If the driver is recovering the rport, ignore devloss. */
446 if (ndlp->nlp_state == NLP_STE_MAPPED_NODE) {
447 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
448 "0284 Devloss timeout Ignored on "
449 "WWPN %x:%x:%x:%x:%x:%x:%x:%x "
450 "NPort x%x\n",
451 *name, *(name+1), *(name+2), *(name+3),
452 *(name+4), *(name+5), *(name+6), *(name+7),
453 ndlp->nlp_DID);
454 return fcf_inuse;
455 }
456
457 /* Fabric nodes are done. */
458 if (ndlp->nlp_type & NLP_FABRIC) {
459 spin_lock_irqsave(&ndlp->lock, iflags);
460 /* In massive vport configuration settings, it's possible
461 * dev_loss_tmo fired during node recovery. So, check if
462 * fabric nodes are in discovery states outstanding.
463 */
464 switch (ndlp->nlp_DID) {
465 case Fabric_DID:
466 fc_vport = vport->fc_vport;
467 if (fc_vport &&
468 fc_vport->vport_state == FC_VPORT_INITIALIZING)
469 recovering = true;
470 break;
471 case Fabric_Cntl_DID:
472 if (ndlp->nlp_flag & NLP_REG_LOGIN_SEND)
473 recovering = true;
474 break;
475 case FDMI_DID:
476 fallthrough;
477 case NameServer_DID:
478 if (ndlp->nlp_state >= NLP_STE_PLOGI_ISSUE &&
479 ndlp->nlp_state <= NLP_STE_REG_LOGIN_ISSUE)
480 recovering = true;
481 break;
482 }
483 spin_unlock_irqrestore(&ndlp->lock, iflags);
484
485 /* Mark an NLP_IN_RECOV_POST_DEV_LOSS flag to know if reversing
486 * the following lpfc_nlp_put is necessary after fabric node is
487 * recovered.
488 */
489 if (recovering) {
490 lpfc_printf_vlog(vport, KERN_INFO,
491 LOG_DISCOVERY | LOG_NODE,
492 "8436 Devloss timeout marked on "
493 "DID x%x refcnt %d ndlp %p "
494 "flag x%x port_state = x%x\n",
495 ndlp->nlp_DID, kref_read(&ndlp->kref),
496 ndlp, ndlp->nlp_flag,
497 vport->port_state);
498 spin_lock_irqsave(&ndlp->lock, iflags);
499 ndlp->save_flags |= NLP_IN_RECOV_POST_DEV_LOSS;
500 spin_unlock_irqrestore(&ndlp->lock, iflags);
501 } else if (ndlp->nlp_state == NLP_STE_UNMAPPED_NODE) {
502 /* Fabric node fully recovered before this dev_loss_tmo
503 * queue work is processed. Thus, ignore the
504 * dev_loss_tmo event.
505 */
506 lpfc_printf_vlog(vport, KERN_INFO,
507 LOG_DISCOVERY | LOG_NODE,
508 "8437 Devloss timeout ignored on "
509 "DID x%x refcnt %d ndlp %p "
510 "flag x%x port_state = x%x\n",
511 ndlp->nlp_DID, kref_read(&ndlp->kref),
512 ndlp, ndlp->nlp_flag,
513 vport->port_state);
514 return fcf_inuse;
515 }
516
517 lpfc_nlp_put(ndlp);
518 return fcf_inuse;
519 }
520
521 if (ndlp->nlp_sid != NLP_NO_SID) {
522 warn_on = 1;
523 lpfc_sli_abort_iocb(vport, ndlp->nlp_sid, 0, LPFC_CTX_TGT);
524 }
525
526 if (warn_on) {
527 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
528 "0203 Devloss timeout on "
529 "WWPN %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x "
530 "NPort x%06x Data: x%x x%x x%x refcnt %d\n",
531 *name, *(name+1), *(name+2), *(name+3),
532 *(name+4), *(name+5), *(name+6), *(name+7),
533 ndlp->nlp_DID, ndlp->nlp_flag,
534 ndlp->nlp_state, ndlp->nlp_rpi,
535 kref_read(&ndlp->kref));
536 } else {
537 lpfc_printf_vlog(vport, KERN_INFO, LOG_TRACE_EVENT,
538 "0204 Devloss timeout on "
539 "WWPN %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x "
540 "NPort x%06x Data: x%x x%x x%x\n",
541 *name, *(name+1), *(name+2), *(name+3),
542 *(name+4), *(name+5), *(name+6), *(name+7),
543 ndlp->nlp_DID, ndlp->nlp_flag,
544 ndlp->nlp_state, ndlp->nlp_rpi);
545 }
546
547 /* If we are devloss, but we are in the process of rediscovering the
548 * ndlp, don't issue a NLP_EVT_DEVICE_RM event.
549 */
550 if (ndlp->nlp_state >= NLP_STE_PLOGI_ISSUE &&
551 ndlp->nlp_state <= NLP_STE_PRLI_ISSUE) {
552 return fcf_inuse;
553 }
554
555 if (!(ndlp->fc4_xpt_flags & NVME_XPT_REGD))
556 lpfc_disc_state_machine(vport, ndlp, NULL, NLP_EVT_DEVICE_RM);
557
558 return fcf_inuse;
559 }
560
lpfc_check_vmid_qfpa_issue(struct lpfc_hba * phba)561 static void lpfc_check_vmid_qfpa_issue(struct lpfc_hba *phba)
562 {
563 struct lpfc_vport *vport;
564 struct lpfc_vport **vports;
565 int i;
566
567 vports = lpfc_create_vport_work_array(phba);
568 if (!vports)
569 return;
570
571 for (i = 0; i <= phba->max_vports; i++) {
572 if ((!vports[i]) && (i == 0))
573 vport = phba->pport;
574 else
575 vport = vports[i];
576 if (!vport)
577 break;
578
579 if (vport->vmid_flag & LPFC_VMID_ISSUE_QFPA) {
580 if (!lpfc_issue_els_qfpa(vport))
581 vport->vmid_flag &= ~LPFC_VMID_ISSUE_QFPA;
582 }
583 }
584 lpfc_destroy_vport_work_array(phba, vports);
585 }
586
587 /**
588 * lpfc_sli4_post_dev_loss_tmo_handler - SLI4 post devloss timeout handler
589 * @phba: Pointer to hba context object.
590 * @fcf_inuse: SLI4 FCF in-use state reported from devloss timeout handler.
591 * @nlp_did: remote node identifer with devloss timeout.
592 *
593 * This function is called from the worker thread after invoking devloss
594 * timeout handler and releasing the reference count for the ndlp with
595 * which the devloss timeout was handled for SLI4 host. For the devloss
596 * timeout of the last remote node which had been in use of FCF, when this
597 * routine is invoked, it shall be guaranteed that none of the remote are
598 * in-use of FCF. When devloss timeout to the last remote using the FCF,
599 * if the FIP engine is neither in FCF table scan process nor roundrobin
600 * failover process, the in-use FCF shall be unregistered. If the FIP
601 * engine is in FCF discovery process, the devloss timeout state shall
602 * be set for either the FCF table scan process or roundrobin failover
603 * process to unregister the in-use FCF.
604 **/
605 static void
lpfc_sli4_post_dev_loss_tmo_handler(struct lpfc_hba * phba,int fcf_inuse,uint32_t nlp_did)606 lpfc_sli4_post_dev_loss_tmo_handler(struct lpfc_hba *phba, int fcf_inuse,
607 uint32_t nlp_did)
608 {
609 /* If devloss timeout happened to a remote node when FCF had no
610 * longer been in-use, do nothing.
611 */
612 if (!fcf_inuse)
613 return;
614
615 if ((phba->hba_flag & HBA_FIP_SUPPORT) && !lpfc_fcf_inuse(phba)) {
616 spin_lock_irq(&phba->hbalock);
617 if (phba->fcf.fcf_flag & FCF_DISCOVERY) {
618 if (phba->hba_flag & HBA_DEVLOSS_TMO) {
619 spin_unlock_irq(&phba->hbalock);
620 return;
621 }
622 phba->hba_flag |= HBA_DEVLOSS_TMO;
623 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
624 "2847 Last remote node (x%x) using "
625 "FCF devloss tmo\n", nlp_did);
626 }
627 if (phba->fcf.fcf_flag & FCF_REDISC_PROG) {
628 spin_unlock_irq(&phba->hbalock);
629 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
630 "2868 Devloss tmo to FCF rediscovery "
631 "in progress\n");
632 return;
633 }
634 if (!(phba->hba_flag & (FCF_TS_INPROG | FCF_RR_INPROG))) {
635 spin_unlock_irq(&phba->hbalock);
636 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
637 "2869 Devloss tmo to idle FIP engine, "
638 "unreg in-use FCF and rescan.\n");
639 /* Unregister in-use FCF and rescan */
640 lpfc_unregister_fcf_rescan(phba);
641 return;
642 }
643 spin_unlock_irq(&phba->hbalock);
644 if (phba->hba_flag & FCF_TS_INPROG)
645 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
646 "2870 FCF table scan in progress\n");
647 if (phba->hba_flag & FCF_RR_INPROG)
648 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
649 "2871 FLOGI roundrobin FCF failover "
650 "in progress\n");
651 }
652 lpfc_unregister_unused_fcf(phba);
653 }
654
655 /**
656 * lpfc_alloc_fast_evt - Allocates data structure for posting event
657 * @phba: Pointer to hba context object.
658 *
659 * This function is called from the functions which need to post
660 * events from interrupt context. This function allocates data
661 * structure required for posting event. It also keeps track of
662 * number of events pending and prevent event storm when there are
663 * too many events.
664 **/
665 struct lpfc_fast_path_event *
lpfc_alloc_fast_evt(struct lpfc_hba * phba)666 lpfc_alloc_fast_evt(struct lpfc_hba *phba) {
667 struct lpfc_fast_path_event *ret;
668
669 /* If there are lot of fast event do not exhaust memory due to this */
670 if (atomic_read(&phba->fast_event_count) > LPFC_MAX_EVT_COUNT)
671 return NULL;
672
673 ret = kzalloc(sizeof(struct lpfc_fast_path_event),
674 GFP_ATOMIC);
675 if (ret) {
676 atomic_inc(&phba->fast_event_count);
677 INIT_LIST_HEAD(&ret->work_evt.evt_listp);
678 ret->work_evt.evt = LPFC_EVT_FASTPATH_MGMT_EVT;
679 }
680 return ret;
681 }
682
683 /**
684 * lpfc_free_fast_evt - Frees event data structure
685 * @phba: Pointer to hba context object.
686 * @evt: Event object which need to be freed.
687 *
688 * This function frees the data structure required for posting
689 * events.
690 **/
691 void
lpfc_free_fast_evt(struct lpfc_hba * phba,struct lpfc_fast_path_event * evt)692 lpfc_free_fast_evt(struct lpfc_hba *phba,
693 struct lpfc_fast_path_event *evt) {
694
695 atomic_dec(&phba->fast_event_count);
696 kfree(evt);
697 }
698
699 /**
700 * lpfc_send_fastpath_evt - Posts events generated from fast path
701 * @phba: Pointer to hba context object.
702 * @evtp: Event data structure.
703 *
704 * This function is called from worker thread, when the interrupt
705 * context need to post an event. This function posts the event
706 * to fc transport netlink interface.
707 **/
708 static void
lpfc_send_fastpath_evt(struct lpfc_hba * phba,struct lpfc_work_evt * evtp)709 lpfc_send_fastpath_evt(struct lpfc_hba *phba,
710 struct lpfc_work_evt *evtp)
711 {
712 unsigned long evt_category, evt_sub_category;
713 struct lpfc_fast_path_event *fast_evt_data;
714 char *evt_data;
715 uint32_t evt_data_size;
716 struct Scsi_Host *shost;
717
718 fast_evt_data = container_of(evtp, struct lpfc_fast_path_event,
719 work_evt);
720
721 evt_category = (unsigned long) fast_evt_data->un.fabric_evt.event_type;
722 evt_sub_category = (unsigned long) fast_evt_data->un.
723 fabric_evt.subcategory;
724 shost = lpfc_shost_from_vport(fast_evt_data->vport);
725 if (evt_category == FC_REG_FABRIC_EVENT) {
726 if (evt_sub_category == LPFC_EVENT_FCPRDCHKERR) {
727 evt_data = (char *) &fast_evt_data->un.read_check_error;
728 evt_data_size = sizeof(fast_evt_data->un.
729 read_check_error);
730 } else if ((evt_sub_category == LPFC_EVENT_FABRIC_BUSY) ||
731 (evt_sub_category == LPFC_EVENT_PORT_BUSY)) {
732 evt_data = (char *) &fast_evt_data->un.fabric_evt;
733 evt_data_size = sizeof(fast_evt_data->un.fabric_evt);
734 } else {
735 lpfc_free_fast_evt(phba, fast_evt_data);
736 return;
737 }
738 } else if (evt_category == FC_REG_SCSI_EVENT) {
739 switch (evt_sub_category) {
740 case LPFC_EVENT_QFULL:
741 case LPFC_EVENT_DEVBSY:
742 evt_data = (char *) &fast_evt_data->un.scsi_evt;
743 evt_data_size = sizeof(fast_evt_data->un.scsi_evt);
744 break;
745 case LPFC_EVENT_CHECK_COND:
746 evt_data = (char *) &fast_evt_data->un.check_cond_evt;
747 evt_data_size = sizeof(fast_evt_data->un.
748 check_cond_evt);
749 break;
750 case LPFC_EVENT_VARQUEDEPTH:
751 evt_data = (char *) &fast_evt_data->un.queue_depth_evt;
752 evt_data_size = sizeof(fast_evt_data->un.
753 queue_depth_evt);
754 break;
755 default:
756 lpfc_free_fast_evt(phba, fast_evt_data);
757 return;
758 }
759 } else {
760 lpfc_free_fast_evt(phba, fast_evt_data);
761 return;
762 }
763
764 if (phba->cfg_enable_fc4_type != LPFC_ENABLE_NVME)
765 fc_host_post_vendor_event(shost,
766 fc_get_event_number(),
767 evt_data_size,
768 evt_data,
769 LPFC_NL_VENDOR_ID);
770
771 lpfc_free_fast_evt(phba, fast_evt_data);
772 return;
773 }
774
775 static void
lpfc_work_list_done(struct lpfc_hba * phba)776 lpfc_work_list_done(struct lpfc_hba *phba)
777 {
778 struct lpfc_work_evt *evtp = NULL;
779 struct lpfc_nodelist *ndlp;
780 int free_evt;
781 int fcf_inuse;
782 uint32_t nlp_did;
783 bool hba_pci_err;
784
785 spin_lock_irq(&phba->hbalock);
786 while (!list_empty(&phba->work_list)) {
787 list_remove_head((&phba->work_list), evtp, typeof(*evtp),
788 evt_listp);
789 spin_unlock_irq(&phba->hbalock);
790 hba_pci_err = test_bit(HBA_PCI_ERR, &phba->bit_flags);
791 free_evt = 1;
792 switch (evtp->evt) {
793 case LPFC_EVT_ELS_RETRY:
794 ndlp = (struct lpfc_nodelist *) (evtp->evt_arg1);
795 if (!hba_pci_err) {
796 lpfc_els_retry_delay_handler(ndlp);
797 free_evt = 0; /* evt is part of ndlp */
798 }
799 /* decrement the node reference count held
800 * for this queued work
801 */
802 lpfc_nlp_put(ndlp);
803 break;
804 case LPFC_EVT_DEV_LOSS:
805 ndlp = (struct lpfc_nodelist *)(evtp->evt_arg1);
806 fcf_inuse = lpfc_dev_loss_tmo_handler(ndlp);
807 free_evt = 0;
808 /* decrement the node reference count held for
809 * this queued work
810 */
811 nlp_did = ndlp->nlp_DID;
812 lpfc_nlp_put(ndlp);
813 if (phba->sli_rev == LPFC_SLI_REV4)
814 lpfc_sli4_post_dev_loss_tmo_handler(phba,
815 fcf_inuse,
816 nlp_did);
817 break;
818 case LPFC_EVT_RECOVER_PORT:
819 ndlp = (struct lpfc_nodelist *)(evtp->evt_arg1);
820 if (!hba_pci_err) {
821 lpfc_sli_abts_recover_port(ndlp->vport, ndlp);
822 free_evt = 0;
823 }
824 /* decrement the node reference count held for
825 * this queued work
826 */
827 lpfc_nlp_put(ndlp);
828 break;
829 case LPFC_EVT_ONLINE:
830 if (phba->link_state < LPFC_LINK_DOWN)
831 *(int *) (evtp->evt_arg1) = lpfc_online(phba);
832 else
833 *(int *) (evtp->evt_arg1) = 0;
834 complete((struct completion *)(evtp->evt_arg2));
835 break;
836 case LPFC_EVT_OFFLINE_PREP:
837 if (phba->link_state >= LPFC_LINK_DOWN)
838 lpfc_offline_prep(phba, LPFC_MBX_WAIT);
839 *(int *)(evtp->evt_arg1) = 0;
840 complete((struct completion *)(evtp->evt_arg2));
841 break;
842 case LPFC_EVT_OFFLINE:
843 lpfc_offline(phba);
844 lpfc_sli_brdrestart(phba);
845 *(int *)(evtp->evt_arg1) =
846 lpfc_sli_brdready(phba, HS_FFRDY | HS_MBRDY);
847 lpfc_unblock_mgmt_io(phba);
848 complete((struct completion *)(evtp->evt_arg2));
849 break;
850 case LPFC_EVT_WARM_START:
851 lpfc_offline(phba);
852 lpfc_reset_barrier(phba);
853 lpfc_sli_brdreset(phba);
854 lpfc_hba_down_post(phba);
855 *(int *)(evtp->evt_arg1) =
856 lpfc_sli_brdready(phba, HS_MBRDY);
857 lpfc_unblock_mgmt_io(phba);
858 complete((struct completion *)(evtp->evt_arg2));
859 break;
860 case LPFC_EVT_KILL:
861 lpfc_offline(phba);
862 *(int *)(evtp->evt_arg1)
863 = (phba->pport->stopped)
864 ? 0 : lpfc_sli_brdkill(phba);
865 lpfc_unblock_mgmt_io(phba);
866 complete((struct completion *)(evtp->evt_arg2));
867 break;
868 case LPFC_EVT_FASTPATH_MGMT_EVT:
869 lpfc_send_fastpath_evt(phba, evtp);
870 free_evt = 0;
871 break;
872 case LPFC_EVT_RESET_HBA:
873 if (!(phba->pport->load_flag & FC_UNLOADING))
874 lpfc_reset_hba(phba);
875 break;
876 }
877 if (free_evt)
878 kfree(evtp);
879 spin_lock_irq(&phba->hbalock);
880 }
881 spin_unlock_irq(&phba->hbalock);
882
883 }
884
885 static void
lpfc_work_done(struct lpfc_hba * phba)886 lpfc_work_done(struct lpfc_hba *phba)
887 {
888 struct lpfc_sli_ring *pring;
889 uint32_t ha_copy, status, control, work_port_events;
890 struct lpfc_vport **vports;
891 struct lpfc_vport *vport;
892 int i;
893 bool hba_pci_err;
894
895 hba_pci_err = test_bit(HBA_PCI_ERR, &phba->bit_flags);
896 spin_lock_irq(&phba->hbalock);
897 ha_copy = phba->work_ha;
898 phba->work_ha = 0;
899 spin_unlock_irq(&phba->hbalock);
900 if (hba_pci_err)
901 ha_copy = 0;
902
903 /* First, try to post the next mailbox command to SLI4 device */
904 if (phba->pci_dev_grp == LPFC_PCI_DEV_OC && !hba_pci_err)
905 lpfc_sli4_post_async_mbox(phba);
906
907 if (ha_copy & HA_ERATT) {
908 /* Handle the error attention event */
909 lpfc_handle_eratt(phba);
910
911 if (phba->fw_dump_cmpl) {
912 complete(phba->fw_dump_cmpl);
913 phba->fw_dump_cmpl = NULL;
914 }
915 }
916
917 if (ha_copy & HA_MBATT)
918 lpfc_sli_handle_mb_event(phba);
919
920 if (ha_copy & HA_LATT)
921 lpfc_handle_latt(phba);
922
923 /* Handle VMID Events */
924 if (lpfc_is_vmid_enabled(phba) && !hba_pci_err) {
925 if (phba->pport->work_port_events &
926 WORKER_CHECK_VMID_ISSUE_QFPA) {
927 lpfc_check_vmid_qfpa_issue(phba);
928 phba->pport->work_port_events &=
929 ~WORKER_CHECK_VMID_ISSUE_QFPA;
930 }
931 if (phba->pport->work_port_events &
932 WORKER_CHECK_INACTIVE_VMID) {
933 lpfc_check_inactive_vmid(phba);
934 phba->pport->work_port_events &=
935 ~WORKER_CHECK_INACTIVE_VMID;
936 }
937 }
938
939 /* Process SLI4 events */
940 if (phba->pci_dev_grp == LPFC_PCI_DEV_OC) {
941 if (phba->hba_flag & HBA_RRQ_ACTIVE)
942 lpfc_handle_rrq_active(phba);
943 if (phba->hba_flag & ELS_XRI_ABORT_EVENT)
944 lpfc_sli4_els_xri_abort_event_proc(phba);
945 if (phba->hba_flag & ASYNC_EVENT)
946 lpfc_sli4_async_event_proc(phba);
947 if (phba->hba_flag & HBA_POST_RECEIVE_BUFFER) {
948 spin_lock_irq(&phba->hbalock);
949 phba->hba_flag &= ~HBA_POST_RECEIVE_BUFFER;
950 spin_unlock_irq(&phba->hbalock);
951 lpfc_sli_hbqbuf_add_hbqs(phba, LPFC_ELS_HBQ);
952 }
953 if (phba->fcf.fcf_flag & FCF_REDISC_EVT)
954 lpfc_sli4_fcf_redisc_event_proc(phba);
955 }
956
957 vports = lpfc_create_vport_work_array(phba);
958 if (vports != NULL)
959 for (i = 0; i <= phba->max_vports; i++) {
960 /*
961 * We could have no vports in array if unloading, so if
962 * this happens then just use the pport
963 */
964 if (vports[i] == NULL && i == 0)
965 vport = phba->pport;
966 else
967 vport = vports[i];
968 if (vport == NULL)
969 break;
970 spin_lock_irq(&vport->work_port_lock);
971 work_port_events = vport->work_port_events;
972 vport->work_port_events &= ~work_port_events;
973 spin_unlock_irq(&vport->work_port_lock);
974 if (hba_pci_err)
975 continue;
976 if (work_port_events & WORKER_DISC_TMO)
977 lpfc_disc_timeout_handler(vport);
978 if (work_port_events & WORKER_ELS_TMO)
979 lpfc_els_timeout_handler(vport);
980 if (work_port_events & WORKER_HB_TMO)
981 lpfc_hb_timeout_handler(phba);
982 if (work_port_events & WORKER_MBOX_TMO)
983 lpfc_mbox_timeout_handler(phba);
984 if (work_port_events & WORKER_FABRIC_BLOCK_TMO)
985 lpfc_unblock_fabric_iocbs(phba);
986 if (work_port_events & WORKER_RAMP_DOWN_QUEUE)
987 lpfc_ramp_down_queue_handler(phba);
988 if (work_port_events & WORKER_DELAYED_DISC_TMO)
989 lpfc_delayed_disc_timeout_handler(vport);
990 }
991 lpfc_destroy_vport_work_array(phba, vports);
992
993 pring = lpfc_phba_elsring(phba);
994 status = (ha_copy & (HA_RXMASK << (4*LPFC_ELS_RING)));
995 status >>= (4*LPFC_ELS_RING);
996 if (pring && (status & HA_RXMASK ||
997 pring->flag & LPFC_DEFERRED_RING_EVENT ||
998 phba->hba_flag & HBA_SP_QUEUE_EVT)) {
999 if (pring->flag & LPFC_STOP_IOCB_EVENT) {
1000 pring->flag |= LPFC_DEFERRED_RING_EVENT;
1001 /* Preserve legacy behavior. */
1002 if (!(phba->hba_flag & HBA_SP_QUEUE_EVT))
1003 set_bit(LPFC_DATA_READY, &phba->data_flags);
1004 } else {
1005 /* Driver could have abort request completed in queue
1006 * when link goes down. Allow for this transition.
1007 */
1008 if (phba->link_state >= LPFC_LINK_DOWN ||
1009 phba->link_flag & LS_MDS_LOOPBACK) {
1010 pring->flag &= ~LPFC_DEFERRED_RING_EVENT;
1011 lpfc_sli_handle_slow_ring_event(phba, pring,
1012 (status &
1013 HA_RXMASK));
1014 }
1015 }
1016 if (phba->sli_rev == LPFC_SLI_REV4)
1017 lpfc_drain_txq(phba);
1018 /*
1019 * Turn on Ring interrupts
1020 */
1021 if (phba->sli_rev <= LPFC_SLI_REV3) {
1022 spin_lock_irq(&phba->hbalock);
1023 control = readl(phba->HCregaddr);
1024 if (!(control & (HC_R0INT_ENA << LPFC_ELS_RING))) {
1025 lpfc_debugfs_slow_ring_trc(phba,
1026 "WRK Enable ring: cntl:x%x hacopy:x%x",
1027 control, ha_copy, 0);
1028
1029 control |= (HC_R0INT_ENA << LPFC_ELS_RING);
1030 writel(control, phba->HCregaddr);
1031 readl(phba->HCregaddr); /* flush */
1032 } else {
1033 lpfc_debugfs_slow_ring_trc(phba,
1034 "WRK Ring ok: cntl:x%x hacopy:x%x",
1035 control, ha_copy, 0);
1036 }
1037 spin_unlock_irq(&phba->hbalock);
1038 }
1039 }
1040 lpfc_work_list_done(phba);
1041 }
1042
1043 int
lpfc_do_work(void * p)1044 lpfc_do_work(void *p)
1045 {
1046 struct lpfc_hba *phba = p;
1047 int rc;
1048
1049 set_user_nice(current, MIN_NICE);
1050 current->flags |= PF_NOFREEZE;
1051 phba->data_flags = 0;
1052
1053 while (!kthread_should_stop()) {
1054 /* wait and check worker queue activities */
1055 rc = wait_event_interruptible(phba->work_waitq,
1056 (test_and_clear_bit(LPFC_DATA_READY,
1057 &phba->data_flags)
1058 || kthread_should_stop()));
1059 /* Signal wakeup shall terminate the worker thread */
1060 if (rc) {
1061 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1062 "0433 Wakeup on signal: rc=x%x\n", rc);
1063 break;
1064 }
1065
1066 /* Attend pending lpfc data processing */
1067 lpfc_work_done(phba);
1068 }
1069 phba->worker_thread = NULL;
1070 lpfc_printf_log(phba, KERN_INFO, LOG_ELS,
1071 "0432 Worker thread stopped.\n");
1072 return 0;
1073 }
1074
1075 /*
1076 * This is only called to handle FC worker events. Since this a rare
1077 * occurrence, we allocate a struct lpfc_work_evt structure here instead of
1078 * embedding it in the IOCB.
1079 */
1080 int
lpfc_workq_post_event(struct lpfc_hba * phba,void * arg1,void * arg2,uint32_t evt)1081 lpfc_workq_post_event(struct lpfc_hba *phba, void *arg1, void *arg2,
1082 uint32_t evt)
1083 {
1084 struct lpfc_work_evt *evtp;
1085 unsigned long flags;
1086
1087 /*
1088 * All Mailbox completions and LPFC_ELS_RING rcv ring IOCB events will
1089 * be queued to worker thread for processing
1090 */
1091 evtp = kmalloc(sizeof(struct lpfc_work_evt), GFP_ATOMIC);
1092 if (!evtp)
1093 return 0;
1094
1095 evtp->evt_arg1 = arg1;
1096 evtp->evt_arg2 = arg2;
1097 evtp->evt = evt;
1098
1099 spin_lock_irqsave(&phba->hbalock, flags);
1100 list_add_tail(&evtp->evt_listp, &phba->work_list);
1101 spin_unlock_irqrestore(&phba->hbalock, flags);
1102
1103 lpfc_worker_wake_up(phba);
1104
1105 return 1;
1106 }
1107
1108 void
lpfc_cleanup_rpis(struct lpfc_vport * vport,int remove)1109 lpfc_cleanup_rpis(struct lpfc_vport *vport, int remove)
1110 {
1111 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
1112 struct lpfc_hba *phba = vport->phba;
1113 struct lpfc_nodelist *ndlp, *next_ndlp;
1114
1115 list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes, nlp_listp) {
1116 if (ndlp->nlp_state == NLP_STE_UNUSED_NODE) {
1117 /* It's possible the FLOGI to the fabric node never
1118 * successfully completed and never registered with the
1119 * transport. In this case there is no way to clean up
1120 * the node.
1121 */
1122 if (ndlp->nlp_DID == Fabric_DID) {
1123 if (ndlp->nlp_prev_state ==
1124 NLP_STE_UNUSED_NODE &&
1125 !ndlp->fc4_xpt_flags)
1126 lpfc_nlp_put(ndlp);
1127 }
1128 continue;
1129 }
1130
1131 if ((phba->sli3_options & LPFC_SLI3_VPORT_TEARDOWN) ||
1132 ((vport->port_type == LPFC_NPIV_PORT) &&
1133 ((ndlp->nlp_DID == NameServer_DID) ||
1134 (ndlp->nlp_DID == FDMI_DID) ||
1135 (ndlp->nlp_DID == Fabric_Cntl_DID))))
1136 lpfc_unreg_rpi(vport, ndlp);
1137
1138 /* Leave Fabric nodes alone on link down */
1139 if ((phba->sli_rev < LPFC_SLI_REV4) &&
1140 (!remove && ndlp->nlp_type & NLP_FABRIC))
1141 continue;
1142
1143 /* Notify transport of connectivity loss to trigger cleanup. */
1144 if (phba->nvmet_support &&
1145 ndlp->nlp_state == NLP_STE_UNMAPPED_NODE)
1146 lpfc_nvmet_invalidate_host(phba, ndlp);
1147
1148 lpfc_disc_state_machine(vport, ndlp, NULL,
1149 remove
1150 ? NLP_EVT_DEVICE_RM
1151 : NLP_EVT_DEVICE_RECOVERY);
1152 }
1153 if (phba->sli3_options & LPFC_SLI3_VPORT_TEARDOWN) {
1154 if (phba->sli_rev == LPFC_SLI_REV4)
1155 lpfc_sli4_unreg_all_rpis(vport);
1156 lpfc_mbx_unreg_vpi(vport);
1157 spin_lock_irq(shost->host_lock);
1158 vport->fc_flag |= FC_VPORT_NEEDS_REG_VPI;
1159 spin_unlock_irq(shost->host_lock);
1160 }
1161 }
1162
1163 void
lpfc_port_link_failure(struct lpfc_vport * vport)1164 lpfc_port_link_failure(struct lpfc_vport *vport)
1165 {
1166 lpfc_vport_set_state(vport, FC_VPORT_LINKDOWN);
1167
1168 /* Cleanup any outstanding received buffers */
1169 lpfc_cleanup_rcv_buffers(vport);
1170
1171 /* Cleanup any outstanding RSCN activity */
1172 lpfc_els_flush_rscn(vport);
1173
1174 /* Cleanup any outstanding ELS commands */
1175 lpfc_els_flush_cmd(vport);
1176
1177 lpfc_cleanup_rpis(vport, 0);
1178
1179 /* Turn off discovery timer if its running */
1180 lpfc_can_disctmo(vport);
1181 }
1182
1183 void
lpfc_linkdown_port(struct lpfc_vport * vport)1184 lpfc_linkdown_port(struct lpfc_vport *vport)
1185 {
1186 struct lpfc_hba *phba = vport->phba;
1187 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
1188
1189 if (vport->cfg_enable_fc4_type != LPFC_ENABLE_NVME)
1190 fc_host_post_event(shost, fc_get_event_number(),
1191 FCH_EVT_LINKDOWN, 0);
1192
1193 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD,
1194 "Link Down: state:x%x rtry:x%x flg:x%x",
1195 vport->port_state, vport->fc_ns_retry, vport->fc_flag);
1196
1197 lpfc_port_link_failure(vport);
1198
1199 /* Stop delayed Nport discovery */
1200 spin_lock_irq(shost->host_lock);
1201 vport->fc_flag &= ~FC_DISC_DELAYED;
1202 spin_unlock_irq(shost->host_lock);
1203 del_timer_sync(&vport->delayed_disc_tmo);
1204
1205 if (phba->sli_rev == LPFC_SLI_REV4 &&
1206 vport->port_type == LPFC_PHYSICAL_PORT &&
1207 phba->sli4_hba.fawwpn_flag & LPFC_FAWWPN_CONFIG) {
1208 /* Assume success on link up */
1209 phba->sli4_hba.fawwpn_flag |= LPFC_FAWWPN_FABRIC;
1210 }
1211 }
1212
1213 int
lpfc_linkdown(struct lpfc_hba * phba)1214 lpfc_linkdown(struct lpfc_hba *phba)
1215 {
1216 struct lpfc_vport *vport = phba->pport;
1217 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
1218 struct lpfc_vport **vports;
1219 LPFC_MBOXQ_t *mb;
1220 int i;
1221 int offline;
1222
1223 if (phba->link_state == LPFC_LINK_DOWN)
1224 return 0;
1225
1226 /* Block all SCSI stack I/Os */
1227 lpfc_scsi_dev_block(phba);
1228 offline = pci_channel_offline(phba->pcidev);
1229
1230 phba->defer_flogi_acc_flag = false;
1231
1232 /* Clear external loopback plug detected flag */
1233 phba->link_flag &= ~LS_EXTERNAL_LOOPBACK;
1234
1235 spin_lock_irq(&phba->hbalock);
1236 phba->fcf.fcf_flag &= ~(FCF_AVAILABLE | FCF_SCAN_DONE);
1237 spin_unlock_irq(&phba->hbalock);
1238 if (phba->link_state > LPFC_LINK_DOWN) {
1239 phba->link_state = LPFC_LINK_DOWN;
1240 if (phba->sli4_hba.conf_trunk) {
1241 phba->trunk_link.link0.state = 0;
1242 phba->trunk_link.link1.state = 0;
1243 phba->trunk_link.link2.state = 0;
1244 phba->trunk_link.link3.state = 0;
1245 phba->sli4_hba.link_state.logical_speed =
1246 LPFC_LINK_SPEED_UNKNOWN;
1247 }
1248 spin_lock_irq(shost->host_lock);
1249 phba->pport->fc_flag &= ~FC_LBIT;
1250 spin_unlock_irq(shost->host_lock);
1251 }
1252 vports = lpfc_create_vport_work_array(phba);
1253 if (vports != NULL) {
1254 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
1255 /* Issue a LINK DOWN event to all nodes */
1256 lpfc_linkdown_port(vports[i]);
1257
1258 vports[i]->fc_myDID = 0;
1259
1260 if ((vport->cfg_enable_fc4_type == LPFC_ENABLE_BOTH) ||
1261 (vport->cfg_enable_fc4_type == LPFC_ENABLE_NVME)) {
1262 if (phba->nvmet_support)
1263 lpfc_nvmet_update_targetport(phba);
1264 else
1265 lpfc_nvme_update_localport(vports[i]);
1266 }
1267 }
1268 }
1269 lpfc_destroy_vport_work_array(phba, vports);
1270
1271 /* Clean up any SLI3 firmware default rpi's */
1272 if (phba->sli_rev > LPFC_SLI_REV3 || offline)
1273 goto skip_unreg_did;
1274
1275 mb = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
1276 if (mb) {
1277 lpfc_unreg_did(phba, 0xffff, LPFC_UNREG_ALL_DFLT_RPIS, mb);
1278 mb->vport = vport;
1279 mb->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
1280 if (lpfc_sli_issue_mbox(phba, mb, MBX_NOWAIT)
1281 == MBX_NOT_FINISHED) {
1282 mempool_free(mb, phba->mbox_mem_pool);
1283 }
1284 }
1285
1286 skip_unreg_did:
1287 /* Setup myDID for link up if we are in pt2pt mode */
1288 if (phba->pport->fc_flag & FC_PT2PT) {
1289 mb = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
1290 if (mb) {
1291 lpfc_config_link(phba, mb);
1292 mb->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
1293 mb->vport = vport;
1294 if (lpfc_sli_issue_mbox(phba, mb, MBX_NOWAIT)
1295 == MBX_NOT_FINISHED) {
1296 mempool_free(mb, phba->mbox_mem_pool);
1297 }
1298 }
1299 spin_lock_irq(shost->host_lock);
1300 phba->pport->fc_flag &= ~(FC_PT2PT | FC_PT2PT_PLOGI);
1301 phba->pport->rcv_flogi_cnt = 0;
1302 spin_unlock_irq(shost->host_lock);
1303 }
1304 return 0;
1305 }
1306
1307 static void
lpfc_linkup_cleanup_nodes(struct lpfc_vport * vport)1308 lpfc_linkup_cleanup_nodes(struct lpfc_vport *vport)
1309 {
1310 struct lpfc_nodelist *ndlp;
1311
1312 list_for_each_entry(ndlp, &vport->fc_nodes, nlp_listp) {
1313 ndlp->nlp_fc4_type &= ~(NLP_FC4_FCP | NLP_FC4_NVME);
1314
1315 if (ndlp->nlp_state == NLP_STE_UNUSED_NODE)
1316 continue;
1317 if (ndlp->nlp_type & NLP_FABRIC) {
1318 /* On Linkup its safe to clean up the ndlp
1319 * from Fabric connections.
1320 */
1321 if (ndlp->nlp_DID != Fabric_DID)
1322 lpfc_unreg_rpi(vport, ndlp);
1323 lpfc_nlp_set_state(vport, ndlp, NLP_STE_NPR_NODE);
1324 } else if (!(ndlp->nlp_flag & NLP_NPR_ADISC)) {
1325 /* Fail outstanding IO now since device is
1326 * marked for PLOGI.
1327 */
1328 lpfc_unreg_rpi(vport, ndlp);
1329 }
1330 }
1331 }
1332
1333 static void
lpfc_linkup_port(struct lpfc_vport * vport)1334 lpfc_linkup_port(struct lpfc_vport *vport)
1335 {
1336 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
1337 struct lpfc_hba *phba = vport->phba;
1338
1339 if ((vport->load_flag & FC_UNLOADING) != 0)
1340 return;
1341
1342 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD,
1343 "Link Up: top:x%x speed:x%x flg:x%x",
1344 phba->fc_topology, phba->fc_linkspeed, phba->link_flag);
1345
1346 /* If NPIV is not enabled, only bring the physical port up */
1347 if (!(phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) &&
1348 (vport != phba->pport))
1349 return;
1350
1351 if (vport->cfg_enable_fc4_type != LPFC_ENABLE_NVME)
1352 fc_host_post_event(shost, fc_get_event_number(),
1353 FCH_EVT_LINKUP, 0);
1354
1355 spin_lock_irq(shost->host_lock);
1356 vport->fc_flag &= ~(FC_PT2PT | FC_PT2PT_PLOGI | FC_ABORT_DISCOVERY |
1357 FC_RSCN_MODE | FC_NLP_MORE | FC_RSCN_DISCOVERY);
1358 vport->fc_flag |= FC_NDISC_ACTIVE;
1359 vport->fc_ns_retry = 0;
1360 spin_unlock_irq(shost->host_lock);
1361 lpfc_setup_fdmi_mask(vport);
1362
1363 lpfc_linkup_cleanup_nodes(vport);
1364 }
1365
1366 static int
lpfc_linkup(struct lpfc_hba * phba)1367 lpfc_linkup(struct lpfc_hba *phba)
1368 {
1369 struct lpfc_vport **vports;
1370 int i;
1371 struct Scsi_Host *shost = lpfc_shost_from_vport(phba->pport);
1372
1373 phba->link_state = LPFC_LINK_UP;
1374
1375 /* Unblock fabric iocbs if they are blocked */
1376 clear_bit(FABRIC_COMANDS_BLOCKED, &phba->bit_flags);
1377 del_timer_sync(&phba->fabric_block_timer);
1378
1379 vports = lpfc_create_vport_work_array(phba);
1380 if (vports != NULL)
1381 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++)
1382 lpfc_linkup_port(vports[i]);
1383 lpfc_destroy_vport_work_array(phba, vports);
1384
1385 /* Clear the pport flogi counter in case the link down was
1386 * absorbed without an ACQE. No lock here - in worker thread
1387 * and discovery is synchronized.
1388 */
1389 spin_lock_irq(shost->host_lock);
1390 phba->pport->rcv_flogi_cnt = 0;
1391 spin_unlock_irq(shost->host_lock);
1392
1393 /* reinitialize initial HBA flag */
1394 phba->hba_flag &= ~(HBA_FLOGI_ISSUED | HBA_RHBA_CMPL);
1395 phba->defer_flogi_acc_flag = false;
1396
1397 return 0;
1398 }
1399
1400 /*
1401 * This routine handles processing a CLEAR_LA mailbox
1402 * command upon completion. It is setup in the LPFC_MBOXQ
1403 * as the completion routine when the command is
1404 * handed off to the SLI layer. SLI3 only.
1405 */
1406 static void
lpfc_mbx_cmpl_clear_la(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)1407 lpfc_mbx_cmpl_clear_la(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
1408 {
1409 struct lpfc_vport *vport = pmb->vport;
1410 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
1411 struct lpfc_sli *psli = &phba->sli;
1412 MAILBOX_t *mb = &pmb->u.mb;
1413 uint32_t control;
1414
1415 /* Since we don't do discovery right now, turn these off here */
1416 psli->sli3_ring[LPFC_EXTRA_RING].flag &= ~LPFC_STOP_IOCB_EVENT;
1417 psli->sli3_ring[LPFC_FCP_RING].flag &= ~LPFC_STOP_IOCB_EVENT;
1418
1419 /* Check for error */
1420 if ((mb->mbxStatus) && (mb->mbxStatus != 0x1601)) {
1421 /* CLEAR_LA mbox error <mbxStatus> state <hba_state> */
1422 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1423 "0320 CLEAR_LA mbxStatus error x%x hba "
1424 "state x%x\n",
1425 mb->mbxStatus, vport->port_state);
1426 phba->link_state = LPFC_HBA_ERROR;
1427 goto out;
1428 }
1429
1430 if (vport->port_type == LPFC_PHYSICAL_PORT)
1431 phba->link_state = LPFC_HBA_READY;
1432
1433 spin_lock_irq(&phba->hbalock);
1434 psli->sli_flag |= LPFC_PROCESS_LA;
1435 control = readl(phba->HCregaddr);
1436 control |= HC_LAINT_ENA;
1437 writel(control, phba->HCregaddr);
1438 readl(phba->HCregaddr); /* flush */
1439 spin_unlock_irq(&phba->hbalock);
1440 mempool_free(pmb, phba->mbox_mem_pool);
1441 return;
1442
1443 out:
1444 /* Device Discovery completes */
1445 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
1446 "0225 Device Discovery completes\n");
1447 mempool_free(pmb, phba->mbox_mem_pool);
1448
1449 spin_lock_irq(shost->host_lock);
1450 vport->fc_flag &= ~FC_ABORT_DISCOVERY;
1451 spin_unlock_irq(shost->host_lock);
1452
1453 lpfc_can_disctmo(vport);
1454
1455 /* turn on Link Attention interrupts */
1456
1457 spin_lock_irq(&phba->hbalock);
1458 psli->sli_flag |= LPFC_PROCESS_LA;
1459 control = readl(phba->HCregaddr);
1460 control |= HC_LAINT_ENA;
1461 writel(control, phba->HCregaddr);
1462 readl(phba->HCregaddr); /* flush */
1463 spin_unlock_irq(&phba->hbalock);
1464
1465 return;
1466 }
1467
1468 void
lpfc_mbx_cmpl_local_config_link(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)1469 lpfc_mbx_cmpl_local_config_link(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
1470 {
1471 struct lpfc_vport *vport = pmb->vport;
1472 LPFC_MBOXQ_t *sparam_mb;
1473 u16 status = pmb->u.mb.mbxStatus;
1474 int rc;
1475
1476 mempool_free(pmb, phba->mbox_mem_pool);
1477
1478 if (status)
1479 goto out;
1480
1481 /* don't perform discovery for SLI4 loopback diagnostic test */
1482 if ((phba->sli_rev == LPFC_SLI_REV4) &&
1483 !(phba->hba_flag & HBA_FCOE_MODE) &&
1484 (phba->link_flag & LS_LOOPBACK_MODE))
1485 return;
1486
1487 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP &&
1488 vport->fc_flag & FC_PUBLIC_LOOP &&
1489 !(vport->fc_flag & FC_LBIT)) {
1490 /* Need to wait for FAN - use discovery timer
1491 * for timeout. port_state is identically
1492 * LPFC_LOCAL_CFG_LINK while waiting for FAN
1493 */
1494 lpfc_set_disctmo(vport);
1495 return;
1496 }
1497
1498 /* Start discovery by sending a FLOGI. port_state is identically
1499 * LPFC_FLOGI while waiting for FLOGI cmpl.
1500 */
1501 if (vport->port_state != LPFC_FLOGI) {
1502 /* Issue MBX_READ_SPARAM to update CSPs before FLOGI if
1503 * bb-credit recovery is in place.
1504 */
1505 if (phba->bbcredit_support && phba->cfg_enable_bbcr &&
1506 !(phba->link_flag & LS_LOOPBACK_MODE)) {
1507 sparam_mb = mempool_alloc(phba->mbox_mem_pool,
1508 GFP_KERNEL);
1509 if (!sparam_mb)
1510 goto sparam_out;
1511
1512 rc = lpfc_read_sparam(phba, sparam_mb, 0);
1513 if (rc) {
1514 mempool_free(sparam_mb, phba->mbox_mem_pool);
1515 goto sparam_out;
1516 }
1517 sparam_mb->vport = vport;
1518 sparam_mb->mbox_cmpl = lpfc_mbx_cmpl_read_sparam;
1519 rc = lpfc_sli_issue_mbox(phba, sparam_mb, MBX_NOWAIT);
1520 if (rc == MBX_NOT_FINISHED) {
1521 lpfc_mbox_rsrc_cleanup(phba, sparam_mb,
1522 MBOX_THD_UNLOCKED);
1523 goto sparam_out;
1524 }
1525
1526 phba->hba_flag |= HBA_DEFER_FLOGI;
1527 } else {
1528 lpfc_initial_flogi(vport);
1529 }
1530 } else {
1531 if (vport->fc_flag & FC_PT2PT)
1532 lpfc_disc_start(vport);
1533 }
1534 return;
1535
1536 out:
1537 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1538 "0306 CONFIG_LINK mbxStatus error x%x HBA state x%x\n",
1539 status, vport->port_state);
1540
1541 sparam_out:
1542 lpfc_linkdown(phba);
1543
1544 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1545 "0200 CONFIG_LINK bad hba state x%x\n",
1546 vport->port_state);
1547
1548 lpfc_issue_clear_la(phba, vport);
1549 return;
1550 }
1551
1552 /**
1553 * lpfc_sli4_clear_fcf_rr_bmask
1554 * @phba: pointer to the struct lpfc_hba for this port.
1555 * This fucnction resets the round robin bit mask and clears the
1556 * fcf priority list. The list deletions are done while holding the
1557 * hbalock. The ON_LIST flag and the FLOGI_FAILED flags are cleared
1558 * from the lpfc_fcf_pri record.
1559 **/
1560 void
lpfc_sli4_clear_fcf_rr_bmask(struct lpfc_hba * phba)1561 lpfc_sli4_clear_fcf_rr_bmask(struct lpfc_hba *phba)
1562 {
1563 struct lpfc_fcf_pri *fcf_pri;
1564 struct lpfc_fcf_pri *next_fcf_pri;
1565 memset(phba->fcf.fcf_rr_bmask, 0, sizeof(*phba->fcf.fcf_rr_bmask));
1566 spin_lock_irq(&phba->hbalock);
1567 list_for_each_entry_safe(fcf_pri, next_fcf_pri,
1568 &phba->fcf.fcf_pri_list, list) {
1569 list_del_init(&fcf_pri->list);
1570 fcf_pri->fcf_rec.flag = 0;
1571 }
1572 spin_unlock_irq(&phba->hbalock);
1573 }
1574 static void
lpfc_mbx_cmpl_reg_fcfi(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)1575 lpfc_mbx_cmpl_reg_fcfi(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
1576 {
1577 struct lpfc_vport *vport = mboxq->vport;
1578
1579 if (mboxq->u.mb.mbxStatus) {
1580 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1581 "2017 REG_FCFI mbxStatus error x%x "
1582 "HBA state x%x\n", mboxq->u.mb.mbxStatus,
1583 vport->port_state);
1584 goto fail_out;
1585 }
1586
1587 /* Start FCoE discovery by sending a FLOGI. */
1588 phba->fcf.fcfi = bf_get(lpfc_reg_fcfi_fcfi, &mboxq->u.mqe.un.reg_fcfi);
1589 /* Set the FCFI registered flag */
1590 spin_lock_irq(&phba->hbalock);
1591 phba->fcf.fcf_flag |= FCF_REGISTERED;
1592 spin_unlock_irq(&phba->hbalock);
1593
1594 /* If there is a pending FCoE event, restart FCF table scan. */
1595 if ((!(phba->hba_flag & FCF_RR_INPROG)) &&
1596 lpfc_check_pending_fcoe_event(phba, LPFC_UNREG_FCF))
1597 goto fail_out;
1598
1599 /* Mark successful completion of FCF table scan */
1600 spin_lock_irq(&phba->hbalock);
1601 phba->fcf.fcf_flag |= (FCF_SCAN_DONE | FCF_IN_USE);
1602 phba->hba_flag &= ~FCF_TS_INPROG;
1603 if (vport->port_state != LPFC_FLOGI) {
1604 phba->hba_flag |= FCF_RR_INPROG;
1605 spin_unlock_irq(&phba->hbalock);
1606 lpfc_issue_init_vfi(vport);
1607 goto out;
1608 }
1609 spin_unlock_irq(&phba->hbalock);
1610 goto out;
1611
1612 fail_out:
1613 spin_lock_irq(&phba->hbalock);
1614 phba->hba_flag &= ~FCF_RR_INPROG;
1615 spin_unlock_irq(&phba->hbalock);
1616 out:
1617 mempool_free(mboxq, phba->mbox_mem_pool);
1618 }
1619
1620 /**
1621 * lpfc_fab_name_match - Check if the fcf fabric name match.
1622 * @fab_name: pointer to fabric name.
1623 * @new_fcf_record: pointer to fcf record.
1624 *
1625 * This routine compare the fcf record's fabric name with provided
1626 * fabric name. If the fabric name are identical this function
1627 * returns 1 else return 0.
1628 **/
1629 static uint32_t
lpfc_fab_name_match(uint8_t * fab_name,struct fcf_record * new_fcf_record)1630 lpfc_fab_name_match(uint8_t *fab_name, struct fcf_record *new_fcf_record)
1631 {
1632 if (fab_name[0] != bf_get(lpfc_fcf_record_fab_name_0, new_fcf_record))
1633 return 0;
1634 if (fab_name[1] != bf_get(lpfc_fcf_record_fab_name_1, new_fcf_record))
1635 return 0;
1636 if (fab_name[2] != bf_get(lpfc_fcf_record_fab_name_2, new_fcf_record))
1637 return 0;
1638 if (fab_name[3] != bf_get(lpfc_fcf_record_fab_name_3, new_fcf_record))
1639 return 0;
1640 if (fab_name[4] != bf_get(lpfc_fcf_record_fab_name_4, new_fcf_record))
1641 return 0;
1642 if (fab_name[5] != bf_get(lpfc_fcf_record_fab_name_5, new_fcf_record))
1643 return 0;
1644 if (fab_name[6] != bf_get(lpfc_fcf_record_fab_name_6, new_fcf_record))
1645 return 0;
1646 if (fab_name[7] != bf_get(lpfc_fcf_record_fab_name_7, new_fcf_record))
1647 return 0;
1648 return 1;
1649 }
1650
1651 /**
1652 * lpfc_sw_name_match - Check if the fcf switch name match.
1653 * @sw_name: pointer to switch name.
1654 * @new_fcf_record: pointer to fcf record.
1655 *
1656 * This routine compare the fcf record's switch name with provided
1657 * switch name. If the switch name are identical this function
1658 * returns 1 else return 0.
1659 **/
1660 static uint32_t
lpfc_sw_name_match(uint8_t * sw_name,struct fcf_record * new_fcf_record)1661 lpfc_sw_name_match(uint8_t *sw_name, struct fcf_record *new_fcf_record)
1662 {
1663 if (sw_name[0] != bf_get(lpfc_fcf_record_switch_name_0, new_fcf_record))
1664 return 0;
1665 if (sw_name[1] != bf_get(lpfc_fcf_record_switch_name_1, new_fcf_record))
1666 return 0;
1667 if (sw_name[2] != bf_get(lpfc_fcf_record_switch_name_2, new_fcf_record))
1668 return 0;
1669 if (sw_name[3] != bf_get(lpfc_fcf_record_switch_name_3, new_fcf_record))
1670 return 0;
1671 if (sw_name[4] != bf_get(lpfc_fcf_record_switch_name_4, new_fcf_record))
1672 return 0;
1673 if (sw_name[5] != bf_get(lpfc_fcf_record_switch_name_5, new_fcf_record))
1674 return 0;
1675 if (sw_name[6] != bf_get(lpfc_fcf_record_switch_name_6, new_fcf_record))
1676 return 0;
1677 if (sw_name[7] != bf_get(lpfc_fcf_record_switch_name_7, new_fcf_record))
1678 return 0;
1679 return 1;
1680 }
1681
1682 /**
1683 * lpfc_mac_addr_match - Check if the fcf mac address match.
1684 * @mac_addr: pointer to mac address.
1685 * @new_fcf_record: pointer to fcf record.
1686 *
1687 * This routine compare the fcf record's mac address with HBA's
1688 * FCF mac address. If the mac addresses are identical this function
1689 * returns 1 else return 0.
1690 **/
1691 static uint32_t
lpfc_mac_addr_match(uint8_t * mac_addr,struct fcf_record * new_fcf_record)1692 lpfc_mac_addr_match(uint8_t *mac_addr, struct fcf_record *new_fcf_record)
1693 {
1694 if (mac_addr[0] != bf_get(lpfc_fcf_record_mac_0, new_fcf_record))
1695 return 0;
1696 if (mac_addr[1] != bf_get(lpfc_fcf_record_mac_1, new_fcf_record))
1697 return 0;
1698 if (mac_addr[2] != bf_get(lpfc_fcf_record_mac_2, new_fcf_record))
1699 return 0;
1700 if (mac_addr[3] != bf_get(lpfc_fcf_record_mac_3, new_fcf_record))
1701 return 0;
1702 if (mac_addr[4] != bf_get(lpfc_fcf_record_mac_4, new_fcf_record))
1703 return 0;
1704 if (mac_addr[5] != bf_get(lpfc_fcf_record_mac_5, new_fcf_record))
1705 return 0;
1706 return 1;
1707 }
1708
1709 static bool
lpfc_vlan_id_match(uint16_t curr_vlan_id,uint16_t new_vlan_id)1710 lpfc_vlan_id_match(uint16_t curr_vlan_id, uint16_t new_vlan_id)
1711 {
1712 return (curr_vlan_id == new_vlan_id);
1713 }
1714
1715 /**
1716 * __lpfc_update_fcf_record_pri - update the lpfc_fcf_pri record.
1717 * @phba: pointer to lpfc hba data structure.
1718 * @fcf_index: Index for the lpfc_fcf_record.
1719 * @new_fcf_record: pointer to hba fcf record.
1720 *
1721 * This routine updates the driver FCF priority record from the new HBA FCF
1722 * record. The hbalock is asserted held in the code path calling this
1723 * routine.
1724 **/
1725 static void
__lpfc_update_fcf_record_pri(struct lpfc_hba * phba,uint16_t fcf_index,struct fcf_record * new_fcf_record)1726 __lpfc_update_fcf_record_pri(struct lpfc_hba *phba, uint16_t fcf_index,
1727 struct fcf_record *new_fcf_record
1728 )
1729 {
1730 struct lpfc_fcf_pri *fcf_pri;
1731
1732 fcf_pri = &phba->fcf.fcf_pri[fcf_index];
1733 fcf_pri->fcf_rec.fcf_index = fcf_index;
1734 /* FCF record priority */
1735 fcf_pri->fcf_rec.priority = new_fcf_record->fip_priority;
1736
1737 }
1738
1739 /**
1740 * lpfc_copy_fcf_record - Copy fcf information to lpfc_hba.
1741 * @fcf_rec: pointer to driver fcf record.
1742 * @new_fcf_record: pointer to fcf record.
1743 *
1744 * This routine copies the FCF information from the FCF
1745 * record to lpfc_hba data structure.
1746 **/
1747 static void
lpfc_copy_fcf_record(struct lpfc_fcf_rec * fcf_rec,struct fcf_record * new_fcf_record)1748 lpfc_copy_fcf_record(struct lpfc_fcf_rec *fcf_rec,
1749 struct fcf_record *new_fcf_record)
1750 {
1751 /* Fabric name */
1752 fcf_rec->fabric_name[0] =
1753 bf_get(lpfc_fcf_record_fab_name_0, new_fcf_record);
1754 fcf_rec->fabric_name[1] =
1755 bf_get(lpfc_fcf_record_fab_name_1, new_fcf_record);
1756 fcf_rec->fabric_name[2] =
1757 bf_get(lpfc_fcf_record_fab_name_2, new_fcf_record);
1758 fcf_rec->fabric_name[3] =
1759 bf_get(lpfc_fcf_record_fab_name_3, new_fcf_record);
1760 fcf_rec->fabric_name[4] =
1761 bf_get(lpfc_fcf_record_fab_name_4, new_fcf_record);
1762 fcf_rec->fabric_name[5] =
1763 bf_get(lpfc_fcf_record_fab_name_5, new_fcf_record);
1764 fcf_rec->fabric_name[6] =
1765 bf_get(lpfc_fcf_record_fab_name_6, new_fcf_record);
1766 fcf_rec->fabric_name[7] =
1767 bf_get(lpfc_fcf_record_fab_name_7, new_fcf_record);
1768 /* Mac address */
1769 fcf_rec->mac_addr[0] = bf_get(lpfc_fcf_record_mac_0, new_fcf_record);
1770 fcf_rec->mac_addr[1] = bf_get(lpfc_fcf_record_mac_1, new_fcf_record);
1771 fcf_rec->mac_addr[2] = bf_get(lpfc_fcf_record_mac_2, new_fcf_record);
1772 fcf_rec->mac_addr[3] = bf_get(lpfc_fcf_record_mac_3, new_fcf_record);
1773 fcf_rec->mac_addr[4] = bf_get(lpfc_fcf_record_mac_4, new_fcf_record);
1774 fcf_rec->mac_addr[5] = bf_get(lpfc_fcf_record_mac_5, new_fcf_record);
1775 /* FCF record index */
1776 fcf_rec->fcf_indx = bf_get(lpfc_fcf_record_fcf_index, new_fcf_record);
1777 /* FCF record priority */
1778 fcf_rec->priority = new_fcf_record->fip_priority;
1779 /* Switch name */
1780 fcf_rec->switch_name[0] =
1781 bf_get(lpfc_fcf_record_switch_name_0, new_fcf_record);
1782 fcf_rec->switch_name[1] =
1783 bf_get(lpfc_fcf_record_switch_name_1, new_fcf_record);
1784 fcf_rec->switch_name[2] =
1785 bf_get(lpfc_fcf_record_switch_name_2, new_fcf_record);
1786 fcf_rec->switch_name[3] =
1787 bf_get(lpfc_fcf_record_switch_name_3, new_fcf_record);
1788 fcf_rec->switch_name[4] =
1789 bf_get(lpfc_fcf_record_switch_name_4, new_fcf_record);
1790 fcf_rec->switch_name[5] =
1791 bf_get(lpfc_fcf_record_switch_name_5, new_fcf_record);
1792 fcf_rec->switch_name[6] =
1793 bf_get(lpfc_fcf_record_switch_name_6, new_fcf_record);
1794 fcf_rec->switch_name[7] =
1795 bf_get(lpfc_fcf_record_switch_name_7, new_fcf_record);
1796 }
1797
1798 /**
1799 * __lpfc_update_fcf_record - Update driver fcf record
1800 * @phba: pointer to lpfc hba data structure.
1801 * @fcf_rec: pointer to driver fcf record.
1802 * @new_fcf_record: pointer to hba fcf record.
1803 * @addr_mode: address mode to be set to the driver fcf record.
1804 * @vlan_id: vlan tag to be set to the driver fcf record.
1805 * @flag: flag bits to be set to the driver fcf record.
1806 *
1807 * This routine updates the driver FCF record from the new HBA FCF record
1808 * together with the address mode, vlan_id, and other informations. This
1809 * routine is called with the hbalock held.
1810 **/
1811 static void
__lpfc_update_fcf_record(struct lpfc_hba * phba,struct lpfc_fcf_rec * fcf_rec,struct fcf_record * new_fcf_record,uint32_t addr_mode,uint16_t vlan_id,uint32_t flag)1812 __lpfc_update_fcf_record(struct lpfc_hba *phba, struct lpfc_fcf_rec *fcf_rec,
1813 struct fcf_record *new_fcf_record, uint32_t addr_mode,
1814 uint16_t vlan_id, uint32_t flag)
1815 {
1816 lockdep_assert_held(&phba->hbalock);
1817
1818 /* Copy the fields from the HBA's FCF record */
1819 lpfc_copy_fcf_record(fcf_rec, new_fcf_record);
1820 /* Update other fields of driver FCF record */
1821 fcf_rec->addr_mode = addr_mode;
1822 fcf_rec->vlan_id = vlan_id;
1823 fcf_rec->flag |= (flag | RECORD_VALID);
1824 __lpfc_update_fcf_record_pri(phba,
1825 bf_get(lpfc_fcf_record_fcf_index, new_fcf_record),
1826 new_fcf_record);
1827 }
1828
1829 /**
1830 * lpfc_register_fcf - Register the FCF with hba.
1831 * @phba: pointer to lpfc hba data structure.
1832 *
1833 * This routine issues a register fcfi mailbox command to register
1834 * the fcf with HBA.
1835 **/
1836 static void
lpfc_register_fcf(struct lpfc_hba * phba)1837 lpfc_register_fcf(struct lpfc_hba *phba)
1838 {
1839 LPFC_MBOXQ_t *fcf_mbxq;
1840 int rc;
1841
1842 spin_lock_irq(&phba->hbalock);
1843 /* If the FCF is not available do nothing. */
1844 if (!(phba->fcf.fcf_flag & FCF_AVAILABLE)) {
1845 phba->hba_flag &= ~(FCF_TS_INPROG | FCF_RR_INPROG);
1846 spin_unlock_irq(&phba->hbalock);
1847 return;
1848 }
1849
1850 /* The FCF is already registered, start discovery */
1851 if (phba->fcf.fcf_flag & FCF_REGISTERED) {
1852 phba->fcf.fcf_flag |= (FCF_SCAN_DONE | FCF_IN_USE);
1853 phba->hba_flag &= ~FCF_TS_INPROG;
1854 if (phba->pport->port_state != LPFC_FLOGI &&
1855 phba->pport->fc_flag & FC_FABRIC) {
1856 phba->hba_flag |= FCF_RR_INPROG;
1857 spin_unlock_irq(&phba->hbalock);
1858 lpfc_initial_flogi(phba->pport);
1859 return;
1860 }
1861 spin_unlock_irq(&phba->hbalock);
1862 return;
1863 }
1864 spin_unlock_irq(&phba->hbalock);
1865
1866 fcf_mbxq = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
1867 if (!fcf_mbxq) {
1868 spin_lock_irq(&phba->hbalock);
1869 phba->hba_flag &= ~(FCF_TS_INPROG | FCF_RR_INPROG);
1870 spin_unlock_irq(&phba->hbalock);
1871 return;
1872 }
1873
1874 lpfc_reg_fcfi(phba, fcf_mbxq);
1875 fcf_mbxq->vport = phba->pport;
1876 fcf_mbxq->mbox_cmpl = lpfc_mbx_cmpl_reg_fcfi;
1877 rc = lpfc_sli_issue_mbox(phba, fcf_mbxq, MBX_NOWAIT);
1878 if (rc == MBX_NOT_FINISHED) {
1879 spin_lock_irq(&phba->hbalock);
1880 phba->hba_flag &= ~(FCF_TS_INPROG | FCF_RR_INPROG);
1881 spin_unlock_irq(&phba->hbalock);
1882 mempool_free(fcf_mbxq, phba->mbox_mem_pool);
1883 }
1884
1885 return;
1886 }
1887
1888 /**
1889 * lpfc_match_fcf_conn_list - Check if the FCF record can be used for discovery.
1890 * @phba: pointer to lpfc hba data structure.
1891 * @new_fcf_record: pointer to fcf record.
1892 * @boot_flag: Indicates if this record used by boot bios.
1893 * @addr_mode: The address mode to be used by this FCF
1894 * @vlan_id: The vlan id to be used as vlan tagging by this FCF.
1895 *
1896 * This routine compare the fcf record with connect list obtained from the
1897 * config region to decide if this FCF can be used for SAN discovery. It returns
1898 * 1 if this record can be used for SAN discovery else return zero. If this FCF
1899 * record can be used for SAN discovery, the boot_flag will indicate if this FCF
1900 * is used by boot bios and addr_mode will indicate the addressing mode to be
1901 * used for this FCF when the function returns.
1902 * If the FCF record need to be used with a particular vlan id, the vlan is
1903 * set in the vlan_id on return of the function. If not VLAN tagging need to
1904 * be used with the FCF vlan_id will be set to LPFC_FCOE_NULL_VID;
1905 **/
1906 static int
lpfc_match_fcf_conn_list(struct lpfc_hba * phba,struct fcf_record * new_fcf_record,uint32_t * boot_flag,uint32_t * addr_mode,uint16_t * vlan_id)1907 lpfc_match_fcf_conn_list(struct lpfc_hba *phba,
1908 struct fcf_record *new_fcf_record,
1909 uint32_t *boot_flag, uint32_t *addr_mode,
1910 uint16_t *vlan_id)
1911 {
1912 struct lpfc_fcf_conn_entry *conn_entry;
1913 int i, j, fcf_vlan_id = 0;
1914
1915 /* Find the lowest VLAN id in the FCF record */
1916 for (i = 0; i < 512; i++) {
1917 if (new_fcf_record->vlan_bitmap[i]) {
1918 fcf_vlan_id = i * 8;
1919 j = 0;
1920 while (!((new_fcf_record->vlan_bitmap[i] >> j) & 1)) {
1921 j++;
1922 fcf_vlan_id++;
1923 }
1924 break;
1925 }
1926 }
1927
1928 /* FCF not valid/available or solicitation in progress */
1929 if (!bf_get(lpfc_fcf_record_fcf_avail, new_fcf_record) ||
1930 !bf_get(lpfc_fcf_record_fcf_valid, new_fcf_record) ||
1931 bf_get(lpfc_fcf_record_fcf_sol, new_fcf_record))
1932 return 0;
1933
1934 if (!(phba->hba_flag & HBA_FIP_SUPPORT)) {
1935 *boot_flag = 0;
1936 *addr_mode = bf_get(lpfc_fcf_record_mac_addr_prov,
1937 new_fcf_record);
1938 if (phba->valid_vlan)
1939 *vlan_id = phba->vlan_id;
1940 else
1941 *vlan_id = LPFC_FCOE_NULL_VID;
1942 return 1;
1943 }
1944
1945 /*
1946 * If there are no FCF connection table entry, driver connect to all
1947 * FCFs.
1948 */
1949 if (list_empty(&phba->fcf_conn_rec_list)) {
1950 *boot_flag = 0;
1951 *addr_mode = bf_get(lpfc_fcf_record_mac_addr_prov,
1952 new_fcf_record);
1953
1954 /*
1955 * When there are no FCF connect entries, use driver's default
1956 * addressing mode - FPMA.
1957 */
1958 if (*addr_mode & LPFC_FCF_FPMA)
1959 *addr_mode = LPFC_FCF_FPMA;
1960
1961 /* If FCF record report a vlan id use that vlan id */
1962 if (fcf_vlan_id)
1963 *vlan_id = fcf_vlan_id;
1964 else
1965 *vlan_id = LPFC_FCOE_NULL_VID;
1966 return 1;
1967 }
1968
1969 list_for_each_entry(conn_entry,
1970 &phba->fcf_conn_rec_list, list) {
1971 if (!(conn_entry->conn_rec.flags & FCFCNCT_VALID))
1972 continue;
1973
1974 if ((conn_entry->conn_rec.flags & FCFCNCT_FBNM_VALID) &&
1975 !lpfc_fab_name_match(conn_entry->conn_rec.fabric_name,
1976 new_fcf_record))
1977 continue;
1978 if ((conn_entry->conn_rec.flags & FCFCNCT_SWNM_VALID) &&
1979 !lpfc_sw_name_match(conn_entry->conn_rec.switch_name,
1980 new_fcf_record))
1981 continue;
1982 if (conn_entry->conn_rec.flags & FCFCNCT_VLAN_VALID) {
1983 /*
1984 * If the vlan bit map does not have the bit set for the
1985 * vlan id to be used, then it is not a match.
1986 */
1987 if (!(new_fcf_record->vlan_bitmap
1988 [conn_entry->conn_rec.vlan_tag / 8] &
1989 (1 << (conn_entry->conn_rec.vlan_tag % 8))))
1990 continue;
1991 }
1992
1993 /*
1994 * If connection record does not support any addressing mode,
1995 * skip the FCF record.
1996 */
1997 if (!(bf_get(lpfc_fcf_record_mac_addr_prov, new_fcf_record)
1998 & (LPFC_FCF_FPMA | LPFC_FCF_SPMA)))
1999 continue;
2000
2001 /*
2002 * Check if the connection record specifies a required
2003 * addressing mode.
2004 */
2005 if ((conn_entry->conn_rec.flags & FCFCNCT_AM_VALID) &&
2006 !(conn_entry->conn_rec.flags & FCFCNCT_AM_PREFERRED)) {
2007
2008 /*
2009 * If SPMA required but FCF not support this continue.
2010 */
2011 if ((conn_entry->conn_rec.flags & FCFCNCT_AM_SPMA) &&
2012 !(bf_get(lpfc_fcf_record_mac_addr_prov,
2013 new_fcf_record) & LPFC_FCF_SPMA))
2014 continue;
2015
2016 /*
2017 * If FPMA required but FCF not support this continue.
2018 */
2019 if (!(conn_entry->conn_rec.flags & FCFCNCT_AM_SPMA) &&
2020 !(bf_get(lpfc_fcf_record_mac_addr_prov,
2021 new_fcf_record) & LPFC_FCF_FPMA))
2022 continue;
2023 }
2024
2025 /*
2026 * This fcf record matches filtering criteria.
2027 */
2028 if (conn_entry->conn_rec.flags & FCFCNCT_BOOT)
2029 *boot_flag = 1;
2030 else
2031 *boot_flag = 0;
2032
2033 /*
2034 * If user did not specify any addressing mode, or if the
2035 * preferred addressing mode specified by user is not supported
2036 * by FCF, allow fabric to pick the addressing mode.
2037 */
2038 *addr_mode = bf_get(lpfc_fcf_record_mac_addr_prov,
2039 new_fcf_record);
2040 /*
2041 * If the user specified a required address mode, assign that
2042 * address mode
2043 */
2044 if ((conn_entry->conn_rec.flags & FCFCNCT_AM_VALID) &&
2045 (!(conn_entry->conn_rec.flags & FCFCNCT_AM_PREFERRED)))
2046 *addr_mode = (conn_entry->conn_rec.flags &
2047 FCFCNCT_AM_SPMA) ?
2048 LPFC_FCF_SPMA : LPFC_FCF_FPMA;
2049 /*
2050 * If the user specified a preferred address mode, use the
2051 * addr mode only if FCF support the addr_mode.
2052 */
2053 else if ((conn_entry->conn_rec.flags & FCFCNCT_AM_VALID) &&
2054 (conn_entry->conn_rec.flags & FCFCNCT_AM_PREFERRED) &&
2055 (conn_entry->conn_rec.flags & FCFCNCT_AM_SPMA) &&
2056 (*addr_mode & LPFC_FCF_SPMA))
2057 *addr_mode = LPFC_FCF_SPMA;
2058 else if ((conn_entry->conn_rec.flags & FCFCNCT_AM_VALID) &&
2059 (conn_entry->conn_rec.flags & FCFCNCT_AM_PREFERRED) &&
2060 !(conn_entry->conn_rec.flags & FCFCNCT_AM_SPMA) &&
2061 (*addr_mode & LPFC_FCF_FPMA))
2062 *addr_mode = LPFC_FCF_FPMA;
2063
2064 /* If matching connect list has a vlan id, use it */
2065 if (conn_entry->conn_rec.flags & FCFCNCT_VLAN_VALID)
2066 *vlan_id = conn_entry->conn_rec.vlan_tag;
2067 /*
2068 * If no vlan id is specified in connect list, use the vlan id
2069 * in the FCF record
2070 */
2071 else if (fcf_vlan_id)
2072 *vlan_id = fcf_vlan_id;
2073 else
2074 *vlan_id = LPFC_FCOE_NULL_VID;
2075
2076 return 1;
2077 }
2078
2079 return 0;
2080 }
2081
2082 /**
2083 * lpfc_check_pending_fcoe_event - Check if there is pending fcoe event.
2084 * @phba: pointer to lpfc hba data structure.
2085 * @unreg_fcf: Unregister FCF if FCF table need to be re-scaned.
2086 *
2087 * This function check if there is any fcoe event pending while driver
2088 * scan FCF entries. If there is any pending event, it will restart the
2089 * FCF saning and return 1 else return 0.
2090 */
2091 int
lpfc_check_pending_fcoe_event(struct lpfc_hba * phba,uint8_t unreg_fcf)2092 lpfc_check_pending_fcoe_event(struct lpfc_hba *phba, uint8_t unreg_fcf)
2093 {
2094 /*
2095 * If the Link is up and no FCoE events while in the
2096 * FCF discovery, no need to restart FCF discovery.
2097 */
2098 if ((phba->link_state >= LPFC_LINK_UP) &&
2099 (phba->fcoe_eventtag == phba->fcoe_eventtag_at_fcf_scan))
2100 return 0;
2101
2102 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2103 "2768 Pending link or FCF event during current "
2104 "handling of the previous event: link_state:x%x, "
2105 "evt_tag_at_scan:x%x, evt_tag_current:x%x\n",
2106 phba->link_state, phba->fcoe_eventtag_at_fcf_scan,
2107 phba->fcoe_eventtag);
2108
2109 spin_lock_irq(&phba->hbalock);
2110 phba->fcf.fcf_flag &= ~FCF_AVAILABLE;
2111 spin_unlock_irq(&phba->hbalock);
2112
2113 if (phba->link_state >= LPFC_LINK_UP) {
2114 lpfc_printf_log(phba, KERN_INFO, LOG_FIP | LOG_DISCOVERY,
2115 "2780 Restart FCF table scan due to "
2116 "pending FCF event:evt_tag_at_scan:x%x, "
2117 "evt_tag_current:x%x\n",
2118 phba->fcoe_eventtag_at_fcf_scan,
2119 phba->fcoe_eventtag);
2120 lpfc_sli4_fcf_scan_read_fcf_rec(phba, LPFC_FCOE_FCF_GET_FIRST);
2121 } else {
2122 /*
2123 * Do not continue FCF discovery and clear FCF_TS_INPROG
2124 * flag
2125 */
2126 lpfc_printf_log(phba, KERN_INFO, LOG_FIP | LOG_DISCOVERY,
2127 "2833 Stop FCF discovery process due to link "
2128 "state change (x%x)\n", phba->link_state);
2129 spin_lock_irq(&phba->hbalock);
2130 phba->hba_flag &= ~(FCF_TS_INPROG | FCF_RR_INPROG);
2131 phba->fcf.fcf_flag &= ~(FCF_REDISC_FOV | FCF_DISCOVERY);
2132 spin_unlock_irq(&phba->hbalock);
2133 }
2134
2135 /* Unregister the currently registered FCF if required */
2136 if (unreg_fcf) {
2137 spin_lock_irq(&phba->hbalock);
2138 phba->fcf.fcf_flag &= ~FCF_REGISTERED;
2139 spin_unlock_irq(&phba->hbalock);
2140 lpfc_sli4_unregister_fcf(phba);
2141 }
2142 return 1;
2143 }
2144
2145 /**
2146 * lpfc_sli4_new_fcf_random_select - Randomly select an eligible new fcf record
2147 * @phba: pointer to lpfc hba data structure.
2148 * @fcf_cnt: number of eligible fcf record seen so far.
2149 *
2150 * This function makes an running random selection decision on FCF record to
2151 * use through a sequence of @fcf_cnt eligible FCF records with equal
2152 * probability. To perform integer manunipulation of random numbers with
2153 * size unit32_t, the lower 16 bits of the 32-bit random number returned
2154 * from prandom_u32() are taken as the random random number generated.
2155 *
2156 * Returns true when outcome is for the newly read FCF record should be
2157 * chosen; otherwise, return false when outcome is for keeping the previously
2158 * chosen FCF record.
2159 **/
2160 static bool
lpfc_sli4_new_fcf_random_select(struct lpfc_hba * phba,uint32_t fcf_cnt)2161 lpfc_sli4_new_fcf_random_select(struct lpfc_hba *phba, uint32_t fcf_cnt)
2162 {
2163 uint32_t rand_num;
2164
2165 /* Get 16-bit uniform random number */
2166 rand_num = 0xFFFF & prandom_u32();
2167
2168 /* Decision with probability 1/fcf_cnt */
2169 if ((fcf_cnt * rand_num) < 0xFFFF)
2170 return true;
2171 else
2172 return false;
2173 }
2174
2175 /**
2176 * lpfc_sli4_fcf_rec_mbox_parse - Parse read_fcf mbox command.
2177 * @phba: pointer to lpfc hba data structure.
2178 * @mboxq: pointer to mailbox object.
2179 * @next_fcf_index: pointer to holder of next fcf index.
2180 *
2181 * This routine parses the non-embedded fcf mailbox command by performing the
2182 * necessarily error checking, non-embedded read FCF record mailbox command
2183 * SGE parsing, and endianness swapping.
2184 *
2185 * Returns the pointer to the new FCF record in the non-embedded mailbox
2186 * command DMA memory if successfully, other NULL.
2187 */
2188 static struct fcf_record *
lpfc_sli4_fcf_rec_mbox_parse(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq,uint16_t * next_fcf_index)2189 lpfc_sli4_fcf_rec_mbox_parse(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq,
2190 uint16_t *next_fcf_index)
2191 {
2192 void *virt_addr;
2193 struct lpfc_mbx_sge sge;
2194 struct lpfc_mbx_read_fcf_tbl *read_fcf;
2195 uint32_t shdr_status, shdr_add_status, if_type;
2196 union lpfc_sli4_cfg_shdr *shdr;
2197 struct fcf_record *new_fcf_record;
2198
2199 /* Get the first SGE entry from the non-embedded DMA memory. This
2200 * routine only uses a single SGE.
2201 */
2202 lpfc_sli4_mbx_sge_get(mboxq, 0, &sge);
2203 if (unlikely(!mboxq->sge_array)) {
2204 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2205 "2524 Failed to get the non-embedded SGE "
2206 "virtual address\n");
2207 return NULL;
2208 }
2209 virt_addr = mboxq->sge_array->addr[0];
2210
2211 shdr = (union lpfc_sli4_cfg_shdr *)virt_addr;
2212 lpfc_sli_pcimem_bcopy(shdr, shdr,
2213 sizeof(union lpfc_sli4_cfg_shdr));
2214 shdr_status = bf_get(lpfc_mbox_hdr_status, &shdr->response);
2215 if_type = bf_get(lpfc_sli_intf_if_type, &phba->sli4_hba.sli_intf);
2216 shdr_add_status = bf_get(lpfc_mbox_hdr_add_status, &shdr->response);
2217 if (shdr_status || shdr_add_status) {
2218 if (shdr_status == STATUS_FCF_TABLE_EMPTY ||
2219 if_type == LPFC_SLI_INTF_IF_TYPE_2)
2220 lpfc_printf_log(phba, KERN_ERR,
2221 LOG_TRACE_EVENT,
2222 "2726 READ_FCF_RECORD Indicates empty "
2223 "FCF table.\n");
2224 else
2225 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2226 "2521 READ_FCF_RECORD mailbox failed "
2227 "with status x%x add_status x%x, "
2228 "mbx\n", shdr_status, shdr_add_status);
2229 return NULL;
2230 }
2231
2232 /* Interpreting the returned information of the FCF record */
2233 read_fcf = (struct lpfc_mbx_read_fcf_tbl *)virt_addr;
2234 lpfc_sli_pcimem_bcopy(read_fcf, read_fcf,
2235 sizeof(struct lpfc_mbx_read_fcf_tbl));
2236 *next_fcf_index = bf_get(lpfc_mbx_read_fcf_tbl_nxt_vindx, read_fcf);
2237 new_fcf_record = (struct fcf_record *)(virt_addr +
2238 sizeof(struct lpfc_mbx_read_fcf_tbl));
2239 lpfc_sli_pcimem_bcopy(new_fcf_record, new_fcf_record,
2240 offsetof(struct fcf_record, vlan_bitmap));
2241 new_fcf_record->word137 = le32_to_cpu(new_fcf_record->word137);
2242 new_fcf_record->word138 = le32_to_cpu(new_fcf_record->word138);
2243
2244 return new_fcf_record;
2245 }
2246
2247 /**
2248 * lpfc_sli4_log_fcf_record_info - Log the information of a fcf record
2249 * @phba: pointer to lpfc hba data structure.
2250 * @fcf_record: pointer to the fcf record.
2251 * @vlan_id: the lowest vlan identifier associated to this fcf record.
2252 * @next_fcf_index: the index to the next fcf record in hba's fcf table.
2253 *
2254 * This routine logs the detailed FCF record if the LOG_FIP loggin is
2255 * enabled.
2256 **/
2257 static void
lpfc_sli4_log_fcf_record_info(struct lpfc_hba * phba,struct fcf_record * fcf_record,uint16_t vlan_id,uint16_t next_fcf_index)2258 lpfc_sli4_log_fcf_record_info(struct lpfc_hba *phba,
2259 struct fcf_record *fcf_record,
2260 uint16_t vlan_id,
2261 uint16_t next_fcf_index)
2262 {
2263 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2264 "2764 READ_FCF_RECORD:\n"
2265 "\tFCF_Index : x%x\n"
2266 "\tFCF_Avail : x%x\n"
2267 "\tFCF_Valid : x%x\n"
2268 "\tFCF_SOL : x%x\n"
2269 "\tFIP_Priority : x%x\n"
2270 "\tMAC_Provider : x%x\n"
2271 "\tLowest VLANID : x%x\n"
2272 "\tFCF_MAC Addr : x%x:%x:%x:%x:%x:%x\n"
2273 "\tFabric_Name : x%x:%x:%x:%x:%x:%x:%x:%x\n"
2274 "\tSwitch_Name : x%x:%x:%x:%x:%x:%x:%x:%x\n"
2275 "\tNext_FCF_Index: x%x\n",
2276 bf_get(lpfc_fcf_record_fcf_index, fcf_record),
2277 bf_get(lpfc_fcf_record_fcf_avail, fcf_record),
2278 bf_get(lpfc_fcf_record_fcf_valid, fcf_record),
2279 bf_get(lpfc_fcf_record_fcf_sol, fcf_record),
2280 fcf_record->fip_priority,
2281 bf_get(lpfc_fcf_record_mac_addr_prov, fcf_record),
2282 vlan_id,
2283 bf_get(lpfc_fcf_record_mac_0, fcf_record),
2284 bf_get(lpfc_fcf_record_mac_1, fcf_record),
2285 bf_get(lpfc_fcf_record_mac_2, fcf_record),
2286 bf_get(lpfc_fcf_record_mac_3, fcf_record),
2287 bf_get(lpfc_fcf_record_mac_4, fcf_record),
2288 bf_get(lpfc_fcf_record_mac_5, fcf_record),
2289 bf_get(lpfc_fcf_record_fab_name_0, fcf_record),
2290 bf_get(lpfc_fcf_record_fab_name_1, fcf_record),
2291 bf_get(lpfc_fcf_record_fab_name_2, fcf_record),
2292 bf_get(lpfc_fcf_record_fab_name_3, fcf_record),
2293 bf_get(lpfc_fcf_record_fab_name_4, fcf_record),
2294 bf_get(lpfc_fcf_record_fab_name_5, fcf_record),
2295 bf_get(lpfc_fcf_record_fab_name_6, fcf_record),
2296 bf_get(lpfc_fcf_record_fab_name_7, fcf_record),
2297 bf_get(lpfc_fcf_record_switch_name_0, fcf_record),
2298 bf_get(lpfc_fcf_record_switch_name_1, fcf_record),
2299 bf_get(lpfc_fcf_record_switch_name_2, fcf_record),
2300 bf_get(lpfc_fcf_record_switch_name_3, fcf_record),
2301 bf_get(lpfc_fcf_record_switch_name_4, fcf_record),
2302 bf_get(lpfc_fcf_record_switch_name_5, fcf_record),
2303 bf_get(lpfc_fcf_record_switch_name_6, fcf_record),
2304 bf_get(lpfc_fcf_record_switch_name_7, fcf_record),
2305 next_fcf_index);
2306 }
2307
2308 /**
2309 * lpfc_sli4_fcf_record_match - testing new FCF record for matching existing FCF
2310 * @phba: pointer to lpfc hba data structure.
2311 * @fcf_rec: pointer to an existing FCF record.
2312 * @new_fcf_record: pointer to a new FCF record.
2313 * @new_vlan_id: vlan id from the new FCF record.
2314 *
2315 * This function performs matching test of a new FCF record against an existing
2316 * FCF record. If the new_vlan_id passed in is LPFC_FCOE_IGNORE_VID, vlan id
2317 * will not be used as part of the FCF record matching criteria.
2318 *
2319 * Returns true if all the fields matching, otherwise returns false.
2320 */
2321 static bool
lpfc_sli4_fcf_record_match(struct lpfc_hba * phba,struct lpfc_fcf_rec * fcf_rec,struct fcf_record * new_fcf_record,uint16_t new_vlan_id)2322 lpfc_sli4_fcf_record_match(struct lpfc_hba *phba,
2323 struct lpfc_fcf_rec *fcf_rec,
2324 struct fcf_record *new_fcf_record,
2325 uint16_t new_vlan_id)
2326 {
2327 if (new_vlan_id != LPFC_FCOE_IGNORE_VID)
2328 if (!lpfc_vlan_id_match(fcf_rec->vlan_id, new_vlan_id))
2329 return false;
2330 if (!lpfc_mac_addr_match(fcf_rec->mac_addr, new_fcf_record))
2331 return false;
2332 if (!lpfc_sw_name_match(fcf_rec->switch_name, new_fcf_record))
2333 return false;
2334 if (!lpfc_fab_name_match(fcf_rec->fabric_name, new_fcf_record))
2335 return false;
2336 if (fcf_rec->priority != new_fcf_record->fip_priority)
2337 return false;
2338 return true;
2339 }
2340
2341 /**
2342 * lpfc_sli4_fcf_rr_next_proc - processing next roundrobin fcf
2343 * @vport: Pointer to vport object.
2344 * @fcf_index: index to next fcf.
2345 *
2346 * This function processing the roundrobin fcf failover to next fcf index.
2347 * When this function is invoked, there will be a current fcf registered
2348 * for flogi.
2349 * Return: 0 for continue retrying flogi on currently registered fcf;
2350 * 1 for stop flogi on currently registered fcf;
2351 */
lpfc_sli4_fcf_rr_next_proc(struct lpfc_vport * vport,uint16_t fcf_index)2352 int lpfc_sli4_fcf_rr_next_proc(struct lpfc_vport *vport, uint16_t fcf_index)
2353 {
2354 struct lpfc_hba *phba = vport->phba;
2355 int rc;
2356
2357 if (fcf_index == LPFC_FCOE_FCF_NEXT_NONE) {
2358 spin_lock_irq(&phba->hbalock);
2359 if (phba->hba_flag & HBA_DEVLOSS_TMO) {
2360 spin_unlock_irq(&phba->hbalock);
2361 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2362 "2872 Devloss tmo with no eligible "
2363 "FCF, unregister in-use FCF (x%x) "
2364 "and rescan FCF table\n",
2365 phba->fcf.current_rec.fcf_indx);
2366 lpfc_unregister_fcf_rescan(phba);
2367 goto stop_flogi_current_fcf;
2368 }
2369 /* Mark the end to FLOGI roundrobin failover */
2370 phba->hba_flag &= ~FCF_RR_INPROG;
2371 /* Allow action to new fcf asynchronous event */
2372 phba->fcf.fcf_flag &= ~(FCF_AVAILABLE | FCF_SCAN_DONE);
2373 spin_unlock_irq(&phba->hbalock);
2374 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2375 "2865 No FCF available, stop roundrobin FCF "
2376 "failover and change port state:x%x/x%x\n",
2377 phba->pport->port_state, LPFC_VPORT_UNKNOWN);
2378 phba->pport->port_state = LPFC_VPORT_UNKNOWN;
2379
2380 if (!phba->fcf.fcf_redisc_attempted) {
2381 lpfc_unregister_fcf(phba);
2382
2383 rc = lpfc_sli4_redisc_fcf_table(phba);
2384 if (!rc) {
2385 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2386 "3195 Rediscover FCF table\n");
2387 phba->fcf.fcf_redisc_attempted = 1;
2388 lpfc_sli4_clear_fcf_rr_bmask(phba);
2389 } else {
2390 lpfc_printf_log(phba, KERN_WARNING, LOG_FIP,
2391 "3196 Rediscover FCF table "
2392 "failed. Status:x%x\n", rc);
2393 }
2394 } else {
2395 lpfc_printf_log(phba, KERN_WARNING, LOG_FIP,
2396 "3197 Already rediscover FCF table "
2397 "attempted. No more retry\n");
2398 }
2399 goto stop_flogi_current_fcf;
2400 } else {
2401 lpfc_printf_log(phba, KERN_INFO, LOG_FIP | LOG_ELS,
2402 "2794 Try FLOGI roundrobin FCF failover to "
2403 "(x%x)\n", fcf_index);
2404 rc = lpfc_sli4_fcf_rr_read_fcf_rec(phba, fcf_index);
2405 if (rc)
2406 lpfc_printf_log(phba, KERN_WARNING, LOG_FIP | LOG_ELS,
2407 "2761 FLOGI roundrobin FCF failover "
2408 "failed (rc:x%x) to read FCF (x%x)\n",
2409 rc, phba->fcf.current_rec.fcf_indx);
2410 else
2411 goto stop_flogi_current_fcf;
2412 }
2413 return 0;
2414
2415 stop_flogi_current_fcf:
2416 lpfc_can_disctmo(vport);
2417 return 1;
2418 }
2419
2420 /**
2421 * lpfc_sli4_fcf_pri_list_del
2422 * @phba: pointer to lpfc hba data structure.
2423 * @fcf_index: the index of the fcf record to delete
2424 * This routine checks the on list flag of the fcf_index to be deleted.
2425 * If it is one the list then it is removed from the list, and the flag
2426 * is cleared. This routine grab the hbalock before removing the fcf
2427 * record from the list.
2428 **/
lpfc_sli4_fcf_pri_list_del(struct lpfc_hba * phba,uint16_t fcf_index)2429 static void lpfc_sli4_fcf_pri_list_del(struct lpfc_hba *phba,
2430 uint16_t fcf_index)
2431 {
2432 struct lpfc_fcf_pri *new_fcf_pri;
2433
2434 new_fcf_pri = &phba->fcf.fcf_pri[fcf_index];
2435 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2436 "3058 deleting idx x%x pri x%x flg x%x\n",
2437 fcf_index, new_fcf_pri->fcf_rec.priority,
2438 new_fcf_pri->fcf_rec.flag);
2439 spin_lock_irq(&phba->hbalock);
2440 if (new_fcf_pri->fcf_rec.flag & LPFC_FCF_ON_PRI_LIST) {
2441 if (phba->fcf.current_rec.priority ==
2442 new_fcf_pri->fcf_rec.priority)
2443 phba->fcf.eligible_fcf_cnt--;
2444 list_del_init(&new_fcf_pri->list);
2445 new_fcf_pri->fcf_rec.flag &= ~LPFC_FCF_ON_PRI_LIST;
2446 }
2447 spin_unlock_irq(&phba->hbalock);
2448 }
2449
2450 /**
2451 * lpfc_sli4_set_fcf_flogi_fail
2452 * @phba: pointer to lpfc hba data structure.
2453 * @fcf_index: the index of the fcf record to update
2454 * This routine acquires the hbalock and then set the LPFC_FCF_FLOGI_FAILED
2455 * flag so the the round robin slection for the particular priority level
2456 * will try a different fcf record that does not have this bit set.
2457 * If the fcf record is re-read for any reason this flag is cleared brfore
2458 * adding it to the priority list.
2459 **/
2460 void
lpfc_sli4_set_fcf_flogi_fail(struct lpfc_hba * phba,uint16_t fcf_index)2461 lpfc_sli4_set_fcf_flogi_fail(struct lpfc_hba *phba, uint16_t fcf_index)
2462 {
2463 struct lpfc_fcf_pri *new_fcf_pri;
2464 new_fcf_pri = &phba->fcf.fcf_pri[fcf_index];
2465 spin_lock_irq(&phba->hbalock);
2466 new_fcf_pri->fcf_rec.flag |= LPFC_FCF_FLOGI_FAILED;
2467 spin_unlock_irq(&phba->hbalock);
2468 }
2469
2470 /**
2471 * lpfc_sli4_fcf_pri_list_add
2472 * @phba: pointer to lpfc hba data structure.
2473 * @fcf_index: the index of the fcf record to add
2474 * @new_fcf_record: pointer to a new FCF record.
2475 * This routine checks the priority of the fcf_index to be added.
2476 * If it is a lower priority than the current head of the fcf_pri list
2477 * then it is added to the list in the right order.
2478 * If it is the same priority as the current head of the list then it
2479 * is added to the head of the list and its bit in the rr_bmask is set.
2480 * If the fcf_index to be added is of a higher priority than the current
2481 * head of the list then the rr_bmask is cleared, its bit is set in the
2482 * rr_bmask and it is added to the head of the list.
2483 * returns:
2484 * 0=success 1=failure
2485 **/
lpfc_sli4_fcf_pri_list_add(struct lpfc_hba * phba,uint16_t fcf_index,struct fcf_record * new_fcf_record)2486 static int lpfc_sli4_fcf_pri_list_add(struct lpfc_hba *phba,
2487 uint16_t fcf_index,
2488 struct fcf_record *new_fcf_record)
2489 {
2490 uint16_t current_fcf_pri;
2491 uint16_t last_index;
2492 struct lpfc_fcf_pri *fcf_pri;
2493 struct lpfc_fcf_pri *next_fcf_pri;
2494 struct lpfc_fcf_pri *new_fcf_pri;
2495 int ret;
2496
2497 new_fcf_pri = &phba->fcf.fcf_pri[fcf_index];
2498 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2499 "3059 adding idx x%x pri x%x flg x%x\n",
2500 fcf_index, new_fcf_record->fip_priority,
2501 new_fcf_pri->fcf_rec.flag);
2502 spin_lock_irq(&phba->hbalock);
2503 if (new_fcf_pri->fcf_rec.flag & LPFC_FCF_ON_PRI_LIST)
2504 list_del_init(&new_fcf_pri->list);
2505 new_fcf_pri->fcf_rec.fcf_index = fcf_index;
2506 new_fcf_pri->fcf_rec.priority = new_fcf_record->fip_priority;
2507 if (list_empty(&phba->fcf.fcf_pri_list)) {
2508 list_add(&new_fcf_pri->list, &phba->fcf.fcf_pri_list);
2509 ret = lpfc_sli4_fcf_rr_index_set(phba,
2510 new_fcf_pri->fcf_rec.fcf_index);
2511 goto out;
2512 }
2513
2514 last_index = find_first_bit(phba->fcf.fcf_rr_bmask,
2515 LPFC_SLI4_FCF_TBL_INDX_MAX);
2516 if (last_index >= LPFC_SLI4_FCF_TBL_INDX_MAX) {
2517 ret = 0; /* Empty rr list */
2518 goto out;
2519 }
2520 current_fcf_pri = phba->fcf.fcf_pri[last_index].fcf_rec.priority;
2521 if (new_fcf_pri->fcf_rec.priority <= current_fcf_pri) {
2522 list_add(&new_fcf_pri->list, &phba->fcf.fcf_pri_list);
2523 if (new_fcf_pri->fcf_rec.priority < current_fcf_pri) {
2524 memset(phba->fcf.fcf_rr_bmask, 0,
2525 sizeof(*phba->fcf.fcf_rr_bmask));
2526 /* fcfs_at_this_priority_level = 1; */
2527 phba->fcf.eligible_fcf_cnt = 1;
2528 } else
2529 /* fcfs_at_this_priority_level++; */
2530 phba->fcf.eligible_fcf_cnt++;
2531 ret = lpfc_sli4_fcf_rr_index_set(phba,
2532 new_fcf_pri->fcf_rec.fcf_index);
2533 goto out;
2534 }
2535
2536 list_for_each_entry_safe(fcf_pri, next_fcf_pri,
2537 &phba->fcf.fcf_pri_list, list) {
2538 if (new_fcf_pri->fcf_rec.priority <=
2539 fcf_pri->fcf_rec.priority) {
2540 if (fcf_pri->list.prev == &phba->fcf.fcf_pri_list)
2541 list_add(&new_fcf_pri->list,
2542 &phba->fcf.fcf_pri_list);
2543 else
2544 list_add(&new_fcf_pri->list,
2545 &((struct lpfc_fcf_pri *)
2546 fcf_pri->list.prev)->list);
2547 ret = 0;
2548 goto out;
2549 } else if (fcf_pri->list.next == &phba->fcf.fcf_pri_list
2550 || new_fcf_pri->fcf_rec.priority <
2551 next_fcf_pri->fcf_rec.priority) {
2552 list_add(&new_fcf_pri->list, &fcf_pri->list);
2553 ret = 0;
2554 goto out;
2555 }
2556 if (new_fcf_pri->fcf_rec.priority > fcf_pri->fcf_rec.priority)
2557 continue;
2558
2559 }
2560 ret = 1;
2561 out:
2562 /* we use = instead of |= to clear the FLOGI_FAILED flag. */
2563 new_fcf_pri->fcf_rec.flag = LPFC_FCF_ON_PRI_LIST;
2564 spin_unlock_irq(&phba->hbalock);
2565 return ret;
2566 }
2567
2568 /**
2569 * lpfc_mbx_cmpl_fcf_scan_read_fcf_rec - fcf scan read_fcf mbox cmpl handler.
2570 * @phba: pointer to lpfc hba data structure.
2571 * @mboxq: pointer to mailbox object.
2572 *
2573 * This function iterates through all the fcf records available in
2574 * HBA and chooses the optimal FCF record for discovery. After finding
2575 * the FCF for discovery it registers the FCF record and kicks start
2576 * discovery.
2577 * If FCF_IN_USE flag is set in currently used FCF, the routine tries to
2578 * use an FCF record which matches fabric name and mac address of the
2579 * currently used FCF record.
2580 * If the driver supports only one FCF, it will try to use the FCF record
2581 * used by BOOT_BIOS.
2582 */
2583 void
lpfc_mbx_cmpl_fcf_scan_read_fcf_rec(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)2584 lpfc_mbx_cmpl_fcf_scan_read_fcf_rec(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
2585 {
2586 struct fcf_record *new_fcf_record;
2587 uint32_t boot_flag, addr_mode;
2588 uint16_t fcf_index, next_fcf_index;
2589 struct lpfc_fcf_rec *fcf_rec = NULL;
2590 uint16_t vlan_id = LPFC_FCOE_NULL_VID;
2591 bool select_new_fcf;
2592 int rc;
2593
2594 /* If there is pending FCoE event restart FCF table scan */
2595 if (lpfc_check_pending_fcoe_event(phba, LPFC_SKIP_UNREG_FCF)) {
2596 lpfc_sli4_mbox_cmd_free(phba, mboxq);
2597 return;
2598 }
2599
2600 /* Parse the FCF record from the non-embedded mailbox command */
2601 new_fcf_record = lpfc_sli4_fcf_rec_mbox_parse(phba, mboxq,
2602 &next_fcf_index);
2603 if (!new_fcf_record) {
2604 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2605 "2765 Mailbox command READ_FCF_RECORD "
2606 "failed to retrieve a FCF record.\n");
2607 /* Let next new FCF event trigger fast failover */
2608 spin_lock_irq(&phba->hbalock);
2609 phba->hba_flag &= ~FCF_TS_INPROG;
2610 spin_unlock_irq(&phba->hbalock);
2611 lpfc_sli4_mbox_cmd_free(phba, mboxq);
2612 return;
2613 }
2614
2615 /* Check the FCF record against the connection list */
2616 rc = lpfc_match_fcf_conn_list(phba, new_fcf_record, &boot_flag,
2617 &addr_mode, &vlan_id);
2618
2619 /* Log the FCF record information if turned on */
2620 lpfc_sli4_log_fcf_record_info(phba, new_fcf_record, vlan_id,
2621 next_fcf_index);
2622
2623 /*
2624 * If the fcf record does not match with connect list entries
2625 * read the next entry; otherwise, this is an eligible FCF
2626 * record for roundrobin FCF failover.
2627 */
2628 if (!rc) {
2629 lpfc_sli4_fcf_pri_list_del(phba,
2630 bf_get(lpfc_fcf_record_fcf_index,
2631 new_fcf_record));
2632 lpfc_printf_log(phba, KERN_WARNING, LOG_FIP,
2633 "2781 FCF (x%x) failed connection "
2634 "list check: (x%x/x%x/%x)\n",
2635 bf_get(lpfc_fcf_record_fcf_index,
2636 new_fcf_record),
2637 bf_get(lpfc_fcf_record_fcf_avail,
2638 new_fcf_record),
2639 bf_get(lpfc_fcf_record_fcf_valid,
2640 new_fcf_record),
2641 bf_get(lpfc_fcf_record_fcf_sol,
2642 new_fcf_record));
2643 if ((phba->fcf.fcf_flag & FCF_IN_USE) &&
2644 lpfc_sli4_fcf_record_match(phba, &phba->fcf.current_rec,
2645 new_fcf_record, LPFC_FCOE_IGNORE_VID)) {
2646 if (bf_get(lpfc_fcf_record_fcf_index, new_fcf_record) !=
2647 phba->fcf.current_rec.fcf_indx) {
2648 lpfc_printf_log(phba, KERN_ERR,
2649 LOG_TRACE_EVENT,
2650 "2862 FCF (x%x) matches property "
2651 "of in-use FCF (x%x)\n",
2652 bf_get(lpfc_fcf_record_fcf_index,
2653 new_fcf_record),
2654 phba->fcf.current_rec.fcf_indx);
2655 goto read_next_fcf;
2656 }
2657 /*
2658 * In case the current in-use FCF record becomes
2659 * invalid/unavailable during FCF discovery that
2660 * was not triggered by fast FCF failover process,
2661 * treat it as fast FCF failover.
2662 */
2663 if (!(phba->fcf.fcf_flag & FCF_REDISC_PEND) &&
2664 !(phba->fcf.fcf_flag & FCF_REDISC_FOV)) {
2665 lpfc_printf_log(phba, KERN_WARNING, LOG_FIP,
2666 "2835 Invalid in-use FCF "
2667 "(x%x), enter FCF failover "
2668 "table scan.\n",
2669 phba->fcf.current_rec.fcf_indx);
2670 spin_lock_irq(&phba->hbalock);
2671 phba->fcf.fcf_flag |= FCF_REDISC_FOV;
2672 spin_unlock_irq(&phba->hbalock);
2673 lpfc_sli4_mbox_cmd_free(phba, mboxq);
2674 lpfc_sli4_fcf_scan_read_fcf_rec(phba,
2675 LPFC_FCOE_FCF_GET_FIRST);
2676 return;
2677 }
2678 }
2679 goto read_next_fcf;
2680 } else {
2681 fcf_index = bf_get(lpfc_fcf_record_fcf_index, new_fcf_record);
2682 rc = lpfc_sli4_fcf_pri_list_add(phba, fcf_index,
2683 new_fcf_record);
2684 if (rc)
2685 goto read_next_fcf;
2686 }
2687
2688 /*
2689 * If this is not the first FCF discovery of the HBA, use last
2690 * FCF record for the discovery. The condition that a rescan
2691 * matches the in-use FCF record: fabric name, switch name, mac
2692 * address, and vlan_id.
2693 */
2694 spin_lock_irq(&phba->hbalock);
2695 if (phba->fcf.fcf_flag & FCF_IN_USE) {
2696 if (phba->cfg_fcf_failover_policy == LPFC_FCF_FOV &&
2697 lpfc_sli4_fcf_record_match(phba, &phba->fcf.current_rec,
2698 new_fcf_record, vlan_id)) {
2699 if (bf_get(lpfc_fcf_record_fcf_index, new_fcf_record) ==
2700 phba->fcf.current_rec.fcf_indx) {
2701 phba->fcf.fcf_flag |= FCF_AVAILABLE;
2702 if (phba->fcf.fcf_flag & FCF_REDISC_PEND)
2703 /* Stop FCF redisc wait timer */
2704 __lpfc_sli4_stop_fcf_redisc_wait_timer(
2705 phba);
2706 else if (phba->fcf.fcf_flag & FCF_REDISC_FOV)
2707 /* Fast failover, mark completed */
2708 phba->fcf.fcf_flag &= ~FCF_REDISC_FOV;
2709 spin_unlock_irq(&phba->hbalock);
2710 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2711 "2836 New FCF matches in-use "
2712 "FCF (x%x), port_state:x%x, "
2713 "fc_flag:x%x\n",
2714 phba->fcf.current_rec.fcf_indx,
2715 phba->pport->port_state,
2716 phba->pport->fc_flag);
2717 goto out;
2718 } else
2719 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2720 "2863 New FCF (x%x) matches "
2721 "property of in-use FCF (x%x)\n",
2722 bf_get(lpfc_fcf_record_fcf_index,
2723 new_fcf_record),
2724 phba->fcf.current_rec.fcf_indx);
2725 }
2726 /*
2727 * Read next FCF record from HBA searching for the matching
2728 * with in-use record only if not during the fast failover
2729 * period. In case of fast failover period, it shall try to
2730 * determine whether the FCF record just read should be the
2731 * next candidate.
2732 */
2733 if (!(phba->fcf.fcf_flag & FCF_REDISC_FOV)) {
2734 spin_unlock_irq(&phba->hbalock);
2735 goto read_next_fcf;
2736 }
2737 }
2738 /*
2739 * Update on failover FCF record only if it's in FCF fast-failover
2740 * period; otherwise, update on current FCF record.
2741 */
2742 if (phba->fcf.fcf_flag & FCF_REDISC_FOV)
2743 fcf_rec = &phba->fcf.failover_rec;
2744 else
2745 fcf_rec = &phba->fcf.current_rec;
2746
2747 if (phba->fcf.fcf_flag & FCF_AVAILABLE) {
2748 /*
2749 * If the driver FCF record does not have boot flag
2750 * set and new hba fcf record has boot flag set, use
2751 * the new hba fcf record.
2752 */
2753 if (boot_flag && !(fcf_rec->flag & BOOT_ENABLE)) {
2754 /* Choose this FCF record */
2755 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2756 "2837 Update current FCF record "
2757 "(x%x) with new FCF record (x%x)\n",
2758 fcf_rec->fcf_indx,
2759 bf_get(lpfc_fcf_record_fcf_index,
2760 new_fcf_record));
2761 __lpfc_update_fcf_record(phba, fcf_rec, new_fcf_record,
2762 addr_mode, vlan_id, BOOT_ENABLE);
2763 spin_unlock_irq(&phba->hbalock);
2764 goto read_next_fcf;
2765 }
2766 /*
2767 * If the driver FCF record has boot flag set and the
2768 * new hba FCF record does not have boot flag, read
2769 * the next FCF record.
2770 */
2771 if (!boot_flag && (fcf_rec->flag & BOOT_ENABLE)) {
2772 spin_unlock_irq(&phba->hbalock);
2773 goto read_next_fcf;
2774 }
2775 /*
2776 * If the new hba FCF record has lower priority value
2777 * than the driver FCF record, use the new record.
2778 */
2779 if (new_fcf_record->fip_priority < fcf_rec->priority) {
2780 /* Choose the new FCF record with lower priority */
2781 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2782 "2838 Update current FCF record "
2783 "(x%x) with new FCF record (x%x)\n",
2784 fcf_rec->fcf_indx,
2785 bf_get(lpfc_fcf_record_fcf_index,
2786 new_fcf_record));
2787 __lpfc_update_fcf_record(phba, fcf_rec, new_fcf_record,
2788 addr_mode, vlan_id, 0);
2789 /* Reset running random FCF selection count */
2790 phba->fcf.eligible_fcf_cnt = 1;
2791 } else if (new_fcf_record->fip_priority == fcf_rec->priority) {
2792 /* Update running random FCF selection count */
2793 phba->fcf.eligible_fcf_cnt++;
2794 select_new_fcf = lpfc_sli4_new_fcf_random_select(phba,
2795 phba->fcf.eligible_fcf_cnt);
2796 if (select_new_fcf) {
2797 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2798 "2839 Update current FCF record "
2799 "(x%x) with new FCF record (x%x)\n",
2800 fcf_rec->fcf_indx,
2801 bf_get(lpfc_fcf_record_fcf_index,
2802 new_fcf_record));
2803 /* Choose the new FCF by random selection */
2804 __lpfc_update_fcf_record(phba, fcf_rec,
2805 new_fcf_record,
2806 addr_mode, vlan_id, 0);
2807 }
2808 }
2809 spin_unlock_irq(&phba->hbalock);
2810 goto read_next_fcf;
2811 }
2812 /*
2813 * This is the first suitable FCF record, choose this record for
2814 * initial best-fit FCF.
2815 */
2816 if (fcf_rec) {
2817 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2818 "2840 Update initial FCF candidate "
2819 "with FCF (x%x)\n",
2820 bf_get(lpfc_fcf_record_fcf_index,
2821 new_fcf_record));
2822 __lpfc_update_fcf_record(phba, fcf_rec, new_fcf_record,
2823 addr_mode, vlan_id, (boot_flag ?
2824 BOOT_ENABLE : 0));
2825 phba->fcf.fcf_flag |= FCF_AVAILABLE;
2826 /* Setup initial running random FCF selection count */
2827 phba->fcf.eligible_fcf_cnt = 1;
2828 }
2829 spin_unlock_irq(&phba->hbalock);
2830 goto read_next_fcf;
2831
2832 read_next_fcf:
2833 lpfc_sli4_mbox_cmd_free(phba, mboxq);
2834 if (next_fcf_index == LPFC_FCOE_FCF_NEXT_NONE || next_fcf_index == 0) {
2835 if (phba->fcf.fcf_flag & FCF_REDISC_FOV) {
2836 /*
2837 * Case of FCF fast failover scan
2838 */
2839
2840 /*
2841 * It has not found any suitable FCF record, cancel
2842 * FCF scan inprogress, and do nothing
2843 */
2844 if (!(phba->fcf.failover_rec.flag & RECORD_VALID)) {
2845 lpfc_printf_log(phba, KERN_WARNING, LOG_FIP,
2846 "2782 No suitable FCF found: "
2847 "(x%x/x%x)\n",
2848 phba->fcoe_eventtag_at_fcf_scan,
2849 bf_get(lpfc_fcf_record_fcf_index,
2850 new_fcf_record));
2851 spin_lock_irq(&phba->hbalock);
2852 if (phba->hba_flag & HBA_DEVLOSS_TMO) {
2853 phba->hba_flag &= ~FCF_TS_INPROG;
2854 spin_unlock_irq(&phba->hbalock);
2855 /* Unregister in-use FCF and rescan */
2856 lpfc_printf_log(phba, KERN_INFO,
2857 LOG_FIP,
2858 "2864 On devloss tmo "
2859 "unreg in-use FCF and "
2860 "rescan FCF table\n");
2861 lpfc_unregister_fcf_rescan(phba);
2862 return;
2863 }
2864 /*
2865 * Let next new FCF event trigger fast failover
2866 */
2867 phba->hba_flag &= ~FCF_TS_INPROG;
2868 spin_unlock_irq(&phba->hbalock);
2869 return;
2870 }
2871 /*
2872 * It has found a suitable FCF record that is not
2873 * the same as in-use FCF record, unregister the
2874 * in-use FCF record, replace the in-use FCF record
2875 * with the new FCF record, mark FCF fast failover
2876 * completed, and then start register the new FCF
2877 * record.
2878 */
2879
2880 /* Unregister the current in-use FCF record */
2881 lpfc_unregister_fcf(phba);
2882
2883 /* Replace in-use record with the new record */
2884 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2885 "2842 Replace in-use FCF (x%x) "
2886 "with failover FCF (x%x)\n",
2887 phba->fcf.current_rec.fcf_indx,
2888 phba->fcf.failover_rec.fcf_indx);
2889 memcpy(&phba->fcf.current_rec,
2890 &phba->fcf.failover_rec,
2891 sizeof(struct lpfc_fcf_rec));
2892 /*
2893 * Mark the fast FCF failover rediscovery completed
2894 * and the start of the first round of the roundrobin
2895 * FCF failover.
2896 */
2897 spin_lock_irq(&phba->hbalock);
2898 phba->fcf.fcf_flag &= ~FCF_REDISC_FOV;
2899 spin_unlock_irq(&phba->hbalock);
2900 /* Register to the new FCF record */
2901 lpfc_register_fcf(phba);
2902 } else {
2903 /*
2904 * In case of transaction period to fast FCF failover,
2905 * do nothing when search to the end of the FCF table.
2906 */
2907 if ((phba->fcf.fcf_flag & FCF_REDISC_EVT) ||
2908 (phba->fcf.fcf_flag & FCF_REDISC_PEND))
2909 return;
2910
2911 if (phba->cfg_fcf_failover_policy == LPFC_FCF_FOV &&
2912 phba->fcf.fcf_flag & FCF_IN_USE) {
2913 /*
2914 * In case the current in-use FCF record no
2915 * longer existed during FCF discovery that
2916 * was not triggered by fast FCF failover
2917 * process, treat it as fast FCF failover.
2918 */
2919 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
2920 "2841 In-use FCF record (x%x) "
2921 "not reported, entering fast "
2922 "FCF failover mode scanning.\n",
2923 phba->fcf.current_rec.fcf_indx);
2924 spin_lock_irq(&phba->hbalock);
2925 phba->fcf.fcf_flag |= FCF_REDISC_FOV;
2926 spin_unlock_irq(&phba->hbalock);
2927 lpfc_sli4_fcf_scan_read_fcf_rec(phba,
2928 LPFC_FCOE_FCF_GET_FIRST);
2929 return;
2930 }
2931 /* Register to the new FCF record */
2932 lpfc_register_fcf(phba);
2933 }
2934 } else
2935 lpfc_sli4_fcf_scan_read_fcf_rec(phba, next_fcf_index);
2936 return;
2937
2938 out:
2939 lpfc_sli4_mbox_cmd_free(phba, mboxq);
2940 lpfc_register_fcf(phba);
2941
2942 return;
2943 }
2944
2945 /**
2946 * lpfc_mbx_cmpl_fcf_rr_read_fcf_rec - fcf roundrobin read_fcf mbox cmpl hdler
2947 * @phba: pointer to lpfc hba data structure.
2948 * @mboxq: pointer to mailbox object.
2949 *
2950 * This is the callback function for FLOGI failure roundrobin FCF failover
2951 * read FCF record mailbox command from the eligible FCF record bmask for
2952 * performing the failover. If the FCF read back is not valid/available, it
2953 * fails through to retrying FLOGI to the currently registered FCF again.
2954 * Otherwise, if the FCF read back is valid and available, it will set the
2955 * newly read FCF record to the failover FCF record, unregister currently
2956 * registered FCF record, copy the failover FCF record to the current
2957 * FCF record, and then register the current FCF record before proceeding
2958 * to trying FLOGI on the new failover FCF.
2959 */
2960 void
lpfc_mbx_cmpl_fcf_rr_read_fcf_rec(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)2961 lpfc_mbx_cmpl_fcf_rr_read_fcf_rec(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
2962 {
2963 struct fcf_record *new_fcf_record;
2964 uint32_t boot_flag, addr_mode;
2965 uint16_t next_fcf_index, fcf_index;
2966 uint16_t current_fcf_index;
2967 uint16_t vlan_id;
2968 int rc;
2969
2970 /* If link state is not up, stop the roundrobin failover process */
2971 if (phba->link_state < LPFC_LINK_UP) {
2972 spin_lock_irq(&phba->hbalock);
2973 phba->fcf.fcf_flag &= ~FCF_DISCOVERY;
2974 phba->hba_flag &= ~FCF_RR_INPROG;
2975 spin_unlock_irq(&phba->hbalock);
2976 goto out;
2977 }
2978
2979 /* Parse the FCF record from the non-embedded mailbox command */
2980 new_fcf_record = lpfc_sli4_fcf_rec_mbox_parse(phba, mboxq,
2981 &next_fcf_index);
2982 if (!new_fcf_record) {
2983 lpfc_printf_log(phba, KERN_WARNING, LOG_FIP,
2984 "2766 Mailbox command READ_FCF_RECORD "
2985 "failed to retrieve a FCF record. "
2986 "hba_flg x%x fcf_flg x%x\n", phba->hba_flag,
2987 phba->fcf.fcf_flag);
2988 lpfc_unregister_fcf_rescan(phba);
2989 goto out;
2990 }
2991
2992 /* Get the needed parameters from FCF record */
2993 rc = lpfc_match_fcf_conn_list(phba, new_fcf_record, &boot_flag,
2994 &addr_mode, &vlan_id);
2995
2996 /* Log the FCF record information if turned on */
2997 lpfc_sli4_log_fcf_record_info(phba, new_fcf_record, vlan_id,
2998 next_fcf_index);
2999
3000 fcf_index = bf_get(lpfc_fcf_record_fcf_index, new_fcf_record);
3001 if (!rc) {
3002 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
3003 "2848 Remove ineligible FCF (x%x) from "
3004 "from roundrobin bmask\n", fcf_index);
3005 /* Clear roundrobin bmask bit for ineligible FCF */
3006 lpfc_sli4_fcf_rr_index_clear(phba, fcf_index);
3007 /* Perform next round of roundrobin FCF failover */
3008 fcf_index = lpfc_sli4_fcf_rr_next_index_get(phba);
3009 rc = lpfc_sli4_fcf_rr_next_proc(phba->pport, fcf_index);
3010 if (rc)
3011 goto out;
3012 goto error_out;
3013 }
3014
3015 if (fcf_index == phba->fcf.current_rec.fcf_indx) {
3016 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
3017 "2760 Perform FLOGI roundrobin FCF failover: "
3018 "FCF (x%x) back to FCF (x%x)\n",
3019 phba->fcf.current_rec.fcf_indx, fcf_index);
3020 /* Wait 500 ms before retrying FLOGI to current FCF */
3021 msleep(500);
3022 lpfc_issue_init_vfi(phba->pport);
3023 goto out;
3024 }
3025
3026 /* Upload new FCF record to the failover FCF record */
3027 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
3028 "2834 Update current FCF (x%x) with new FCF (x%x)\n",
3029 phba->fcf.failover_rec.fcf_indx, fcf_index);
3030 spin_lock_irq(&phba->hbalock);
3031 __lpfc_update_fcf_record(phba, &phba->fcf.failover_rec,
3032 new_fcf_record, addr_mode, vlan_id,
3033 (boot_flag ? BOOT_ENABLE : 0));
3034 spin_unlock_irq(&phba->hbalock);
3035
3036 current_fcf_index = phba->fcf.current_rec.fcf_indx;
3037
3038 /* Unregister the current in-use FCF record */
3039 lpfc_unregister_fcf(phba);
3040
3041 /* Replace in-use record with the new record */
3042 memcpy(&phba->fcf.current_rec, &phba->fcf.failover_rec,
3043 sizeof(struct lpfc_fcf_rec));
3044
3045 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
3046 "2783 Perform FLOGI roundrobin FCF failover: FCF "
3047 "(x%x) to FCF (x%x)\n", current_fcf_index, fcf_index);
3048
3049 error_out:
3050 lpfc_register_fcf(phba);
3051 out:
3052 lpfc_sli4_mbox_cmd_free(phba, mboxq);
3053 }
3054
3055 /**
3056 * lpfc_mbx_cmpl_read_fcf_rec - read fcf completion handler.
3057 * @phba: pointer to lpfc hba data structure.
3058 * @mboxq: pointer to mailbox object.
3059 *
3060 * This is the callback function of read FCF record mailbox command for
3061 * updating the eligible FCF bmask for FLOGI failure roundrobin FCF
3062 * failover when a new FCF event happened. If the FCF read back is
3063 * valid/available and it passes the connection list check, it updates
3064 * the bmask for the eligible FCF record for roundrobin failover.
3065 */
3066 void
lpfc_mbx_cmpl_read_fcf_rec(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)3067 lpfc_mbx_cmpl_read_fcf_rec(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
3068 {
3069 struct fcf_record *new_fcf_record;
3070 uint32_t boot_flag, addr_mode;
3071 uint16_t fcf_index, next_fcf_index;
3072 uint16_t vlan_id;
3073 int rc;
3074
3075 /* If link state is not up, no need to proceed */
3076 if (phba->link_state < LPFC_LINK_UP)
3077 goto out;
3078
3079 /* If FCF discovery period is over, no need to proceed */
3080 if (!(phba->fcf.fcf_flag & FCF_DISCOVERY))
3081 goto out;
3082
3083 /* Parse the FCF record from the non-embedded mailbox command */
3084 new_fcf_record = lpfc_sli4_fcf_rec_mbox_parse(phba, mboxq,
3085 &next_fcf_index);
3086 if (!new_fcf_record) {
3087 lpfc_printf_log(phba, KERN_INFO, LOG_FIP,
3088 "2767 Mailbox command READ_FCF_RECORD "
3089 "failed to retrieve a FCF record.\n");
3090 goto out;
3091 }
3092
3093 /* Check the connection list for eligibility */
3094 rc = lpfc_match_fcf_conn_list(phba, new_fcf_record, &boot_flag,
3095 &addr_mode, &vlan_id);
3096
3097 /* Log the FCF record information if turned on */
3098 lpfc_sli4_log_fcf_record_info(phba, new_fcf_record, vlan_id,
3099 next_fcf_index);
3100
3101 if (!rc)
3102 goto out;
3103
3104 /* Update the eligible FCF record index bmask */
3105 fcf_index = bf_get(lpfc_fcf_record_fcf_index, new_fcf_record);
3106
3107 rc = lpfc_sli4_fcf_pri_list_add(phba, fcf_index, new_fcf_record);
3108
3109 out:
3110 lpfc_sli4_mbox_cmd_free(phba, mboxq);
3111 }
3112
3113 /**
3114 * lpfc_init_vfi_cmpl - Completion handler for init_vfi mbox command.
3115 * @phba: pointer to lpfc hba data structure.
3116 * @mboxq: pointer to mailbox data structure.
3117 *
3118 * This function handles completion of init vfi mailbox command.
3119 */
3120 static void
lpfc_init_vfi_cmpl(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)3121 lpfc_init_vfi_cmpl(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
3122 {
3123 struct lpfc_vport *vport = mboxq->vport;
3124
3125 /*
3126 * VFI not supported on interface type 0, just do the flogi
3127 * Also continue if the VFI is in use - just use the same one.
3128 */
3129 if (mboxq->u.mb.mbxStatus &&
3130 (bf_get(lpfc_sli_intf_if_type, &phba->sli4_hba.sli_intf) !=
3131 LPFC_SLI_INTF_IF_TYPE_0) &&
3132 mboxq->u.mb.mbxStatus != MBX_VFI_IN_USE) {
3133 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3134 "2891 Init VFI mailbox failed 0x%x\n",
3135 mboxq->u.mb.mbxStatus);
3136 mempool_free(mboxq, phba->mbox_mem_pool);
3137 lpfc_vport_set_state(vport, FC_VPORT_FAILED);
3138 return;
3139 }
3140
3141 lpfc_initial_flogi(vport);
3142 mempool_free(mboxq, phba->mbox_mem_pool);
3143 return;
3144 }
3145
3146 /**
3147 * lpfc_issue_init_vfi - Issue init_vfi mailbox command.
3148 * @vport: pointer to lpfc_vport data structure.
3149 *
3150 * This function issue a init_vfi mailbox command to initialize the VFI and
3151 * VPI for the physical port.
3152 */
3153 void
lpfc_issue_init_vfi(struct lpfc_vport * vport)3154 lpfc_issue_init_vfi(struct lpfc_vport *vport)
3155 {
3156 LPFC_MBOXQ_t *mboxq;
3157 int rc;
3158 struct lpfc_hba *phba = vport->phba;
3159
3160 mboxq = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
3161 if (!mboxq) {
3162 lpfc_printf_vlog(vport, KERN_ERR,
3163 LOG_TRACE_EVENT, "2892 Failed to allocate "
3164 "init_vfi mailbox\n");
3165 return;
3166 }
3167 lpfc_init_vfi(mboxq, vport);
3168 mboxq->mbox_cmpl = lpfc_init_vfi_cmpl;
3169 rc = lpfc_sli_issue_mbox(phba, mboxq, MBX_NOWAIT);
3170 if (rc == MBX_NOT_FINISHED) {
3171 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3172 "2893 Failed to issue init_vfi mailbox\n");
3173 mempool_free(mboxq, vport->phba->mbox_mem_pool);
3174 }
3175 }
3176
3177 /**
3178 * lpfc_init_vpi_cmpl - Completion handler for init_vpi mbox command.
3179 * @phba: pointer to lpfc hba data structure.
3180 * @mboxq: pointer to mailbox data structure.
3181 *
3182 * This function handles completion of init vpi mailbox command.
3183 */
3184 void
lpfc_init_vpi_cmpl(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)3185 lpfc_init_vpi_cmpl(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
3186 {
3187 struct lpfc_vport *vport = mboxq->vport;
3188 struct lpfc_nodelist *ndlp;
3189 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
3190
3191 if (mboxq->u.mb.mbxStatus) {
3192 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3193 "2609 Init VPI mailbox failed 0x%x\n",
3194 mboxq->u.mb.mbxStatus);
3195 mempool_free(mboxq, phba->mbox_mem_pool);
3196 lpfc_vport_set_state(vport, FC_VPORT_FAILED);
3197 return;
3198 }
3199 spin_lock_irq(shost->host_lock);
3200 vport->fc_flag &= ~FC_VPORT_NEEDS_INIT_VPI;
3201 spin_unlock_irq(shost->host_lock);
3202
3203 /* If this port is physical port or FDISC is done, do reg_vpi */
3204 if ((phba->pport == vport) || (vport->port_state == LPFC_FDISC)) {
3205 ndlp = lpfc_findnode_did(vport, Fabric_DID);
3206 if (!ndlp)
3207 lpfc_printf_vlog(vport, KERN_ERR,
3208 LOG_TRACE_EVENT,
3209 "2731 Cannot find fabric "
3210 "controller node\n");
3211 else
3212 lpfc_register_new_vport(phba, vport, ndlp);
3213 mempool_free(mboxq, phba->mbox_mem_pool);
3214 return;
3215 }
3216
3217 if (phba->link_flag & LS_NPIV_FAB_SUPPORTED)
3218 lpfc_initial_fdisc(vport);
3219 else {
3220 lpfc_vport_set_state(vport, FC_VPORT_NO_FABRIC_SUPP);
3221 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3222 "2606 No NPIV Fabric support\n");
3223 }
3224 mempool_free(mboxq, phba->mbox_mem_pool);
3225 return;
3226 }
3227
3228 /**
3229 * lpfc_issue_init_vpi - Issue init_vpi mailbox command.
3230 * @vport: pointer to lpfc_vport data structure.
3231 *
3232 * This function issue a init_vpi mailbox command to initialize
3233 * VPI for the vport.
3234 */
3235 void
lpfc_issue_init_vpi(struct lpfc_vport * vport)3236 lpfc_issue_init_vpi(struct lpfc_vport *vport)
3237 {
3238 LPFC_MBOXQ_t *mboxq;
3239 int rc, vpi;
3240
3241 if ((vport->port_type != LPFC_PHYSICAL_PORT) && (!vport->vpi)) {
3242 vpi = lpfc_alloc_vpi(vport->phba);
3243 if (!vpi) {
3244 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3245 "3303 Failed to obtain vport vpi\n");
3246 lpfc_vport_set_state(vport, FC_VPORT_FAILED);
3247 return;
3248 }
3249 vport->vpi = vpi;
3250 }
3251
3252 mboxq = mempool_alloc(vport->phba->mbox_mem_pool, GFP_KERNEL);
3253 if (!mboxq) {
3254 lpfc_printf_vlog(vport, KERN_ERR,
3255 LOG_TRACE_EVENT, "2607 Failed to allocate "
3256 "init_vpi mailbox\n");
3257 return;
3258 }
3259 lpfc_init_vpi(vport->phba, mboxq, vport->vpi);
3260 mboxq->vport = vport;
3261 mboxq->mbox_cmpl = lpfc_init_vpi_cmpl;
3262 rc = lpfc_sli_issue_mbox(vport->phba, mboxq, MBX_NOWAIT);
3263 if (rc == MBX_NOT_FINISHED) {
3264 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3265 "2608 Failed to issue init_vpi mailbox\n");
3266 mempool_free(mboxq, vport->phba->mbox_mem_pool);
3267 }
3268 }
3269
3270 /**
3271 * lpfc_start_fdiscs - send fdiscs for each vports on this port.
3272 * @phba: pointer to lpfc hba data structure.
3273 *
3274 * This function loops through the list of vports on the @phba and issues an
3275 * FDISC if possible.
3276 */
3277 void
lpfc_start_fdiscs(struct lpfc_hba * phba)3278 lpfc_start_fdiscs(struct lpfc_hba *phba)
3279 {
3280 struct lpfc_vport **vports;
3281 int i;
3282
3283 vports = lpfc_create_vport_work_array(phba);
3284 if (vports != NULL) {
3285 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
3286 if (vports[i]->port_type == LPFC_PHYSICAL_PORT)
3287 continue;
3288 /* There are no vpi for this vport */
3289 if (vports[i]->vpi > phba->max_vpi) {
3290 lpfc_vport_set_state(vports[i],
3291 FC_VPORT_FAILED);
3292 continue;
3293 }
3294 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP) {
3295 lpfc_vport_set_state(vports[i],
3296 FC_VPORT_LINKDOWN);
3297 continue;
3298 }
3299 if (vports[i]->fc_flag & FC_VPORT_NEEDS_INIT_VPI) {
3300 lpfc_issue_init_vpi(vports[i]);
3301 continue;
3302 }
3303 if (phba->link_flag & LS_NPIV_FAB_SUPPORTED)
3304 lpfc_initial_fdisc(vports[i]);
3305 else {
3306 lpfc_vport_set_state(vports[i],
3307 FC_VPORT_NO_FABRIC_SUPP);
3308 lpfc_printf_vlog(vports[i], KERN_ERR,
3309 LOG_TRACE_EVENT,
3310 "0259 No NPIV "
3311 "Fabric support\n");
3312 }
3313 }
3314 }
3315 lpfc_destroy_vport_work_array(phba, vports);
3316 }
3317
3318 void
lpfc_mbx_cmpl_reg_vfi(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)3319 lpfc_mbx_cmpl_reg_vfi(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
3320 {
3321 struct lpfc_vport *vport = mboxq->vport;
3322 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
3323
3324 /*
3325 * VFI not supported for interface type 0, so ignore any mailbox
3326 * error (except VFI in use) and continue with the discovery.
3327 */
3328 if (mboxq->u.mb.mbxStatus &&
3329 (bf_get(lpfc_sli_intf_if_type, &phba->sli4_hba.sli_intf) !=
3330 LPFC_SLI_INTF_IF_TYPE_0) &&
3331 mboxq->u.mb.mbxStatus != MBX_VFI_IN_USE) {
3332 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3333 "2018 REG_VFI mbxStatus error x%x "
3334 "HBA state x%x\n",
3335 mboxq->u.mb.mbxStatus, vport->port_state);
3336 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP) {
3337 /* FLOGI failed, use loop map to make discovery list */
3338 lpfc_disc_list_loopmap(vport);
3339 /* Start discovery */
3340 lpfc_disc_start(vport);
3341 goto out_free_mem;
3342 }
3343 lpfc_vport_set_state(vport, FC_VPORT_FAILED);
3344 goto out_free_mem;
3345 }
3346
3347 /* If the VFI is already registered, there is nothing else to do
3348 * Unless this was a VFI update and we are in PT2PT mode, then
3349 * we should drop through to set the port state to ready.
3350 */
3351 if (vport->fc_flag & FC_VFI_REGISTERED)
3352 if (!(phba->sli_rev == LPFC_SLI_REV4 &&
3353 vport->fc_flag & FC_PT2PT))
3354 goto out_free_mem;
3355
3356 /* The VPI is implicitly registered when the VFI is registered */
3357 spin_lock_irq(shost->host_lock);
3358 vport->vpi_state |= LPFC_VPI_REGISTERED;
3359 vport->fc_flag |= FC_VFI_REGISTERED;
3360 vport->fc_flag &= ~FC_VPORT_NEEDS_REG_VPI;
3361 vport->fc_flag &= ~FC_VPORT_NEEDS_INIT_VPI;
3362 spin_unlock_irq(shost->host_lock);
3363
3364 /* In case SLI4 FC loopback test, we are ready */
3365 if ((phba->sli_rev == LPFC_SLI_REV4) &&
3366 (phba->link_flag & LS_LOOPBACK_MODE)) {
3367 phba->link_state = LPFC_HBA_READY;
3368 goto out_free_mem;
3369 }
3370
3371 lpfc_printf_vlog(vport, KERN_INFO, LOG_SLI,
3372 "3313 cmpl reg vfi port_state:%x fc_flag:%x myDid:%x "
3373 "alpacnt:%d LinkState:%x topology:%x\n",
3374 vport->port_state, vport->fc_flag, vport->fc_myDID,
3375 vport->phba->alpa_map[0],
3376 phba->link_state, phba->fc_topology);
3377
3378 if (vport->port_state == LPFC_FABRIC_CFG_LINK) {
3379 /*
3380 * For private loop or for NPort pt2pt,
3381 * just start discovery and we are done.
3382 */
3383 if ((vport->fc_flag & FC_PT2PT) ||
3384 ((phba->fc_topology == LPFC_TOPOLOGY_LOOP) &&
3385 !(vport->fc_flag & FC_PUBLIC_LOOP))) {
3386
3387 /* Use loop map to make discovery list */
3388 lpfc_disc_list_loopmap(vport);
3389 /* Start discovery */
3390 if (vport->fc_flag & FC_PT2PT)
3391 vport->port_state = LPFC_VPORT_READY;
3392 else
3393 lpfc_disc_start(vport);
3394 } else {
3395 lpfc_start_fdiscs(phba);
3396 lpfc_do_scr_ns_plogi(phba, vport);
3397 }
3398 }
3399
3400 out_free_mem:
3401 lpfc_mbox_rsrc_cleanup(phba, mboxq, MBOX_THD_UNLOCKED);
3402 }
3403
3404 static void
lpfc_mbx_cmpl_read_sparam(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)3405 lpfc_mbx_cmpl_read_sparam(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
3406 {
3407 MAILBOX_t *mb = &pmb->u.mb;
3408 struct lpfc_dmabuf *mp = (struct lpfc_dmabuf *)pmb->ctx_buf;
3409 struct lpfc_vport *vport = pmb->vport;
3410 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
3411 struct serv_parm *sp = &vport->fc_sparam;
3412 uint32_t ed_tov;
3413
3414 /* Check for error */
3415 if (mb->mbxStatus) {
3416 /* READ_SPARAM mbox error <mbxStatus> state <hba_state> */
3417 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3418 "0319 READ_SPARAM mbxStatus error x%x "
3419 "hba state x%x>\n",
3420 mb->mbxStatus, vport->port_state);
3421 lpfc_linkdown(phba);
3422 goto out;
3423 }
3424
3425 memcpy((uint8_t *) &vport->fc_sparam, (uint8_t *) mp->virt,
3426 sizeof (struct serv_parm));
3427
3428 ed_tov = be32_to_cpu(sp->cmn.e_d_tov);
3429 if (sp->cmn.edtovResolution) /* E_D_TOV ticks are in nanoseconds */
3430 ed_tov = (ed_tov + 999999) / 1000000;
3431
3432 phba->fc_edtov = ed_tov;
3433 phba->fc_ratov = (2 * ed_tov) / 1000;
3434 if (phba->fc_ratov < FF_DEF_RATOV) {
3435 /* RA_TOV should be atleast 10sec for initial flogi */
3436 phba->fc_ratov = FF_DEF_RATOV;
3437 }
3438
3439 lpfc_update_vport_wwn(vport);
3440 fc_host_port_name(shost) = wwn_to_u64(vport->fc_portname.u.wwn);
3441 if (vport->port_type == LPFC_PHYSICAL_PORT) {
3442 memcpy(&phba->wwnn, &vport->fc_nodename, sizeof(phba->wwnn));
3443 memcpy(&phba->wwpn, &vport->fc_portname, sizeof(phba->wwnn));
3444 }
3445
3446 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
3447
3448 /* Check if sending the FLOGI is being deferred to after we get
3449 * up to date CSPs from MBX_READ_SPARAM.
3450 */
3451 if (phba->hba_flag & HBA_DEFER_FLOGI) {
3452 lpfc_initial_flogi(vport);
3453 phba->hba_flag &= ~HBA_DEFER_FLOGI;
3454 }
3455 return;
3456
3457 out:
3458 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
3459 lpfc_issue_clear_la(phba, vport);
3460 }
3461
3462 static void
lpfc_mbx_process_link_up(struct lpfc_hba * phba,struct lpfc_mbx_read_top * la)3463 lpfc_mbx_process_link_up(struct lpfc_hba *phba, struct lpfc_mbx_read_top *la)
3464 {
3465 struct lpfc_vport *vport = phba->pport;
3466 LPFC_MBOXQ_t *sparam_mbox, *cfglink_mbox = NULL;
3467 struct Scsi_Host *shost;
3468 int i;
3469 int rc;
3470 struct fcf_record *fcf_record;
3471 uint32_t fc_flags = 0;
3472 unsigned long iflags;
3473
3474 spin_lock_irqsave(&phba->hbalock, iflags);
3475 phba->fc_linkspeed = bf_get(lpfc_mbx_read_top_link_spd, la);
3476
3477 if (!(phba->hba_flag & HBA_FCOE_MODE)) {
3478 switch (bf_get(lpfc_mbx_read_top_link_spd, la)) {
3479 case LPFC_LINK_SPEED_1GHZ:
3480 case LPFC_LINK_SPEED_2GHZ:
3481 case LPFC_LINK_SPEED_4GHZ:
3482 case LPFC_LINK_SPEED_8GHZ:
3483 case LPFC_LINK_SPEED_10GHZ:
3484 case LPFC_LINK_SPEED_16GHZ:
3485 case LPFC_LINK_SPEED_32GHZ:
3486 case LPFC_LINK_SPEED_64GHZ:
3487 case LPFC_LINK_SPEED_128GHZ:
3488 case LPFC_LINK_SPEED_256GHZ:
3489 break;
3490 default:
3491 phba->fc_linkspeed = LPFC_LINK_SPEED_UNKNOWN;
3492 break;
3493 }
3494 }
3495
3496 if (phba->fc_topology &&
3497 phba->fc_topology != bf_get(lpfc_mbx_read_top_topology, la)) {
3498 lpfc_printf_log(phba, KERN_WARNING, LOG_SLI,
3499 "3314 Toplogy changed was 0x%x is 0x%x\n",
3500 phba->fc_topology,
3501 bf_get(lpfc_mbx_read_top_topology, la));
3502 phba->fc_topology_changed = 1;
3503 }
3504
3505 phba->fc_topology = bf_get(lpfc_mbx_read_top_topology, la);
3506 phba->link_flag &= ~(LS_NPIV_FAB_SUPPORTED | LS_CT_VEN_RPA);
3507
3508 shost = lpfc_shost_from_vport(vport);
3509 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP) {
3510 phba->sli3_options &= ~LPFC_SLI3_NPIV_ENABLED;
3511
3512 /* if npiv is enabled and this adapter supports npiv log
3513 * a message that npiv is not supported in this topology
3514 */
3515 if (phba->cfg_enable_npiv && phba->max_vpi)
3516 lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
3517 "1309 Link Up Event npiv not supported in loop "
3518 "topology\n");
3519 /* Get Loop Map information */
3520 if (bf_get(lpfc_mbx_read_top_il, la))
3521 fc_flags |= FC_LBIT;
3522
3523 vport->fc_myDID = bf_get(lpfc_mbx_read_top_alpa_granted, la);
3524 i = la->lilpBde64.tus.f.bdeSize;
3525
3526 if (i == 0) {
3527 phba->alpa_map[0] = 0;
3528 } else {
3529 if (vport->cfg_log_verbose & LOG_LINK_EVENT) {
3530 int numalpa, j, k;
3531 union {
3532 uint8_t pamap[16];
3533 struct {
3534 uint32_t wd1;
3535 uint32_t wd2;
3536 uint32_t wd3;
3537 uint32_t wd4;
3538 } pa;
3539 } un;
3540 numalpa = phba->alpa_map[0];
3541 j = 0;
3542 while (j < numalpa) {
3543 memset(un.pamap, 0, 16);
3544 for (k = 1; j < numalpa; k++) {
3545 un.pamap[k - 1] =
3546 phba->alpa_map[j + 1];
3547 j++;
3548 if (k == 16)
3549 break;
3550 }
3551 /* Link Up Event ALPA map */
3552 lpfc_printf_log(phba,
3553 KERN_WARNING,
3554 LOG_LINK_EVENT,
3555 "1304 Link Up Event "
3556 "ALPA map Data: x%x "
3557 "x%x x%x x%x\n",
3558 un.pa.wd1, un.pa.wd2,
3559 un.pa.wd3, un.pa.wd4);
3560 }
3561 }
3562 }
3563 } else {
3564 if (!(phba->sli3_options & LPFC_SLI3_NPIV_ENABLED)) {
3565 if (phba->max_vpi && phba->cfg_enable_npiv &&
3566 (phba->sli_rev >= LPFC_SLI_REV3))
3567 phba->sli3_options |= LPFC_SLI3_NPIV_ENABLED;
3568 }
3569 vport->fc_myDID = phba->fc_pref_DID;
3570 fc_flags |= FC_LBIT;
3571 }
3572 spin_unlock_irqrestore(&phba->hbalock, iflags);
3573
3574 if (fc_flags) {
3575 spin_lock_irqsave(shost->host_lock, iflags);
3576 vport->fc_flag |= fc_flags;
3577 spin_unlock_irqrestore(shost->host_lock, iflags);
3578 }
3579
3580 lpfc_linkup(phba);
3581 sparam_mbox = NULL;
3582
3583 sparam_mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
3584 if (!sparam_mbox)
3585 goto out;
3586
3587 rc = lpfc_read_sparam(phba, sparam_mbox, 0);
3588 if (rc) {
3589 mempool_free(sparam_mbox, phba->mbox_mem_pool);
3590 goto out;
3591 }
3592 sparam_mbox->vport = vport;
3593 sparam_mbox->mbox_cmpl = lpfc_mbx_cmpl_read_sparam;
3594 rc = lpfc_sli_issue_mbox(phba, sparam_mbox, MBX_NOWAIT);
3595 if (rc == MBX_NOT_FINISHED) {
3596 lpfc_mbox_rsrc_cleanup(phba, sparam_mbox, MBOX_THD_UNLOCKED);
3597 goto out;
3598 }
3599
3600 if (!(phba->hba_flag & HBA_FCOE_MODE)) {
3601 cfglink_mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
3602 if (!cfglink_mbox)
3603 goto out;
3604 vport->port_state = LPFC_LOCAL_CFG_LINK;
3605 lpfc_config_link(phba, cfglink_mbox);
3606 cfglink_mbox->vport = vport;
3607 cfglink_mbox->mbox_cmpl = lpfc_mbx_cmpl_local_config_link;
3608 rc = lpfc_sli_issue_mbox(phba, cfglink_mbox, MBX_NOWAIT);
3609 if (rc == MBX_NOT_FINISHED) {
3610 mempool_free(cfglink_mbox, phba->mbox_mem_pool);
3611 goto out;
3612 }
3613 } else {
3614 vport->port_state = LPFC_VPORT_UNKNOWN;
3615 /*
3616 * Add the driver's default FCF record at FCF index 0 now. This
3617 * is phase 1 implementation that support FCF index 0 and driver
3618 * defaults.
3619 */
3620 if (!(phba->hba_flag & HBA_FIP_SUPPORT)) {
3621 fcf_record = kzalloc(sizeof(struct fcf_record),
3622 GFP_KERNEL);
3623 if (unlikely(!fcf_record)) {
3624 lpfc_printf_log(phba, KERN_ERR,
3625 LOG_TRACE_EVENT,
3626 "2554 Could not allocate memory for "
3627 "fcf record\n");
3628 rc = -ENODEV;
3629 goto out;
3630 }
3631
3632 lpfc_sli4_build_dflt_fcf_record(phba, fcf_record,
3633 LPFC_FCOE_FCF_DEF_INDEX);
3634 rc = lpfc_sli4_add_fcf_record(phba, fcf_record);
3635 if (unlikely(rc)) {
3636 lpfc_printf_log(phba, KERN_ERR,
3637 LOG_TRACE_EVENT,
3638 "2013 Could not manually add FCF "
3639 "record 0, status %d\n", rc);
3640 rc = -ENODEV;
3641 kfree(fcf_record);
3642 goto out;
3643 }
3644 kfree(fcf_record);
3645 }
3646 /*
3647 * The driver is expected to do FIP/FCF. Call the port
3648 * and get the FCF Table.
3649 */
3650 spin_lock_irqsave(&phba->hbalock, iflags);
3651 if (phba->hba_flag & FCF_TS_INPROG) {
3652 spin_unlock_irqrestore(&phba->hbalock, iflags);
3653 return;
3654 }
3655 /* This is the initial FCF discovery scan */
3656 phba->fcf.fcf_flag |= FCF_INIT_DISC;
3657 spin_unlock_irqrestore(&phba->hbalock, iflags);
3658 lpfc_printf_log(phba, KERN_INFO, LOG_FIP | LOG_DISCOVERY,
3659 "2778 Start FCF table scan at linkup\n");
3660 rc = lpfc_sli4_fcf_scan_read_fcf_rec(phba,
3661 LPFC_FCOE_FCF_GET_FIRST);
3662 if (rc) {
3663 spin_lock_irqsave(&phba->hbalock, iflags);
3664 phba->fcf.fcf_flag &= ~FCF_INIT_DISC;
3665 spin_unlock_irqrestore(&phba->hbalock, iflags);
3666 goto out;
3667 }
3668 /* Reset FCF roundrobin bmask for new discovery */
3669 lpfc_sli4_clear_fcf_rr_bmask(phba);
3670 }
3671
3672 /* Prepare for LINK up registrations */
3673 memset(phba->os_host_name, 0, sizeof(phba->os_host_name));
3674 scnprintf(phba->os_host_name, sizeof(phba->os_host_name), "%s",
3675 init_utsname()->nodename);
3676 return;
3677 out:
3678 lpfc_vport_set_state(vport, FC_VPORT_FAILED);
3679 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3680 "0263 Discovery Mailbox error: state: 0x%x : x%px x%px\n",
3681 vport->port_state, sparam_mbox, cfglink_mbox);
3682 lpfc_issue_clear_la(phba, vport);
3683 return;
3684 }
3685
3686 static void
lpfc_enable_la(struct lpfc_hba * phba)3687 lpfc_enable_la(struct lpfc_hba *phba)
3688 {
3689 uint32_t control;
3690 struct lpfc_sli *psli = &phba->sli;
3691 spin_lock_irq(&phba->hbalock);
3692 psli->sli_flag |= LPFC_PROCESS_LA;
3693 if (phba->sli_rev <= LPFC_SLI_REV3) {
3694 control = readl(phba->HCregaddr);
3695 control |= HC_LAINT_ENA;
3696 writel(control, phba->HCregaddr);
3697 readl(phba->HCregaddr); /* flush */
3698 }
3699 spin_unlock_irq(&phba->hbalock);
3700 }
3701
3702 static void
lpfc_mbx_issue_link_down(struct lpfc_hba * phba)3703 lpfc_mbx_issue_link_down(struct lpfc_hba *phba)
3704 {
3705 lpfc_linkdown(phba);
3706 lpfc_enable_la(phba);
3707 lpfc_unregister_unused_fcf(phba);
3708 /* turn on Link Attention interrupts - no CLEAR_LA needed */
3709 }
3710
3711
3712 /*
3713 * This routine handles processing a READ_TOPOLOGY mailbox
3714 * command upon completion. It is setup in the LPFC_MBOXQ
3715 * as the completion routine when the command is
3716 * handed off to the SLI layer. SLI4 only.
3717 */
3718 void
lpfc_mbx_cmpl_read_topology(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)3719 lpfc_mbx_cmpl_read_topology(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
3720 {
3721 struct lpfc_vport *vport = pmb->vport;
3722 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
3723 struct lpfc_mbx_read_top *la;
3724 struct lpfc_sli_ring *pring;
3725 MAILBOX_t *mb = &pmb->u.mb;
3726 struct lpfc_dmabuf *mp = (struct lpfc_dmabuf *)(pmb->ctx_buf);
3727 uint8_t attn_type;
3728 unsigned long iflags;
3729
3730 /* Unblock ELS traffic */
3731 pring = lpfc_phba_elsring(phba);
3732 if (pring)
3733 pring->flag &= ~LPFC_STOP_IOCB_EVENT;
3734
3735 /* Check for error */
3736 if (mb->mbxStatus) {
3737 lpfc_printf_log(phba, KERN_INFO, LOG_LINK_EVENT,
3738 "1307 READ_LA mbox error x%x state x%x\n",
3739 mb->mbxStatus, vport->port_state);
3740 lpfc_mbx_issue_link_down(phba);
3741 phba->link_state = LPFC_HBA_ERROR;
3742 goto lpfc_mbx_cmpl_read_topology_free_mbuf;
3743 }
3744
3745 la = (struct lpfc_mbx_read_top *) &pmb->u.mb.un.varReadTop;
3746 attn_type = bf_get(lpfc_mbx_read_top_att_type, la);
3747
3748 memcpy(&phba->alpa_map[0], mp->virt, 128);
3749
3750 spin_lock_irqsave(shost->host_lock, iflags);
3751 if (bf_get(lpfc_mbx_read_top_pb, la))
3752 vport->fc_flag |= FC_BYPASSED_MODE;
3753 else
3754 vport->fc_flag &= ~FC_BYPASSED_MODE;
3755 spin_unlock_irqrestore(shost->host_lock, iflags);
3756
3757 if (phba->fc_eventTag <= la->eventTag) {
3758 phba->fc_stat.LinkMultiEvent++;
3759 if (attn_type == LPFC_ATT_LINK_UP)
3760 if (phba->fc_eventTag != 0)
3761 lpfc_linkdown(phba);
3762 }
3763
3764 phba->fc_eventTag = la->eventTag;
3765 if (phba->sli_rev < LPFC_SLI_REV4) {
3766 spin_lock_irqsave(&phba->hbalock, iflags);
3767 if (bf_get(lpfc_mbx_read_top_mm, la))
3768 phba->sli.sli_flag |= LPFC_MENLO_MAINT;
3769 else
3770 phba->sli.sli_flag &= ~LPFC_MENLO_MAINT;
3771 spin_unlock_irqrestore(&phba->hbalock, iflags);
3772 }
3773
3774 phba->link_events++;
3775 if ((attn_type == LPFC_ATT_LINK_UP) &&
3776 !(phba->sli.sli_flag & LPFC_MENLO_MAINT)) {
3777 phba->fc_stat.LinkUp++;
3778 if (phba->link_flag & LS_LOOPBACK_MODE) {
3779 lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
3780 "1306 Link Up Event in loop back mode "
3781 "x%x received Data: x%x x%x x%x x%x\n",
3782 la->eventTag, phba->fc_eventTag,
3783 bf_get(lpfc_mbx_read_top_alpa_granted,
3784 la),
3785 bf_get(lpfc_mbx_read_top_link_spd, la),
3786 phba->alpa_map[0]);
3787 } else {
3788 lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
3789 "1303 Link Up Event x%x received "
3790 "Data: x%x x%x x%x x%x x%x x%x %d\n",
3791 la->eventTag, phba->fc_eventTag,
3792 bf_get(lpfc_mbx_read_top_alpa_granted,
3793 la),
3794 bf_get(lpfc_mbx_read_top_link_spd, la),
3795 phba->alpa_map[0],
3796 bf_get(lpfc_mbx_read_top_mm, la),
3797 bf_get(lpfc_mbx_read_top_fa, la),
3798 phba->wait_4_mlo_maint_flg);
3799 }
3800 lpfc_mbx_process_link_up(phba, la);
3801
3802 if (phba->cmf_active_mode != LPFC_CFG_OFF)
3803 lpfc_cmf_signal_init(phba);
3804
3805 } else if (attn_type == LPFC_ATT_LINK_DOWN ||
3806 attn_type == LPFC_ATT_UNEXP_WWPN) {
3807 phba->fc_stat.LinkDown++;
3808 if (phba->link_flag & LS_LOOPBACK_MODE)
3809 lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
3810 "1308 Link Down Event in loop back mode "
3811 "x%x received "
3812 "Data: x%x x%x x%x\n",
3813 la->eventTag, phba->fc_eventTag,
3814 phba->pport->port_state, vport->fc_flag);
3815 else if (attn_type == LPFC_ATT_UNEXP_WWPN)
3816 lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
3817 "1313 Link Down Unexpected FA WWPN Event x%x "
3818 "received Data: x%x x%x x%x x%x x%x\n",
3819 la->eventTag, phba->fc_eventTag,
3820 phba->pport->port_state, vport->fc_flag,
3821 bf_get(lpfc_mbx_read_top_mm, la),
3822 bf_get(lpfc_mbx_read_top_fa, la));
3823 else
3824 lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
3825 "1305 Link Down Event x%x received "
3826 "Data: x%x x%x x%x x%x x%x\n",
3827 la->eventTag, phba->fc_eventTag,
3828 phba->pport->port_state, vport->fc_flag,
3829 bf_get(lpfc_mbx_read_top_mm, la),
3830 bf_get(lpfc_mbx_read_top_fa, la));
3831 lpfc_mbx_issue_link_down(phba);
3832 }
3833 if (phba->sli.sli_flag & LPFC_MENLO_MAINT &&
3834 attn_type == LPFC_ATT_LINK_UP) {
3835 if (phba->link_state != LPFC_LINK_DOWN) {
3836 phba->fc_stat.LinkDown++;
3837 lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
3838 "1312 Link Down Event x%x received "
3839 "Data: x%x x%x x%x\n",
3840 la->eventTag, phba->fc_eventTag,
3841 phba->pport->port_state, vport->fc_flag);
3842 lpfc_mbx_issue_link_down(phba);
3843 } else
3844 lpfc_enable_la(phba);
3845
3846 lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
3847 "1310 Menlo Maint Mode Link up Event x%x rcvd "
3848 "Data: x%x x%x x%x\n",
3849 la->eventTag, phba->fc_eventTag,
3850 phba->pport->port_state, vport->fc_flag);
3851 /*
3852 * The cmnd that triggered this will be waiting for this
3853 * signal.
3854 */
3855 /* WAKEUP for MENLO_SET_MODE or MENLO_RESET command. */
3856 if (phba->wait_4_mlo_maint_flg) {
3857 phba->wait_4_mlo_maint_flg = 0;
3858 wake_up_interruptible(&phba->wait_4_mlo_m_q);
3859 }
3860 }
3861
3862 if ((phba->sli_rev < LPFC_SLI_REV4) &&
3863 bf_get(lpfc_mbx_read_top_fa, la)) {
3864 if (phba->sli.sli_flag & LPFC_MENLO_MAINT)
3865 lpfc_issue_clear_la(phba, vport);
3866 lpfc_printf_log(phba, KERN_INFO, LOG_LINK_EVENT,
3867 "1311 fa %d\n",
3868 bf_get(lpfc_mbx_read_top_fa, la));
3869 }
3870
3871 lpfc_mbx_cmpl_read_topology_free_mbuf:
3872 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
3873 }
3874
3875 /*
3876 * This routine handles processing a REG_LOGIN mailbox
3877 * command upon completion. It is setup in the LPFC_MBOXQ
3878 * as the completion routine when the command is
3879 * handed off to the SLI layer.
3880 */
3881 void
lpfc_mbx_cmpl_reg_login(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)3882 lpfc_mbx_cmpl_reg_login(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
3883 {
3884 struct lpfc_vport *vport = pmb->vport;
3885 struct lpfc_dmabuf *mp = (struct lpfc_dmabuf *)pmb->ctx_buf;
3886 struct lpfc_nodelist *ndlp = (struct lpfc_nodelist *)pmb->ctx_ndlp;
3887
3888 /* The driver calls the state machine with the pmb pointer
3889 * but wants to make sure a stale ctx_buf isn't acted on.
3890 * The ctx_buf is restored later and cleaned up.
3891 */
3892 pmb->ctx_buf = NULL;
3893 pmb->ctx_ndlp = NULL;
3894
3895 lpfc_printf_vlog(vport, KERN_INFO, LOG_SLI | LOG_NODE | LOG_DISCOVERY,
3896 "0002 rpi:%x DID:%x flg:%x %d x%px\n",
3897 ndlp->nlp_rpi, ndlp->nlp_DID, ndlp->nlp_flag,
3898 kref_read(&ndlp->kref),
3899 ndlp);
3900 if (ndlp->nlp_flag & NLP_REG_LOGIN_SEND)
3901 ndlp->nlp_flag &= ~NLP_REG_LOGIN_SEND;
3902
3903 if (ndlp->nlp_flag & NLP_IGNR_REG_CMPL ||
3904 ndlp->nlp_state != NLP_STE_REG_LOGIN_ISSUE) {
3905 /* We rcvd a rscn after issuing this
3906 * mbox reg login, we may have cycled
3907 * back through the state and be
3908 * back at reg login state so this
3909 * mbox needs to be ignored becase
3910 * there is another reg login in
3911 * process.
3912 */
3913 spin_lock_irq(&ndlp->lock);
3914 ndlp->nlp_flag &= ~NLP_IGNR_REG_CMPL;
3915 spin_unlock_irq(&ndlp->lock);
3916
3917 /*
3918 * We cannot leave the RPI registered because
3919 * if we go thru discovery again for this ndlp
3920 * a subsequent REG_RPI will fail.
3921 */
3922 ndlp->nlp_flag |= NLP_RPI_REGISTERED;
3923 lpfc_unreg_rpi(vport, ndlp);
3924 }
3925
3926 /* Call state machine */
3927 lpfc_disc_state_machine(vport, ndlp, pmb, NLP_EVT_CMPL_REG_LOGIN);
3928 pmb->ctx_buf = mp;
3929 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
3930
3931 /* decrement the node reference count held for this callback
3932 * function.
3933 */
3934 lpfc_nlp_put(ndlp);
3935
3936 return;
3937 }
3938
3939 static void
lpfc_mbx_cmpl_unreg_vpi(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)3940 lpfc_mbx_cmpl_unreg_vpi(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
3941 {
3942 MAILBOX_t *mb = &pmb->u.mb;
3943 struct lpfc_vport *vport = pmb->vport;
3944 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
3945
3946 switch (mb->mbxStatus) {
3947 case 0x0011:
3948 case 0x0020:
3949 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
3950 "0911 cmpl_unreg_vpi, mb status = 0x%x\n",
3951 mb->mbxStatus);
3952 break;
3953 /* If VPI is busy, reset the HBA */
3954 case 0x9700:
3955 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3956 "2798 Unreg_vpi failed vpi 0x%x, mb status = 0x%x\n",
3957 vport->vpi, mb->mbxStatus);
3958 if (!(phba->pport->load_flag & FC_UNLOADING))
3959 lpfc_workq_post_event(phba, NULL, NULL,
3960 LPFC_EVT_RESET_HBA);
3961 }
3962 spin_lock_irq(shost->host_lock);
3963 vport->vpi_state &= ~LPFC_VPI_REGISTERED;
3964 vport->fc_flag |= FC_VPORT_NEEDS_REG_VPI;
3965 spin_unlock_irq(shost->host_lock);
3966 mempool_free(pmb, phba->mbox_mem_pool);
3967 lpfc_cleanup_vports_rrqs(vport, NULL);
3968 /*
3969 * This shost reference might have been taken at the beginning of
3970 * lpfc_vport_delete()
3971 */
3972 if ((vport->load_flag & FC_UNLOADING) && (vport != phba->pport))
3973 scsi_host_put(shost);
3974 }
3975
3976 int
lpfc_mbx_unreg_vpi(struct lpfc_vport * vport)3977 lpfc_mbx_unreg_vpi(struct lpfc_vport *vport)
3978 {
3979 struct lpfc_hba *phba = vport->phba;
3980 LPFC_MBOXQ_t *mbox;
3981 int rc;
3982
3983 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
3984 if (!mbox)
3985 return 1;
3986
3987 lpfc_unreg_vpi(phba, vport->vpi, mbox);
3988 mbox->vport = vport;
3989 mbox->mbox_cmpl = lpfc_mbx_cmpl_unreg_vpi;
3990 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT);
3991 if (rc == MBX_NOT_FINISHED) {
3992 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3993 "1800 Could not issue unreg_vpi\n");
3994 mempool_free(mbox, phba->mbox_mem_pool);
3995 return rc;
3996 }
3997 return 0;
3998 }
3999
4000 static void
lpfc_mbx_cmpl_reg_vpi(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)4001 lpfc_mbx_cmpl_reg_vpi(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
4002 {
4003 struct lpfc_vport *vport = pmb->vport;
4004 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
4005 MAILBOX_t *mb = &pmb->u.mb;
4006
4007 switch (mb->mbxStatus) {
4008 case 0x0011:
4009 case 0x9601:
4010 case 0x9602:
4011 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
4012 "0912 cmpl_reg_vpi, mb status = 0x%x\n",
4013 mb->mbxStatus);
4014 lpfc_vport_set_state(vport, FC_VPORT_FAILED);
4015 spin_lock_irq(shost->host_lock);
4016 vport->fc_flag &= ~(FC_FABRIC | FC_PUBLIC_LOOP);
4017 spin_unlock_irq(shost->host_lock);
4018 vport->fc_myDID = 0;
4019
4020 if ((vport->cfg_enable_fc4_type == LPFC_ENABLE_BOTH) ||
4021 (vport->cfg_enable_fc4_type == LPFC_ENABLE_NVME)) {
4022 if (phba->nvmet_support)
4023 lpfc_nvmet_update_targetport(phba);
4024 else
4025 lpfc_nvme_update_localport(vport);
4026 }
4027 goto out;
4028 }
4029
4030 spin_lock_irq(shost->host_lock);
4031 vport->vpi_state |= LPFC_VPI_REGISTERED;
4032 vport->fc_flag &= ~FC_VPORT_NEEDS_REG_VPI;
4033 spin_unlock_irq(shost->host_lock);
4034 vport->num_disc_nodes = 0;
4035 /* go thru NPR list and issue ELS PLOGIs */
4036 if (vport->fc_npr_cnt)
4037 lpfc_els_disc_plogi(vport);
4038
4039 if (!vport->num_disc_nodes) {
4040 spin_lock_irq(shost->host_lock);
4041 vport->fc_flag &= ~FC_NDISC_ACTIVE;
4042 spin_unlock_irq(shost->host_lock);
4043 lpfc_can_disctmo(vport);
4044 }
4045 vport->port_state = LPFC_VPORT_READY;
4046
4047 out:
4048 mempool_free(pmb, phba->mbox_mem_pool);
4049 return;
4050 }
4051
4052 /**
4053 * lpfc_create_static_vport - Read HBA config region to create static vports.
4054 * @phba: pointer to lpfc hba data structure.
4055 *
4056 * This routine issue a DUMP mailbox command for config region 22 to get
4057 * the list of static vports to be created. The function create vports
4058 * based on the information returned from the HBA.
4059 **/
4060 void
lpfc_create_static_vport(struct lpfc_hba * phba)4061 lpfc_create_static_vport(struct lpfc_hba *phba)
4062 {
4063 LPFC_MBOXQ_t *pmb = NULL;
4064 MAILBOX_t *mb;
4065 struct static_vport_info *vport_info;
4066 int mbx_wait_rc = 0, i;
4067 struct fc_vport_identifiers vport_id;
4068 struct fc_vport *new_fc_vport;
4069 struct Scsi_Host *shost;
4070 struct lpfc_vport *vport;
4071 uint16_t offset = 0;
4072 uint8_t *vport_buff;
4073 struct lpfc_dmabuf *mp;
4074 uint32_t byte_count = 0;
4075
4076 pmb = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
4077 if (!pmb) {
4078 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
4079 "0542 lpfc_create_static_vport failed to"
4080 " allocate mailbox memory\n");
4081 return;
4082 }
4083 memset(pmb, 0, sizeof(LPFC_MBOXQ_t));
4084 mb = &pmb->u.mb;
4085
4086 vport_info = kzalloc(sizeof(struct static_vport_info), GFP_KERNEL);
4087 if (!vport_info) {
4088 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
4089 "0543 lpfc_create_static_vport failed to"
4090 " allocate vport_info\n");
4091 mempool_free(pmb, phba->mbox_mem_pool);
4092 return;
4093 }
4094
4095 vport_buff = (uint8_t *) vport_info;
4096 do {
4097 /* While loop iteration forces a free dma buffer from
4098 * the previous loop because the mbox is reused and
4099 * the dump routine is a single-use construct.
4100 */
4101 if (pmb->ctx_buf) {
4102 mp = (struct lpfc_dmabuf *)pmb->ctx_buf;
4103 lpfc_mbuf_free(phba, mp->virt, mp->phys);
4104 kfree(mp);
4105 pmb->ctx_buf = NULL;
4106 }
4107 if (lpfc_dump_static_vport(phba, pmb, offset))
4108 goto out;
4109
4110 pmb->vport = phba->pport;
4111 mbx_wait_rc = lpfc_sli_issue_mbox_wait(phba, pmb,
4112 LPFC_MBOX_TMO);
4113
4114 if ((mbx_wait_rc != MBX_SUCCESS) || mb->mbxStatus) {
4115 lpfc_printf_log(phba, KERN_WARNING, LOG_INIT,
4116 "0544 lpfc_create_static_vport failed to"
4117 " issue dump mailbox command ret 0x%x "
4118 "status 0x%x\n",
4119 mbx_wait_rc, mb->mbxStatus);
4120 goto out;
4121 }
4122
4123 if (phba->sli_rev == LPFC_SLI_REV4) {
4124 byte_count = pmb->u.mqe.un.mb_words[5];
4125 mp = (struct lpfc_dmabuf *)pmb->ctx_buf;
4126 if (byte_count > sizeof(struct static_vport_info) -
4127 offset)
4128 byte_count = sizeof(struct static_vport_info)
4129 - offset;
4130 memcpy(vport_buff + offset, mp->virt, byte_count);
4131 offset += byte_count;
4132 } else {
4133 if (mb->un.varDmp.word_cnt >
4134 sizeof(struct static_vport_info) - offset)
4135 mb->un.varDmp.word_cnt =
4136 sizeof(struct static_vport_info)
4137 - offset;
4138 byte_count = mb->un.varDmp.word_cnt;
4139 lpfc_sli_pcimem_bcopy(((uint8_t *)mb) + DMP_RSP_OFFSET,
4140 vport_buff + offset,
4141 byte_count);
4142
4143 offset += byte_count;
4144 }
4145
4146 } while (byte_count &&
4147 offset < sizeof(struct static_vport_info));
4148
4149
4150 if ((le32_to_cpu(vport_info->signature) != VPORT_INFO_SIG) ||
4151 ((le32_to_cpu(vport_info->rev) & VPORT_INFO_REV_MASK)
4152 != VPORT_INFO_REV)) {
4153 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
4154 "0545 lpfc_create_static_vport bad"
4155 " information header 0x%x 0x%x\n",
4156 le32_to_cpu(vport_info->signature),
4157 le32_to_cpu(vport_info->rev) &
4158 VPORT_INFO_REV_MASK);
4159
4160 goto out;
4161 }
4162
4163 shost = lpfc_shost_from_vport(phba->pport);
4164
4165 for (i = 0; i < MAX_STATIC_VPORT_COUNT; i++) {
4166 memset(&vport_id, 0, sizeof(vport_id));
4167 vport_id.port_name = wwn_to_u64(vport_info->vport_list[i].wwpn);
4168 vport_id.node_name = wwn_to_u64(vport_info->vport_list[i].wwnn);
4169 if (!vport_id.port_name || !vport_id.node_name)
4170 continue;
4171
4172 vport_id.roles = FC_PORT_ROLE_FCP_INITIATOR;
4173 vport_id.vport_type = FC_PORTTYPE_NPIV;
4174 vport_id.disable = false;
4175 new_fc_vport = fc_vport_create(shost, 0, &vport_id);
4176
4177 if (!new_fc_vport) {
4178 lpfc_printf_log(phba, KERN_WARNING, LOG_INIT,
4179 "0546 lpfc_create_static_vport failed to"
4180 " create vport\n");
4181 continue;
4182 }
4183
4184 vport = *(struct lpfc_vport **)new_fc_vport->dd_data;
4185 vport->vport_flag |= STATIC_VPORT;
4186 }
4187
4188 out:
4189 kfree(vport_info);
4190 if (mbx_wait_rc != MBX_TIMEOUT)
4191 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
4192 }
4193
4194 /*
4195 * This routine handles processing a Fabric REG_LOGIN mailbox
4196 * command upon completion. It is setup in the LPFC_MBOXQ
4197 * as the completion routine when the command is
4198 * handed off to the SLI layer.
4199 */
4200 void
lpfc_mbx_cmpl_fabric_reg_login(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)4201 lpfc_mbx_cmpl_fabric_reg_login(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
4202 {
4203 struct lpfc_vport *vport = pmb->vport;
4204 MAILBOX_t *mb = &pmb->u.mb;
4205 struct lpfc_nodelist *ndlp = (struct lpfc_nodelist *)pmb->ctx_ndlp;
4206 struct Scsi_Host *shost;
4207
4208 pmb->ctx_ndlp = NULL;
4209
4210 if (mb->mbxStatus) {
4211 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
4212 "0258 Register Fabric login error: 0x%x\n",
4213 mb->mbxStatus);
4214 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
4215 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP) {
4216 /* FLOGI failed, use loop map to make discovery list */
4217 lpfc_disc_list_loopmap(vport);
4218
4219 /* Start discovery */
4220 lpfc_disc_start(vport);
4221 /* Decrement the reference count to ndlp after the
4222 * reference to the ndlp are done.
4223 */
4224 lpfc_nlp_put(ndlp);
4225 return;
4226 }
4227
4228 lpfc_vport_set_state(vport, FC_VPORT_FAILED);
4229 /* Decrement the reference count to ndlp after the reference
4230 * to the ndlp are done.
4231 */
4232 lpfc_nlp_put(ndlp);
4233 return;
4234 }
4235
4236 if (phba->sli_rev < LPFC_SLI_REV4)
4237 ndlp->nlp_rpi = mb->un.varWords[0];
4238 ndlp->nlp_flag |= NLP_RPI_REGISTERED;
4239 ndlp->nlp_type |= NLP_FABRIC;
4240 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE);
4241
4242 if (vport->port_state == LPFC_FABRIC_CFG_LINK) {
4243 /* when physical port receive logo donot start
4244 * vport discovery */
4245 if (!(vport->fc_flag & FC_LOGO_RCVD_DID_CHNG))
4246 lpfc_start_fdiscs(phba);
4247 else {
4248 shost = lpfc_shost_from_vport(vport);
4249 spin_lock_irq(shost->host_lock);
4250 vport->fc_flag &= ~FC_LOGO_RCVD_DID_CHNG ;
4251 spin_unlock_irq(shost->host_lock);
4252 }
4253 lpfc_do_scr_ns_plogi(phba, vport);
4254 }
4255
4256 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
4257
4258 /* Drop the reference count from the mbox at the end after
4259 * all the current reference to the ndlp have been done.
4260 */
4261 lpfc_nlp_put(ndlp);
4262 return;
4263 }
4264
4265 /*
4266 * This routine will issue a GID_FT for each FC4 Type supported
4267 * by the driver. ALL GID_FTs must complete before discovery is started.
4268 */
4269 int
lpfc_issue_gidft(struct lpfc_vport * vport)4270 lpfc_issue_gidft(struct lpfc_vport *vport)
4271 {
4272 /* Good status, issue CT Request to NameServer */
4273 if ((vport->cfg_enable_fc4_type == LPFC_ENABLE_BOTH) ||
4274 (vport->cfg_enable_fc4_type == LPFC_ENABLE_FCP)) {
4275 if (lpfc_ns_cmd(vport, SLI_CTNS_GID_FT, 0, SLI_CTPT_FCP)) {
4276 /* Cannot issue NameServer FCP Query, so finish up
4277 * discovery
4278 */
4279 lpfc_printf_vlog(vport, KERN_ERR,
4280 LOG_TRACE_EVENT,
4281 "0604 %s FC TYPE %x %s\n",
4282 "Failed to issue GID_FT to ",
4283 FC_TYPE_FCP,
4284 "Finishing discovery.");
4285 return 0;
4286 }
4287 vport->gidft_inp++;
4288 }
4289
4290 if ((vport->cfg_enable_fc4_type == LPFC_ENABLE_BOTH) ||
4291 (vport->cfg_enable_fc4_type == LPFC_ENABLE_NVME)) {
4292 if (lpfc_ns_cmd(vport, SLI_CTNS_GID_FT, 0, SLI_CTPT_NVME)) {
4293 /* Cannot issue NameServer NVME Query, so finish up
4294 * discovery
4295 */
4296 lpfc_printf_vlog(vport, KERN_ERR,
4297 LOG_TRACE_EVENT,
4298 "0605 %s FC_TYPE %x %s %d\n",
4299 "Failed to issue GID_FT to ",
4300 FC_TYPE_NVME,
4301 "Finishing discovery: gidftinp ",
4302 vport->gidft_inp);
4303 if (vport->gidft_inp == 0)
4304 return 0;
4305 } else
4306 vport->gidft_inp++;
4307 }
4308 return vport->gidft_inp;
4309 }
4310
4311 /**
4312 * lpfc_issue_gidpt - issue a GID_PT for all N_Ports
4313 * @vport: The virtual port for which this call is being executed.
4314 *
4315 * This routine will issue a GID_PT to get a list of all N_Ports
4316 *
4317 * Return value :
4318 * 0 - Failure to issue a GID_PT
4319 * 1 - GID_PT issued
4320 **/
4321 int
lpfc_issue_gidpt(struct lpfc_vport * vport)4322 lpfc_issue_gidpt(struct lpfc_vport *vport)
4323 {
4324 /* Good status, issue CT Request to NameServer */
4325 if (lpfc_ns_cmd(vport, SLI_CTNS_GID_PT, 0, GID_PT_N_PORT)) {
4326 /* Cannot issue NameServer FCP Query, so finish up
4327 * discovery
4328 */
4329 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
4330 "0606 %s Port TYPE %x %s\n",
4331 "Failed to issue GID_PT to ",
4332 GID_PT_N_PORT,
4333 "Finishing discovery.");
4334 return 0;
4335 }
4336 vport->gidft_inp++;
4337 return 1;
4338 }
4339
4340 /*
4341 * This routine handles processing a NameServer REG_LOGIN mailbox
4342 * command upon completion. It is setup in the LPFC_MBOXQ
4343 * as the completion routine when the command is
4344 * handed off to the SLI layer.
4345 */
4346 void
lpfc_mbx_cmpl_ns_reg_login(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)4347 lpfc_mbx_cmpl_ns_reg_login(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
4348 {
4349 MAILBOX_t *mb = &pmb->u.mb;
4350 struct lpfc_nodelist *ndlp = (struct lpfc_nodelist *)pmb->ctx_ndlp;
4351 struct lpfc_vport *vport = pmb->vport;
4352 int rc;
4353
4354 pmb->ctx_ndlp = NULL;
4355 vport->gidft_inp = 0;
4356
4357 if (mb->mbxStatus) {
4358 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
4359 "0260 Register NameServer error: 0x%x\n",
4360 mb->mbxStatus);
4361
4362 out:
4363 /* decrement the node reference count held for this
4364 * callback function.
4365 */
4366 lpfc_nlp_put(ndlp);
4367 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
4368
4369 /* If the node is not registered with the scsi or nvme
4370 * transport, remove the fabric node. The failed reg_login
4371 * is terminal.
4372 */
4373 if (!(ndlp->fc4_xpt_flags & (SCSI_XPT_REGD | NVME_XPT_REGD))) {
4374 spin_lock_irq(&ndlp->lock);
4375 ndlp->nlp_flag &= ~NLP_NPR_2B_DISC;
4376 spin_unlock_irq(&ndlp->lock);
4377 lpfc_nlp_not_used(ndlp);
4378 }
4379
4380 if (phba->fc_topology == LPFC_TOPOLOGY_LOOP) {
4381 /*
4382 * RegLogin failed, use loop map to make discovery
4383 * list
4384 */
4385 lpfc_disc_list_loopmap(vport);
4386
4387 /* Start discovery */
4388 lpfc_disc_start(vport);
4389 return;
4390 }
4391 lpfc_vport_set_state(vport, FC_VPORT_FAILED);
4392 return;
4393 }
4394
4395 if (phba->sli_rev < LPFC_SLI_REV4)
4396 ndlp->nlp_rpi = mb->un.varWords[0];
4397 ndlp->nlp_flag |= NLP_RPI_REGISTERED;
4398 ndlp->nlp_type |= NLP_FABRIC;
4399 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE);
4400 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE | LOG_DISCOVERY,
4401 "0003 rpi:%x DID:%x flg:%x %d x%px\n",
4402 ndlp->nlp_rpi, ndlp->nlp_DID, ndlp->nlp_flag,
4403 kref_read(&ndlp->kref),
4404 ndlp);
4405
4406 if (vport->port_state < LPFC_VPORT_READY) {
4407 /* Link up discovery requires Fabric registration. */
4408 lpfc_ns_cmd(vport, SLI_CTNS_RNN_ID, 0, 0);
4409 lpfc_ns_cmd(vport, SLI_CTNS_RSNN_NN, 0, 0);
4410 lpfc_ns_cmd(vport, SLI_CTNS_RSPN_ID, 0, 0);
4411 lpfc_ns_cmd(vport, SLI_CTNS_RFT_ID, 0, 0);
4412
4413 if ((vport->cfg_enable_fc4_type == LPFC_ENABLE_BOTH) ||
4414 (vport->cfg_enable_fc4_type == LPFC_ENABLE_FCP))
4415 lpfc_ns_cmd(vport, SLI_CTNS_RFF_ID, 0, FC_TYPE_FCP);
4416
4417 if ((vport->cfg_enable_fc4_type == LPFC_ENABLE_BOTH) ||
4418 (vport->cfg_enable_fc4_type == LPFC_ENABLE_NVME))
4419 lpfc_ns_cmd(vport, SLI_CTNS_RFF_ID, 0,
4420 FC_TYPE_NVME);
4421
4422 /* Issue SCR just before NameServer GID_FT Query */
4423 lpfc_issue_els_scr(vport, 0);
4424
4425 /* Link was bounced or a Fabric LOGO occurred. Start EDC
4426 * with initial FW values provided the congestion mode is
4427 * not off. Note that signals may or may not be supported
4428 * by the adapter but FPIN is provided by default for 1
4429 * or both missing signals support.
4430 */
4431 if (phba->cmf_active_mode != LPFC_CFG_OFF) {
4432 phba->cgn_reg_fpin = phba->cgn_init_reg_fpin;
4433 phba->cgn_reg_signal = phba->cgn_init_reg_signal;
4434 rc = lpfc_issue_els_edc(vport, 0);
4435 lpfc_printf_log(phba, KERN_INFO,
4436 LOG_INIT | LOG_ELS | LOG_DISCOVERY,
4437 "4220 EDC issue error x%x, Data: x%x\n",
4438 rc, phba->cgn_init_reg_signal);
4439 } else {
4440 lpfc_issue_els_rdf(vport, 0);
4441 }
4442 }
4443
4444 vport->fc_ns_retry = 0;
4445 if (lpfc_issue_gidft(vport) == 0)
4446 goto out;
4447
4448 /*
4449 * At this point in time we may need to wait for multiple
4450 * SLI_CTNS_GID_FT CT commands to complete before we start discovery.
4451 *
4452 * decrement the node reference count held for this
4453 * callback function.
4454 */
4455 lpfc_nlp_put(ndlp);
4456 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
4457 return;
4458 }
4459
4460 /*
4461 * This routine handles processing a Fabric Controller REG_LOGIN mailbox
4462 * command upon completion. It is setup in the LPFC_MBOXQ
4463 * as the completion routine when the command is handed off to the SLI layer.
4464 */
4465 void
lpfc_mbx_cmpl_fc_reg_login(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)4466 lpfc_mbx_cmpl_fc_reg_login(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
4467 {
4468 struct lpfc_vport *vport = pmb->vport;
4469 MAILBOX_t *mb = &pmb->u.mb;
4470 struct lpfc_nodelist *ndlp = (struct lpfc_nodelist *)pmb->ctx_ndlp;
4471
4472 pmb->ctx_ndlp = NULL;
4473 if (mb->mbxStatus) {
4474 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
4475 "0933 %s: Register FC login error: 0x%x\n",
4476 __func__, mb->mbxStatus);
4477 goto out;
4478 }
4479
4480 lpfc_check_nlp_post_devloss(vport, ndlp);
4481
4482 if (phba->sli_rev < LPFC_SLI_REV4)
4483 ndlp->nlp_rpi = mb->un.varWords[0];
4484
4485 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
4486 "0934 %s: Complete FC x%x RegLogin rpi x%x ste x%x\n",
4487 __func__, ndlp->nlp_DID, ndlp->nlp_rpi,
4488 ndlp->nlp_state);
4489
4490 ndlp->nlp_flag |= NLP_RPI_REGISTERED;
4491 ndlp->nlp_flag &= ~NLP_REG_LOGIN_SEND;
4492 ndlp->nlp_type |= NLP_FABRIC;
4493 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE);
4494
4495 out:
4496 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
4497
4498 /* Drop the reference count from the mbox at the end after
4499 * all the current reference to the ndlp have been done.
4500 */
4501 lpfc_nlp_put(ndlp);
4502 }
4503
4504 static void
lpfc_register_remote_port(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)4505 lpfc_register_remote_port(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
4506 {
4507 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
4508 struct fc_rport *rport;
4509 struct lpfc_rport_data *rdata;
4510 struct fc_rport_identifiers rport_ids;
4511 struct lpfc_hba *phba = vport->phba;
4512 unsigned long flags;
4513
4514 if (vport->cfg_enable_fc4_type == LPFC_ENABLE_NVME)
4515 return;
4516
4517 /* Remote port has reappeared. Re-register w/ FC transport */
4518 rport_ids.node_name = wwn_to_u64(ndlp->nlp_nodename.u.wwn);
4519 rport_ids.port_name = wwn_to_u64(ndlp->nlp_portname.u.wwn);
4520 rport_ids.port_id = ndlp->nlp_DID;
4521 rport_ids.roles = FC_RPORT_ROLE_UNKNOWN;
4522
4523
4524 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_RPORT,
4525 "rport add: did:x%x flg:x%x type x%x",
4526 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_type);
4527
4528 /* Don't add the remote port if unloading. */
4529 if (vport->load_flag & FC_UNLOADING)
4530 return;
4531
4532 /*
4533 * Disassociate any older association between this ndlp and rport
4534 */
4535 if (ndlp->rport) {
4536 rdata = ndlp->rport->dd_data;
4537 rdata->pnode = NULL;
4538 }
4539
4540 ndlp->rport = rport = fc_remote_port_add(shost, 0, &rport_ids);
4541 if (!rport) {
4542 dev_printk(KERN_WARNING, &phba->pcidev->dev,
4543 "Warning: fc_remote_port_add failed\n");
4544 return;
4545 }
4546
4547 /* Successful port add. Complete initializing node data */
4548 rport->maxframe_size = ndlp->nlp_maxframe;
4549 rport->supported_classes = ndlp->nlp_class_sup;
4550 rdata = rport->dd_data;
4551 rdata->pnode = lpfc_nlp_get(ndlp);
4552 if (!rdata->pnode) {
4553 dev_warn(&phba->pcidev->dev,
4554 "Warning - node ref failed. Unreg rport\n");
4555 fc_remote_port_delete(rport);
4556 ndlp->rport = NULL;
4557 return;
4558 }
4559
4560 spin_lock_irqsave(&ndlp->lock, flags);
4561 ndlp->fc4_xpt_flags |= SCSI_XPT_REGD;
4562 spin_unlock_irqrestore(&ndlp->lock, flags);
4563
4564 if (ndlp->nlp_type & NLP_FCP_TARGET)
4565 rport_ids.roles |= FC_PORT_ROLE_FCP_TARGET;
4566 if (ndlp->nlp_type & NLP_FCP_INITIATOR)
4567 rport_ids.roles |= FC_PORT_ROLE_FCP_INITIATOR;
4568 if (ndlp->nlp_type & NLP_NVME_INITIATOR)
4569 rport_ids.roles |= FC_PORT_ROLE_NVME_INITIATOR;
4570 if (ndlp->nlp_type & NLP_NVME_TARGET)
4571 rport_ids.roles |= FC_PORT_ROLE_NVME_TARGET;
4572 if (ndlp->nlp_type & NLP_NVME_DISCOVERY)
4573 rport_ids.roles |= FC_PORT_ROLE_NVME_DISCOVERY;
4574
4575 if (rport_ids.roles != FC_RPORT_ROLE_UNKNOWN)
4576 fc_remote_port_rolechg(rport, rport_ids.roles);
4577
4578 lpfc_printf_vlog(ndlp->vport, KERN_INFO, LOG_NODE,
4579 "3183 %s rport x%px DID x%x, role x%x refcnt %d\n",
4580 __func__, rport, rport->port_id, rport->roles,
4581 kref_read(&ndlp->kref));
4582
4583 if ((rport->scsi_target_id != -1) &&
4584 (rport->scsi_target_id < LPFC_MAX_TARGET)) {
4585 ndlp->nlp_sid = rport->scsi_target_id;
4586 }
4587
4588 return;
4589 }
4590
4591 static void
lpfc_unregister_remote_port(struct lpfc_nodelist * ndlp)4592 lpfc_unregister_remote_port(struct lpfc_nodelist *ndlp)
4593 {
4594 struct fc_rport *rport = ndlp->rport;
4595 struct lpfc_vport *vport = ndlp->vport;
4596
4597 if (vport->cfg_enable_fc4_type == LPFC_ENABLE_NVME)
4598 return;
4599
4600 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_RPORT,
4601 "rport delete: did:x%x flg:x%x type x%x",
4602 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_type);
4603
4604 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
4605 "3184 rport unregister x%06x, rport x%px "
4606 "xptflg x%x refcnt %d\n",
4607 ndlp->nlp_DID, rport, ndlp->fc4_xpt_flags,
4608 kref_read(&ndlp->kref));
4609
4610 fc_remote_port_delete(rport);
4611 lpfc_nlp_put(ndlp);
4612 }
4613
4614 static void
lpfc_nlp_counters(struct lpfc_vport * vport,int state,int count)4615 lpfc_nlp_counters(struct lpfc_vport *vport, int state, int count)
4616 {
4617 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
4618 unsigned long iflags;
4619
4620 spin_lock_irqsave(shost->host_lock, iflags);
4621 switch (state) {
4622 case NLP_STE_UNUSED_NODE:
4623 vport->fc_unused_cnt += count;
4624 break;
4625 case NLP_STE_PLOGI_ISSUE:
4626 vport->fc_plogi_cnt += count;
4627 break;
4628 case NLP_STE_ADISC_ISSUE:
4629 vport->fc_adisc_cnt += count;
4630 break;
4631 case NLP_STE_REG_LOGIN_ISSUE:
4632 vport->fc_reglogin_cnt += count;
4633 break;
4634 case NLP_STE_PRLI_ISSUE:
4635 vport->fc_prli_cnt += count;
4636 break;
4637 case NLP_STE_UNMAPPED_NODE:
4638 vport->fc_unmap_cnt += count;
4639 break;
4640 case NLP_STE_MAPPED_NODE:
4641 vport->fc_map_cnt += count;
4642 break;
4643 case NLP_STE_NPR_NODE:
4644 if (vport->fc_npr_cnt == 0 && count == -1)
4645 vport->fc_npr_cnt = 0;
4646 else
4647 vport->fc_npr_cnt += count;
4648 break;
4649 }
4650 spin_unlock_irqrestore(shost->host_lock, iflags);
4651 }
4652
4653 /* Register a node with backend if not already done */
4654 void
lpfc_nlp_reg_node(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)4655 lpfc_nlp_reg_node(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
4656 {
4657 unsigned long iflags;
4658
4659 lpfc_check_nlp_post_devloss(vport, ndlp);
4660
4661 spin_lock_irqsave(&ndlp->lock, iflags);
4662 if (ndlp->fc4_xpt_flags & NLP_XPT_REGD) {
4663 /* Already registered with backend, trigger rescan */
4664 spin_unlock_irqrestore(&ndlp->lock, iflags);
4665
4666 if (ndlp->fc4_xpt_flags & NVME_XPT_REGD &&
4667 ndlp->nlp_type & (NLP_NVME_TARGET | NLP_NVME_DISCOVERY)) {
4668 lpfc_nvme_rescan_port(vport, ndlp);
4669 }
4670 return;
4671 }
4672
4673 ndlp->fc4_xpt_flags |= NLP_XPT_REGD;
4674 spin_unlock_irqrestore(&ndlp->lock, iflags);
4675
4676 if (lpfc_valid_xpt_node(ndlp)) {
4677 vport->phba->nport_event_cnt++;
4678 /*
4679 * Tell the fc transport about the port, if we haven't
4680 * already. If we have, and it's a scsi entity, be
4681 */
4682 lpfc_register_remote_port(vport, ndlp);
4683 }
4684
4685 /* We are done if we do not have any NVME remote node */
4686 if (!(ndlp->nlp_fc4_type & NLP_FC4_NVME))
4687 return;
4688
4689 /* Notify the NVME transport of this new rport. */
4690 if (vport->phba->sli_rev >= LPFC_SLI_REV4 &&
4691 ndlp->nlp_fc4_type & NLP_FC4_NVME) {
4692 if (vport->phba->nvmet_support == 0) {
4693 /* Register this rport with the transport.
4694 * Only NVME Target Rports are registered with
4695 * the transport.
4696 */
4697 if (ndlp->nlp_type & NLP_NVME_TARGET) {
4698 vport->phba->nport_event_cnt++;
4699 lpfc_nvme_register_port(vport, ndlp);
4700 }
4701 } else {
4702 /* Just take an NDLP ref count since the
4703 * target does not register rports.
4704 */
4705 lpfc_nlp_get(ndlp);
4706 }
4707 }
4708 }
4709
4710 /* Unregister a node with backend if not already done */
4711 void
lpfc_nlp_unreg_node(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)4712 lpfc_nlp_unreg_node(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
4713 {
4714 unsigned long iflags;
4715
4716 spin_lock_irqsave(&ndlp->lock, iflags);
4717 if (!(ndlp->fc4_xpt_flags & NLP_XPT_REGD)) {
4718 spin_unlock_irqrestore(&ndlp->lock, iflags);
4719 lpfc_printf_vlog(vport, KERN_INFO, LOG_SLI,
4720 "0999 %s Not regd: ndlp x%px rport x%px DID "
4721 "x%x FLG x%x XPT x%x\n",
4722 __func__, ndlp, ndlp->rport, ndlp->nlp_DID,
4723 ndlp->nlp_flag, ndlp->fc4_xpt_flags);
4724 return;
4725 }
4726
4727 ndlp->fc4_xpt_flags &= ~NLP_XPT_REGD;
4728 spin_unlock_irqrestore(&ndlp->lock, iflags);
4729
4730 if (ndlp->rport &&
4731 ndlp->fc4_xpt_flags & SCSI_XPT_REGD) {
4732 vport->phba->nport_event_cnt++;
4733 lpfc_unregister_remote_port(ndlp);
4734 } else if (!ndlp->rport) {
4735 lpfc_printf_vlog(vport, KERN_INFO, LOG_SLI,
4736 "1999 %s NDLP in devloss x%px DID x%x FLG x%x"
4737 " XPT x%x refcnt %d\n",
4738 __func__, ndlp, ndlp->nlp_DID, ndlp->nlp_flag,
4739 ndlp->fc4_xpt_flags,
4740 kref_read(&ndlp->kref));
4741 }
4742
4743 if (ndlp->fc4_xpt_flags & NVME_XPT_REGD) {
4744 vport->phba->nport_event_cnt++;
4745 if (vport->phba->nvmet_support == 0) {
4746 /* Start devloss if target. */
4747 if (ndlp->nlp_type & NLP_NVME_TARGET)
4748 lpfc_nvme_unregister_port(vport, ndlp);
4749 } else {
4750 /* NVMET has no upcall. */
4751 lpfc_nlp_put(ndlp);
4752 }
4753 }
4754
4755 }
4756
4757 /*
4758 * Adisc state change handling
4759 */
4760 static void
lpfc_handle_adisc_state(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp,int new_state)4761 lpfc_handle_adisc_state(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
4762 int new_state)
4763 {
4764 switch (new_state) {
4765 /*
4766 * Any state to ADISC_ISSUE
4767 * Do nothing, adisc cmpl handling will trigger state changes
4768 */
4769 case NLP_STE_ADISC_ISSUE:
4770 break;
4771
4772 /*
4773 * ADISC_ISSUE to mapped states
4774 * Trigger a registration with backend, it will be nop if
4775 * already registered
4776 */
4777 case NLP_STE_UNMAPPED_NODE:
4778 ndlp->nlp_type |= NLP_FC_NODE;
4779 fallthrough;
4780 case NLP_STE_MAPPED_NODE:
4781 ndlp->nlp_flag &= ~NLP_NODEV_REMOVE;
4782 lpfc_nlp_reg_node(vport, ndlp);
4783 break;
4784
4785 /*
4786 * ADISC_ISSUE to non-mapped states
4787 * We are moving from ADISC_ISSUE to a non-mapped state because
4788 * ADISC failed, we would have skipped unregistering with
4789 * backend, attempt it now
4790 */
4791 case NLP_STE_NPR_NODE:
4792 ndlp->nlp_flag &= ~NLP_RCV_PLOGI;
4793 fallthrough;
4794 default:
4795 lpfc_nlp_unreg_node(vport, ndlp);
4796 break;
4797 }
4798
4799 }
4800
4801 static void
lpfc_nlp_state_cleanup(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp,int old_state,int new_state)4802 lpfc_nlp_state_cleanup(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
4803 int old_state, int new_state)
4804 {
4805 /* Trap ADISC changes here */
4806 if (new_state == NLP_STE_ADISC_ISSUE ||
4807 old_state == NLP_STE_ADISC_ISSUE) {
4808 lpfc_handle_adisc_state(vport, ndlp, new_state);
4809 return;
4810 }
4811
4812 if (new_state == NLP_STE_UNMAPPED_NODE) {
4813 ndlp->nlp_flag &= ~NLP_NODEV_REMOVE;
4814 ndlp->nlp_type |= NLP_FC_NODE;
4815 }
4816 if (new_state == NLP_STE_MAPPED_NODE)
4817 ndlp->nlp_flag &= ~NLP_NODEV_REMOVE;
4818 if (new_state == NLP_STE_NPR_NODE)
4819 ndlp->nlp_flag &= ~NLP_RCV_PLOGI;
4820
4821 /* Reg/Unreg for FCP and NVME Transport interface */
4822 if ((old_state == NLP_STE_MAPPED_NODE ||
4823 old_state == NLP_STE_UNMAPPED_NODE)) {
4824 /* For nodes marked for ADISC, Handle unreg in ADISC cmpl
4825 * if linkup. In linkdown do unreg_node
4826 */
4827 if (!(ndlp->nlp_flag & NLP_NPR_ADISC) ||
4828 !lpfc_is_link_up(vport->phba))
4829 lpfc_nlp_unreg_node(vport, ndlp);
4830 }
4831
4832 if (new_state == NLP_STE_MAPPED_NODE ||
4833 new_state == NLP_STE_UNMAPPED_NODE)
4834 lpfc_nlp_reg_node(vport, ndlp);
4835
4836 if ((new_state == NLP_STE_MAPPED_NODE) &&
4837 (vport->stat_data_enabled)) {
4838 /*
4839 * A new target is discovered, if there is no buffer for
4840 * statistical data collection allocate buffer.
4841 */
4842 ndlp->lat_data = kcalloc(LPFC_MAX_BUCKET_COUNT,
4843 sizeof(struct lpfc_scsicmd_bkt),
4844 GFP_KERNEL);
4845
4846 if (!ndlp->lat_data)
4847 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
4848 "0286 lpfc_nlp_state_cleanup failed to "
4849 "allocate statistical data buffer DID "
4850 "0x%x\n", ndlp->nlp_DID);
4851 }
4852 /*
4853 * If the node just added to Mapped list was an FCP target,
4854 * but the remote port registration failed or assigned a target
4855 * id outside the presentable range - move the node to the
4856 * Unmapped List.
4857 */
4858 if ((new_state == NLP_STE_MAPPED_NODE) &&
4859 (ndlp->nlp_type & NLP_FCP_TARGET) &&
4860 (!ndlp->rport ||
4861 ndlp->rport->scsi_target_id == -1 ||
4862 ndlp->rport->scsi_target_id >= LPFC_MAX_TARGET)) {
4863 spin_lock_irq(&ndlp->lock);
4864 ndlp->nlp_flag |= NLP_TGT_NO_SCSIID;
4865 spin_unlock_irq(&ndlp->lock);
4866 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE);
4867 }
4868 }
4869
4870 static char *
lpfc_nlp_state_name(char * buffer,size_t size,int state)4871 lpfc_nlp_state_name(char *buffer, size_t size, int state)
4872 {
4873 static char *states[] = {
4874 [NLP_STE_UNUSED_NODE] = "UNUSED",
4875 [NLP_STE_PLOGI_ISSUE] = "PLOGI",
4876 [NLP_STE_ADISC_ISSUE] = "ADISC",
4877 [NLP_STE_REG_LOGIN_ISSUE] = "REGLOGIN",
4878 [NLP_STE_PRLI_ISSUE] = "PRLI",
4879 [NLP_STE_LOGO_ISSUE] = "LOGO",
4880 [NLP_STE_UNMAPPED_NODE] = "UNMAPPED",
4881 [NLP_STE_MAPPED_NODE] = "MAPPED",
4882 [NLP_STE_NPR_NODE] = "NPR",
4883 };
4884
4885 if (state < NLP_STE_MAX_STATE && states[state])
4886 strlcpy(buffer, states[state], size);
4887 else
4888 snprintf(buffer, size, "unknown (%d)", state);
4889 return buffer;
4890 }
4891
4892 void
lpfc_nlp_set_state(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp,int state)4893 lpfc_nlp_set_state(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
4894 int state)
4895 {
4896 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
4897 int old_state = ndlp->nlp_state;
4898 int node_dropped = ndlp->nlp_flag & NLP_DROPPED;
4899 char name1[16], name2[16];
4900
4901 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
4902 "0904 NPort state transition x%06x, %s -> %s\n",
4903 ndlp->nlp_DID,
4904 lpfc_nlp_state_name(name1, sizeof(name1), old_state),
4905 lpfc_nlp_state_name(name2, sizeof(name2), state));
4906
4907 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_NODE,
4908 "node statechg did:x%x old:%d ste:%d",
4909 ndlp->nlp_DID, old_state, state);
4910
4911 if (node_dropped && old_state == NLP_STE_UNUSED_NODE &&
4912 state != NLP_STE_UNUSED_NODE) {
4913 ndlp->nlp_flag &= ~NLP_DROPPED;
4914 lpfc_nlp_get(ndlp);
4915 }
4916
4917 if (old_state == NLP_STE_NPR_NODE &&
4918 state != NLP_STE_NPR_NODE)
4919 lpfc_cancel_retry_delay_tmo(vport, ndlp);
4920 if (old_state == NLP_STE_UNMAPPED_NODE) {
4921 ndlp->nlp_flag &= ~NLP_TGT_NO_SCSIID;
4922 ndlp->nlp_type &= ~NLP_FC_NODE;
4923 }
4924
4925 if (list_empty(&ndlp->nlp_listp)) {
4926 spin_lock_irq(shost->host_lock);
4927 list_add_tail(&ndlp->nlp_listp, &vport->fc_nodes);
4928 spin_unlock_irq(shost->host_lock);
4929 } else if (old_state)
4930 lpfc_nlp_counters(vport, old_state, -1);
4931
4932 ndlp->nlp_state = state;
4933 lpfc_nlp_counters(vport, state, 1);
4934 lpfc_nlp_state_cleanup(vport, ndlp, old_state, state);
4935 }
4936
4937 void
lpfc_enqueue_node(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)4938 lpfc_enqueue_node(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
4939 {
4940 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
4941
4942 if (list_empty(&ndlp->nlp_listp)) {
4943 spin_lock_irq(shost->host_lock);
4944 list_add_tail(&ndlp->nlp_listp, &vport->fc_nodes);
4945 spin_unlock_irq(shost->host_lock);
4946 }
4947 }
4948
4949 void
lpfc_dequeue_node(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)4950 lpfc_dequeue_node(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
4951 {
4952 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
4953
4954 lpfc_cancel_retry_delay_tmo(vport, ndlp);
4955 if (ndlp->nlp_state && !list_empty(&ndlp->nlp_listp))
4956 lpfc_nlp_counters(vport, ndlp->nlp_state, -1);
4957 spin_lock_irq(shost->host_lock);
4958 list_del_init(&ndlp->nlp_listp);
4959 spin_unlock_irq(shost->host_lock);
4960 lpfc_nlp_state_cleanup(vport, ndlp, ndlp->nlp_state,
4961 NLP_STE_UNUSED_NODE);
4962 }
4963
4964 /**
4965 * lpfc_initialize_node - Initialize all fields of node object
4966 * @vport: Pointer to Virtual Port object.
4967 * @ndlp: Pointer to FC node object.
4968 * @did: FC_ID of the node.
4969 *
4970 * This function is always called when node object need to be initialized.
4971 * It initializes all the fields of the node object. Although the reference
4972 * to phba from @ndlp can be obtained indirectly through it's reference to
4973 * @vport, a direct reference to phba is taken here by @ndlp. This is due
4974 * to the life-span of the @ndlp might go beyond the existence of @vport as
4975 * the final release of ndlp is determined by its reference count. And, the
4976 * operation on @ndlp needs the reference to phba.
4977 **/
4978 static inline void
lpfc_initialize_node(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp,uint32_t did)4979 lpfc_initialize_node(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
4980 uint32_t did)
4981 {
4982 INIT_LIST_HEAD(&ndlp->els_retry_evt.evt_listp);
4983 INIT_LIST_HEAD(&ndlp->dev_loss_evt.evt_listp);
4984 timer_setup(&ndlp->nlp_delayfunc, lpfc_els_retry_delay, 0);
4985 INIT_LIST_HEAD(&ndlp->recovery_evt.evt_listp);
4986
4987 ndlp->nlp_DID = did;
4988 ndlp->vport = vport;
4989 ndlp->phba = vport->phba;
4990 ndlp->nlp_sid = NLP_NO_SID;
4991 ndlp->nlp_fc4_type = NLP_FC4_NONE;
4992 kref_init(&ndlp->kref);
4993 atomic_set(&ndlp->cmd_pending, 0);
4994 ndlp->cmd_qdepth = vport->cfg_tgt_queue_depth;
4995 ndlp->nlp_defer_did = NLP_EVT_NOTHING_PENDING;
4996 }
4997
4998 void
lpfc_drop_node(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)4999 lpfc_drop_node(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
5000 {
5001 /*
5002 * Use of lpfc_drop_node and UNUSED list: lpfc_drop_node should
5003 * be used if we wish to issue the "last" lpfc_nlp_put() to remove
5004 * the ndlp from the vport. The ndlp marked as UNUSED on the list
5005 * until ALL other outstanding threads have completed. We check
5006 * that the ndlp not already in the UNUSED state before we proceed.
5007 */
5008 if (ndlp->nlp_state == NLP_STE_UNUSED_NODE)
5009 return;
5010 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNUSED_NODE);
5011 ndlp->nlp_flag |= NLP_DROPPED;
5012 if (vport->phba->sli_rev == LPFC_SLI_REV4) {
5013 lpfc_cleanup_vports_rrqs(vport, ndlp);
5014 lpfc_unreg_rpi(vport, ndlp);
5015 }
5016
5017 lpfc_nlp_put(ndlp);
5018 return;
5019 }
5020
5021 /*
5022 * Start / ReStart rescue timer for Discovery / RSCN handling
5023 */
5024 void
lpfc_set_disctmo(struct lpfc_vport * vport)5025 lpfc_set_disctmo(struct lpfc_vport *vport)
5026 {
5027 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
5028 struct lpfc_hba *phba = vport->phba;
5029 uint32_t tmo;
5030
5031 if (vport->port_state == LPFC_LOCAL_CFG_LINK) {
5032 /* For FAN, timeout should be greater than edtov */
5033 tmo = (((phba->fc_edtov + 999) / 1000) + 1);
5034 } else {
5035 /* Normal discovery timeout should be > than ELS/CT timeout
5036 * FC spec states we need 3 * ratov for CT requests
5037 */
5038 tmo = ((phba->fc_ratov * 3) + 3);
5039 }
5040
5041
5042 if (!timer_pending(&vport->fc_disctmo)) {
5043 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD,
5044 "set disc timer: tmo:x%x state:x%x flg:x%x",
5045 tmo, vport->port_state, vport->fc_flag);
5046 }
5047
5048 mod_timer(&vport->fc_disctmo, jiffies + msecs_to_jiffies(1000 * tmo));
5049 spin_lock_irq(shost->host_lock);
5050 vport->fc_flag |= FC_DISC_TMO;
5051 spin_unlock_irq(shost->host_lock);
5052
5053 /* Start Discovery Timer state <hba_state> */
5054 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
5055 "0247 Start Discovery Timer state x%x "
5056 "Data: x%x x%lx x%x x%x\n",
5057 vport->port_state, tmo,
5058 (unsigned long)&vport->fc_disctmo, vport->fc_plogi_cnt,
5059 vport->fc_adisc_cnt);
5060
5061 return;
5062 }
5063
5064 /*
5065 * Cancel rescue timer for Discovery / RSCN handling
5066 */
5067 int
lpfc_can_disctmo(struct lpfc_vport * vport)5068 lpfc_can_disctmo(struct lpfc_vport *vport)
5069 {
5070 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
5071 unsigned long iflags;
5072
5073 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD,
5074 "can disc timer: state:x%x rtry:x%x flg:x%x",
5075 vport->port_state, vport->fc_ns_retry, vport->fc_flag);
5076
5077 /* Turn off discovery timer if its running */
5078 if (vport->fc_flag & FC_DISC_TMO ||
5079 timer_pending(&vport->fc_disctmo)) {
5080 spin_lock_irqsave(shost->host_lock, iflags);
5081 vport->fc_flag &= ~FC_DISC_TMO;
5082 spin_unlock_irqrestore(shost->host_lock, iflags);
5083 del_timer_sync(&vport->fc_disctmo);
5084 spin_lock_irqsave(&vport->work_port_lock, iflags);
5085 vport->work_port_events &= ~WORKER_DISC_TMO;
5086 spin_unlock_irqrestore(&vport->work_port_lock, iflags);
5087 }
5088
5089 /* Cancel Discovery Timer state <hba_state> */
5090 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
5091 "0248 Cancel Discovery Timer state x%x "
5092 "Data: x%x x%x x%x\n",
5093 vport->port_state, vport->fc_flag,
5094 vport->fc_plogi_cnt, vport->fc_adisc_cnt);
5095 return 0;
5096 }
5097
5098 /*
5099 * Check specified ring for outstanding IOCB on the SLI queue
5100 * Return true if iocb matches the specified nport
5101 */
5102 int
lpfc_check_sli_ndlp(struct lpfc_hba * phba,struct lpfc_sli_ring * pring,struct lpfc_iocbq * iocb,struct lpfc_nodelist * ndlp)5103 lpfc_check_sli_ndlp(struct lpfc_hba *phba,
5104 struct lpfc_sli_ring *pring,
5105 struct lpfc_iocbq *iocb,
5106 struct lpfc_nodelist *ndlp)
5107 {
5108 struct lpfc_vport *vport = ndlp->vport;
5109 u8 ulp_command;
5110 u16 ulp_context;
5111 u32 remote_id;
5112
5113 if (iocb->vport != vport)
5114 return 0;
5115
5116 ulp_command = get_job_cmnd(phba, iocb);
5117 ulp_context = get_job_ulpcontext(phba, iocb);
5118 remote_id = get_job_els_rsp64_did(phba, iocb);
5119
5120 if (pring->ringno == LPFC_ELS_RING) {
5121 switch (ulp_command) {
5122 case CMD_GEN_REQUEST64_CR:
5123 if (iocb->ndlp == ndlp)
5124 return 1;
5125 fallthrough;
5126 case CMD_ELS_REQUEST64_CR:
5127 if (remote_id == ndlp->nlp_DID)
5128 return 1;
5129 fallthrough;
5130 case CMD_XMIT_ELS_RSP64_CX:
5131 if (iocb->ndlp == ndlp)
5132 return 1;
5133 }
5134 } else if (pring->ringno == LPFC_FCP_RING) {
5135 /* Skip match check if waiting to relogin to FCP target */
5136 if ((ndlp->nlp_type & NLP_FCP_TARGET) &&
5137 (ndlp->nlp_flag & NLP_DELAY_TMO)) {
5138 return 0;
5139 }
5140 if (ulp_context == ndlp->nlp_rpi)
5141 return 1;
5142 }
5143 return 0;
5144 }
5145
5146 static void
__lpfc_dequeue_nport_iocbs(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp,struct lpfc_sli_ring * pring,struct list_head * dequeue_list)5147 __lpfc_dequeue_nport_iocbs(struct lpfc_hba *phba,
5148 struct lpfc_nodelist *ndlp, struct lpfc_sli_ring *pring,
5149 struct list_head *dequeue_list)
5150 {
5151 struct lpfc_iocbq *iocb, *next_iocb;
5152
5153 list_for_each_entry_safe(iocb, next_iocb, &pring->txq, list) {
5154 /* Check to see if iocb matches the nport */
5155 if (lpfc_check_sli_ndlp(phba, pring, iocb, ndlp))
5156 /* match, dequeue */
5157 list_move_tail(&iocb->list, dequeue_list);
5158 }
5159 }
5160
5161 static void
lpfc_sli3_dequeue_nport_iocbs(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp,struct list_head * dequeue_list)5162 lpfc_sli3_dequeue_nport_iocbs(struct lpfc_hba *phba,
5163 struct lpfc_nodelist *ndlp, struct list_head *dequeue_list)
5164 {
5165 struct lpfc_sli *psli = &phba->sli;
5166 uint32_t i;
5167
5168 spin_lock_irq(&phba->hbalock);
5169 for (i = 0; i < psli->num_rings; i++)
5170 __lpfc_dequeue_nport_iocbs(phba, ndlp, &psli->sli3_ring[i],
5171 dequeue_list);
5172 spin_unlock_irq(&phba->hbalock);
5173 }
5174
5175 static void
lpfc_sli4_dequeue_nport_iocbs(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp,struct list_head * dequeue_list)5176 lpfc_sli4_dequeue_nport_iocbs(struct lpfc_hba *phba,
5177 struct lpfc_nodelist *ndlp, struct list_head *dequeue_list)
5178 {
5179 struct lpfc_sli_ring *pring;
5180 struct lpfc_queue *qp = NULL;
5181
5182 spin_lock_irq(&phba->hbalock);
5183 list_for_each_entry(qp, &phba->sli4_hba.lpfc_wq_list, wq_list) {
5184 pring = qp->pring;
5185 if (!pring)
5186 continue;
5187 spin_lock(&pring->ring_lock);
5188 __lpfc_dequeue_nport_iocbs(phba, ndlp, pring, dequeue_list);
5189 spin_unlock(&pring->ring_lock);
5190 }
5191 spin_unlock_irq(&phba->hbalock);
5192 }
5193
5194 /*
5195 * Free resources / clean up outstanding I/Os
5196 * associated with nlp_rpi in the LPFC_NODELIST entry.
5197 */
5198 static int
lpfc_no_rpi(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp)5199 lpfc_no_rpi(struct lpfc_hba *phba, struct lpfc_nodelist *ndlp)
5200 {
5201 LIST_HEAD(completions);
5202
5203 lpfc_fabric_abort_nport(ndlp);
5204
5205 /*
5206 * Everything that matches on txcmplq will be returned
5207 * by firmware with a no rpi error.
5208 */
5209 if (ndlp->nlp_flag & NLP_RPI_REGISTERED) {
5210 if (phba->sli_rev != LPFC_SLI_REV4)
5211 lpfc_sli3_dequeue_nport_iocbs(phba, ndlp, &completions);
5212 else
5213 lpfc_sli4_dequeue_nport_iocbs(phba, ndlp, &completions);
5214 }
5215
5216 /* Cancel all the IOCBs from the completions list */
5217 lpfc_sli_cancel_iocbs(phba, &completions, IOSTAT_LOCAL_REJECT,
5218 IOERR_SLI_ABORTED);
5219
5220 return 0;
5221 }
5222
5223 /**
5224 * lpfc_nlp_logo_unreg - Unreg mailbox completion handler before LOGO
5225 * @phba: Pointer to HBA context object.
5226 * @pmb: Pointer to mailbox object.
5227 *
5228 * This function will issue an ELS LOGO command after completing
5229 * the UNREG_RPI.
5230 **/
5231 static void
lpfc_nlp_logo_unreg(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)5232 lpfc_nlp_logo_unreg(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
5233 {
5234 struct lpfc_vport *vport = pmb->vport;
5235 struct lpfc_nodelist *ndlp;
5236
5237 ndlp = (struct lpfc_nodelist *)(pmb->ctx_ndlp);
5238 if (!ndlp)
5239 return;
5240 lpfc_issue_els_logo(vport, ndlp, 0);
5241
5242 /* Check to see if there are any deferred events to process */
5243 if ((ndlp->nlp_flag & NLP_UNREG_INP) &&
5244 (ndlp->nlp_defer_did != NLP_EVT_NOTHING_PENDING)) {
5245 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
5246 "1434 UNREG cmpl deferred logo x%x "
5247 "on NPort x%x Data: x%x x%px\n",
5248 ndlp->nlp_rpi, ndlp->nlp_DID,
5249 ndlp->nlp_defer_did, ndlp);
5250
5251 ndlp->nlp_flag &= ~NLP_UNREG_INP;
5252 ndlp->nlp_defer_did = NLP_EVT_NOTHING_PENDING;
5253 lpfc_issue_els_plogi(vport, ndlp->nlp_DID, 0);
5254 } else {
5255 /* NLP_RELEASE_RPI is only set for SLI4 ports. */
5256 if (ndlp->nlp_flag & NLP_RELEASE_RPI) {
5257 lpfc_sli4_free_rpi(vport->phba, ndlp->nlp_rpi);
5258 spin_lock_irq(&ndlp->lock);
5259 ndlp->nlp_flag &= ~NLP_RELEASE_RPI;
5260 ndlp->nlp_rpi = LPFC_RPI_ALLOC_ERROR;
5261 spin_unlock_irq(&ndlp->lock);
5262 }
5263 spin_lock_irq(&ndlp->lock);
5264 ndlp->nlp_flag &= ~NLP_UNREG_INP;
5265 spin_unlock_irq(&ndlp->lock);
5266 }
5267
5268 /* The node has an outstanding reference for the unreg. Now
5269 * that the LOGO action and cleanup are finished, release
5270 * resources.
5271 */
5272 lpfc_nlp_put(ndlp);
5273 mempool_free(pmb, phba->mbox_mem_pool);
5274 }
5275
5276 /*
5277 * Sets the mailbox completion handler to be used for the
5278 * unreg_rpi command. The handler varies based on the state of
5279 * the port and what will be happening to the rpi next.
5280 */
5281 static void
lpfc_set_unreg_login_mbx_cmpl(struct lpfc_hba * phba,struct lpfc_vport * vport,struct lpfc_nodelist * ndlp,LPFC_MBOXQ_t * mbox)5282 lpfc_set_unreg_login_mbx_cmpl(struct lpfc_hba *phba, struct lpfc_vport *vport,
5283 struct lpfc_nodelist *ndlp, LPFC_MBOXQ_t *mbox)
5284 {
5285 unsigned long iflags;
5286
5287 /* Driver always gets a reference on the mailbox job
5288 * in support of async jobs.
5289 */
5290 mbox->ctx_ndlp = lpfc_nlp_get(ndlp);
5291 if (!mbox->ctx_ndlp)
5292 return;
5293
5294 if (ndlp->nlp_flag & NLP_ISSUE_LOGO) {
5295 mbox->mbox_cmpl = lpfc_nlp_logo_unreg;
5296
5297 } else if (phba->sli_rev == LPFC_SLI_REV4 &&
5298 (!(vport->load_flag & FC_UNLOADING)) &&
5299 (bf_get(lpfc_sli_intf_if_type, &phba->sli4_hba.sli_intf) >=
5300 LPFC_SLI_INTF_IF_TYPE_2) &&
5301 (kref_read(&ndlp->kref) > 0)) {
5302 mbox->mbox_cmpl = lpfc_sli4_unreg_rpi_cmpl_clr;
5303 } else {
5304 if (vport->load_flag & FC_UNLOADING) {
5305 if (phba->sli_rev == LPFC_SLI_REV4) {
5306 spin_lock_irqsave(&ndlp->lock, iflags);
5307 ndlp->nlp_flag |= NLP_RELEASE_RPI;
5308 spin_unlock_irqrestore(&ndlp->lock, iflags);
5309 }
5310 }
5311 mbox->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
5312 }
5313 }
5314
5315 /*
5316 * Free rpi associated with LPFC_NODELIST entry.
5317 * This routine is called from lpfc_freenode(), when we are removing
5318 * a LPFC_NODELIST entry. It is also called if the driver initiates a
5319 * LOGO that completes successfully, and we are waiting to PLOGI back
5320 * to the remote NPort. In addition, it is called after we receive
5321 * and unsolicated ELS cmd, send back a rsp, the rsp completes and
5322 * we are waiting to PLOGI back to the remote NPort.
5323 */
5324 int
lpfc_unreg_rpi(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)5325 lpfc_unreg_rpi(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
5326 {
5327 struct lpfc_hba *phba = vport->phba;
5328 LPFC_MBOXQ_t *mbox;
5329 int rc, acc_plogi = 1;
5330 uint16_t rpi;
5331
5332 if (ndlp->nlp_flag & NLP_RPI_REGISTERED ||
5333 ndlp->nlp_flag & NLP_REG_LOGIN_SEND) {
5334 if (ndlp->nlp_flag & NLP_REG_LOGIN_SEND)
5335 lpfc_printf_vlog(vport, KERN_INFO,
5336 LOG_NODE | LOG_DISCOVERY,
5337 "3366 RPI x%x needs to be "
5338 "unregistered nlp_flag x%x "
5339 "did x%x\n",
5340 ndlp->nlp_rpi, ndlp->nlp_flag,
5341 ndlp->nlp_DID);
5342
5343 /* If there is already an UNREG in progress for this ndlp,
5344 * no need to queue up another one.
5345 */
5346 if (ndlp->nlp_flag & NLP_UNREG_INP) {
5347 lpfc_printf_vlog(vport, KERN_INFO,
5348 LOG_NODE | LOG_DISCOVERY,
5349 "1436 unreg_rpi SKIP UNREG x%x on "
5350 "NPort x%x deferred x%x flg x%x "
5351 "Data: x%px\n",
5352 ndlp->nlp_rpi, ndlp->nlp_DID,
5353 ndlp->nlp_defer_did,
5354 ndlp->nlp_flag, ndlp);
5355 goto out;
5356 }
5357
5358 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
5359 if (mbox) {
5360 /* SLI4 ports require the physical rpi value. */
5361 rpi = ndlp->nlp_rpi;
5362 if (phba->sli_rev == LPFC_SLI_REV4)
5363 rpi = phba->sli4_hba.rpi_ids[ndlp->nlp_rpi];
5364
5365 lpfc_unreg_login(phba, vport->vpi, rpi, mbox);
5366 mbox->vport = vport;
5367 lpfc_set_unreg_login_mbx_cmpl(phba, vport, ndlp, mbox);
5368 if (!mbox->ctx_ndlp) {
5369 mempool_free(mbox, phba->mbox_mem_pool);
5370 return 1;
5371 }
5372
5373 if (mbox->mbox_cmpl == lpfc_sli4_unreg_rpi_cmpl_clr)
5374 /*
5375 * accept PLOGIs after unreg_rpi_cmpl
5376 */
5377 acc_plogi = 0;
5378 if (((ndlp->nlp_DID & Fabric_DID_MASK) !=
5379 Fabric_DID_MASK) &&
5380 (!(vport->fc_flag & FC_OFFLINE_MODE)))
5381 ndlp->nlp_flag |= NLP_UNREG_INP;
5382
5383 lpfc_printf_vlog(vport, KERN_INFO,
5384 LOG_NODE | LOG_DISCOVERY,
5385 "1433 unreg_rpi UNREG x%x on "
5386 "NPort x%x deferred flg x%x "
5387 "Data:x%px\n",
5388 ndlp->nlp_rpi, ndlp->nlp_DID,
5389 ndlp->nlp_flag, ndlp);
5390
5391 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT);
5392 if (rc == MBX_NOT_FINISHED) {
5393 ndlp->nlp_flag &= ~NLP_UNREG_INP;
5394 mempool_free(mbox, phba->mbox_mem_pool);
5395 acc_plogi = 1;
5396 lpfc_nlp_put(ndlp);
5397 }
5398 } else {
5399 lpfc_printf_vlog(vport, KERN_INFO,
5400 LOG_NODE | LOG_DISCOVERY,
5401 "1444 Failed to allocate mempool "
5402 "unreg_rpi UNREG x%x, "
5403 "DID x%x, flag x%x, "
5404 "ndlp x%px\n",
5405 ndlp->nlp_rpi, ndlp->nlp_DID,
5406 ndlp->nlp_flag, ndlp);
5407
5408 /* Because mempool_alloc failed, we
5409 * will issue a LOGO here and keep the rpi alive if
5410 * not unloading.
5411 */
5412 if (!(vport->load_flag & FC_UNLOADING)) {
5413 ndlp->nlp_flag &= ~NLP_UNREG_INP;
5414 lpfc_issue_els_logo(vport, ndlp, 0);
5415 ndlp->nlp_prev_state = ndlp->nlp_state;
5416 lpfc_nlp_set_state(vport, ndlp,
5417 NLP_STE_NPR_NODE);
5418 }
5419
5420 return 1;
5421 }
5422 lpfc_no_rpi(phba, ndlp);
5423 out:
5424 if (phba->sli_rev != LPFC_SLI_REV4)
5425 ndlp->nlp_rpi = 0;
5426 ndlp->nlp_flag &= ~NLP_RPI_REGISTERED;
5427 ndlp->nlp_flag &= ~NLP_NPR_ADISC;
5428 if (acc_plogi)
5429 ndlp->nlp_flag &= ~NLP_LOGO_ACC;
5430 return 1;
5431 }
5432 ndlp->nlp_flag &= ~NLP_LOGO_ACC;
5433 return 0;
5434 }
5435
5436 /**
5437 * lpfc_unreg_hba_rpis - Unregister rpis registered to the hba.
5438 * @phba: pointer to lpfc hba data structure.
5439 *
5440 * This routine is invoked to unregister all the currently registered RPIs
5441 * to the HBA.
5442 **/
5443 void
lpfc_unreg_hba_rpis(struct lpfc_hba * phba)5444 lpfc_unreg_hba_rpis(struct lpfc_hba *phba)
5445 {
5446 struct lpfc_vport **vports;
5447 struct lpfc_nodelist *ndlp;
5448 struct Scsi_Host *shost;
5449 int i;
5450
5451 vports = lpfc_create_vport_work_array(phba);
5452 if (!vports) {
5453 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
5454 "2884 Vport array allocation failed \n");
5455 return;
5456 }
5457 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
5458 shost = lpfc_shost_from_vport(vports[i]);
5459 spin_lock_irq(shost->host_lock);
5460 list_for_each_entry(ndlp, &vports[i]->fc_nodes, nlp_listp) {
5461 if (ndlp->nlp_flag & NLP_RPI_REGISTERED) {
5462 /* The mempool_alloc might sleep */
5463 spin_unlock_irq(shost->host_lock);
5464 lpfc_unreg_rpi(vports[i], ndlp);
5465 spin_lock_irq(shost->host_lock);
5466 }
5467 }
5468 spin_unlock_irq(shost->host_lock);
5469 }
5470 lpfc_destroy_vport_work_array(phba, vports);
5471 }
5472
5473 void
lpfc_unreg_all_rpis(struct lpfc_vport * vport)5474 lpfc_unreg_all_rpis(struct lpfc_vport *vport)
5475 {
5476 struct lpfc_hba *phba = vport->phba;
5477 LPFC_MBOXQ_t *mbox;
5478 int rc;
5479
5480 if (phba->sli_rev == LPFC_SLI_REV4) {
5481 lpfc_sli4_unreg_all_rpis(vport);
5482 return;
5483 }
5484
5485 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
5486 if (mbox) {
5487 lpfc_unreg_login(phba, vport->vpi, LPFC_UNREG_ALL_RPIS_VPORT,
5488 mbox);
5489 mbox->vport = vport;
5490 mbox->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
5491 mbox->ctx_ndlp = NULL;
5492 rc = lpfc_sli_issue_mbox_wait(phba, mbox, LPFC_MBOX_TMO);
5493 if (rc != MBX_TIMEOUT)
5494 mempool_free(mbox, phba->mbox_mem_pool);
5495
5496 if ((rc == MBX_TIMEOUT) || (rc == MBX_NOT_FINISHED))
5497 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
5498 "1836 Could not issue "
5499 "unreg_login(all_rpis) status %d\n",
5500 rc);
5501 }
5502 }
5503
5504 void
lpfc_unreg_default_rpis(struct lpfc_vport * vport)5505 lpfc_unreg_default_rpis(struct lpfc_vport *vport)
5506 {
5507 struct lpfc_hba *phba = vport->phba;
5508 LPFC_MBOXQ_t *mbox;
5509 int rc;
5510
5511 /* Unreg DID is an SLI3 operation. */
5512 if (phba->sli_rev > LPFC_SLI_REV3)
5513 return;
5514
5515 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
5516 if (mbox) {
5517 lpfc_unreg_did(phba, vport->vpi, LPFC_UNREG_ALL_DFLT_RPIS,
5518 mbox);
5519 mbox->vport = vport;
5520 mbox->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
5521 mbox->ctx_ndlp = NULL;
5522 rc = lpfc_sli_issue_mbox_wait(phba, mbox, LPFC_MBOX_TMO);
5523 if (rc != MBX_TIMEOUT)
5524 mempool_free(mbox, phba->mbox_mem_pool);
5525
5526 if ((rc == MBX_TIMEOUT) || (rc == MBX_NOT_FINISHED))
5527 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
5528 "1815 Could not issue "
5529 "unreg_did (default rpis) status %d\n",
5530 rc);
5531 }
5532 }
5533
5534 /*
5535 * Free resources associated with LPFC_NODELIST entry
5536 * so it can be freed.
5537 */
5538 static int
lpfc_cleanup_node(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)5539 lpfc_cleanup_node(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
5540 {
5541 struct lpfc_hba *phba = vport->phba;
5542 LPFC_MBOXQ_t *mb, *nextmb;
5543
5544 /* Cleanup node for NPort <nlp_DID> */
5545 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
5546 "0900 Cleanup node for NPort x%x "
5547 "Data: x%x x%x x%x\n",
5548 ndlp->nlp_DID, ndlp->nlp_flag,
5549 ndlp->nlp_state, ndlp->nlp_rpi);
5550 lpfc_dequeue_node(vport, ndlp);
5551
5552 /* Don't need to clean up REG_LOGIN64 cmds for Default RPI cleanup */
5553
5554 /* cleanup any ndlp on mbox q waiting for reglogin cmpl */
5555 if ((mb = phba->sli.mbox_active)) {
5556 if ((mb->u.mb.mbxCommand == MBX_REG_LOGIN64) &&
5557 !(mb->mbox_flag & LPFC_MBX_IMED_UNREG) &&
5558 (ndlp == (struct lpfc_nodelist *)mb->ctx_ndlp)) {
5559 mb->ctx_ndlp = NULL;
5560 mb->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
5561 }
5562 }
5563
5564 spin_lock_irq(&phba->hbalock);
5565 /* Cleanup REG_LOGIN completions which are not yet processed */
5566 list_for_each_entry(mb, &phba->sli.mboxq_cmpl, list) {
5567 if ((mb->u.mb.mbxCommand != MBX_REG_LOGIN64) ||
5568 (mb->mbox_flag & LPFC_MBX_IMED_UNREG) ||
5569 (ndlp != (struct lpfc_nodelist *)mb->ctx_ndlp))
5570 continue;
5571
5572 mb->ctx_ndlp = NULL;
5573 mb->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
5574 }
5575
5576 list_for_each_entry_safe(mb, nextmb, &phba->sli.mboxq, list) {
5577 if ((mb->u.mb.mbxCommand == MBX_REG_LOGIN64) &&
5578 !(mb->mbox_flag & LPFC_MBX_IMED_UNREG) &&
5579 (ndlp == (struct lpfc_nodelist *)mb->ctx_ndlp)) {
5580 list_del(&mb->list);
5581 lpfc_mbox_rsrc_cleanup(phba, mb, MBOX_THD_LOCKED);
5582
5583 /* Don't invoke lpfc_nlp_put. The driver is in
5584 * lpfc_nlp_release context.
5585 */
5586 }
5587 }
5588 spin_unlock_irq(&phba->hbalock);
5589
5590 lpfc_els_abort(phba, ndlp);
5591
5592 spin_lock_irq(&ndlp->lock);
5593 ndlp->nlp_flag &= ~NLP_DELAY_TMO;
5594 spin_unlock_irq(&ndlp->lock);
5595
5596 ndlp->nlp_last_elscmd = 0;
5597 del_timer_sync(&ndlp->nlp_delayfunc);
5598
5599 list_del_init(&ndlp->els_retry_evt.evt_listp);
5600 list_del_init(&ndlp->dev_loss_evt.evt_listp);
5601 list_del_init(&ndlp->recovery_evt.evt_listp);
5602 lpfc_cleanup_vports_rrqs(vport, ndlp);
5603
5604 if (phba->sli_rev == LPFC_SLI_REV4)
5605 ndlp->nlp_flag |= NLP_RELEASE_RPI;
5606
5607 return 0;
5608 }
5609
5610 static int
lpfc_matchdid(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp,uint32_t did)5611 lpfc_matchdid(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
5612 uint32_t did)
5613 {
5614 D_ID mydid, ndlpdid, matchdid;
5615
5616 if (did == Bcast_DID)
5617 return 0;
5618
5619 /* First check for Direct match */
5620 if (ndlp->nlp_DID == did)
5621 return 1;
5622
5623 /* Next check for area/domain identically equals 0 match */
5624 mydid.un.word = vport->fc_myDID;
5625 if ((mydid.un.b.domain == 0) && (mydid.un.b.area == 0)) {
5626 return 0;
5627 }
5628
5629 matchdid.un.word = did;
5630 ndlpdid.un.word = ndlp->nlp_DID;
5631 if (matchdid.un.b.id == ndlpdid.un.b.id) {
5632 if ((mydid.un.b.domain == matchdid.un.b.domain) &&
5633 (mydid.un.b.area == matchdid.un.b.area)) {
5634 /* This code is supposed to match the ID
5635 * for a private loop device that is
5636 * connect to fl_port. But we need to
5637 * check that the port did not just go
5638 * from pt2pt to fabric or we could end
5639 * up matching ndlp->nlp_DID 000001 to
5640 * fabric DID 0x20101
5641 */
5642 if ((ndlpdid.un.b.domain == 0) &&
5643 (ndlpdid.un.b.area == 0)) {
5644 if (ndlpdid.un.b.id &&
5645 vport->phba->fc_topology ==
5646 LPFC_TOPOLOGY_LOOP)
5647 return 1;
5648 }
5649 return 0;
5650 }
5651
5652 matchdid.un.word = ndlp->nlp_DID;
5653 if ((mydid.un.b.domain == ndlpdid.un.b.domain) &&
5654 (mydid.un.b.area == ndlpdid.un.b.area)) {
5655 if ((matchdid.un.b.domain == 0) &&
5656 (matchdid.un.b.area == 0)) {
5657 if (matchdid.un.b.id)
5658 return 1;
5659 }
5660 }
5661 }
5662 return 0;
5663 }
5664
5665 /* Search for a nodelist entry */
5666 static struct lpfc_nodelist *
__lpfc_findnode_did(struct lpfc_vport * vport,uint32_t did)5667 __lpfc_findnode_did(struct lpfc_vport *vport, uint32_t did)
5668 {
5669 struct lpfc_nodelist *ndlp;
5670 uint32_t data1;
5671
5672 list_for_each_entry(ndlp, &vport->fc_nodes, nlp_listp) {
5673 if (lpfc_matchdid(vport, ndlp, did)) {
5674 data1 = (((uint32_t)ndlp->nlp_state << 24) |
5675 ((uint32_t)ndlp->nlp_xri << 16) |
5676 ((uint32_t)ndlp->nlp_type << 8)
5677 );
5678 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
5679 "0929 FIND node DID "
5680 "Data: x%px x%x x%x x%x x%x x%px\n",
5681 ndlp, ndlp->nlp_DID,
5682 ndlp->nlp_flag, data1, ndlp->nlp_rpi,
5683 ndlp->active_rrqs_xri_bitmap);
5684 return ndlp;
5685 }
5686 }
5687
5688 /* FIND node did <did> NOT FOUND */
5689 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
5690 "0932 FIND node did x%x NOT FOUND.\n", did);
5691 return NULL;
5692 }
5693
5694 struct lpfc_nodelist *
lpfc_findnode_did(struct lpfc_vport * vport,uint32_t did)5695 lpfc_findnode_did(struct lpfc_vport *vport, uint32_t did)
5696 {
5697 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
5698 struct lpfc_nodelist *ndlp;
5699 unsigned long iflags;
5700
5701 spin_lock_irqsave(shost->host_lock, iflags);
5702 ndlp = __lpfc_findnode_did(vport, did);
5703 spin_unlock_irqrestore(shost->host_lock, iflags);
5704 return ndlp;
5705 }
5706
5707 struct lpfc_nodelist *
lpfc_findnode_mapped(struct lpfc_vport * vport)5708 lpfc_findnode_mapped(struct lpfc_vport *vport)
5709 {
5710 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
5711 struct lpfc_nodelist *ndlp;
5712 uint32_t data1;
5713 unsigned long iflags;
5714
5715 spin_lock_irqsave(shost->host_lock, iflags);
5716
5717 list_for_each_entry(ndlp, &vport->fc_nodes, nlp_listp) {
5718 if (ndlp->nlp_state == NLP_STE_UNMAPPED_NODE ||
5719 ndlp->nlp_state == NLP_STE_MAPPED_NODE) {
5720 data1 = (((uint32_t)ndlp->nlp_state << 24) |
5721 ((uint32_t)ndlp->nlp_xri << 16) |
5722 ((uint32_t)ndlp->nlp_type << 8) |
5723 ((uint32_t)ndlp->nlp_rpi & 0xff));
5724 spin_unlock_irqrestore(shost->host_lock, iflags);
5725 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
5726 "2025 FIND node DID "
5727 "Data: x%px x%x x%x x%x x%px\n",
5728 ndlp, ndlp->nlp_DID,
5729 ndlp->nlp_flag, data1,
5730 ndlp->active_rrqs_xri_bitmap);
5731 return ndlp;
5732 }
5733 }
5734 spin_unlock_irqrestore(shost->host_lock, iflags);
5735
5736 /* FIND node did <did> NOT FOUND */
5737 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
5738 "2026 FIND mapped did NOT FOUND.\n");
5739 return NULL;
5740 }
5741
5742 struct lpfc_nodelist *
lpfc_setup_disc_node(struct lpfc_vport * vport,uint32_t did)5743 lpfc_setup_disc_node(struct lpfc_vport *vport, uint32_t did)
5744 {
5745 struct lpfc_nodelist *ndlp;
5746
5747 ndlp = lpfc_findnode_did(vport, did);
5748 if (!ndlp) {
5749 if (vport->phba->nvmet_support)
5750 return NULL;
5751 if ((vport->fc_flag & FC_RSCN_MODE) != 0 &&
5752 lpfc_rscn_payload_check(vport, did) == 0)
5753 return NULL;
5754 ndlp = lpfc_nlp_init(vport, did);
5755 if (!ndlp)
5756 return NULL;
5757 lpfc_nlp_set_state(vport, ndlp, NLP_STE_NPR_NODE);
5758
5759 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
5760 "6453 Setup New Node 2B_DISC x%x "
5761 "Data:x%x x%x x%x\n",
5762 ndlp->nlp_DID, ndlp->nlp_flag,
5763 ndlp->nlp_state, vport->fc_flag);
5764
5765 spin_lock_irq(&ndlp->lock);
5766 ndlp->nlp_flag |= NLP_NPR_2B_DISC;
5767 spin_unlock_irq(&ndlp->lock);
5768 return ndlp;
5769 }
5770
5771 /* The NVME Target does not want to actively manage an rport.
5772 * The goal is to allow the target to reset its state and clear
5773 * pending IO in preparation for the initiator to recover.
5774 */
5775 if ((vport->fc_flag & FC_RSCN_MODE) &&
5776 !(vport->fc_flag & FC_NDISC_ACTIVE)) {
5777 if (lpfc_rscn_payload_check(vport, did)) {
5778
5779 /* Since this node is marked for discovery,
5780 * delay timeout is not needed.
5781 */
5782 lpfc_cancel_retry_delay_tmo(vport, ndlp);
5783
5784 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
5785 "6455 Setup RSCN Node 2B_DISC x%x "
5786 "Data:x%x x%x x%x\n",
5787 ndlp->nlp_DID, ndlp->nlp_flag,
5788 ndlp->nlp_state, vport->fc_flag);
5789
5790 /* NVME Target mode waits until rport is known to be
5791 * impacted by the RSCN before it transitions. No
5792 * active management - just go to NPR provided the
5793 * node had a valid login.
5794 */
5795 if (vport->phba->nvmet_support)
5796 return ndlp;
5797
5798 /* If we've already received a PLOGI from this NPort
5799 * we don't need to try to discover it again.
5800 */
5801 if (ndlp->nlp_flag & NLP_RCV_PLOGI &&
5802 !(ndlp->nlp_type &
5803 (NLP_FCP_TARGET | NLP_NVME_TARGET)))
5804 return NULL;
5805
5806 ndlp->nlp_prev_state = ndlp->nlp_state;
5807 lpfc_nlp_set_state(vport, ndlp, NLP_STE_NPR_NODE);
5808
5809 spin_lock_irq(&ndlp->lock);
5810 ndlp->nlp_flag |= NLP_NPR_2B_DISC;
5811 spin_unlock_irq(&ndlp->lock);
5812 } else {
5813 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
5814 "6456 Skip Setup RSCN Node x%x "
5815 "Data:x%x x%x x%x\n",
5816 ndlp->nlp_DID, ndlp->nlp_flag,
5817 ndlp->nlp_state, vport->fc_flag);
5818 ndlp = NULL;
5819 }
5820 } else {
5821 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
5822 "6457 Setup Active Node 2B_DISC x%x "
5823 "Data:x%x x%x x%x\n",
5824 ndlp->nlp_DID, ndlp->nlp_flag,
5825 ndlp->nlp_state, vport->fc_flag);
5826
5827 /* If the initiator received a PLOGI from this NPort or if the
5828 * initiator is already in the process of discovery on it,
5829 * there's no need to try to discover it again.
5830 */
5831 if (ndlp->nlp_state == NLP_STE_ADISC_ISSUE ||
5832 ndlp->nlp_state == NLP_STE_PLOGI_ISSUE ||
5833 (!vport->phba->nvmet_support &&
5834 ndlp->nlp_flag & NLP_RCV_PLOGI))
5835 return NULL;
5836
5837 if (vport->phba->nvmet_support)
5838 return ndlp;
5839
5840 /* Moving to NPR state clears unsolicited flags and
5841 * allows for rediscovery
5842 */
5843 lpfc_nlp_set_state(vport, ndlp, NLP_STE_NPR_NODE);
5844
5845 spin_lock_irq(&ndlp->lock);
5846 ndlp->nlp_flag |= NLP_NPR_2B_DISC;
5847 spin_unlock_irq(&ndlp->lock);
5848 }
5849 return ndlp;
5850 }
5851
5852 /* Build a list of nodes to discover based on the loopmap */
5853 void
lpfc_disc_list_loopmap(struct lpfc_vport * vport)5854 lpfc_disc_list_loopmap(struct lpfc_vport *vport)
5855 {
5856 struct lpfc_hba *phba = vport->phba;
5857 int j;
5858 uint32_t alpa, index;
5859
5860 if (!lpfc_is_link_up(phba))
5861 return;
5862
5863 if (phba->fc_topology != LPFC_TOPOLOGY_LOOP)
5864 return;
5865
5866 /* Check for loop map present or not */
5867 if (phba->alpa_map[0]) {
5868 for (j = 1; j <= phba->alpa_map[0]; j++) {
5869 alpa = phba->alpa_map[j];
5870 if (((vport->fc_myDID & 0xff) == alpa) || (alpa == 0))
5871 continue;
5872 lpfc_setup_disc_node(vport, alpa);
5873 }
5874 } else {
5875 /* No alpamap, so try all alpa's */
5876 for (j = 0; j < FC_MAXLOOP; j++) {
5877 /* If cfg_scan_down is set, start from highest
5878 * ALPA (0xef) to lowest (0x1).
5879 */
5880 if (vport->cfg_scan_down)
5881 index = j;
5882 else
5883 index = FC_MAXLOOP - j - 1;
5884 alpa = lpfcAlpaArray[index];
5885 if ((vport->fc_myDID & 0xff) == alpa)
5886 continue;
5887 lpfc_setup_disc_node(vport, alpa);
5888 }
5889 }
5890 return;
5891 }
5892
5893 /* SLI3 only */
5894 void
lpfc_issue_clear_la(struct lpfc_hba * phba,struct lpfc_vport * vport)5895 lpfc_issue_clear_la(struct lpfc_hba *phba, struct lpfc_vport *vport)
5896 {
5897 LPFC_MBOXQ_t *mbox;
5898 struct lpfc_sli *psli = &phba->sli;
5899 struct lpfc_sli_ring *extra_ring = &psli->sli3_ring[LPFC_EXTRA_RING];
5900 struct lpfc_sli_ring *fcp_ring = &psli->sli3_ring[LPFC_FCP_RING];
5901 int rc;
5902
5903 /*
5904 * if it's not a physical port or if we already send
5905 * clear_la then don't send it.
5906 */
5907 if ((phba->link_state >= LPFC_CLEAR_LA) ||
5908 (vport->port_type != LPFC_PHYSICAL_PORT) ||
5909 (phba->sli_rev == LPFC_SLI_REV4))
5910 return;
5911
5912 /* Link up discovery */
5913 if ((mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL)) != NULL) {
5914 phba->link_state = LPFC_CLEAR_LA;
5915 lpfc_clear_la(phba, mbox);
5916 mbox->mbox_cmpl = lpfc_mbx_cmpl_clear_la;
5917 mbox->vport = vport;
5918 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT);
5919 if (rc == MBX_NOT_FINISHED) {
5920 mempool_free(mbox, phba->mbox_mem_pool);
5921 lpfc_disc_flush_list(vport);
5922 extra_ring->flag &= ~LPFC_STOP_IOCB_EVENT;
5923 fcp_ring->flag &= ~LPFC_STOP_IOCB_EVENT;
5924 phba->link_state = LPFC_HBA_ERROR;
5925 }
5926 }
5927 }
5928
5929 /* Reg_vpi to tell firmware to resume normal operations */
5930 void
lpfc_issue_reg_vpi(struct lpfc_hba * phba,struct lpfc_vport * vport)5931 lpfc_issue_reg_vpi(struct lpfc_hba *phba, struct lpfc_vport *vport)
5932 {
5933 LPFC_MBOXQ_t *regvpimbox;
5934
5935 regvpimbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
5936 if (regvpimbox) {
5937 lpfc_reg_vpi(vport, regvpimbox);
5938 regvpimbox->mbox_cmpl = lpfc_mbx_cmpl_reg_vpi;
5939 regvpimbox->vport = vport;
5940 if (lpfc_sli_issue_mbox(phba, regvpimbox, MBX_NOWAIT)
5941 == MBX_NOT_FINISHED) {
5942 mempool_free(regvpimbox, phba->mbox_mem_pool);
5943 }
5944 }
5945 }
5946
5947 /* Start Link up / RSCN discovery on NPR nodes */
5948 void
lpfc_disc_start(struct lpfc_vport * vport)5949 lpfc_disc_start(struct lpfc_vport *vport)
5950 {
5951 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
5952 struct lpfc_hba *phba = vport->phba;
5953 uint32_t num_sent;
5954 uint32_t clear_la_pending;
5955
5956 if (!lpfc_is_link_up(phba)) {
5957 lpfc_printf_vlog(vport, KERN_INFO, LOG_SLI,
5958 "3315 Link is not up %x\n",
5959 phba->link_state);
5960 return;
5961 }
5962
5963 if (phba->link_state == LPFC_CLEAR_LA)
5964 clear_la_pending = 1;
5965 else
5966 clear_la_pending = 0;
5967
5968 if (vport->port_state < LPFC_VPORT_READY)
5969 vport->port_state = LPFC_DISC_AUTH;
5970
5971 lpfc_set_disctmo(vport);
5972
5973 vport->fc_prevDID = vport->fc_myDID;
5974 vport->num_disc_nodes = 0;
5975
5976 /* Start Discovery state <hba_state> */
5977 lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
5978 "0202 Start Discovery port state x%x "
5979 "flg x%x Data: x%x x%x x%x\n",
5980 vport->port_state, vport->fc_flag, vport->fc_plogi_cnt,
5981 vport->fc_adisc_cnt, vport->fc_npr_cnt);
5982
5983 /* First do ADISCs - if any */
5984 num_sent = lpfc_els_disc_adisc(vport);
5985
5986 if (num_sent)
5987 return;
5988
5989 /* Register the VPI for SLI3, NPIV only. */
5990 if ((phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) &&
5991 !(vport->fc_flag & FC_PT2PT) &&
5992 !(vport->fc_flag & FC_RSCN_MODE) &&
5993 (phba->sli_rev < LPFC_SLI_REV4)) {
5994 lpfc_issue_clear_la(phba, vport);
5995 lpfc_issue_reg_vpi(phba, vport);
5996 return;
5997 }
5998
5999 /*
6000 * For SLI2, we need to set port_state to READY and continue
6001 * discovery.
6002 */
6003 if (vport->port_state < LPFC_VPORT_READY && !clear_la_pending) {
6004 /* If we get here, there is nothing to ADISC */
6005 lpfc_issue_clear_la(phba, vport);
6006
6007 if (!(vport->fc_flag & FC_ABORT_DISCOVERY)) {
6008 vport->num_disc_nodes = 0;
6009 /* go thru NPR nodes and issue ELS PLOGIs */
6010 if (vport->fc_npr_cnt)
6011 lpfc_els_disc_plogi(vport);
6012
6013 if (!vport->num_disc_nodes) {
6014 spin_lock_irq(shost->host_lock);
6015 vport->fc_flag &= ~FC_NDISC_ACTIVE;
6016 spin_unlock_irq(shost->host_lock);
6017 lpfc_can_disctmo(vport);
6018 }
6019 }
6020 vport->port_state = LPFC_VPORT_READY;
6021 } else {
6022 /* Next do PLOGIs - if any */
6023 num_sent = lpfc_els_disc_plogi(vport);
6024
6025 if (num_sent)
6026 return;
6027
6028 if (vport->fc_flag & FC_RSCN_MODE) {
6029 /* Check to see if more RSCNs came in while we
6030 * were processing this one.
6031 */
6032 if ((vport->fc_rscn_id_cnt == 0) &&
6033 (!(vport->fc_flag & FC_RSCN_DISCOVERY))) {
6034 spin_lock_irq(shost->host_lock);
6035 vport->fc_flag &= ~FC_RSCN_MODE;
6036 spin_unlock_irq(shost->host_lock);
6037 lpfc_can_disctmo(vport);
6038 } else
6039 lpfc_els_handle_rscn(vport);
6040 }
6041 }
6042 return;
6043 }
6044
6045 /*
6046 * Ignore completion for all IOCBs on tx and txcmpl queue for ELS
6047 * ring the match the sppecified nodelist.
6048 */
6049 static void
lpfc_free_tx(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp)6050 lpfc_free_tx(struct lpfc_hba *phba, struct lpfc_nodelist *ndlp)
6051 {
6052 LIST_HEAD(completions);
6053 struct lpfc_iocbq *iocb, *next_iocb;
6054 struct lpfc_sli_ring *pring;
6055 u32 ulp_command;
6056
6057 pring = lpfc_phba_elsring(phba);
6058 if (unlikely(!pring))
6059 return;
6060
6061 /* Error matching iocb on txq or txcmplq
6062 * First check the txq.
6063 */
6064 spin_lock_irq(&phba->hbalock);
6065 list_for_each_entry_safe(iocb, next_iocb, &pring->txq, list) {
6066 if (iocb->ndlp != ndlp)
6067 continue;
6068
6069 ulp_command = get_job_cmnd(phba, iocb);
6070
6071 if (ulp_command == CMD_ELS_REQUEST64_CR ||
6072 ulp_command == CMD_XMIT_ELS_RSP64_CX) {
6073
6074 list_move_tail(&iocb->list, &completions);
6075 }
6076 }
6077
6078 /* Next check the txcmplq */
6079 list_for_each_entry_safe(iocb, next_iocb, &pring->txcmplq, list) {
6080 if (iocb->ndlp != ndlp)
6081 continue;
6082
6083 ulp_command = get_job_cmnd(phba, iocb);
6084
6085 if (ulp_command == CMD_ELS_REQUEST64_CR ||
6086 ulp_command == CMD_XMIT_ELS_RSP64_CX) {
6087 lpfc_sli_issue_abort_iotag(phba, pring, iocb, NULL);
6088 }
6089 }
6090 spin_unlock_irq(&phba->hbalock);
6091
6092 /* Make sure HBA is alive */
6093 lpfc_issue_hb_tmo(phba);
6094
6095 /* Cancel all the IOCBs from the completions list */
6096 lpfc_sli_cancel_iocbs(phba, &completions, IOSTAT_LOCAL_REJECT,
6097 IOERR_SLI_ABORTED);
6098 }
6099
6100 static void
lpfc_disc_flush_list(struct lpfc_vport * vport)6101 lpfc_disc_flush_list(struct lpfc_vport *vport)
6102 {
6103 struct lpfc_nodelist *ndlp, *next_ndlp;
6104 struct lpfc_hba *phba = vport->phba;
6105
6106 if (vport->fc_plogi_cnt || vport->fc_adisc_cnt) {
6107 list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes,
6108 nlp_listp) {
6109 if (ndlp->nlp_state == NLP_STE_PLOGI_ISSUE ||
6110 ndlp->nlp_state == NLP_STE_ADISC_ISSUE) {
6111 lpfc_free_tx(phba, ndlp);
6112 }
6113 }
6114 }
6115 }
6116
6117 /*
6118 * lpfc_notify_xport_npr - notifies xport of node disappearance
6119 * @vport: Pointer to Virtual Port object.
6120 *
6121 * Transitions all ndlps to NPR state. When lpfc_nlp_set_state
6122 * calls lpfc_nlp_state_cleanup, the ndlp->rport is unregistered
6123 * and transport notified that the node is gone.
6124 * Return Code:
6125 * none
6126 */
6127 static void
lpfc_notify_xport_npr(struct lpfc_vport * vport)6128 lpfc_notify_xport_npr(struct lpfc_vport *vport)
6129 {
6130 struct lpfc_nodelist *ndlp, *next_ndlp;
6131
6132 list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes,
6133 nlp_listp) {
6134 lpfc_nlp_set_state(vport, ndlp, NLP_STE_NPR_NODE);
6135 }
6136 }
6137 void
lpfc_cleanup_discovery_resources(struct lpfc_vport * vport)6138 lpfc_cleanup_discovery_resources(struct lpfc_vport *vport)
6139 {
6140 lpfc_els_flush_rscn(vport);
6141 lpfc_els_flush_cmd(vport);
6142 lpfc_disc_flush_list(vport);
6143 if (pci_channel_offline(vport->phba->pcidev))
6144 lpfc_notify_xport_npr(vport);
6145 }
6146
6147 /*****************************************************************************/
6148 /*
6149 * NAME: lpfc_disc_timeout
6150 *
6151 * FUNCTION: Fibre Channel driver discovery timeout routine.
6152 *
6153 * EXECUTION ENVIRONMENT: interrupt only
6154 *
6155 * CALLED FROM:
6156 * Timer function
6157 *
6158 * RETURNS:
6159 * none
6160 */
6161 /*****************************************************************************/
6162 void
lpfc_disc_timeout(struct timer_list * t)6163 lpfc_disc_timeout(struct timer_list *t)
6164 {
6165 struct lpfc_vport *vport = from_timer(vport, t, fc_disctmo);
6166 struct lpfc_hba *phba = vport->phba;
6167 uint32_t tmo_posted;
6168 unsigned long flags = 0;
6169
6170 if (unlikely(!phba))
6171 return;
6172
6173 spin_lock_irqsave(&vport->work_port_lock, flags);
6174 tmo_posted = vport->work_port_events & WORKER_DISC_TMO;
6175 if (!tmo_posted)
6176 vport->work_port_events |= WORKER_DISC_TMO;
6177 spin_unlock_irqrestore(&vport->work_port_lock, flags);
6178
6179 if (!tmo_posted)
6180 lpfc_worker_wake_up(phba);
6181 return;
6182 }
6183
6184 static void
lpfc_disc_timeout_handler(struct lpfc_vport * vport)6185 lpfc_disc_timeout_handler(struct lpfc_vport *vport)
6186 {
6187 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
6188 struct lpfc_hba *phba = vport->phba;
6189 struct lpfc_sli *psli = &phba->sli;
6190 struct lpfc_nodelist *ndlp, *next_ndlp;
6191 LPFC_MBOXQ_t *initlinkmbox;
6192 int rc, clrlaerr = 0;
6193
6194 if (!(vport->fc_flag & FC_DISC_TMO))
6195 return;
6196
6197 spin_lock_irq(shost->host_lock);
6198 vport->fc_flag &= ~FC_DISC_TMO;
6199 spin_unlock_irq(shost->host_lock);
6200
6201 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_ELS_CMD,
6202 "disc timeout: state:x%x rtry:x%x flg:x%x",
6203 vport->port_state, vport->fc_ns_retry, vport->fc_flag);
6204
6205 switch (vport->port_state) {
6206
6207 case LPFC_LOCAL_CFG_LINK:
6208 /*
6209 * port_state is identically LPFC_LOCAL_CFG_LINK while
6210 * waiting for FAN timeout
6211 */
6212 lpfc_printf_vlog(vport, KERN_WARNING, LOG_DISCOVERY,
6213 "0221 FAN timeout\n");
6214
6215 /* Start discovery by sending FLOGI, clean up old rpis */
6216 list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes,
6217 nlp_listp) {
6218 if (ndlp->nlp_state != NLP_STE_NPR_NODE)
6219 continue;
6220 if (ndlp->nlp_type & NLP_FABRIC) {
6221 /* Clean up the ndlp on Fabric connections */
6222 lpfc_drop_node(vport, ndlp);
6223
6224 } else if (!(ndlp->nlp_flag & NLP_NPR_ADISC)) {
6225 /* Fail outstanding IO now since device
6226 * is marked for PLOGI.
6227 */
6228 lpfc_unreg_rpi(vport, ndlp);
6229 }
6230 }
6231 if (vport->port_state != LPFC_FLOGI) {
6232 if (phba->sli_rev <= LPFC_SLI_REV3)
6233 lpfc_initial_flogi(vport);
6234 else
6235 lpfc_issue_init_vfi(vport);
6236 return;
6237 }
6238 break;
6239
6240 case LPFC_FDISC:
6241 case LPFC_FLOGI:
6242 /* port_state is identically LPFC_FLOGI while waiting for FLOGI cmpl */
6243 /* Initial FLOGI timeout */
6244 lpfc_printf_vlog(vport, KERN_ERR,
6245 LOG_TRACE_EVENT,
6246 "0222 Initial %s timeout\n",
6247 vport->vpi ? "FDISC" : "FLOGI");
6248
6249 /* Assume no Fabric and go on with discovery.
6250 * Check for outstanding ELS FLOGI to abort.
6251 */
6252
6253 /* FLOGI failed, so just use loop map to make discovery list */
6254 lpfc_disc_list_loopmap(vport);
6255
6256 /* Start discovery */
6257 lpfc_disc_start(vport);
6258 break;
6259
6260 case LPFC_FABRIC_CFG_LINK:
6261 /* hba_state is identically LPFC_FABRIC_CFG_LINK while waiting for
6262 NameServer login */
6263 lpfc_printf_vlog(vport, KERN_ERR,
6264 LOG_TRACE_EVENT,
6265 "0223 Timeout while waiting for "
6266 "NameServer login\n");
6267 /* Next look for NameServer ndlp */
6268 ndlp = lpfc_findnode_did(vport, NameServer_DID);
6269 if (ndlp)
6270 lpfc_els_abort(phba, ndlp);
6271
6272 /* ReStart discovery */
6273 goto restart_disc;
6274
6275 case LPFC_NS_QRY:
6276 /* Check for wait for NameServer Rsp timeout */
6277 lpfc_printf_vlog(vport, KERN_ERR,
6278 LOG_TRACE_EVENT,
6279 "0224 NameServer Query timeout "
6280 "Data: x%x x%x\n",
6281 vport->fc_ns_retry, LPFC_MAX_NS_RETRY);
6282
6283 if (vport->fc_ns_retry < LPFC_MAX_NS_RETRY) {
6284 /* Try it one more time */
6285 vport->fc_ns_retry++;
6286 vport->gidft_inp = 0;
6287 rc = lpfc_issue_gidft(vport);
6288 if (rc == 0)
6289 break;
6290 }
6291 vport->fc_ns_retry = 0;
6292
6293 restart_disc:
6294 /*
6295 * Discovery is over.
6296 * set port_state to PORT_READY if SLI2.
6297 * cmpl_reg_vpi will set port_state to READY for SLI3.
6298 */
6299 if (phba->sli_rev < LPFC_SLI_REV4) {
6300 if (phba->sli3_options & LPFC_SLI3_NPIV_ENABLED)
6301 lpfc_issue_reg_vpi(phba, vport);
6302 else {
6303 lpfc_issue_clear_la(phba, vport);
6304 vport->port_state = LPFC_VPORT_READY;
6305 }
6306 }
6307
6308 /* Setup and issue mailbox INITIALIZE LINK command */
6309 initlinkmbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
6310 if (!initlinkmbox) {
6311 lpfc_printf_vlog(vport, KERN_ERR,
6312 LOG_TRACE_EVENT,
6313 "0206 Device Discovery "
6314 "completion error\n");
6315 phba->link_state = LPFC_HBA_ERROR;
6316 break;
6317 }
6318
6319 lpfc_linkdown(phba);
6320 lpfc_init_link(phba, initlinkmbox, phba->cfg_topology,
6321 phba->cfg_link_speed);
6322 initlinkmbox->u.mb.un.varInitLnk.lipsr_AL_PA = 0;
6323 initlinkmbox->vport = vport;
6324 initlinkmbox->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
6325 rc = lpfc_sli_issue_mbox(phba, initlinkmbox, MBX_NOWAIT);
6326 lpfc_set_loopback_flag(phba);
6327 if (rc == MBX_NOT_FINISHED)
6328 mempool_free(initlinkmbox, phba->mbox_mem_pool);
6329
6330 break;
6331
6332 case LPFC_DISC_AUTH:
6333 /* Node Authentication timeout */
6334 lpfc_printf_vlog(vport, KERN_ERR,
6335 LOG_TRACE_EVENT,
6336 "0227 Node Authentication timeout\n");
6337 lpfc_disc_flush_list(vport);
6338
6339 /*
6340 * set port_state to PORT_READY if SLI2.
6341 * cmpl_reg_vpi will set port_state to READY for SLI3.
6342 */
6343 if (phba->sli_rev < LPFC_SLI_REV4) {
6344 if (phba->sli3_options & LPFC_SLI3_NPIV_ENABLED)
6345 lpfc_issue_reg_vpi(phba, vport);
6346 else { /* NPIV Not enabled */
6347 lpfc_issue_clear_la(phba, vport);
6348 vport->port_state = LPFC_VPORT_READY;
6349 }
6350 }
6351 break;
6352
6353 case LPFC_VPORT_READY:
6354 if (vport->fc_flag & FC_RSCN_MODE) {
6355 lpfc_printf_vlog(vport, KERN_ERR,
6356 LOG_TRACE_EVENT,
6357 "0231 RSCN timeout Data: x%x "
6358 "x%x x%x x%x\n",
6359 vport->fc_ns_retry, LPFC_MAX_NS_RETRY,
6360 vport->port_state, vport->gidft_inp);
6361
6362 /* Cleanup any outstanding ELS commands */
6363 lpfc_els_flush_cmd(vport);
6364
6365 lpfc_els_flush_rscn(vport);
6366 lpfc_disc_flush_list(vport);
6367 }
6368 break;
6369
6370 default:
6371 lpfc_printf_vlog(vport, KERN_ERR,
6372 LOG_TRACE_EVENT,
6373 "0273 Unexpected discovery timeout, "
6374 "vport State x%x\n", vport->port_state);
6375 break;
6376 }
6377
6378 switch (phba->link_state) {
6379 case LPFC_CLEAR_LA:
6380 /* CLEAR LA timeout */
6381 lpfc_printf_vlog(vport, KERN_ERR,
6382 LOG_TRACE_EVENT,
6383 "0228 CLEAR LA timeout\n");
6384 clrlaerr = 1;
6385 break;
6386
6387 case LPFC_LINK_UP:
6388 lpfc_issue_clear_la(phba, vport);
6389 fallthrough;
6390 case LPFC_LINK_UNKNOWN:
6391 case LPFC_WARM_START:
6392 case LPFC_INIT_START:
6393 case LPFC_INIT_MBX_CMDS:
6394 case LPFC_LINK_DOWN:
6395 case LPFC_HBA_ERROR:
6396 lpfc_printf_vlog(vport, KERN_ERR,
6397 LOG_TRACE_EVENT,
6398 "0230 Unexpected timeout, hba link "
6399 "state x%x\n", phba->link_state);
6400 clrlaerr = 1;
6401 break;
6402
6403 case LPFC_HBA_READY:
6404 break;
6405 }
6406
6407 if (clrlaerr) {
6408 lpfc_disc_flush_list(vport);
6409 if (phba->sli_rev != LPFC_SLI_REV4) {
6410 psli->sli3_ring[(LPFC_EXTRA_RING)].flag &=
6411 ~LPFC_STOP_IOCB_EVENT;
6412 psli->sli3_ring[LPFC_FCP_RING].flag &=
6413 ~LPFC_STOP_IOCB_EVENT;
6414 }
6415 vport->port_state = LPFC_VPORT_READY;
6416 }
6417 return;
6418 }
6419
6420 /*
6421 * This routine handles processing a NameServer REG_LOGIN mailbox
6422 * command upon completion. It is setup in the LPFC_MBOXQ
6423 * as the completion routine when the command is
6424 * handed off to the SLI layer.
6425 */
6426 void
lpfc_mbx_cmpl_fdmi_reg_login(struct lpfc_hba * phba,LPFC_MBOXQ_t * pmb)6427 lpfc_mbx_cmpl_fdmi_reg_login(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
6428 {
6429 MAILBOX_t *mb = &pmb->u.mb;
6430 struct lpfc_nodelist *ndlp = (struct lpfc_nodelist *)pmb->ctx_ndlp;
6431 struct lpfc_vport *vport = pmb->vport;
6432
6433 pmb->ctx_ndlp = NULL;
6434
6435 if (phba->sli_rev < LPFC_SLI_REV4)
6436 ndlp->nlp_rpi = mb->un.varWords[0];
6437 ndlp->nlp_flag |= NLP_RPI_REGISTERED;
6438 ndlp->nlp_type |= NLP_FABRIC;
6439 lpfc_nlp_set_state(vport, ndlp, NLP_STE_UNMAPPED_NODE);
6440 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE | LOG_DISCOVERY,
6441 "0004 rpi:%x DID:%x flg:%x %d x%px\n",
6442 ndlp->nlp_rpi, ndlp->nlp_DID, ndlp->nlp_flag,
6443 kref_read(&ndlp->kref),
6444 ndlp);
6445 /*
6446 * Start issuing Fabric-Device Management Interface (FDMI) command to
6447 * 0xfffffa (FDMI well known port).
6448 * DHBA -> DPRT -> RHBA -> RPA (physical port)
6449 * DPRT -> RPRT (vports)
6450 */
6451 if (vport->port_type == LPFC_PHYSICAL_PORT) {
6452 phba->link_flag &= ~LS_CT_VEN_RPA; /* For extra Vendor RPA */
6453 lpfc_fdmi_cmd(vport, ndlp, SLI_MGMT_DHBA, 0);
6454 } else {
6455 lpfc_fdmi_cmd(vport, ndlp, SLI_MGMT_DPRT, 0);
6456 }
6457
6458
6459 /* decrement the node reference count held for this callback
6460 * function.
6461 */
6462 lpfc_nlp_put(ndlp);
6463 lpfc_mbox_rsrc_cleanup(phba, pmb, MBOX_THD_UNLOCKED);
6464 return;
6465 }
6466
6467 static int
lpfc_filter_by_rpi(struct lpfc_nodelist * ndlp,void * param)6468 lpfc_filter_by_rpi(struct lpfc_nodelist *ndlp, void *param)
6469 {
6470 uint16_t *rpi = param;
6471
6472 return ndlp->nlp_rpi == *rpi;
6473 }
6474
6475 static int
lpfc_filter_by_wwpn(struct lpfc_nodelist * ndlp,void * param)6476 lpfc_filter_by_wwpn(struct lpfc_nodelist *ndlp, void *param)
6477 {
6478 return memcmp(&ndlp->nlp_portname, param,
6479 sizeof(ndlp->nlp_portname)) == 0;
6480 }
6481
6482 static struct lpfc_nodelist *
__lpfc_find_node(struct lpfc_vport * vport,node_filter filter,void * param)6483 __lpfc_find_node(struct lpfc_vport *vport, node_filter filter, void *param)
6484 {
6485 struct lpfc_nodelist *ndlp;
6486
6487 list_for_each_entry(ndlp, &vport->fc_nodes, nlp_listp) {
6488 if (filter(ndlp, param)) {
6489 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
6490 "3185 FIND node filter %ps DID "
6491 "ndlp x%px did x%x flg x%x st x%x "
6492 "xri x%x type x%x rpi x%x\n",
6493 filter, ndlp, ndlp->nlp_DID,
6494 ndlp->nlp_flag, ndlp->nlp_state,
6495 ndlp->nlp_xri, ndlp->nlp_type,
6496 ndlp->nlp_rpi);
6497 return ndlp;
6498 }
6499 }
6500 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
6501 "3186 FIND node filter %ps NOT FOUND.\n", filter);
6502 return NULL;
6503 }
6504
6505 /*
6506 * This routine looks up the ndlp lists for the given RPI. If rpi found it
6507 * returns the node list element pointer else return NULL.
6508 */
6509 struct lpfc_nodelist *
__lpfc_findnode_rpi(struct lpfc_vport * vport,uint16_t rpi)6510 __lpfc_findnode_rpi(struct lpfc_vport *vport, uint16_t rpi)
6511 {
6512 return __lpfc_find_node(vport, lpfc_filter_by_rpi, &rpi);
6513 }
6514
6515 /*
6516 * This routine looks up the ndlp lists for the given WWPN. If WWPN found it
6517 * returns the node element list pointer else return NULL.
6518 */
6519 struct lpfc_nodelist *
lpfc_findnode_wwpn(struct lpfc_vport * vport,struct lpfc_name * wwpn)6520 lpfc_findnode_wwpn(struct lpfc_vport *vport, struct lpfc_name *wwpn)
6521 {
6522 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
6523 struct lpfc_nodelist *ndlp;
6524
6525 spin_lock_irq(shost->host_lock);
6526 ndlp = __lpfc_find_node(vport, lpfc_filter_by_wwpn, wwpn);
6527 spin_unlock_irq(shost->host_lock);
6528 return ndlp;
6529 }
6530
6531 /*
6532 * This routine looks up the ndlp lists for the given RPI. If the rpi
6533 * is found, the routine returns the node element list pointer else
6534 * return NULL.
6535 */
6536 struct lpfc_nodelist *
lpfc_findnode_rpi(struct lpfc_vport * vport,uint16_t rpi)6537 lpfc_findnode_rpi(struct lpfc_vport *vport, uint16_t rpi)
6538 {
6539 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
6540 struct lpfc_nodelist *ndlp;
6541 unsigned long flags;
6542
6543 spin_lock_irqsave(shost->host_lock, flags);
6544 ndlp = __lpfc_findnode_rpi(vport, rpi);
6545 spin_unlock_irqrestore(shost->host_lock, flags);
6546 return ndlp;
6547 }
6548
6549 /**
6550 * lpfc_find_vport_by_vpid - Find a vport on a HBA through vport identifier
6551 * @phba: pointer to lpfc hba data structure.
6552 * @vpi: the physical host virtual N_Port identifier.
6553 *
6554 * This routine finds a vport on a HBA (referred by @phba) through a
6555 * @vpi. The function walks the HBA's vport list and returns the address
6556 * of the vport with the matching @vpi.
6557 *
6558 * Return code
6559 * NULL - No vport with the matching @vpi found
6560 * Otherwise - Address to the vport with the matching @vpi.
6561 **/
6562 struct lpfc_vport *
lpfc_find_vport_by_vpid(struct lpfc_hba * phba,uint16_t vpi)6563 lpfc_find_vport_by_vpid(struct lpfc_hba *phba, uint16_t vpi)
6564 {
6565 struct lpfc_vport *vport;
6566 unsigned long flags;
6567 int i = 0;
6568
6569 /* The physical ports are always vpi 0 - translate is unnecessary. */
6570 if (vpi > 0) {
6571 /*
6572 * Translate the physical vpi to the logical vpi. The
6573 * vport stores the logical vpi.
6574 */
6575 for (i = 0; i <= phba->max_vpi; i++) {
6576 if (vpi == phba->vpi_ids[i])
6577 break;
6578 }
6579
6580 if (i > phba->max_vpi) {
6581 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
6582 "2936 Could not find Vport mapped "
6583 "to vpi %d\n", vpi);
6584 return NULL;
6585 }
6586 }
6587
6588 spin_lock_irqsave(&phba->port_list_lock, flags);
6589 list_for_each_entry(vport, &phba->port_list, listentry) {
6590 if (vport->vpi == i) {
6591 spin_unlock_irqrestore(&phba->port_list_lock, flags);
6592 return vport;
6593 }
6594 }
6595 spin_unlock_irqrestore(&phba->port_list_lock, flags);
6596 return NULL;
6597 }
6598
6599 struct lpfc_nodelist *
lpfc_nlp_init(struct lpfc_vport * vport,uint32_t did)6600 lpfc_nlp_init(struct lpfc_vport *vport, uint32_t did)
6601 {
6602 struct lpfc_nodelist *ndlp;
6603 int rpi = LPFC_RPI_ALLOC_ERROR;
6604
6605 if (vport->phba->sli_rev == LPFC_SLI_REV4) {
6606 rpi = lpfc_sli4_alloc_rpi(vport->phba);
6607 if (rpi == LPFC_RPI_ALLOC_ERROR)
6608 return NULL;
6609 }
6610
6611 ndlp = mempool_alloc(vport->phba->nlp_mem_pool, GFP_KERNEL);
6612 if (!ndlp) {
6613 if (vport->phba->sli_rev == LPFC_SLI_REV4)
6614 lpfc_sli4_free_rpi(vport->phba, rpi);
6615 return NULL;
6616 }
6617
6618 memset(ndlp, 0, sizeof (struct lpfc_nodelist));
6619
6620 spin_lock_init(&ndlp->lock);
6621
6622 lpfc_initialize_node(vport, ndlp, did);
6623 INIT_LIST_HEAD(&ndlp->nlp_listp);
6624 if (vport->phba->sli_rev == LPFC_SLI_REV4) {
6625 ndlp->nlp_rpi = rpi;
6626 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE | LOG_DISCOVERY,
6627 "0007 Init New ndlp x%px, rpi:x%x DID:%x "
6628 "flg:x%x refcnt:%d\n",
6629 ndlp, ndlp->nlp_rpi, ndlp->nlp_DID,
6630 ndlp->nlp_flag, kref_read(&ndlp->kref));
6631
6632 ndlp->active_rrqs_xri_bitmap =
6633 mempool_alloc(vport->phba->active_rrq_pool,
6634 GFP_KERNEL);
6635 if (ndlp->active_rrqs_xri_bitmap)
6636 memset(ndlp->active_rrqs_xri_bitmap, 0,
6637 ndlp->phba->cfg_rrq_xri_bitmap_sz);
6638 }
6639
6640
6641
6642 lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_NODE,
6643 "node init: did:x%x",
6644 ndlp->nlp_DID, 0, 0);
6645
6646 return ndlp;
6647 }
6648
6649 /* This routine releases all resources associated with a specifc NPort's ndlp
6650 * and mempool_free's the nodelist.
6651 */
6652 static void
lpfc_nlp_release(struct kref * kref)6653 lpfc_nlp_release(struct kref *kref)
6654 {
6655 struct lpfc_nodelist *ndlp = container_of(kref, struct lpfc_nodelist,
6656 kref);
6657 struct lpfc_vport *vport = ndlp->vport;
6658
6659 lpfc_debugfs_disc_trc(ndlp->vport, LPFC_DISC_TRC_NODE,
6660 "node release: did:x%x flg:x%x type:x%x",
6661 ndlp->nlp_DID, ndlp->nlp_flag, ndlp->nlp_type);
6662
6663 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE,
6664 "0279 %s: ndlp: x%px did %x refcnt:%d rpi:%x\n",
6665 __func__, ndlp, ndlp->nlp_DID,
6666 kref_read(&ndlp->kref), ndlp->nlp_rpi);
6667
6668 /* remove ndlp from action. */
6669 lpfc_cancel_retry_delay_tmo(vport, ndlp);
6670 lpfc_cleanup_node(vport, ndlp);
6671
6672 /* Not all ELS transactions have registered the RPI with the port.
6673 * In these cases the rpi usage is temporary and the node is
6674 * released when the WQE is completed. Catch this case to free the
6675 * RPI to the pool. Because this node is in the release path, a lock
6676 * is unnecessary. All references are gone and the node has been
6677 * dequeued.
6678 */
6679 if (ndlp->nlp_flag & NLP_RELEASE_RPI) {
6680 if (ndlp->nlp_rpi != LPFC_RPI_ALLOC_ERROR &&
6681 !(ndlp->nlp_flag & (NLP_RPI_REGISTERED | NLP_UNREG_INP))) {
6682 lpfc_sli4_free_rpi(vport->phba, ndlp->nlp_rpi);
6683 ndlp->nlp_rpi = LPFC_RPI_ALLOC_ERROR;
6684 }
6685 }
6686
6687 /* The node is not freed back to memory, it is released to a pool so
6688 * the node fields need to be cleaned up.
6689 */
6690 ndlp->vport = NULL;
6691 ndlp->nlp_state = NLP_STE_FREED_NODE;
6692 ndlp->nlp_flag = 0;
6693 ndlp->fc4_xpt_flags = 0;
6694
6695 /* free ndlp memory for final ndlp release */
6696 kfree(ndlp->lat_data);
6697 if (ndlp->phba->sli_rev == LPFC_SLI_REV4)
6698 mempool_free(ndlp->active_rrqs_xri_bitmap,
6699 ndlp->phba->active_rrq_pool);
6700 mempool_free(ndlp, ndlp->phba->nlp_mem_pool);
6701 }
6702
6703 /* This routine bumps the reference count for a ndlp structure to ensure
6704 * that one discovery thread won't free a ndlp while another discovery thread
6705 * is using it.
6706 */
6707 struct lpfc_nodelist *
lpfc_nlp_get(struct lpfc_nodelist * ndlp)6708 lpfc_nlp_get(struct lpfc_nodelist *ndlp)
6709 {
6710 unsigned long flags;
6711
6712 if (ndlp) {
6713 lpfc_debugfs_disc_trc(ndlp->vport, LPFC_DISC_TRC_NODE,
6714 "node get: did:x%x flg:x%x refcnt:x%x",
6715 ndlp->nlp_DID, ndlp->nlp_flag,
6716 kref_read(&ndlp->kref));
6717
6718 /* The check of ndlp usage to prevent incrementing the
6719 * ndlp reference count that is in the process of being
6720 * released.
6721 */
6722 spin_lock_irqsave(&ndlp->lock, flags);
6723 if (!kref_get_unless_zero(&ndlp->kref)) {
6724 spin_unlock_irqrestore(&ndlp->lock, flags);
6725 lpfc_printf_vlog(ndlp->vport, KERN_WARNING, LOG_NODE,
6726 "0276 %s: ndlp:x%px refcnt:%d\n",
6727 __func__, (void *)ndlp, kref_read(&ndlp->kref));
6728 return NULL;
6729 }
6730 spin_unlock_irqrestore(&ndlp->lock, flags);
6731 } else {
6732 WARN_ONCE(!ndlp, "**** %s, get ref on NULL ndlp!", __func__);
6733 }
6734
6735 return ndlp;
6736 }
6737
6738 /* This routine decrements the reference count for a ndlp structure. If the
6739 * count goes to 0, this indicates the associated nodelist should be freed.
6740 */
6741 int
lpfc_nlp_put(struct lpfc_nodelist * ndlp)6742 lpfc_nlp_put(struct lpfc_nodelist *ndlp)
6743 {
6744 if (ndlp) {
6745 lpfc_debugfs_disc_trc(ndlp->vport, LPFC_DISC_TRC_NODE,
6746 "node put: did:x%x flg:x%x refcnt:x%x",
6747 ndlp->nlp_DID, ndlp->nlp_flag,
6748 kref_read(&ndlp->kref));
6749 } else {
6750 WARN_ONCE(!ndlp, "**** %s, put ref on NULL ndlp!", __func__);
6751 }
6752
6753 return ndlp ? kref_put(&ndlp->kref, lpfc_nlp_release) : 0;
6754 }
6755
6756 /* This routine free's the specified nodelist if it is not in use
6757 * by any other discovery thread. This routine returns 1 if the
6758 * ndlp has been freed. A return value of 0 indicates the ndlp is
6759 * not yet been released.
6760 */
6761 int
lpfc_nlp_not_used(struct lpfc_nodelist * ndlp)6762 lpfc_nlp_not_used(struct lpfc_nodelist *ndlp)
6763 {
6764 lpfc_debugfs_disc_trc(ndlp->vport, LPFC_DISC_TRC_NODE,
6765 "node not used: did:x%x flg:x%x refcnt:x%x",
6766 ndlp->nlp_DID, ndlp->nlp_flag,
6767 kref_read(&ndlp->kref));
6768
6769 if (kref_read(&ndlp->kref) == 1)
6770 if (lpfc_nlp_put(ndlp))
6771 return 1;
6772 return 0;
6773 }
6774
6775 /**
6776 * lpfc_fcf_inuse - Check if FCF can be unregistered.
6777 * @phba: Pointer to hba context object.
6778 *
6779 * This function iterate through all FC nodes associated
6780 * will all vports to check if there is any node with
6781 * fc_rports associated with it. If there is an fc_rport
6782 * associated with the node, then the node is either in
6783 * discovered state or its devloss_timer is pending.
6784 */
6785 static int
lpfc_fcf_inuse(struct lpfc_hba * phba)6786 lpfc_fcf_inuse(struct lpfc_hba *phba)
6787 {
6788 struct lpfc_vport **vports;
6789 int i, ret = 0;
6790 struct lpfc_nodelist *ndlp;
6791 struct Scsi_Host *shost;
6792
6793 vports = lpfc_create_vport_work_array(phba);
6794
6795 /* If driver cannot allocate memory, indicate fcf is in use */
6796 if (!vports)
6797 return 1;
6798
6799 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
6800 shost = lpfc_shost_from_vport(vports[i]);
6801 spin_lock_irq(shost->host_lock);
6802 /*
6803 * IF the CVL_RCVD bit is not set then we have sent the
6804 * flogi.
6805 * If dev_loss fires while we are waiting we do not want to
6806 * unreg the fcf.
6807 */
6808 if (!(vports[i]->fc_flag & FC_VPORT_CVL_RCVD)) {
6809 spin_unlock_irq(shost->host_lock);
6810 ret = 1;
6811 goto out;
6812 }
6813 list_for_each_entry(ndlp, &vports[i]->fc_nodes, nlp_listp) {
6814 if (ndlp->rport &&
6815 (ndlp->rport->roles & FC_RPORT_ROLE_FCP_TARGET)) {
6816 ret = 1;
6817 spin_unlock_irq(shost->host_lock);
6818 goto out;
6819 } else if (ndlp->nlp_flag & NLP_RPI_REGISTERED) {
6820 ret = 1;
6821 lpfc_printf_log(phba, KERN_INFO,
6822 LOG_NODE | LOG_DISCOVERY,
6823 "2624 RPI %x DID %x flag %x "
6824 "still logged in\n",
6825 ndlp->nlp_rpi, ndlp->nlp_DID,
6826 ndlp->nlp_flag);
6827 }
6828 }
6829 spin_unlock_irq(shost->host_lock);
6830 }
6831 out:
6832 lpfc_destroy_vport_work_array(phba, vports);
6833 return ret;
6834 }
6835
6836 /**
6837 * lpfc_unregister_vfi_cmpl - Completion handler for unreg vfi.
6838 * @phba: Pointer to hba context object.
6839 * @mboxq: Pointer to mailbox object.
6840 *
6841 * This function frees memory associated with the mailbox command.
6842 */
6843 void
lpfc_unregister_vfi_cmpl(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)6844 lpfc_unregister_vfi_cmpl(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
6845 {
6846 struct lpfc_vport *vport = mboxq->vport;
6847 struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
6848
6849 if (mboxq->u.mb.mbxStatus) {
6850 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
6851 "2555 UNREG_VFI mbxStatus error x%x "
6852 "HBA state x%x\n",
6853 mboxq->u.mb.mbxStatus, vport->port_state);
6854 }
6855 spin_lock_irq(shost->host_lock);
6856 phba->pport->fc_flag &= ~FC_VFI_REGISTERED;
6857 spin_unlock_irq(shost->host_lock);
6858 mempool_free(mboxq, phba->mbox_mem_pool);
6859 return;
6860 }
6861
6862 /**
6863 * lpfc_unregister_fcfi_cmpl - Completion handler for unreg fcfi.
6864 * @phba: Pointer to hba context object.
6865 * @mboxq: Pointer to mailbox object.
6866 *
6867 * This function frees memory associated with the mailbox command.
6868 */
6869 static void
lpfc_unregister_fcfi_cmpl(struct lpfc_hba * phba,LPFC_MBOXQ_t * mboxq)6870 lpfc_unregister_fcfi_cmpl(struct lpfc_hba *phba, LPFC_MBOXQ_t *mboxq)
6871 {
6872 struct lpfc_vport *vport = mboxq->vport;
6873
6874 if (mboxq->u.mb.mbxStatus) {
6875 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
6876 "2550 UNREG_FCFI mbxStatus error x%x "
6877 "HBA state x%x\n",
6878 mboxq->u.mb.mbxStatus, vport->port_state);
6879 }
6880 mempool_free(mboxq, phba->mbox_mem_pool);
6881 return;
6882 }
6883
6884 /**
6885 * lpfc_unregister_fcf_prep - Unregister fcf record preparation
6886 * @phba: Pointer to hba context object.
6887 *
6888 * This function prepare the HBA for unregistering the currently registered
6889 * FCF from the HBA. It performs unregistering, in order, RPIs, VPIs, and
6890 * VFIs.
6891 */
6892 int
lpfc_unregister_fcf_prep(struct lpfc_hba * phba)6893 lpfc_unregister_fcf_prep(struct lpfc_hba *phba)
6894 {
6895 struct lpfc_vport **vports;
6896 struct lpfc_nodelist *ndlp;
6897 struct Scsi_Host *shost;
6898 int i = 0, rc;
6899
6900 /* Unregister RPIs */
6901 if (lpfc_fcf_inuse(phba))
6902 lpfc_unreg_hba_rpis(phba);
6903
6904 /* At this point, all discovery is aborted */
6905 phba->pport->port_state = LPFC_VPORT_UNKNOWN;
6906
6907 /* Unregister VPIs */
6908 vports = lpfc_create_vport_work_array(phba);
6909 if (vports && (phba->sli3_options & LPFC_SLI3_NPIV_ENABLED))
6910 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
6911 /* Stop FLOGI/FDISC retries */
6912 ndlp = lpfc_findnode_did(vports[i], Fabric_DID);
6913 if (ndlp)
6914 lpfc_cancel_retry_delay_tmo(vports[i], ndlp);
6915 lpfc_cleanup_pending_mbox(vports[i]);
6916 if (phba->sli_rev == LPFC_SLI_REV4)
6917 lpfc_sli4_unreg_all_rpis(vports[i]);
6918 lpfc_mbx_unreg_vpi(vports[i]);
6919 shost = lpfc_shost_from_vport(vports[i]);
6920 spin_lock_irq(shost->host_lock);
6921 vports[i]->fc_flag |= FC_VPORT_NEEDS_INIT_VPI;
6922 vports[i]->vpi_state &= ~LPFC_VPI_REGISTERED;
6923 spin_unlock_irq(shost->host_lock);
6924 }
6925 lpfc_destroy_vport_work_array(phba, vports);
6926 if (i == 0 && (!(phba->sli3_options & LPFC_SLI3_NPIV_ENABLED))) {
6927 ndlp = lpfc_findnode_did(phba->pport, Fabric_DID);
6928 if (ndlp)
6929 lpfc_cancel_retry_delay_tmo(phba->pport, ndlp);
6930 lpfc_cleanup_pending_mbox(phba->pport);
6931 if (phba->sli_rev == LPFC_SLI_REV4)
6932 lpfc_sli4_unreg_all_rpis(phba->pport);
6933 lpfc_mbx_unreg_vpi(phba->pport);
6934 shost = lpfc_shost_from_vport(phba->pport);
6935 spin_lock_irq(shost->host_lock);
6936 phba->pport->fc_flag |= FC_VPORT_NEEDS_INIT_VPI;
6937 phba->pport->vpi_state &= ~LPFC_VPI_REGISTERED;
6938 spin_unlock_irq(shost->host_lock);
6939 }
6940
6941 /* Cleanup any outstanding ELS commands */
6942 lpfc_els_flush_all_cmd(phba);
6943
6944 /* Unregister the physical port VFI */
6945 rc = lpfc_issue_unreg_vfi(phba->pport);
6946 return rc;
6947 }
6948
6949 /**
6950 * lpfc_sli4_unregister_fcf - Unregister currently registered FCF record
6951 * @phba: Pointer to hba context object.
6952 *
6953 * This function issues synchronous unregister FCF mailbox command to HBA to
6954 * unregister the currently registered FCF record. The driver does not reset
6955 * the driver FCF usage state flags.
6956 *
6957 * Return 0 if successfully issued, none-zero otherwise.
6958 */
6959 int
lpfc_sli4_unregister_fcf(struct lpfc_hba * phba)6960 lpfc_sli4_unregister_fcf(struct lpfc_hba *phba)
6961 {
6962 LPFC_MBOXQ_t *mbox;
6963 int rc;
6964
6965 mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
6966 if (!mbox) {
6967 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
6968 "2551 UNREG_FCFI mbox allocation failed"
6969 "HBA state x%x\n", phba->pport->port_state);
6970 return -ENOMEM;
6971 }
6972 lpfc_unreg_fcfi(mbox, phba->fcf.fcfi);
6973 mbox->vport = phba->pport;
6974 mbox->mbox_cmpl = lpfc_unregister_fcfi_cmpl;
6975 rc = lpfc_sli_issue_mbox(phba, mbox, MBX_NOWAIT);
6976
6977 if (rc == MBX_NOT_FINISHED) {
6978 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
6979 "2552 Unregister FCFI command failed rc x%x "
6980 "HBA state x%x\n",
6981 rc, phba->pport->port_state);
6982 return -EINVAL;
6983 }
6984 return 0;
6985 }
6986
6987 /**
6988 * lpfc_unregister_fcf_rescan - Unregister currently registered fcf and rescan
6989 * @phba: Pointer to hba context object.
6990 *
6991 * This function unregisters the currently reigstered FCF. This function
6992 * also tries to find another FCF for discovery by rescan the HBA FCF table.
6993 */
6994 void
lpfc_unregister_fcf_rescan(struct lpfc_hba * phba)6995 lpfc_unregister_fcf_rescan(struct lpfc_hba *phba)
6996 {
6997 int rc;
6998
6999 /* Preparation for unregistering fcf */
7000 rc = lpfc_unregister_fcf_prep(phba);
7001 if (rc) {
7002 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
7003 "2748 Failed to prepare for unregistering "
7004 "HBA's FCF record: rc=%d\n", rc);
7005 return;
7006 }
7007
7008 /* Now, unregister FCF record and reset HBA FCF state */
7009 rc = lpfc_sli4_unregister_fcf(phba);
7010 if (rc)
7011 return;
7012 /* Reset HBA FCF states after successful unregister FCF */
7013 phba->fcf.fcf_flag = 0;
7014 phba->fcf.current_rec.flag = 0;
7015
7016 /*
7017 * If driver is not unloading, check if there is any other
7018 * FCF record that can be used for discovery.
7019 */
7020 if ((phba->pport->load_flag & FC_UNLOADING) ||
7021 (phba->link_state < LPFC_LINK_UP))
7022 return;
7023
7024 /* This is considered as the initial FCF discovery scan */
7025 spin_lock_irq(&phba->hbalock);
7026 phba->fcf.fcf_flag |= FCF_INIT_DISC;
7027 spin_unlock_irq(&phba->hbalock);
7028
7029 /* Reset FCF roundrobin bmask for new discovery */
7030 lpfc_sli4_clear_fcf_rr_bmask(phba);
7031
7032 rc = lpfc_sli4_fcf_scan_read_fcf_rec(phba, LPFC_FCOE_FCF_GET_FIRST);
7033
7034 if (rc) {
7035 spin_lock_irq(&phba->hbalock);
7036 phba->fcf.fcf_flag &= ~FCF_INIT_DISC;
7037 spin_unlock_irq(&phba->hbalock);
7038 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
7039 "2553 lpfc_unregister_unused_fcf failed "
7040 "to read FCF record HBA state x%x\n",
7041 phba->pport->port_state);
7042 }
7043 }
7044
7045 /**
7046 * lpfc_unregister_fcf - Unregister the currently registered fcf record
7047 * @phba: Pointer to hba context object.
7048 *
7049 * This function just unregisters the currently reigstered FCF. It does not
7050 * try to find another FCF for discovery.
7051 */
7052 void
lpfc_unregister_fcf(struct lpfc_hba * phba)7053 lpfc_unregister_fcf(struct lpfc_hba *phba)
7054 {
7055 int rc;
7056
7057 /* Preparation for unregistering fcf */
7058 rc = lpfc_unregister_fcf_prep(phba);
7059 if (rc) {
7060 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
7061 "2749 Failed to prepare for unregistering "
7062 "HBA's FCF record: rc=%d\n", rc);
7063 return;
7064 }
7065
7066 /* Now, unregister FCF record and reset HBA FCF state */
7067 rc = lpfc_sli4_unregister_fcf(phba);
7068 if (rc)
7069 return;
7070 /* Set proper HBA FCF states after successful unregister FCF */
7071 spin_lock_irq(&phba->hbalock);
7072 phba->fcf.fcf_flag &= ~FCF_REGISTERED;
7073 spin_unlock_irq(&phba->hbalock);
7074 }
7075
7076 /**
7077 * lpfc_unregister_unused_fcf - Unregister FCF if all devices are disconnected.
7078 * @phba: Pointer to hba context object.
7079 *
7080 * This function check if there are any connected remote port for the FCF and
7081 * if all the devices are disconnected, this function unregister FCFI.
7082 * This function also tries to use another FCF for discovery.
7083 */
7084 void
lpfc_unregister_unused_fcf(struct lpfc_hba * phba)7085 lpfc_unregister_unused_fcf(struct lpfc_hba *phba)
7086 {
7087 /*
7088 * If HBA is not running in FIP mode, if HBA does not support
7089 * FCoE, if FCF discovery is ongoing, or if FCF has not been
7090 * registered, do nothing.
7091 */
7092 spin_lock_irq(&phba->hbalock);
7093 if (!(phba->hba_flag & HBA_FCOE_MODE) ||
7094 !(phba->fcf.fcf_flag & FCF_REGISTERED) ||
7095 !(phba->hba_flag & HBA_FIP_SUPPORT) ||
7096 (phba->fcf.fcf_flag & FCF_DISCOVERY) ||
7097 (phba->pport->port_state == LPFC_FLOGI)) {
7098 spin_unlock_irq(&phba->hbalock);
7099 return;
7100 }
7101 spin_unlock_irq(&phba->hbalock);
7102
7103 if (lpfc_fcf_inuse(phba))
7104 return;
7105
7106 lpfc_unregister_fcf_rescan(phba);
7107 }
7108
7109 /**
7110 * lpfc_read_fcf_conn_tbl - Create driver FCF connection table.
7111 * @phba: Pointer to hba context object.
7112 * @buff: Buffer containing the FCF connection table as in the config
7113 * region.
7114 * This function create driver data structure for the FCF connection
7115 * record table read from config region 23.
7116 */
7117 static void
lpfc_read_fcf_conn_tbl(struct lpfc_hba * phba,uint8_t * buff)7118 lpfc_read_fcf_conn_tbl(struct lpfc_hba *phba,
7119 uint8_t *buff)
7120 {
7121 struct lpfc_fcf_conn_entry *conn_entry, *next_conn_entry;
7122 struct lpfc_fcf_conn_hdr *conn_hdr;
7123 struct lpfc_fcf_conn_rec *conn_rec;
7124 uint32_t record_count;
7125 int i;
7126
7127 /* Free the current connect table */
7128 list_for_each_entry_safe(conn_entry, next_conn_entry,
7129 &phba->fcf_conn_rec_list, list) {
7130 list_del_init(&conn_entry->list);
7131 kfree(conn_entry);
7132 }
7133
7134 conn_hdr = (struct lpfc_fcf_conn_hdr *) buff;
7135 record_count = conn_hdr->length * sizeof(uint32_t)/
7136 sizeof(struct lpfc_fcf_conn_rec);
7137
7138 conn_rec = (struct lpfc_fcf_conn_rec *)
7139 (buff + sizeof(struct lpfc_fcf_conn_hdr));
7140
7141 for (i = 0; i < record_count; i++) {
7142 if (!(conn_rec[i].flags & FCFCNCT_VALID))
7143 continue;
7144 conn_entry = kzalloc(sizeof(struct lpfc_fcf_conn_entry),
7145 GFP_KERNEL);
7146 if (!conn_entry) {
7147 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
7148 "2566 Failed to allocate connection"
7149 " table entry\n");
7150 return;
7151 }
7152
7153 memcpy(&conn_entry->conn_rec, &conn_rec[i],
7154 sizeof(struct lpfc_fcf_conn_rec));
7155 list_add_tail(&conn_entry->list,
7156 &phba->fcf_conn_rec_list);
7157 }
7158
7159 if (!list_empty(&phba->fcf_conn_rec_list)) {
7160 i = 0;
7161 list_for_each_entry(conn_entry, &phba->fcf_conn_rec_list,
7162 list) {
7163 conn_rec = &conn_entry->conn_rec;
7164 lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
7165 "3345 FCF connection list rec[%02d]: "
7166 "flags:x%04x, vtag:x%04x, "
7167 "fabric_name:x%02x:%02x:%02x:%02x:"
7168 "%02x:%02x:%02x:%02x, "
7169 "switch_name:x%02x:%02x:%02x:%02x:"
7170 "%02x:%02x:%02x:%02x\n", i++,
7171 conn_rec->flags, conn_rec->vlan_tag,
7172 conn_rec->fabric_name[0],
7173 conn_rec->fabric_name[1],
7174 conn_rec->fabric_name[2],
7175 conn_rec->fabric_name[3],
7176 conn_rec->fabric_name[4],
7177 conn_rec->fabric_name[5],
7178 conn_rec->fabric_name[6],
7179 conn_rec->fabric_name[7],
7180 conn_rec->switch_name[0],
7181 conn_rec->switch_name[1],
7182 conn_rec->switch_name[2],
7183 conn_rec->switch_name[3],
7184 conn_rec->switch_name[4],
7185 conn_rec->switch_name[5],
7186 conn_rec->switch_name[6],
7187 conn_rec->switch_name[7]);
7188 }
7189 }
7190 }
7191
7192 /**
7193 * lpfc_read_fcoe_param - Read FCoe parameters from conf region..
7194 * @phba: Pointer to hba context object.
7195 * @buff: Buffer containing the FCoE parameter data structure.
7196 *
7197 * This function update driver data structure with config
7198 * parameters read from config region 23.
7199 */
7200 static void
lpfc_read_fcoe_param(struct lpfc_hba * phba,uint8_t * buff)7201 lpfc_read_fcoe_param(struct lpfc_hba *phba,
7202 uint8_t *buff)
7203 {
7204 struct lpfc_fip_param_hdr *fcoe_param_hdr;
7205 struct lpfc_fcoe_params *fcoe_param;
7206
7207 fcoe_param_hdr = (struct lpfc_fip_param_hdr *)
7208 buff;
7209 fcoe_param = (struct lpfc_fcoe_params *)
7210 (buff + sizeof(struct lpfc_fip_param_hdr));
7211
7212 if ((fcoe_param_hdr->parm_version != FIPP_VERSION) ||
7213 (fcoe_param_hdr->length != FCOE_PARAM_LENGTH))
7214 return;
7215
7216 if (fcoe_param_hdr->parm_flags & FIPP_VLAN_VALID) {
7217 phba->valid_vlan = 1;
7218 phba->vlan_id = le16_to_cpu(fcoe_param->vlan_tag) &
7219 0xFFF;
7220 }
7221
7222 phba->fc_map[0] = fcoe_param->fc_map[0];
7223 phba->fc_map[1] = fcoe_param->fc_map[1];
7224 phba->fc_map[2] = fcoe_param->fc_map[2];
7225 return;
7226 }
7227
7228 /**
7229 * lpfc_get_rec_conf23 - Get a record type in config region data.
7230 * @buff: Buffer containing config region 23 data.
7231 * @size: Size of the data buffer.
7232 * @rec_type: Record type to be searched.
7233 *
7234 * This function searches config region data to find the beginning
7235 * of the record specified by record_type. If record found, this
7236 * function return pointer to the record else return NULL.
7237 */
7238 static uint8_t *
lpfc_get_rec_conf23(uint8_t * buff,uint32_t size,uint8_t rec_type)7239 lpfc_get_rec_conf23(uint8_t *buff, uint32_t size, uint8_t rec_type)
7240 {
7241 uint32_t offset = 0, rec_length;
7242
7243 if ((buff[0] == LPFC_REGION23_LAST_REC) ||
7244 (size < sizeof(uint32_t)))
7245 return NULL;
7246
7247 rec_length = buff[offset + 1];
7248
7249 /*
7250 * One TLV record has one word header and number of data words
7251 * specified in the rec_length field of the record header.
7252 */
7253 while ((offset + rec_length * sizeof(uint32_t) + sizeof(uint32_t))
7254 <= size) {
7255 if (buff[offset] == rec_type)
7256 return &buff[offset];
7257
7258 if (buff[offset] == LPFC_REGION23_LAST_REC)
7259 return NULL;
7260
7261 offset += rec_length * sizeof(uint32_t) + sizeof(uint32_t);
7262 rec_length = buff[offset + 1];
7263 }
7264 return NULL;
7265 }
7266
7267 /**
7268 * lpfc_parse_fcoe_conf - Parse FCoE config data read from config region 23.
7269 * @phba: Pointer to lpfc_hba data structure.
7270 * @buff: Buffer containing config region 23 data.
7271 * @size: Size of the data buffer.
7272 *
7273 * This function parses the FCoE config parameters in config region 23 and
7274 * populate driver data structure with the parameters.
7275 */
7276 void
lpfc_parse_fcoe_conf(struct lpfc_hba * phba,uint8_t * buff,uint32_t size)7277 lpfc_parse_fcoe_conf(struct lpfc_hba *phba,
7278 uint8_t *buff,
7279 uint32_t size)
7280 {
7281 uint32_t offset = 0;
7282 uint8_t *rec_ptr;
7283
7284 /*
7285 * If data size is less than 2 words signature and version cannot be
7286 * verified.
7287 */
7288 if (size < 2*sizeof(uint32_t))
7289 return;
7290
7291 /* Check the region signature first */
7292 if (memcmp(buff, LPFC_REGION23_SIGNATURE, 4)) {
7293 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
7294 "2567 Config region 23 has bad signature\n");
7295 return;
7296 }
7297
7298 offset += 4;
7299
7300 /* Check the data structure version */
7301 if (buff[offset] != LPFC_REGION23_VERSION) {
7302 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
7303 "2568 Config region 23 has bad version\n");
7304 return;
7305 }
7306 offset += 4;
7307
7308 /* Read FCoE param record */
7309 rec_ptr = lpfc_get_rec_conf23(&buff[offset],
7310 size - offset, FCOE_PARAM_TYPE);
7311 if (rec_ptr)
7312 lpfc_read_fcoe_param(phba, rec_ptr);
7313
7314 /* Read FCF connection table */
7315 rec_ptr = lpfc_get_rec_conf23(&buff[offset],
7316 size - offset, FCOE_CONN_TBL_TYPE);
7317 if (rec_ptr)
7318 lpfc_read_fcf_conn_tbl(phba, rec_ptr);
7319
7320 }
7321