2 * Copyright (c) 2005-2014 Brocade Communications Systems, Inc.
3 * Copyright (c) 2014- QLogic Corporation.
7 * Linux driver for QLogic BR-series Fibre Channel Host Bus Adapter.
9 * This program is free software; you can redistribute it and/or modify it
10 * under the terms of the GNU General Public License (GPL) Version 2 as
11 * published by the Free Software Foundation
13 * This program is distributed in the hope that it will be useful, but
14 * WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * General Public License for more details.
20 * bfad_im.c Linux driver IM module.
23 #include <linux/export.h>
29 BFA_TRC_FILE(LDRV
, IM
);
31 DEFINE_IDR(bfad_im_port_index
);
32 struct scsi_transport_template
*bfad_im_scsi_transport_template
;
33 struct scsi_transport_template
*bfad_im_scsi_vport_transport_template
;
34 static void bfad_im_itnim_work_handler(struct work_struct
*work
);
35 static int bfad_im_queuecommand(struct Scsi_Host
*h
, struct scsi_cmnd
*cmnd
);
36 static int bfad_im_slave_alloc(struct scsi_device
*sdev
);
37 static void bfad_im_fc_rport_add(struct bfad_im_port_s
*im_port
,
38 struct bfad_itnim_s
*itnim
);
41 bfa_cb_ioim_done(void *drv
, struct bfad_ioim_s
*dio
,
42 enum bfi_ioim_status io_status
, u8 scsi_status
,
43 int sns_len
, u8
*sns_info
, s32 residue
)
45 struct scsi_cmnd
*cmnd
= (struct scsi_cmnd
*)dio
;
46 struct bfad_s
*bfad
= drv
;
47 struct bfad_itnim_data_s
*itnim_data
;
48 struct bfad_itnim_s
*itnim
;
49 u8 host_status
= DID_OK
;
53 bfa_trc(bfad
, scsi_status
);
54 scsi_set_resid(cmnd
, 0);
57 bfa_trc(bfad
, sns_len
);
58 if (sns_len
> SCSI_SENSE_BUFFERSIZE
)
59 sns_len
= SCSI_SENSE_BUFFERSIZE
;
60 memcpy(cmnd
->sense_buffer
, sns_info
, sns_len
);
64 bfa_trc(bfad
, residue
);
65 scsi_set_resid(cmnd
, residue
);
66 if (!sns_len
&& (scsi_status
== SAM_STAT_GOOD
) &&
67 (scsi_bufflen(cmnd
) - residue
) <
70 host_status
= DID_ERROR
;
73 cmnd
->result
= host_status
<< 16 | scsi_status
;
77 case BFI_IOIM_STS_TIMEDOUT
:
78 cmnd
->result
= DID_TIME_OUT
<< 16;
80 case BFI_IOIM_STS_PATHTOV
:
81 cmnd
->result
= DID_TRANSPORT_DISRUPTED
<< 16;
84 cmnd
->result
= DID_ERROR
<< 16;
87 /* Unmap DMA, if host is NULL, it means a scsi passthru cmd */
88 if (cmnd
->device
->host
!= NULL
)
91 cmnd
->host_scribble
= NULL
;
92 bfa_trc(bfad
, cmnd
->result
);
94 itnim_data
= cmnd
->device
->hostdata
;
96 itnim
= itnim_data
->itnim
;
97 if (!cmnd
->result
&& itnim
&&
98 (bfa_lun_queue_depth
> cmnd
->device
->queue_depth
)) {
99 /* Queue depth adjustment for good status completion */
100 bfad_ramp_up_qdepth(itnim
, cmnd
->device
);
101 } else if (cmnd
->result
== SAM_STAT_TASK_SET_FULL
&& itnim
) {
103 bfad_handle_qfull(itnim
, cmnd
->device
);
107 cmnd
->scsi_done(cmnd
);
111 bfa_cb_ioim_good_comp(void *drv
, struct bfad_ioim_s
*dio
)
113 struct scsi_cmnd
*cmnd
= (struct scsi_cmnd
*)dio
;
114 struct bfad_itnim_data_s
*itnim_data
;
115 struct bfad_itnim_s
*itnim
;
117 cmnd
->result
= DID_OK
<< 16 | SCSI_STATUS_GOOD
;
119 /* Unmap DMA, if host is NULL, it means a scsi passthru cmd */
120 if (cmnd
->device
->host
!= NULL
)
121 scsi_dma_unmap(cmnd
);
123 cmnd
->host_scribble
= NULL
;
125 /* Queue depth adjustment */
126 if (bfa_lun_queue_depth
> cmnd
->device
->queue_depth
) {
127 itnim_data
= cmnd
->device
->hostdata
;
129 itnim
= itnim_data
->itnim
;
131 bfad_ramp_up_qdepth(itnim
, cmnd
->device
);
135 cmnd
->scsi_done(cmnd
);
139 bfa_cb_ioim_abort(void *drv
, struct bfad_ioim_s
*dio
)
141 struct scsi_cmnd
*cmnd
= (struct scsi_cmnd
*)dio
;
142 struct bfad_s
*bfad
= drv
;
144 cmnd
->result
= DID_ERROR
<< 16;
146 /* Unmap DMA, if host is NULL, it means a scsi passthru cmd */
147 if (cmnd
->device
->host
!= NULL
)
148 scsi_dma_unmap(cmnd
);
150 bfa_trc(bfad
, cmnd
->result
);
151 cmnd
->host_scribble
= NULL
;
155 bfa_cb_tskim_done(void *bfad
, struct bfad_tskim_s
*dtsk
,
156 enum bfi_tskim_status tsk_status
)
158 struct scsi_cmnd
*cmnd
= (struct scsi_cmnd
*)dtsk
;
159 wait_queue_head_t
*wq
;
161 cmnd
->SCp
.Status
|= tsk_status
<< 1;
162 set_bit(IO_DONE_BIT
, (unsigned long *)&cmnd
->SCp
.Status
);
163 wq
= (wait_queue_head_t
*) cmnd
->SCp
.ptr
;
164 cmnd
->SCp
.ptr
= NULL
;
171 * Scsi_Host_template SCSI host template
174 * Scsi_Host template entry, returns BFAD PCI info.
177 bfad_im_info(struct Scsi_Host
*shost
)
179 static char bfa_buf
[256];
180 struct bfad_im_port_s
*im_port
=
181 (struct bfad_im_port_s
*) shost
->hostdata
[0];
182 struct bfad_s
*bfad
= im_port
->bfad
;
184 memset(bfa_buf
, 0, sizeof(bfa_buf
));
185 snprintf(bfa_buf
, sizeof(bfa_buf
),
186 "QLogic BR-series FC/FCOE Adapter, hwpath: %s driver: %s",
187 bfad
->pci_name
, BFAD_DRIVER_VERSION
);
193 * Scsi_Host template entry, aborts the specified SCSI command.
195 * Returns: SUCCESS or FAILED.
198 bfad_im_abort_handler(struct scsi_cmnd
*cmnd
)
200 struct Scsi_Host
*shost
= cmnd
->device
->host
;
201 struct bfad_im_port_s
*im_port
=
202 (struct bfad_im_port_s
*) shost
->hostdata
[0];
203 struct bfad_s
*bfad
= im_port
->bfad
;
204 struct bfa_ioim_s
*hal_io
;
209 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
210 hal_io
= (struct bfa_ioim_s
*) cmnd
->host_scribble
;
212 /* IO has been completed, return success */
216 if (hal_io
->dio
!= (struct bfad_ioim_s
*) cmnd
) {
221 bfa_trc(bfad
, hal_io
->iotag
);
222 BFA_LOG(KERN_INFO
, bfad
, bfa_log_level
,
223 "scsi%d: abort cmnd %p iotag %x\n",
224 im_port
->shost
->host_no
, cmnd
, hal_io
->iotag
);
225 (void) bfa_ioim_abort(hal_io
);
226 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
228 /* Need to wait until the command get aborted */
230 while ((struct bfa_ioim_s
*) cmnd
->host_scribble
== hal_io
) {
231 set_current_state(TASK_UNINTERRUPTIBLE
);
232 schedule_timeout(timeout
);
233 if (timeout
< 4 * HZ
)
237 cmnd
->scsi_done(cmnd
);
238 bfa_trc(bfad
, hal_io
->iotag
);
239 BFA_LOG(KERN_INFO
, bfad
, bfa_log_level
,
240 "scsi%d: complete abort 0x%p iotag 0x%x\n",
241 im_port
->shost
->host_no
, cmnd
, hal_io
->iotag
);
244 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
249 bfad_im_target_reset_send(struct bfad_s
*bfad
, struct scsi_cmnd
*cmnd
,
250 struct bfad_itnim_s
*itnim
)
252 struct bfa_tskim_s
*tskim
;
253 struct bfa_itnim_s
*bfa_itnim
;
254 bfa_status_t rc
= BFA_STATUS_OK
;
255 struct scsi_lun scsilun
;
257 tskim
= bfa_tskim_alloc(&bfad
->bfa
, (struct bfad_tskim_s
*) cmnd
);
259 BFA_LOG(KERN_ERR
, bfad
, bfa_log_level
,
260 "target reset, fail to allocate tskim\n");
261 rc
= BFA_STATUS_FAILED
;
266 * Set host_scribble to NULL to avoid aborting a task command if
269 cmnd
->host_scribble
= NULL
;
270 cmnd
->SCp
.Status
= 0;
271 bfa_itnim
= bfa_fcs_itnim_get_halitn(&itnim
->fcs_itnim
);
273 * bfa_itnim can be NULL if the port gets disconnected and the bfa
274 * and fcs layers have cleaned up their nexus with the targets and
275 * the same has not been cleaned up by the shim
277 if (bfa_itnim
== NULL
) {
278 bfa_tskim_free(tskim
);
279 BFA_LOG(KERN_ERR
, bfad
, bfa_log_level
,
280 "target reset, bfa_itnim is NULL\n");
281 rc
= BFA_STATUS_FAILED
;
285 memset(&scsilun
, 0, sizeof(scsilun
));
286 bfa_tskim_start(tskim
, bfa_itnim
, scsilun
,
287 FCP_TM_TARGET_RESET
, BFAD_TARGET_RESET_TMO
);
293 * Scsi_Host template entry, resets a LUN and abort its all commands.
295 * Returns: SUCCESS or FAILED.
299 bfad_im_reset_lun_handler(struct scsi_cmnd
*cmnd
)
301 struct Scsi_Host
*shost
= cmnd
->device
->host
;
302 struct bfad_im_port_s
*im_port
=
303 (struct bfad_im_port_s
*) shost
->hostdata
[0];
304 struct bfad_itnim_data_s
*itnim_data
= cmnd
->device
->hostdata
;
305 struct bfad_s
*bfad
= im_port
->bfad
;
306 struct bfa_tskim_s
*tskim
;
307 struct bfad_itnim_s
*itnim
;
308 struct bfa_itnim_s
*bfa_itnim
;
309 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wq
);
312 enum bfi_tskim_status task_status
;
313 struct scsi_lun scsilun
;
315 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
316 itnim
= itnim_data
->itnim
;
318 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
323 tskim
= bfa_tskim_alloc(&bfad
->bfa
, (struct bfad_tskim_s
*) cmnd
);
325 BFA_LOG(KERN_ERR
, bfad
, bfa_log_level
,
326 "LUN reset, fail to allocate tskim");
327 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
333 * Set host_scribble to NULL to avoid aborting a task command
336 cmnd
->host_scribble
= NULL
;
337 cmnd
->SCp
.ptr
= (char *)&wq
;
338 cmnd
->SCp
.Status
= 0;
339 bfa_itnim
= bfa_fcs_itnim_get_halitn(&itnim
->fcs_itnim
);
341 * bfa_itnim can be NULL if the port gets disconnected and the bfa
342 * and fcs layers have cleaned up their nexus with the targets and
343 * the same has not been cleaned up by the shim
345 if (bfa_itnim
== NULL
) {
346 bfa_tskim_free(tskim
);
347 BFA_LOG(KERN_ERR
, bfad
, bfa_log_level
,
348 "lun reset, bfa_itnim is NULL\n");
349 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
353 int_to_scsilun(cmnd
->device
->lun
, &scsilun
);
354 bfa_tskim_start(tskim
, bfa_itnim
, scsilun
,
355 FCP_TM_LUN_RESET
, BFAD_LUN_RESET_TMO
);
356 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
358 wait_event(wq
, test_bit(IO_DONE_BIT
,
359 (unsigned long *)&cmnd
->SCp
.Status
));
361 task_status
= cmnd
->SCp
.Status
>> 1;
362 if (task_status
!= BFI_TSKIM_STS_OK
) {
363 BFA_LOG(KERN_ERR
, bfad
, bfa_log_level
,
364 "LUN reset failure, status: %d\n", task_status
);
373 * Scsi_Host template entry, resets the target and abort all commands.
376 bfad_im_reset_target_handler(struct scsi_cmnd
*cmnd
)
378 struct Scsi_Host
*shost
= cmnd
->device
->host
;
379 struct scsi_target
*starget
= scsi_target(cmnd
->device
);
380 struct bfad_im_port_s
*im_port
=
381 (struct bfad_im_port_s
*) shost
->hostdata
[0];
382 struct bfad_s
*bfad
= im_port
->bfad
;
383 struct bfad_itnim_s
*itnim
;
385 u32 rc
, rtn
= FAILED
;
386 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wq
);
387 enum bfi_tskim_status task_status
;
389 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
390 itnim
= bfad_get_itnim(im_port
, starget
->id
);
392 cmnd
->SCp
.ptr
= (char *)&wq
;
393 rc
= bfad_im_target_reset_send(bfad
, cmnd
, itnim
);
394 if (rc
== BFA_STATUS_OK
) {
395 /* wait target reset to complete */
396 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
397 wait_event(wq
, test_bit(IO_DONE_BIT
,
398 (unsigned long *)&cmnd
->SCp
.Status
));
399 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
401 task_status
= cmnd
->SCp
.Status
>> 1;
402 if (task_status
!= BFI_TSKIM_STS_OK
)
403 BFA_LOG(KERN_ERR
, bfad
, bfa_log_level
,
404 "target reset failure,"
405 " status: %d\n", task_status
);
410 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
416 * Scsi_Host template entry slave_destroy.
419 bfad_im_slave_destroy(struct scsi_device
*sdev
)
421 sdev
->hostdata
= NULL
;
426 * BFA FCS itnim callbacks
430 * BFA FCS itnim alloc callback, after successful PRLI
434 bfa_fcb_itnim_alloc(struct bfad_s
*bfad
, struct bfa_fcs_itnim_s
**itnim
,
435 struct bfad_itnim_s
**itnim_drv
)
437 *itnim_drv
= kzalloc(sizeof(struct bfad_itnim_s
), GFP_ATOMIC
);
438 if (*itnim_drv
== NULL
)
441 (*itnim_drv
)->im
= bfad
->im
;
442 *itnim
= &(*itnim_drv
)->fcs_itnim
;
443 (*itnim_drv
)->state
= ITNIM_STATE_NONE
;
446 * Initiaze the itnim_work
448 INIT_WORK(&(*itnim_drv
)->itnim_work
, bfad_im_itnim_work_handler
);
449 bfad
->bfad_flags
|= BFAD_RPORT_ONLINE
;
454 * BFA FCS itnim free callback.
455 * Context: Interrupt. bfad_lock is held
458 bfa_fcb_itnim_free(struct bfad_s
*bfad
, struct bfad_itnim_s
*itnim_drv
)
460 struct bfad_port_s
*port
;
463 char wwpn_str
[32], fcid_str
[16];
464 struct bfad_im_s
*im
= itnim_drv
->im
;
466 /* online to free state transtion should not happen */
467 WARN_ON(itnim_drv
->state
== ITNIM_STATE_ONLINE
);
469 itnim_drv
->queue_work
= 1;
470 /* offline request is not yet done, use the same request to free */
471 if (itnim_drv
->state
== ITNIM_STATE_OFFLINE_PENDING
)
472 itnim_drv
->queue_work
= 0;
474 itnim_drv
->state
= ITNIM_STATE_FREE
;
475 port
= bfa_fcs_itnim_get_drvport(&itnim_drv
->fcs_itnim
);
476 itnim_drv
->im_port
= port
->im_port
;
477 wwpn
= bfa_fcs_itnim_get_pwwn(&itnim_drv
->fcs_itnim
);
478 fcid
= bfa_fcs_itnim_get_fcid(&itnim_drv
->fcs_itnim
);
479 wwn2str(wwpn_str
, wwpn
);
480 fcid2str(fcid_str
, fcid
);
481 BFA_LOG(KERN_INFO
, bfad
, bfa_log_level
,
482 "ITNIM FREE scsi%d: FCID: %s WWPN: %s\n",
483 port
->im_port
->shost
->host_no
,
486 /* ITNIM processing */
487 if (itnim_drv
->queue_work
)
488 queue_work(im
->drv_workq
, &itnim_drv
->itnim_work
);
492 * BFA FCS itnim online callback.
493 * Context: Interrupt. bfad_lock is held
496 bfa_fcb_itnim_online(struct bfad_itnim_s
*itnim_drv
)
498 struct bfad_port_s
*port
;
499 struct bfad_im_s
*im
= itnim_drv
->im
;
501 itnim_drv
->bfa_itnim
= bfa_fcs_itnim_get_halitn(&itnim_drv
->fcs_itnim
);
502 port
= bfa_fcs_itnim_get_drvport(&itnim_drv
->fcs_itnim
);
503 itnim_drv
->state
= ITNIM_STATE_ONLINE
;
504 itnim_drv
->queue_work
= 1;
505 itnim_drv
->im_port
= port
->im_port
;
507 /* ITNIM processing */
508 if (itnim_drv
->queue_work
)
509 queue_work(im
->drv_workq
, &itnim_drv
->itnim_work
);
513 * BFA FCS itnim offline callback.
514 * Context: Interrupt. bfad_lock is held
517 bfa_fcb_itnim_offline(struct bfad_itnim_s
*itnim_drv
)
519 struct bfad_port_s
*port
;
521 struct bfad_im_s
*im
= itnim_drv
->im
;
523 port
= bfa_fcs_itnim_get_drvport(&itnim_drv
->fcs_itnim
);
525 if ((bfad
->pport
.flags
& BFAD_PORT_DELETE
) ||
526 (port
->flags
& BFAD_PORT_DELETE
)) {
527 itnim_drv
->state
= ITNIM_STATE_OFFLINE
;
530 itnim_drv
->im_port
= port
->im_port
;
531 itnim_drv
->state
= ITNIM_STATE_OFFLINE_PENDING
;
532 itnim_drv
->queue_work
= 1;
534 /* ITNIM processing */
535 if (itnim_drv
->queue_work
)
536 queue_work(im
->drv_workq
, &itnim_drv
->itnim_work
);
540 * Allocate a Scsi_Host for a port.
543 bfad_im_scsi_host_alloc(struct bfad_s
*bfad
, struct bfad_im_port_s
*im_port
,
546 struct bfad_im_port_pointer
*im_portp
;
549 mutex_lock(&bfad_mutex
);
550 error
= idr_alloc(&bfad_im_port_index
, im_port
, 0, 0, GFP_KERNEL
);
552 mutex_unlock(&bfad_mutex
);
553 printk(KERN_WARNING
"idr_alloc failure\n");
556 im_port
->idr_id
= error
;
557 mutex_unlock(&bfad_mutex
);
559 im_port
->shost
= bfad_scsi_host_alloc(im_port
, bfad
);
560 if (!im_port
->shost
) {
565 im_portp
= shost_priv(im_port
->shost
);
566 im_portp
->p
= im_port
;
567 im_port
->shost
->unique_id
= im_port
->idr_id
;
568 im_port
->shost
->this_id
= -1;
569 im_port
->shost
->max_id
= MAX_FCP_TARGET
;
570 im_port
->shost
->max_lun
= MAX_FCP_LUN
;
571 im_port
->shost
->max_cmd_len
= 16;
572 im_port
->shost
->can_queue
= bfad
->cfg_data
.ioc_queue_depth
;
573 if (im_port
->port
->pvb_type
== BFAD_PORT_PHYS_BASE
)
574 im_port
->shost
->transportt
= bfad_im_scsi_transport_template
;
576 im_port
->shost
->transportt
=
577 bfad_im_scsi_vport_transport_template
;
579 error
= scsi_add_host_with_dma(im_port
->shost
, dev
, &bfad
->pcidev
->dev
);
581 printk(KERN_WARNING
"scsi_add_host failure %d\n", error
);
588 scsi_host_put(im_port
->shost
);
589 im_port
->shost
= NULL
;
591 mutex_lock(&bfad_mutex
);
592 idr_remove(&bfad_im_port_index
, im_port
->idr_id
);
593 mutex_unlock(&bfad_mutex
);
599 bfad_im_scsi_host_free(struct bfad_s
*bfad
, struct bfad_im_port_s
*im_port
)
601 bfa_trc(bfad
, bfad
->inst_no
);
602 BFA_LOG(KERN_INFO
, bfad
, bfa_log_level
, "Free scsi%d\n",
603 im_port
->shost
->host_no
);
605 fc_remove_host(im_port
->shost
);
607 scsi_remove_host(im_port
->shost
);
608 scsi_host_put(im_port
->shost
);
610 mutex_lock(&bfad_mutex
);
611 idr_remove(&bfad_im_port_index
, im_port
->idr_id
);
612 mutex_unlock(&bfad_mutex
);
616 bfad_im_port_delete_handler(struct work_struct
*work
)
618 struct bfad_im_port_s
*im_port
=
619 container_of(work
, struct bfad_im_port_s
, port_delete_work
);
621 if (im_port
->port
->pvb_type
!= BFAD_PORT_PHYS_BASE
) {
622 im_port
->flags
|= BFAD_PORT_DELETE
;
623 fc_vport_terminate(im_port
->fc_vport
);
628 bfad_im_port_new(struct bfad_s
*bfad
, struct bfad_port_s
*port
)
630 int rc
= BFA_STATUS_OK
;
631 struct bfad_im_port_s
*im_port
;
633 im_port
= kzalloc(sizeof(struct bfad_im_port_s
), GFP_ATOMIC
);
634 if (im_port
== NULL
) {
635 rc
= BFA_STATUS_ENOMEM
;
638 port
->im_port
= im_port
;
639 im_port
->port
= port
;
640 im_port
->bfad
= bfad
;
642 INIT_WORK(&im_port
->port_delete_work
, bfad_im_port_delete_handler
);
643 INIT_LIST_HEAD(&im_port
->itnim_mapped_list
);
644 INIT_LIST_HEAD(&im_port
->binding_list
);
651 bfad_im_port_delete(struct bfad_s
*bfad
, struct bfad_port_s
*port
)
653 struct bfad_im_port_s
*im_port
= port
->im_port
;
655 queue_work(bfad
->im
->drv_workq
,
656 &im_port
->port_delete_work
);
660 bfad_im_port_clean(struct bfad_im_port_s
*im_port
)
662 struct bfad_fcp_binding
*bp
, *bp_new
;
664 struct bfad_s
*bfad
= im_port
->bfad
;
666 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
667 list_for_each_entry_safe(bp
, bp_new
, &im_port
->binding_list
,
669 list_del(&bp
->list_entry
);
673 /* the itnim_mapped_list must be empty at this time */
674 WARN_ON(!list_empty(&im_port
->itnim_mapped_list
));
676 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
679 static void bfad_aen_im_notify_handler(struct work_struct
*work
)
681 struct bfad_im_s
*im
=
682 container_of(work
, struct bfad_im_s
, aen_im_notify_work
);
683 struct bfa_aen_entry_s
*aen_entry
;
684 struct bfad_s
*bfad
= im
->bfad
;
685 struct Scsi_Host
*shost
= bfad
->pport
.im_port
->shost
;
689 while (!list_empty(&bfad
->active_aen_q
)) {
690 spin_lock_irqsave(&bfad
->bfad_aen_spinlock
, flags
);
691 bfa_q_deq(&bfad
->active_aen_q
, &aen_entry
);
692 spin_unlock_irqrestore(&bfad
->bfad_aen_spinlock
, flags
);
693 event_data
= (char *)aen_entry
+ sizeof(struct list_head
);
694 fc_host_post_vendor_event(shost
, fc_get_event_number(),
695 sizeof(struct bfa_aen_entry_s
) -
696 sizeof(struct list_head
),
697 (char *)event_data
, BFAD_NL_VENDOR_ID
);
698 spin_lock_irqsave(&bfad
->bfad_aen_spinlock
, flags
);
699 list_add_tail(&aen_entry
->qe
, &bfad
->free_aen_q
);
700 spin_unlock_irqrestore(&bfad
->bfad_aen_spinlock
, flags
);
705 bfad_im_probe(struct bfad_s
*bfad
)
707 struct bfad_im_s
*im
;
709 im
= kzalloc(sizeof(struct bfad_im_s
), GFP_KERNEL
);
711 return BFA_STATUS_ENOMEM
;
716 if (bfad_thread_workq(bfad
) != BFA_STATUS_OK
) {
718 return BFA_STATUS_FAILED
;
721 INIT_WORK(&im
->aen_im_notify_work
, bfad_aen_im_notify_handler
);
722 return BFA_STATUS_OK
;
726 bfad_im_probe_undo(struct bfad_s
*bfad
)
729 bfad_destroy_workq(bfad
->im
);
736 bfad_scsi_host_alloc(struct bfad_im_port_s
*im_port
, struct bfad_s
*bfad
)
738 struct scsi_host_template
*sht
;
740 if (im_port
->port
->pvb_type
== BFAD_PORT_PHYS_BASE
)
741 sht
= &bfad_im_scsi_host_template
;
743 sht
= &bfad_im_vport_template
;
745 if (max_xfer_size
!= BFAD_MAX_SECTORS
>> 1)
746 sht
->max_sectors
= max_xfer_size
<< 1;
748 sht
->sg_tablesize
= bfad
->cfg_data
.io_max_sge
;
750 return scsi_host_alloc(sht
, sizeof(struct bfad_im_port_pointer
));
754 bfad_scsi_host_free(struct bfad_s
*bfad
, struct bfad_im_port_s
*im_port
)
756 if (!(im_port
->flags
& BFAD_PORT_DELETE
))
757 flush_workqueue(bfad
->im
->drv_workq
);
758 bfad_im_scsi_host_free(im_port
->bfad
, im_port
);
759 bfad_im_port_clean(im_port
);
764 bfad_destroy_workq(struct bfad_im_s
*im
)
766 if (im
&& im
->drv_workq
) {
767 flush_workqueue(im
->drv_workq
);
768 destroy_workqueue(im
->drv_workq
);
769 im
->drv_workq
= NULL
;
774 bfad_thread_workq(struct bfad_s
*bfad
)
776 struct bfad_im_s
*im
= bfad
->im
;
779 snprintf(im
->drv_workq_name
, KOBJ_NAME_LEN
, "bfad_wq_%d",
781 im
->drv_workq
= create_singlethread_workqueue(im
->drv_workq_name
);
783 return BFA_STATUS_FAILED
;
785 return BFA_STATUS_OK
;
789 * Scsi_Host template entry.
792 * OS entry point to adjust the queue_depths on a per-device basis.
793 * Called once per device during the bus scan.
794 * Return non-zero if fails.
797 bfad_im_slave_configure(struct scsi_device
*sdev
)
799 scsi_change_queue_depth(sdev
, bfa_lun_queue_depth
);
803 struct scsi_host_template bfad_im_scsi_host_template
= {
804 .module
= THIS_MODULE
,
805 .name
= BFAD_DRIVER_NAME
,
806 .info
= bfad_im_info
,
807 .queuecommand
= bfad_im_queuecommand
,
808 .eh_timed_out
= fc_eh_timed_out
,
809 .eh_abort_handler
= bfad_im_abort_handler
,
810 .eh_device_reset_handler
= bfad_im_reset_lun_handler
,
811 .eh_target_reset_handler
= bfad_im_reset_target_handler
,
813 .slave_alloc
= bfad_im_slave_alloc
,
814 .slave_configure
= bfad_im_slave_configure
,
815 .slave_destroy
= bfad_im_slave_destroy
,
818 .sg_tablesize
= BFAD_IO_MAX_SGE
,
820 .use_clustering
= ENABLE_CLUSTERING
,
821 .shost_attrs
= bfad_im_host_attrs
,
822 .max_sectors
= BFAD_MAX_SECTORS
,
823 .vendor_id
= BFA_PCI_VENDOR_ID_BROCADE
,
826 struct scsi_host_template bfad_im_vport_template
= {
827 .module
= THIS_MODULE
,
828 .name
= BFAD_DRIVER_NAME
,
829 .info
= bfad_im_info
,
830 .queuecommand
= bfad_im_queuecommand
,
831 .eh_timed_out
= fc_eh_timed_out
,
832 .eh_abort_handler
= bfad_im_abort_handler
,
833 .eh_device_reset_handler
= bfad_im_reset_lun_handler
,
834 .eh_target_reset_handler
= bfad_im_reset_target_handler
,
836 .slave_alloc
= bfad_im_slave_alloc
,
837 .slave_configure
= bfad_im_slave_configure
,
838 .slave_destroy
= bfad_im_slave_destroy
,
841 .sg_tablesize
= BFAD_IO_MAX_SGE
,
843 .use_clustering
= ENABLE_CLUSTERING
,
844 .shost_attrs
= bfad_im_vport_attrs
,
845 .max_sectors
= BFAD_MAX_SECTORS
,
849 bfad_im_module_init(void)
851 bfad_im_scsi_transport_template
=
852 fc_attach_transport(&bfad_im_fc_function_template
);
853 if (!bfad_im_scsi_transport_template
)
854 return BFA_STATUS_ENOMEM
;
856 bfad_im_scsi_vport_transport_template
=
857 fc_attach_transport(&bfad_im_vport_fc_function_template
);
858 if (!bfad_im_scsi_vport_transport_template
) {
859 fc_release_transport(bfad_im_scsi_transport_template
);
860 return BFA_STATUS_ENOMEM
;
863 return BFA_STATUS_OK
;
867 bfad_im_module_exit(void)
869 if (bfad_im_scsi_transport_template
)
870 fc_release_transport(bfad_im_scsi_transport_template
);
872 if (bfad_im_scsi_vport_transport_template
)
873 fc_release_transport(bfad_im_scsi_vport_transport_template
);
875 idr_destroy(&bfad_im_port_index
);
879 bfad_ramp_up_qdepth(struct bfad_itnim_s
*itnim
, struct scsi_device
*sdev
)
881 struct scsi_device
*tmp_sdev
;
883 if (((jiffies
- itnim
->last_ramp_up_time
) >
884 BFA_QUEUE_FULL_RAMP_UP_TIME
* HZ
) &&
885 ((jiffies
- itnim
->last_queue_full_time
) >
886 BFA_QUEUE_FULL_RAMP_UP_TIME
* HZ
)) {
887 shost_for_each_device(tmp_sdev
, sdev
->host
) {
888 if (bfa_lun_queue_depth
> tmp_sdev
->queue_depth
) {
889 if (tmp_sdev
->id
!= sdev
->id
)
891 scsi_change_queue_depth(tmp_sdev
,
892 tmp_sdev
->queue_depth
+ 1);
894 itnim
->last_ramp_up_time
= jiffies
;
901 bfad_handle_qfull(struct bfad_itnim_s
*itnim
, struct scsi_device
*sdev
)
903 struct scsi_device
*tmp_sdev
;
905 itnim
->last_queue_full_time
= jiffies
;
907 shost_for_each_device(tmp_sdev
, sdev
->host
) {
908 if (tmp_sdev
->id
!= sdev
->id
)
910 scsi_track_queue_full(tmp_sdev
, tmp_sdev
->queue_depth
- 1);
914 struct bfad_itnim_s
*
915 bfad_get_itnim(struct bfad_im_port_s
*im_port
, int id
)
917 struct bfad_itnim_s
*itnim
= NULL
;
919 /* Search the mapped list for this target ID */
920 list_for_each_entry(itnim
, &im_port
->itnim_mapped_list
, list_entry
) {
921 if (id
== itnim
->scsi_tgt_id
)
929 * Function is invoked from the SCSI Host Template slave_alloc() entry point.
930 * Has the logic to query the LUN Mask database to check if this LUN needs to
931 * be made visible to the SCSI mid-layer or not.
933 * Returns BFA_STATUS_OK if this LUN needs to be added to the OS stack.
934 * Returns -ENXIO to notify SCSI mid-layer to not add this LUN to the OS stack.
937 bfad_im_check_if_make_lun_visible(struct scsi_device
*sdev
,
938 struct fc_rport
*rport
)
940 struct bfad_itnim_data_s
*itnim_data
=
941 (struct bfad_itnim_data_s
*) rport
->dd_data
;
942 struct bfa_s
*bfa
= itnim_data
->itnim
->bfa_itnim
->bfa
;
943 struct bfa_rport_s
*bfa_rport
= itnim_data
->itnim
->bfa_itnim
->rport
;
944 struct bfa_lun_mask_s
*lun_list
= bfa_get_lun_mask_list(bfa
);
945 int i
= 0, ret
= -ENXIO
;
947 for (i
= 0; i
< MAX_LUN_MASK_CFG
; i
++) {
948 if (lun_list
[i
].state
== BFA_IOIM_LUN_MASK_ACTIVE
&&
949 scsilun_to_int(&lun_list
[i
].lun
) == sdev
->lun
&&
950 lun_list
[i
].rp_tag
== bfa_rport
->rport_tag
&&
951 lun_list
[i
].lp_tag
== (u8
)bfa_rport
->rport_info
.lp_tag
) {
960 * Scsi_Host template entry slave_alloc
963 bfad_im_slave_alloc(struct scsi_device
*sdev
)
965 struct fc_rport
*rport
= starget_to_rport(scsi_target(sdev
));
966 struct bfad_itnim_data_s
*itnim_data
;
969 if (!rport
|| fc_remote_port_chkready(rport
))
972 itnim_data
= (struct bfad_itnim_data_s
*) rport
->dd_data
;
973 bfa
= itnim_data
->itnim
->bfa_itnim
->bfa
;
975 if (bfa_get_lun_mask_status(bfa
) == BFA_LUNMASK_ENABLED
) {
977 * We should not mask LUN 0 - since this will translate
978 * to no LUN / TARGET for SCSI ml resulting no scan.
980 if (sdev
->lun
== 0) {
981 sdev
->sdev_bflags
|= BLIST_NOREPORTLUN
|
987 * Query LUN Mask configuration - to expose this LUN
988 * to the SCSI mid-layer or to mask it.
990 if (bfad_im_check_if_make_lun_visible(sdev
, rport
) !=
995 sdev
->hostdata
= rport
->dd_data
;
1001 bfad_im_supported_speeds(struct bfa_s
*bfa
)
1003 struct bfa_ioc_attr_s
*ioc_attr
;
1004 u32 supported_speed
= 0;
1006 ioc_attr
= kzalloc(sizeof(struct bfa_ioc_attr_s
), GFP_KERNEL
);
1010 bfa_ioc_get_attr(&bfa
->ioc
, ioc_attr
);
1011 if (ioc_attr
->adapter_attr
.max_speed
== BFA_PORT_SPEED_16GBPS
)
1012 supported_speed
|= FC_PORTSPEED_16GBIT
| FC_PORTSPEED_8GBIT
|
1013 FC_PORTSPEED_4GBIT
| FC_PORTSPEED_2GBIT
;
1014 else if (ioc_attr
->adapter_attr
.max_speed
== BFA_PORT_SPEED_8GBPS
) {
1015 if (ioc_attr
->adapter_attr
.is_mezz
) {
1016 supported_speed
|= FC_PORTSPEED_8GBIT
|
1017 FC_PORTSPEED_4GBIT
|
1018 FC_PORTSPEED_2GBIT
| FC_PORTSPEED_1GBIT
;
1020 supported_speed
|= FC_PORTSPEED_8GBIT
|
1021 FC_PORTSPEED_4GBIT
|
1024 } else if (ioc_attr
->adapter_attr
.max_speed
== BFA_PORT_SPEED_4GBPS
) {
1025 supported_speed
|= FC_PORTSPEED_4GBIT
| FC_PORTSPEED_2GBIT
|
1027 } else if (ioc_attr
->adapter_attr
.max_speed
== BFA_PORT_SPEED_10GBPS
) {
1028 supported_speed
|= FC_PORTSPEED_10GBIT
;
1031 return supported_speed
;
1035 bfad_fc_host_init(struct bfad_im_port_s
*im_port
)
1037 struct Scsi_Host
*host
= im_port
->shost
;
1038 struct bfad_s
*bfad
= im_port
->bfad
;
1039 struct bfad_port_s
*port
= im_port
->port
;
1040 char symname
[BFA_SYMNAME_MAXLEN
];
1041 struct bfa_fcport_s
*fcport
= BFA_FCPORT_MOD(&bfad
->bfa
);
1043 fc_host_node_name(host
) =
1044 cpu_to_be64((bfa_fcs_lport_get_nwwn(port
->fcs_port
)));
1045 fc_host_port_name(host
) =
1046 cpu_to_be64((bfa_fcs_lport_get_pwwn(port
->fcs_port
)));
1047 fc_host_max_npiv_vports(host
) = bfa_lps_get_max_vport(&bfad
->bfa
);
1049 fc_host_supported_classes(host
) = FC_COS_CLASS3
;
1051 memset(fc_host_supported_fc4s(host
), 0,
1052 sizeof(fc_host_supported_fc4s(host
)));
1053 if (supported_fc4s
& BFA_LPORT_ROLE_FCP_IM
)
1054 /* For FCP type 0x08 */
1055 fc_host_supported_fc4s(host
)[2] = 1;
1056 /* For fibre channel services type 0x20 */
1057 fc_host_supported_fc4s(host
)[7] = 1;
1059 strlcpy(symname
, bfad
->bfa_fcs
.fabric
.bport
.port_cfg
.sym_name
.symname
,
1060 BFA_SYMNAME_MAXLEN
);
1061 sprintf(fc_host_symbolic_name(host
), "%s", symname
);
1063 fc_host_supported_speeds(host
) = bfad_im_supported_speeds(&bfad
->bfa
);
1064 fc_host_maxframe_size(host
) = fcport
->cfg
.maxfrsize
;
1068 bfad_im_fc_rport_add(struct bfad_im_port_s
*im_port
, struct bfad_itnim_s
*itnim
)
1070 struct fc_rport_identifiers rport_ids
;
1071 struct fc_rport
*fc_rport
;
1072 struct bfad_itnim_data_s
*itnim_data
;
1074 rport_ids
.node_name
=
1075 cpu_to_be64(bfa_fcs_itnim_get_nwwn(&itnim
->fcs_itnim
));
1076 rport_ids
.port_name
=
1077 cpu_to_be64(bfa_fcs_itnim_get_pwwn(&itnim
->fcs_itnim
));
1079 bfa_hton3b(bfa_fcs_itnim_get_fcid(&itnim
->fcs_itnim
));
1080 rport_ids
.roles
= FC_RPORT_ROLE_UNKNOWN
;
1082 itnim
->fc_rport
= fc_rport
=
1083 fc_remote_port_add(im_port
->shost
, 0, &rport_ids
);
1088 fc_rport
->maxframe_size
=
1089 bfa_fcs_itnim_get_maxfrsize(&itnim
->fcs_itnim
);
1090 fc_rport
->supported_classes
= bfa_fcs_itnim_get_cos(&itnim
->fcs_itnim
);
1092 itnim_data
= fc_rport
->dd_data
;
1093 itnim_data
->itnim
= itnim
;
1095 rport_ids
.roles
|= FC_RPORT_ROLE_FCP_TARGET
;
1097 if (rport_ids
.roles
!= FC_RPORT_ROLE_UNKNOWN
)
1098 fc_remote_port_rolechg(fc_rport
, rport_ids
.roles
);
1100 if ((fc_rport
->scsi_target_id
!= -1)
1101 && (fc_rport
->scsi_target_id
< MAX_FCP_TARGET
))
1102 itnim
->scsi_tgt_id
= fc_rport
->scsi_target_id
;
1104 itnim
->channel
= fc_rport
->channel
;
1110 * Work queue handler using FC transport service
1114 bfad_im_itnim_work_handler(struct work_struct
*work
)
1116 struct bfad_itnim_s
*itnim
= container_of(work
, struct bfad_itnim_s
,
1118 struct bfad_im_s
*im
= itnim
->im
;
1119 struct bfad_s
*bfad
= im
->bfad
;
1120 struct bfad_im_port_s
*im_port
;
1121 unsigned long flags
;
1122 struct fc_rport
*fc_rport
;
1125 char wwpn_str
[32], fcid_str
[16];
1127 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
1128 im_port
= itnim
->im_port
;
1129 bfa_trc(bfad
, itnim
->state
);
1130 switch (itnim
->state
) {
1131 case ITNIM_STATE_ONLINE
:
1132 if (!itnim
->fc_rport
) {
1133 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
1134 bfad_im_fc_rport_add(im_port
, itnim
);
1135 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
1136 wwpn
= bfa_fcs_itnim_get_pwwn(&itnim
->fcs_itnim
);
1137 fcid
= bfa_fcs_itnim_get_fcid(&itnim
->fcs_itnim
);
1138 wwn2str(wwpn_str
, wwpn
);
1139 fcid2str(fcid_str
, fcid
);
1140 list_add_tail(&itnim
->list_entry
,
1141 &im_port
->itnim_mapped_list
);
1142 BFA_LOG(KERN_INFO
, bfad
, bfa_log_level
,
1143 "ITNIM ONLINE Target: %d:0:%d "
1144 "FCID: %s WWPN: %s\n",
1145 im_port
->shost
->host_no
,
1147 fcid_str
, wwpn_str
);
1150 "%s: itnim %llx is already in online state\n",
1152 bfa_fcs_itnim_get_pwwn(&itnim
->fcs_itnim
));
1156 case ITNIM_STATE_OFFLINE_PENDING
:
1157 itnim
->state
= ITNIM_STATE_OFFLINE
;
1158 if (itnim
->fc_rport
) {
1159 fc_rport
= itnim
->fc_rport
;
1160 ((struct bfad_itnim_data_s
*)
1161 fc_rport
->dd_data
)->itnim
= NULL
;
1162 itnim
->fc_rport
= NULL
;
1163 if (!(im_port
->port
->flags
& BFAD_PORT_DELETE
)) {
1164 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
1165 fc_rport
->dev_loss_tmo
=
1166 bfa_fcpim_path_tov_get(&bfad
->bfa
) + 1;
1167 fc_remote_port_delete(fc_rport
);
1168 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
1170 wwpn
= bfa_fcs_itnim_get_pwwn(&itnim
->fcs_itnim
);
1171 fcid
= bfa_fcs_itnim_get_fcid(&itnim
->fcs_itnim
);
1172 wwn2str(wwpn_str
, wwpn
);
1173 fcid2str(fcid_str
, fcid
);
1174 list_del(&itnim
->list_entry
);
1175 BFA_LOG(KERN_INFO
, bfad
, bfa_log_level
,
1176 "ITNIM OFFLINE Target: %d:0:%d "
1177 "FCID: %s WWPN: %s\n",
1178 im_port
->shost
->host_no
,
1180 fcid_str
, wwpn_str
);
1183 case ITNIM_STATE_FREE
:
1184 if (itnim
->fc_rport
) {
1185 fc_rport
= itnim
->fc_rport
;
1186 ((struct bfad_itnim_data_s
*)
1187 fc_rport
->dd_data
)->itnim
= NULL
;
1188 itnim
->fc_rport
= NULL
;
1189 if (!(im_port
->port
->flags
& BFAD_PORT_DELETE
)) {
1190 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
1191 fc_rport
->dev_loss_tmo
=
1192 bfa_fcpim_path_tov_get(&bfad
->bfa
) + 1;
1193 fc_remote_port_delete(fc_rport
);
1194 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
1196 list_del(&itnim
->list_entry
);
1206 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
1210 * Scsi_Host template entry, queue a SCSI command to the BFAD.
1213 bfad_im_queuecommand_lck(struct scsi_cmnd
*cmnd
, void (*done
) (struct scsi_cmnd
*))
1215 struct bfad_im_port_s
*im_port
=
1216 (struct bfad_im_port_s
*) cmnd
->device
->host
->hostdata
[0];
1217 struct bfad_s
*bfad
= im_port
->bfad
;
1218 struct bfad_itnim_data_s
*itnim_data
= cmnd
->device
->hostdata
;
1219 struct bfad_itnim_s
*itnim
;
1220 struct bfa_ioim_s
*hal_io
;
1221 unsigned long flags
;
1224 struct fc_rport
*rport
= starget_to_rport(scsi_target(cmnd
->device
));
1226 rc
= fc_remote_port_chkready(rport
);
1233 if (bfad
->bfad_flags
& BFAD_EEH_BUSY
) {
1234 if (bfad
->bfad_flags
& BFAD_EEH_PCI_CHANNEL_IO_PERM_FAILURE
)
1235 cmnd
->result
= DID_NO_CONNECT
<< 16;
1237 cmnd
->result
= DID_REQUEUE
<< 16;
1242 sg_cnt
= scsi_dma_map(cmnd
);
1244 return SCSI_MLQUEUE_HOST_BUSY
;
1246 cmnd
->scsi_done
= done
;
1248 spin_lock_irqsave(&bfad
->bfad_lock
, flags
);
1249 if (!(bfad
->bfad_flags
& BFAD_HAL_START_DONE
)) {
1251 "bfad%d, queuecommand %p %x failed, BFA stopped\n",
1252 bfad
->inst_no
, cmnd
, cmnd
->cmnd
[0]);
1253 cmnd
->result
= DID_NO_CONNECT
<< 16;
1258 itnim
= itnim_data
->itnim
;
1260 cmnd
->result
= DID_IMM_RETRY
<< 16;
1264 hal_io
= bfa_ioim_alloc(&bfad
->bfa
, (struct bfad_ioim_s
*) cmnd
,
1265 itnim
->bfa_itnim
, sg_cnt
);
1267 printk(KERN_WARNING
"hal_io failure\n");
1268 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
1269 scsi_dma_unmap(cmnd
);
1270 return SCSI_MLQUEUE_HOST_BUSY
;
1273 cmnd
->host_scribble
= (char *)hal_io
;
1274 bfa_ioim_start(hal_io
);
1275 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
1280 spin_unlock_irqrestore(&bfad
->bfad_lock
, flags
);
1281 scsi_dma_unmap(cmnd
);
1288 static DEF_SCSI_QCMD(bfad_im_queuecommand
)
1291 bfad_rport_online_wait(struct bfad_s
*bfad
)
1294 int rport_delay
= 10;
1296 for (i
= 0; !(bfad
->bfad_flags
& BFAD_PORT_ONLINE
)
1297 && i
< bfa_linkup_delay
; i
++) {
1298 set_current_state(TASK_UNINTERRUPTIBLE
);
1299 schedule_timeout(HZ
);
1302 if (bfad
->bfad_flags
& BFAD_PORT_ONLINE
) {
1303 rport_delay
= rport_delay
< bfa_linkup_delay
?
1304 rport_delay
: bfa_linkup_delay
;
1305 for (i
= 0; !(bfad
->bfad_flags
& BFAD_RPORT_ONLINE
)
1306 && i
< rport_delay
; i
++) {
1307 set_current_state(TASK_UNINTERRUPTIBLE
);
1308 schedule_timeout(HZ
);
1311 if (rport_delay
> 0 && (bfad
->bfad_flags
& BFAD_RPORT_ONLINE
)) {
1312 set_current_state(TASK_UNINTERRUPTIBLE
);
1313 schedule_timeout(rport_delay
* HZ
);
1319 bfad_get_linkup_delay(struct bfad_s
*bfad
)
1322 wwn_t wwns
[BFA_PREBOOT_BOOTLUN_MAX
];
1326 * Querying for the boot target port wwns
1327 * -- read from boot information in flash.
1328 * If nwwns > 0 => boot over SAN and set linkup_delay = 30
1329 * else => local boot machine set linkup_delay = 0
1332 bfa_iocfc_get_bootwwns(&bfad
->bfa
, &nwwns
, wwns
);
1335 /* If Boot over SAN set linkup_delay = 30sec */
1338 /* If local boot; no linkup_delay */
1341 return linkup_delay
;