2 * Aic94xx Task Management Functions
4 * Copyright (C) 2005 Adaptec, Inc. All rights reserved.
5 * Copyright (C) 2005 Luben Tuikov <luben_tuikov@adaptec.com>
7 * This file is licensed under GPLv2.
9 * This file is part of the aic94xx driver.
11 * The aic94xx driver is free software; you can redistribute it and/or
12 * modify it under the terms of the GNU General Public License as
13 * published by the Free Software Foundation; version 2 of the
16 * The aic94xx driver is distributed in the hope that it will be useful,
17 * but WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
19 * General Public License for more details.
21 * You should have received a copy of the GNU General Public License
22 * along with the aic94xx driver; if not, write to the Free Software
23 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
27 #include <linux/spinlock.h>
28 #include <linux/gfp.h>
30 #include "aic94xx_sas.h"
31 #include "aic94xx_hwi.h"
33 /* ---------- Internal enqueue ---------- */
35 static int asd_enqueue_internal(struct asd_ascb
*ascb
,
36 void (*tasklet_complete
)(struct asd_ascb
*,
37 struct done_list_struct
*),
38 void (*timed_out
)(unsigned long))
42 ascb
->tasklet_complete
= tasklet_complete
;
45 ascb
->timer
.data
= (unsigned long) ascb
;
46 ascb
->timer
.function
= timed_out
;
47 ascb
->timer
.expires
= jiffies
+ AIC94XX_SCB_TIMEOUT
;
49 add_timer(&ascb
->timer
);
51 res
= asd_post_ascb_list(ascb
->ha
, ascb
, 1);
53 del_timer(&ascb
->timer
);
57 /* ---------- CLEAR NEXUS ---------- */
59 struct tasklet_completion_status
{
66 #define DECLARE_TCS(tcs) \
67 struct tasklet_completion_status tcs = { \
75 static void asd_clear_nexus_tasklet_complete(struct asd_ascb
*ascb
,
76 struct done_list_struct
*dl
)
78 struct tasklet_completion_status
*tcs
= ascb
->uldd_task
;
79 ASD_DPRINTK("%s: here\n", __func__
);
80 if (!del_timer(&ascb
->timer
)) {
81 ASD_DPRINTK("%s: couldn't delete timer\n", __func__
);
84 ASD_DPRINTK("%s: opcode: 0x%x\n", __func__
, dl
->opcode
);
85 tcs
->dl_opcode
= dl
->opcode
;
86 complete(ascb
->completion
);
90 static void asd_clear_nexus_timedout(unsigned long data
)
92 struct asd_ascb
*ascb
= (void *)data
;
93 struct tasklet_completion_status
*tcs
= ascb
->uldd_task
;
95 ASD_DPRINTK("%s: here\n", __func__
);
96 tcs
->dl_opcode
= TMF_RESP_FUNC_FAILED
;
97 complete(ascb
->completion
);
100 #define CLEAR_NEXUS_PRE \
101 struct asd_ascb *ascb; \
104 DECLARE_COMPLETION_ONSTACK(completion); \
107 ASD_DPRINTK("%s: PRE\n", __func__); \
109 ascb = asd_ascb_alloc_list(asd_ha, &res, GFP_KERNEL); \
113 ascb->completion = &completion; \
114 ascb->uldd_task = &tcs; \
116 scb->header.opcode = CLEAR_NEXUS
118 #define CLEAR_NEXUS_POST \
119 ASD_DPRINTK("%s: POST\n", __func__); \
120 res = asd_enqueue_internal(ascb, asd_clear_nexus_tasklet_complete, \
121 asd_clear_nexus_timedout); \
124 ASD_DPRINTK("%s: clear nexus posted, waiting...\n", __func__); \
125 wait_for_completion(&completion); \
126 res = tcs.dl_opcode; \
127 if (res == TC_NO_ERROR) \
128 res = TMF_RESP_FUNC_COMPLETE; \
131 asd_ascb_free(ascb); \
134 int asd_clear_nexus_ha(struct sas_ha_struct
*sas_ha
)
136 struct asd_ha_struct
*asd_ha
= sas_ha
->lldd_ha
;
139 scb
->clear_nexus
.nexus
= NEXUS_ADAPTER
;
143 int asd_clear_nexus_port(struct asd_sas_port
*port
)
145 struct asd_ha_struct
*asd_ha
= port
->ha
->lldd_ha
;
148 scb
->clear_nexus
.nexus
= NEXUS_PORT
;
149 scb
->clear_nexus
.conn_mask
= port
->phy_mask
;
153 enum clear_nexus_phase
{
159 static int asd_clear_nexus_I_T(struct domain_device
*dev
,
160 enum clear_nexus_phase phase
)
162 struct asd_ha_struct
*asd_ha
= dev
->port
->ha
->lldd_ha
;
165 scb
->clear_nexus
.nexus
= NEXUS_I_T
;
167 case NEXUS_PHASE_PRE
:
168 scb
->clear_nexus
.flags
= EXEC_Q
| SUSPEND_TX
;
170 case NEXUS_PHASE_POST
:
171 scb
->clear_nexus
.flags
= SEND_Q
| NOTINQ
;
173 case NEXUS_PHASE_RESUME
:
174 scb
->clear_nexus
.flags
= RESUME_TX
;
176 scb
->clear_nexus
.conn_handle
= cpu_to_le16((u16
)(unsigned long)
181 int asd_I_T_nexus_reset(struct domain_device
*dev
)
184 struct sas_phy
*phy
= sas_get_local_phy(dev
);
185 /* Standard mandates link reset for ATA (type 0) and
186 * hard reset for SSP (type 1) */
187 int reset_type
= (dev
->dev_type
== SAS_SATA_DEV
||
188 (dev
->tproto
& SAS_PROTOCOL_STP
)) ? 0 : 1;
190 asd_clear_nexus_I_T(dev
, NEXUS_PHASE_PRE
);
191 /* send a hard reset */
192 ASD_DPRINTK("sending %s reset to %s\n",
193 reset_type
? "hard" : "soft", dev_name(&phy
->dev
));
194 res
= sas_phy_reset(phy
, reset_type
);
195 if (res
== TMF_RESP_FUNC_COMPLETE
|| res
== -ENODEV
) {
196 /* wait for the maximum settle time */
198 /* clear all outstanding commands (keep nexus suspended) */
199 asd_clear_nexus_I_T(dev
, NEXUS_PHASE_POST
);
201 for (i
= 0 ; i
< 3; i
++) {
202 tmp_res
= asd_clear_nexus_I_T(dev
, NEXUS_PHASE_RESUME
);
203 if (tmp_res
== TC_RESUME
)
208 /* This is a bit of a problem: the sequencer is still suspended
209 * and is refusing to resume. Hope it will resume on a bigger hammer
210 * or the disk is lost */
211 dev_printk(KERN_ERR
, &phy
->dev
,
212 "Failed to resume nexus after reset 0x%x\n", tmp_res
);
214 res
= TMF_RESP_FUNC_FAILED
;
216 sas_put_local_phy(phy
);
220 static int asd_clear_nexus_I_T_L(struct domain_device
*dev
, u8
*lun
)
222 struct asd_ha_struct
*asd_ha
= dev
->port
->ha
->lldd_ha
;
225 scb
->clear_nexus
.nexus
= NEXUS_I_T_L
;
226 scb
->clear_nexus
.flags
= SEND_Q
| EXEC_Q
| NOTINQ
;
227 memcpy(scb
->clear_nexus
.ssp_task
.lun
, lun
, 8);
228 scb
->clear_nexus
.conn_handle
= cpu_to_le16((u16
)(unsigned long)
233 static int asd_clear_nexus_tag(struct sas_task
*task
)
235 struct asd_ha_struct
*asd_ha
= task
->dev
->port
->ha
->lldd_ha
;
236 struct asd_ascb
*tascb
= task
->lldd_task
;
239 scb
->clear_nexus
.nexus
= NEXUS_TAG
;
240 memcpy(scb
->clear_nexus
.ssp_task
.lun
, task
->ssp_task
.LUN
, 8);
241 scb
->clear_nexus
.ssp_task
.tag
= tascb
->tag
;
242 if (task
->dev
->tproto
)
243 scb
->clear_nexus
.conn_handle
= cpu_to_le16((u16
)(unsigned long)
244 task
->dev
->lldd_dev
);
248 static int asd_clear_nexus_index(struct sas_task
*task
)
250 struct asd_ha_struct
*asd_ha
= task
->dev
->port
->ha
->lldd_ha
;
251 struct asd_ascb
*tascb
= task
->lldd_task
;
254 scb
->clear_nexus
.nexus
= NEXUS_TRANS_CX
;
255 if (task
->dev
->tproto
)
256 scb
->clear_nexus
.conn_handle
= cpu_to_le16((u16
)(unsigned long)
257 task
->dev
->lldd_dev
);
258 scb
->clear_nexus
.index
= cpu_to_le16(tascb
->tc_index
);
262 /* ---------- TMFs ---------- */
264 static void asd_tmf_timedout(unsigned long data
)
266 struct asd_ascb
*ascb
= (void *) data
;
267 struct tasklet_completion_status
*tcs
= ascb
->uldd_task
;
269 ASD_DPRINTK("tmf timed out\n");
270 tcs
->tmf_state
= TMF_RESP_FUNC_FAILED
;
271 complete(ascb
->completion
);
274 static int asd_get_tmf_resp_tasklet(struct asd_ascb
*ascb
,
275 struct done_list_struct
*dl
)
277 struct asd_ha_struct
*asd_ha
= ascb
->ha
;
279 struct tc_resp_sb_struct
{
283 } __attribute__ ((packed
)) *resp_sb
= (void *) dl
->status_block
;
285 int edb_id
= ((resp_sb
->flags
& 0x70) >> 4)-1;
286 struct asd_ascb
*escb
;
287 struct asd_dma_tok
*edb
;
288 struct ssp_frame_hdr
*fh
;
289 struct ssp_response_iu
*ru
;
290 int res
= TMF_RESP_FUNC_FAILED
;
292 ASD_DPRINTK("tmf resp tasklet\n");
294 spin_lock_irqsave(&asd_ha
->seq
.tc_index_lock
, flags
);
295 escb
= asd_tc_index_find(&asd_ha
->seq
,
296 (int)le16_to_cpu(resp_sb
->index_escb
));
297 spin_unlock_irqrestore(&asd_ha
->seq
.tc_index_lock
, flags
);
300 ASD_DPRINTK("Uh-oh! No escb for this dl?!\n");
304 edb
= asd_ha
->seq
.edb_arr
[edb_id
+ escb
->edb_index
];
305 ascb
->tag
= *(__be16
*)(edb
->vaddr
+4);
306 fh
= edb
->vaddr
+ 16;
307 ru
= edb
->vaddr
+ 16 + sizeof(*fh
);
309 if (ru
->datapres
== 1) /* Response data present */
310 res
= ru
->resp_data
[3];
316 asd_invalidate_edb(escb
, edb_id
);
320 static void asd_tmf_tasklet_complete(struct asd_ascb
*ascb
,
321 struct done_list_struct
*dl
)
323 struct tasklet_completion_status
*tcs
;
325 if (!del_timer(&ascb
->timer
))
328 tcs
= ascb
->uldd_task
;
329 ASD_DPRINTK("tmf tasklet complete\n");
331 tcs
->dl_opcode
= dl
->opcode
;
333 if (dl
->opcode
== TC_SSP_RESP
) {
334 tcs
->tmf_state
= asd_get_tmf_resp_tasklet(ascb
, dl
);
335 tcs
->tag_valid
= ascb
->tag_valid
;
336 tcs
->tag
= ascb
->tag
;
339 complete(ascb
->completion
);
343 static int asd_clear_nexus(struct sas_task
*task
)
345 int res
= TMF_RESP_FUNC_FAILED
;
347 struct asd_ascb
*tascb
= task
->lldd_task
;
348 DECLARE_COMPLETION_ONSTACK(completion
);
351 tascb
->completion
= &completion
;
353 ASD_DPRINTK("task not done, clearing nexus\n");
354 if (tascb
->tag_valid
)
355 res
= asd_clear_nexus_tag(task
);
357 res
= asd_clear_nexus_index(task
);
358 leftover
= wait_for_completion_timeout(&completion
,
359 AIC94XX_SCB_TIMEOUT
);
360 tascb
->completion
= NULL
;
361 ASD_DPRINTK("came back from clear nexus\n");
362 spin_lock_irqsave(&task
->task_state_lock
, flags
);
364 res
= TMF_RESP_FUNC_FAILED
;
365 if (task
->task_state_flags
& SAS_TASK_STATE_DONE
)
366 res
= TMF_RESP_FUNC_COMPLETE
;
367 spin_unlock_irqrestore(&task
->task_state_lock
, flags
);
373 * asd_abort_task -- ABORT TASK TMF
374 * @task: the task to be aborted
376 * Before calling ABORT TASK the task state flags should be ORed with
377 * SAS_TASK_STATE_ABORTED (unless SAS_TASK_STATE_DONE is set) under
378 * the task_state_lock IRQ spinlock, then ABORT TASK *must* be called.
380 * Implements the ABORT TASK TMF, I_T_L_Q nexus.
381 * Returns: SAS TMF responses (see sas_task.h),
385 * When ABORT TASK returns, the caller of ABORT TASK checks first the
386 * task->task_state_flags, and then the return value of ABORT TASK.
388 * If the task has task state bit SAS_TASK_STATE_DONE set, then the
389 * task was completed successfully prior to it being aborted. The
390 * caller of ABORT TASK has responsibility to call task->task_done()
391 * xor free the task, depending on their framework. The return code
392 * is TMF_RESP_FUNC_FAILED in this case.
394 * Else the SAS_TASK_STATE_DONE bit is not set,
395 * If the return code is TMF_RESP_FUNC_COMPLETE, then
396 * the task was aborted successfully. The caller of
397 * ABORT TASK has responsibility to call task->task_done()
398 * to finish the task, xor free the task depending on their
401 * the ABORT TASK returned some kind of error. The task
402 * was _not_ cancelled. Nothing can be assumed.
403 * The caller of ABORT TASK may wish to retry.
405 int asd_abort_task(struct sas_task
*task
)
407 struct asd_ascb
*tascb
= task
->lldd_task
;
408 struct asd_ha_struct
*asd_ha
= tascb
->ha
;
411 struct asd_ascb
*ascb
= NULL
;
415 DECLARE_COMPLETION_ONSTACK(completion
);
416 DECLARE_COMPLETION_ONSTACK(tascb_completion
);
418 tascb
->completion
= &tascb_completion
;
420 spin_lock_irqsave(&task
->task_state_lock
, flags
);
421 if (task
->task_state_flags
& SAS_TASK_STATE_DONE
) {
422 spin_unlock_irqrestore(&task
->task_state_lock
, flags
);
423 res
= TMF_RESP_FUNC_COMPLETE
;
424 ASD_DPRINTK("%s: task 0x%p done\n", __func__
, task
);
427 spin_unlock_irqrestore(&task
->task_state_lock
, flags
);
429 ascb
= asd_ascb_alloc_list(asd_ha
, &res
, GFP_KERNEL
);
433 ascb
->uldd_task
= &tcs
;
434 ascb
->completion
= &completion
;
436 scb
->header
.opcode
= SCB_ABORT_TASK
;
438 switch (task
->task_proto
) {
439 case SAS_PROTOCOL_SATA
:
440 case SAS_PROTOCOL_STP
:
441 scb
->abort_task
.proto_conn_rate
= (1 << 5); /* STP */
443 case SAS_PROTOCOL_SSP
:
444 scb
->abort_task
.proto_conn_rate
= (1 << 4); /* SSP */
445 scb
->abort_task
.proto_conn_rate
|= task
->dev
->linkrate
;
447 case SAS_PROTOCOL_SMP
:
453 if (task
->task_proto
== SAS_PROTOCOL_SSP
) {
454 scb
->abort_task
.ssp_frame
.frame_type
= SSP_TASK
;
455 memcpy(scb
->abort_task
.ssp_frame
.hashed_dest_addr
,
456 task
->dev
->hashed_sas_addr
, HASHED_SAS_ADDR_SIZE
);
457 memcpy(scb
->abort_task
.ssp_frame
.hashed_src_addr
,
458 task
->dev
->port
->ha
->hashed_sas_addr
,
459 HASHED_SAS_ADDR_SIZE
);
460 scb
->abort_task
.ssp_frame
.tptt
= cpu_to_be16(0xFFFF);
462 memcpy(scb
->abort_task
.ssp_task
.lun
, task
->ssp_task
.LUN
, 8);
463 scb
->abort_task
.ssp_task
.tmf
= TMF_ABORT_TASK
;
464 scb
->abort_task
.ssp_task
.tag
= cpu_to_be16(0xFFFF);
467 scb
->abort_task
.sister_scb
= cpu_to_le16(0xFFFF);
468 scb
->abort_task
.conn_handle
= cpu_to_le16(
469 (u16
)(unsigned long)task
->dev
->lldd_dev
);
470 scb
->abort_task
.retry_count
= 1;
471 scb
->abort_task
.index
= cpu_to_le16((u16
)tascb
->tc_index
);
472 scb
->abort_task
.itnl_to
= cpu_to_le16(ITNL_TIMEOUT_CONST
);
474 res
= asd_enqueue_internal(ascb
, asd_tmf_tasklet_complete
,
478 wait_for_completion(&completion
);
479 ASD_DPRINTK("tmf came back\n");
481 tascb
->tag
= tcs
.tag
;
482 tascb
->tag_valid
= tcs
.tag_valid
;
484 spin_lock_irqsave(&task
->task_state_lock
, flags
);
485 if (task
->task_state_flags
& SAS_TASK_STATE_DONE
) {
486 spin_unlock_irqrestore(&task
->task_state_lock
, flags
);
487 res
= TMF_RESP_FUNC_COMPLETE
;
488 ASD_DPRINTK("%s: task 0x%p done\n", __func__
, task
);
491 spin_unlock_irqrestore(&task
->task_state_lock
, flags
);
493 if (tcs
.dl_opcode
== TC_SSP_RESP
) {
494 /* The task to be aborted has been sent to the device.
495 * We got a Response IU for the ABORT TASK TMF. */
496 if (tcs
.tmf_state
== TMF_RESP_FUNC_COMPLETE
)
497 res
= asd_clear_nexus(task
);
500 } else if (tcs
.dl_opcode
== TC_NO_ERROR
&&
501 tcs
.tmf_state
== TMF_RESP_FUNC_FAILED
) {
503 res
= TMF_RESP_FUNC_FAILED
;
505 /* In the following we assume that the managing layer
506 * will _never_ make a mistake, when issuing ABORT
509 switch (tcs
.dl_opcode
) {
511 res
= asd_clear_nexus(task
);
515 /* The task hasn't been sent to the device xor
516 * we never got a (sane) Response IU for the
520 res
= TMF_RESP_INVALID_FRAME
;
522 case TF_TMF_TASK_DONE
: /* done but not reported yet */
523 res
= TMF_RESP_FUNC_FAILED
;
525 wait_for_completion_timeout(&tascb_completion
,
526 AIC94XX_SCB_TIMEOUT
);
527 spin_lock_irqsave(&task
->task_state_lock
, flags
);
529 res
= TMF_RESP_FUNC_FAILED
;
530 if (task
->task_state_flags
& SAS_TASK_STATE_DONE
)
531 res
= TMF_RESP_FUNC_COMPLETE
;
532 spin_unlock_irqrestore(&task
->task_state_lock
, flags
);
535 case TF_TMF_TAG_FREE
: /* the tag is in the free list */
536 case TF_TMF_NO_CONN_HANDLE
: /* no such device */
537 res
= TMF_RESP_FUNC_COMPLETE
;
539 case TF_TMF_NO_CTX
: /* not in seq, or proto != SSP */
540 res
= TMF_RESP_FUNC_ESUPP
;
545 tascb
->completion
= NULL
;
546 if (res
== TMF_RESP_FUNC_COMPLETE
) {
547 task
->lldd_task
= NULL
;
549 asd_ascb_free(tascb
);
551 ASD_DPRINTK("task 0x%p aborted, res: 0x%x\n", task
, res
);
556 ASD_DPRINTK("task 0x%p aborted, res: 0x%x\n", task
, res
);
561 * asd_initiate_ssp_tmf -- send a TMF to an I_T_L or I_T_L_Q nexus
562 * @dev: pointer to struct domain_device of interest
563 * @lun: pointer to u8[8] which is the LUN
564 * @tmf: the TMF to be performed (see sas_task.h or the SAS spec)
565 * @index: the transaction context of the task to be queried if QT TMF
567 * This function is used to send ABORT TASK SET, CLEAR ACA,
568 * CLEAR TASK SET, LU RESET and QUERY TASK TMFs.
570 * No SCBs should be queued to the I_T_L nexus when this SCB is
573 * Returns: TMF response code (see sas_task.h or the SAS spec)
575 static int asd_initiate_ssp_tmf(struct domain_device
*dev
, u8
*lun
,
578 struct asd_ha_struct
*asd_ha
= dev
->port
->ha
->lldd_ha
;
579 struct asd_ascb
*ascb
;
582 DECLARE_COMPLETION_ONSTACK(completion
);
585 if (!(dev
->tproto
& SAS_PROTOCOL_SSP
))
586 return TMF_RESP_FUNC_ESUPP
;
588 ascb
= asd_ascb_alloc_list(asd_ha
, &res
, GFP_KERNEL
);
592 ascb
->completion
= &completion
;
593 ascb
->uldd_task
= &tcs
;
596 if (tmf
== TMF_QUERY_TASK
)
597 scb
->header
.opcode
= QUERY_SSP_TASK
;
599 scb
->header
.opcode
= INITIATE_SSP_TMF
;
601 scb
->ssp_tmf
.proto_conn_rate
= (1 << 4); /* SSP */
602 scb
->ssp_tmf
.proto_conn_rate
|= dev
->linkrate
;
603 /* SSP frame header */
604 scb
->ssp_tmf
.ssp_frame
.frame_type
= SSP_TASK
;
605 memcpy(scb
->ssp_tmf
.ssp_frame
.hashed_dest_addr
,
606 dev
->hashed_sas_addr
, HASHED_SAS_ADDR_SIZE
);
607 memcpy(scb
->ssp_tmf
.ssp_frame
.hashed_src_addr
,
608 dev
->port
->ha
->hashed_sas_addr
, HASHED_SAS_ADDR_SIZE
);
609 scb
->ssp_tmf
.ssp_frame
.tptt
= cpu_to_be16(0xFFFF);
611 memcpy(scb
->ssp_tmf
.ssp_task
.lun
, lun
, 8);
612 scb
->ssp_tmf
.ssp_task
.tmf
= tmf
;
614 scb
->ssp_tmf
.sister_scb
= cpu_to_le16(0xFFFF);
615 scb
->ssp_tmf
.conn_handle
= cpu_to_le16((u16
)(unsigned long)
617 scb
->ssp_tmf
.retry_count
= 1;
618 scb
->ssp_tmf
.itnl_to
= cpu_to_le16(ITNL_TIMEOUT_CONST
);
619 if (tmf
== TMF_QUERY_TASK
)
620 scb
->ssp_tmf
.index
= cpu_to_le16(index
);
622 res
= asd_enqueue_internal(ascb
, asd_tmf_tasklet_complete
,
626 wait_for_completion(&completion
);
628 switch (tcs
.dl_opcode
) {
630 res
= TMF_RESP_FUNC_COMPLETE
;
633 res
= TMF_RESP_INVALID_FRAME
;
635 case TF_TMF_TASK_DONE
:
636 res
= TMF_RESP_FUNC_FAILED
;
639 case TF_TMF_TAG_FREE
: /* the tag is in the free list */
640 case TF_TMF_NO_CONN_HANDLE
: /* no such device */
641 res
= TMF_RESP_FUNC_COMPLETE
;
643 case TF_TMF_NO_CTX
: /* not in seq, or proto != SSP */
644 res
= TMF_RESP_FUNC_ESUPP
;
647 /* Allow TMF response codes to propagate upwards */
657 int asd_abort_task_set(struct domain_device
*dev
, u8
*lun
)
659 int res
= asd_initiate_ssp_tmf(dev
, lun
, TMF_ABORT_TASK_SET
, 0);
661 if (res
== TMF_RESP_FUNC_COMPLETE
)
662 asd_clear_nexus_I_T_L(dev
, lun
);
666 int asd_clear_aca(struct domain_device
*dev
, u8
*lun
)
668 int res
= asd_initiate_ssp_tmf(dev
, lun
, TMF_CLEAR_ACA
, 0);
670 if (res
== TMF_RESP_FUNC_COMPLETE
)
671 asd_clear_nexus_I_T_L(dev
, lun
);
675 int asd_clear_task_set(struct domain_device
*dev
, u8
*lun
)
677 int res
= asd_initiate_ssp_tmf(dev
, lun
, TMF_CLEAR_TASK_SET
, 0);
679 if (res
== TMF_RESP_FUNC_COMPLETE
)
680 asd_clear_nexus_I_T_L(dev
, lun
);
684 int asd_lu_reset(struct domain_device
*dev
, u8
*lun
)
686 int res
= asd_initiate_ssp_tmf(dev
, lun
, TMF_LU_RESET
, 0);
688 if (res
== TMF_RESP_FUNC_COMPLETE
)
689 asd_clear_nexus_I_T_L(dev
, lun
);
694 * asd_query_task -- send a QUERY TASK TMF to an I_T_L_Q nexus
695 * task: pointer to sas_task struct of interest
697 * Returns: TMF_RESP_FUNC_COMPLETE if the task is not in the task set,
698 * or TMF_RESP_FUNC_SUCC if the task is in the task set.
700 * Normally the management layer sets the task to aborted state,
701 * and then calls query task and then abort task.
703 int asd_query_task(struct sas_task
*task
)
705 struct asd_ascb
*ascb
= task
->lldd_task
;
709 index
= ascb
->tc_index
;
710 return asd_initiate_ssp_tmf(task
->dev
, task
->ssp_task
.LUN
,
711 TMF_QUERY_TASK
, index
);
713 return TMF_RESP_FUNC_COMPLETE
;