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SCSI: don't get target/host busy_count in scsi_mq_get_budget()
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CommitLineData
1da177e4 1/*
d285203c
CH
2 * Copyright (C) 1999 Eric Youngdale
3 * Copyright (C) 2014 Christoph Hellwig
1da177e4
LT
4 *
5 * SCSI queueing library.
6 * Initial versions: Eric Youngdale (eric@andante.org).
7 * Based upon conversations with large numbers
8 * of people at Linux Expo.
9 */
10
11#include <linux/bio.h>
d3f46f39 12#include <linux/bitops.h>
1da177e4
LT
13#include <linux/blkdev.h>
14#include <linux/completion.h>
15#include <linux/kernel.h>
09703660 16#include <linux/export.h>
1da177e4
LT
17#include <linux/init.h>
18#include <linux/pci.h>
19#include <linux/delay.h>
faead26d 20#include <linux/hardirq.h>
c6132da1 21#include <linux/scatterlist.h>
d285203c 22#include <linux/blk-mq.h>
f1569ff1 23#include <linux/ratelimit.h>
a8aa3978 24#include <asm/unaligned.h>
1da177e4
LT
25
26#include <scsi/scsi.h>
beb40487 27#include <scsi/scsi_cmnd.h>
1da177e4
LT
28#include <scsi/scsi_dbg.h>
29#include <scsi/scsi_device.h>
30#include <scsi/scsi_driver.h>
31#include <scsi/scsi_eh.h>
32#include <scsi/scsi_host.h>
7aa686d3 33#include <scsi/scsi_transport.h> /* __scsi_init_queue() */
ee14c674 34#include <scsi/scsi_dh.h>
1da177e4 35
3b5382c4
CH
36#include <trace/events/scsi.h>
37
0eebd005 38#include "scsi_debugfs.h"
1da177e4
LT
39#include "scsi_priv.h"
40#include "scsi_logging.h"
41
e9c787e6 42static struct kmem_cache *scsi_sdb_cache;
0a6ac4ee
CH
43static struct kmem_cache *scsi_sense_cache;
44static struct kmem_cache *scsi_sense_isadma_cache;
45static DEFINE_MUTEX(scsi_sense_cache_mutex);
1da177e4 46
a45a1f36
BVA
47static void scsi_mq_uninit_cmd(struct scsi_cmnd *cmd);
48
0a6ac4ee 49static inline struct kmem_cache *
8e688254 50scsi_select_sense_cache(bool unchecked_isa_dma)
0a6ac4ee 51{
8e688254 52 return unchecked_isa_dma ? scsi_sense_isadma_cache : scsi_sense_cache;
0a6ac4ee
CH
53}
54
8e688254
BVA
55static void scsi_free_sense_buffer(bool unchecked_isa_dma,
56 unsigned char *sense_buffer)
0a6ac4ee 57{
8e688254
BVA
58 kmem_cache_free(scsi_select_sense_cache(unchecked_isa_dma),
59 sense_buffer);
0a6ac4ee
CH
60}
61
8e688254 62static unsigned char *scsi_alloc_sense_buffer(bool unchecked_isa_dma,
e9c787e6 63 gfp_t gfp_mask, int numa_node)
0a6ac4ee 64{
8e688254
BVA
65 return kmem_cache_alloc_node(scsi_select_sense_cache(unchecked_isa_dma),
66 gfp_mask, numa_node);
0a6ac4ee
CH
67}
68
69int scsi_init_sense_cache(struct Scsi_Host *shost)
70{
71 struct kmem_cache *cache;
72 int ret = 0;
73
8e688254 74 cache = scsi_select_sense_cache(shost->unchecked_isa_dma);
0a6ac4ee
CH
75 if (cache)
76 return 0;
77
78 mutex_lock(&scsi_sense_cache_mutex);
79 if (shost->unchecked_isa_dma) {
80 scsi_sense_isadma_cache =
81 kmem_cache_create("scsi_sense_cache(DMA)",
82 SCSI_SENSE_BUFFERSIZE, 0,
83 SLAB_HWCACHE_ALIGN | SLAB_CACHE_DMA, NULL);
84 if (!scsi_sense_isadma_cache)
85 ret = -ENOMEM;
86 } else {
87 scsi_sense_cache =
88 kmem_cache_create("scsi_sense_cache",
89 SCSI_SENSE_BUFFERSIZE, 0, SLAB_HWCACHE_ALIGN, NULL);
90 if (!scsi_sense_cache)
91 ret = -ENOMEM;
92 }
93
94 mutex_unlock(&scsi_sense_cache_mutex);
95 return ret;
96}
6f9a35e2 97
a488e749
JA
98/*
99 * When to reinvoke queueing after a resource shortage. It's 3 msecs to
100 * not change behaviour from the previous unplug mechanism, experimentation
101 * may prove this needs changing.
102 */
103#define SCSI_QUEUE_DELAY 3
104
de3e8bf3
CH
105static void
106scsi_set_blocked(struct scsi_cmnd *cmd, int reason)
1da177e4
LT
107{
108 struct Scsi_Host *host = cmd->device->host;
109 struct scsi_device *device = cmd->device;
f0c0a376 110 struct scsi_target *starget = scsi_target(device);
1da177e4
LT
111
112 /*
d8c37e7b 113 * Set the appropriate busy bit for the device/host.
1da177e4
LT
114 *
115 * If the host/device isn't busy, assume that something actually
116 * completed, and that we should be able to queue a command now.
117 *
118 * Note that the prior mid-layer assumption that any host could
119 * always queue at least one command is now broken. The mid-layer
120 * will implement a user specifiable stall (see
121 * scsi_host.max_host_blocked and scsi_device.max_device_blocked)
122 * if a command is requeued with no other commands outstanding
123 * either for the device or for the host.
124 */
f0c0a376
MC
125 switch (reason) {
126 case SCSI_MLQUEUE_HOST_BUSY:
cd9070c9 127 atomic_set(&host->host_blocked, host->max_host_blocked);
f0c0a376
MC
128 break;
129 case SCSI_MLQUEUE_DEVICE_BUSY:
573e5913 130 case SCSI_MLQUEUE_EH_RETRY:
cd9070c9
CH
131 atomic_set(&device->device_blocked,
132 device->max_device_blocked);
f0c0a376
MC
133 break;
134 case SCSI_MLQUEUE_TARGET_BUSY:
cd9070c9
CH
135 atomic_set(&starget->target_blocked,
136 starget->max_target_blocked);
f0c0a376
MC
137 break;
138 }
de3e8bf3
CH
139}
140
d285203c
CH
141static void scsi_mq_requeue_cmd(struct scsi_cmnd *cmd)
142{
143 struct scsi_device *sdev = cmd->device;
d285203c 144
a45a1f36
BVA
145 if (cmd->request->rq_flags & RQF_DONTPREP) {
146 cmd->request->rq_flags &= ~RQF_DONTPREP;
147 scsi_mq_uninit_cmd(cmd);
148 } else {
149 WARN_ON_ONCE(true);
150 }
2b053aca 151 blk_mq_requeue_request(cmd->request, true);
d285203c
CH
152 put_device(&sdev->sdev_gendev);
153}
154
de3e8bf3
CH
155/**
156 * __scsi_queue_insert - private queue insertion
157 * @cmd: The SCSI command being requeued
158 * @reason: The reason for the requeue
159 * @unbusy: Whether the queue should be unbusied
160 *
161 * This is a private queue insertion. The public interface
162 * scsi_queue_insert() always assumes the queue should be unbusied
163 * because it's always called before the completion. This function is
164 * for a requeue after completion, which should only occur in this
165 * file.
166 */
167static void __scsi_queue_insert(struct scsi_cmnd *cmd, int reason, int unbusy)
168{
169 struct scsi_device *device = cmd->device;
170 struct request_queue *q = device->request_queue;
171 unsigned long flags;
172
173 SCSI_LOG_MLQUEUE(1, scmd_printk(KERN_INFO, cmd,
174 "Inserting command %p into mlqueue\n", cmd));
175
176 scsi_set_blocked(cmd, reason);
1da177e4 177
1da177e4
LT
178 /*
179 * Decrement the counters, since these commands are no longer
180 * active on the host/device.
181 */
4f5299ac
JB
182 if (unbusy)
183 scsi_device_unbusy(device);
1da177e4
LT
184
185 /*
a1bf9d1d 186 * Requeue this command. It will go before all other commands
b485462a
BVA
187 * that are already in the queue. Schedule requeue work under
188 * lock such that the kblockd_schedule_work() call happens
189 * before blk_cleanup_queue() finishes.
a488e749 190 */
644373a4 191 cmd->result = 0;
d285203c
CH
192 if (q->mq_ops) {
193 scsi_mq_requeue_cmd(cmd);
194 return;
195 }
a1bf9d1d 196 spin_lock_irqsave(q->queue_lock, flags);
59897dad 197 blk_requeue_request(q, cmd->request);
59c3d45e 198 kblockd_schedule_work(&device->requeue_work);
b485462a 199 spin_unlock_irqrestore(q->queue_lock, flags);
1da177e4
LT
200}
201
4f5299ac
JB
202/*
203 * Function: scsi_queue_insert()
204 *
205 * Purpose: Insert a command in the midlevel queue.
206 *
207 * Arguments: cmd - command that we are adding to queue.
208 * reason - why we are inserting command to queue.
209 *
210 * Lock status: Assumed that lock is not held upon entry.
211 *
212 * Returns: Nothing.
213 *
214 * Notes: We do this for one of two cases. Either the host is busy
215 * and it cannot accept any more commands for the time being,
216 * or the device returned QUEUE_FULL and can accept no more
217 * commands.
218 * Notes: This could be called either from an interrupt context or a
219 * normal process context.
220 */
84feb166 221void scsi_queue_insert(struct scsi_cmnd *cmd, int reason)
4f5299ac 222{
84feb166 223 __scsi_queue_insert(cmd, reason, 1);
4f5299ac 224}
e8064021 225
76aaf87b
CH
226
227/**
228 * scsi_execute - insert request and wait for the result
229 * @sdev: scsi device
230 * @cmd: scsi command
231 * @data_direction: data direction
232 * @buffer: data buffer
233 * @bufflen: len of buffer
234 * @sense: optional sense buffer
235 * @sshdr: optional decoded sense header
236 * @timeout: request timeout in seconds
237 * @retries: number of times to retry request
238 * @flags: flags for ->cmd_flags
239 * @rq_flags: flags for ->rq_flags
240 * @resid: optional residual length
241 *
17d5363b
CH
242 * Returns the scsi_cmnd result field if a command was executed, or a negative
243 * Linux error code if we didn't get that far.
76aaf87b
CH
244 */
245int scsi_execute(struct scsi_device *sdev, const unsigned char *cmd,
33aa687d 246 int data_direction, void *buffer, unsigned bufflen,
3949e2f0
CH
247 unsigned char *sense, struct scsi_sense_hdr *sshdr,
248 int timeout, int retries, u64 flags, req_flags_t rq_flags,
249 int *resid)
39216033
JB
250{
251 struct request *req;
82ed4db4 252 struct scsi_request *rq;
39216033
JB
253 int ret = DRIVER_ERROR << 24;
254
aebf526b
CH
255 req = blk_get_request(sdev->request_queue,
256 data_direction == DMA_TO_DEVICE ?
257 REQ_OP_SCSI_OUT : REQ_OP_SCSI_IN, __GFP_RECLAIM);
a492f075 258 if (IS_ERR(req))
bfe159a5 259 return ret;
82ed4db4 260 rq = scsi_req(req);
39216033
JB
261
262 if (bufflen && blk_rq_map_kern(sdev->request_queue, req,
71baba4b 263 buffer, bufflen, __GFP_RECLAIM))
39216033
JB
264 goto out;
265
82ed4db4
CH
266 rq->cmd_len = COMMAND_SIZE(cmd[0]);
267 memcpy(rq->cmd, cmd, rq->cmd_len);
64c7f1d1 268 rq->retries = retries;
39216033 269 req->timeout = timeout;
e8064021
CH
270 req->cmd_flags |= flags;
271 req->rq_flags |= rq_flags | RQF_QUIET | RQF_PREEMPT;
39216033
JB
272
273 /*
274 * head injection *required* here otherwise quiesce won't work
275 */
276 blk_execute_rq(req->q, NULL, req, 1);
277
bdb2b8ca
AS
278 /*
279 * Some devices (USB mass-storage in particular) may transfer
280 * garbage data together with a residue indicating that the data
281 * is invalid. Prevent the garbage from being misinterpreted
282 * and prevent security leaks by zeroing out the excess data.
283 */
82ed4db4
CH
284 if (unlikely(rq->resid_len > 0 && rq->resid_len <= bufflen))
285 memset(buffer + (bufflen - rq->resid_len), 0, rq->resid_len);
bdb2b8ca 286
f4f4e47e 287 if (resid)
82ed4db4
CH
288 *resid = rq->resid_len;
289 if (sense && rq->sense_len)
290 memcpy(sense, rq->sense, SCSI_SENSE_BUFFERSIZE);
3949e2f0
CH
291 if (sshdr)
292 scsi_normalize_sense(rq->sense, rq->sense_len, sshdr);
17d5363b 293 ret = rq->result;
39216033
JB
294 out:
295 blk_put_request(req);
296
297 return ret;
298}
33aa687d 299EXPORT_SYMBOL(scsi_execute);
39216033 300
1da177e4
LT
301/*
302 * Function: scsi_init_cmd_errh()
303 *
304 * Purpose: Initialize cmd fields related to error handling.
305 *
306 * Arguments: cmd - command that is ready to be queued.
307 *
1da177e4
LT
308 * Notes: This function has the job of initializing a number of
309 * fields related to error handling. Typically this will
310 * be called once for each command, as required.
311 */
631c228c 312static void scsi_init_cmd_errh(struct scsi_cmnd *cmd)
1da177e4 313{
1da177e4 314 cmd->serial_number = 0;
30b0c37b 315 scsi_set_resid(cmd, 0);
b80ca4f7 316 memset(cmd->sense_buffer, 0, SCSI_SENSE_BUFFERSIZE);
1da177e4 317 if (cmd->cmd_len == 0)
db4742dd 318 cmd->cmd_len = scsi_command_size(cmd->cmnd);
1da177e4
LT
319}
320
321void scsi_device_unbusy(struct scsi_device *sdev)
322{
323 struct Scsi_Host *shost = sdev->host;
f0c0a376 324 struct scsi_target *starget = scsi_target(sdev);
1da177e4
LT
325 unsigned long flags;
326
74665016 327 atomic_dec(&shost->host_busy);
2ccbb008
CH
328 if (starget->can_queue > 0)
329 atomic_dec(&starget->target_busy);
74665016 330
939647ee 331 if (unlikely(scsi_host_in_recovery(shost) &&
74665016
CH
332 (shost->host_failed || shost->host_eh_scheduled))) {
333 spin_lock_irqsave(shost->host_lock, flags);
1da177e4 334 scsi_eh_wakeup(shost);
74665016
CH
335 spin_unlock_irqrestore(shost->host_lock, flags);
336 }
337
71e75c97 338 atomic_dec(&sdev->device_busy);
1da177e4
LT
339}
340
d285203c
CH
341static void scsi_kick_queue(struct request_queue *q)
342{
343 if (q->mq_ops)
344 blk_mq_start_hw_queues(q);
345 else
346 blk_run_queue(q);
347}
348
1da177e4
LT
349/*
350 * Called for single_lun devices on IO completion. Clear starget_sdev_user,
351 * and call blk_run_queue for all the scsi_devices on the target -
352 * including current_sdev first.
353 *
354 * Called with *no* scsi locks held.
355 */
356static void scsi_single_lun_run(struct scsi_device *current_sdev)
357{
358 struct Scsi_Host *shost = current_sdev->host;
359 struct scsi_device *sdev, *tmp;
360 struct scsi_target *starget = scsi_target(current_sdev);
361 unsigned long flags;
362
363 spin_lock_irqsave(shost->host_lock, flags);
364 starget->starget_sdev_user = NULL;
365 spin_unlock_irqrestore(shost->host_lock, flags);
366
367 /*
368 * Call blk_run_queue for all LUNs on the target, starting with
369 * current_sdev. We race with others (to set starget_sdev_user),
370 * but in most cases, we will be first. Ideally, each LU on the
371 * target would get some limited time or requests on the target.
372 */
d285203c 373 scsi_kick_queue(current_sdev->request_queue);
1da177e4
LT
374
375 spin_lock_irqsave(shost->host_lock, flags);
376 if (starget->starget_sdev_user)
377 goto out;
378 list_for_each_entry_safe(sdev, tmp, &starget->devices,
379 same_target_siblings) {
380 if (sdev == current_sdev)
381 continue;
382 if (scsi_device_get(sdev))
383 continue;
384
385 spin_unlock_irqrestore(shost->host_lock, flags);
d285203c 386 scsi_kick_queue(sdev->request_queue);
1da177e4
LT
387 spin_lock_irqsave(shost->host_lock, flags);
388
389 scsi_device_put(sdev);
390 }
391 out:
392 spin_unlock_irqrestore(shost->host_lock, flags);
393}
394
cd9070c9 395static inline bool scsi_device_is_busy(struct scsi_device *sdev)
9d112517 396{
cd9070c9
CH
397 if (atomic_read(&sdev->device_busy) >= sdev->queue_depth)
398 return true;
399 if (atomic_read(&sdev->device_blocked) > 0)
400 return true;
401 return false;
9d112517
KU
402}
403
cd9070c9 404static inline bool scsi_target_is_busy(struct scsi_target *starget)
f0c0a376 405{
2ccbb008
CH
406 if (starget->can_queue > 0) {
407 if (atomic_read(&starget->target_busy) >= starget->can_queue)
408 return true;
409 if (atomic_read(&starget->target_blocked) > 0)
410 return true;
411 }
cd9070c9 412 return false;
f0c0a376
MC
413}
414
cd9070c9 415static inline bool scsi_host_is_busy(struct Scsi_Host *shost)
9d112517 416{
cd9070c9
CH
417 if (shost->can_queue > 0 &&
418 atomic_read(&shost->host_busy) >= shost->can_queue)
419 return true;
420 if (atomic_read(&shost->host_blocked) > 0)
421 return true;
422 if (shost->host_self_blocked)
423 return true;
424 return false;
9d112517
KU
425}
426
21a05df5 427static void scsi_starved_list_run(struct Scsi_Host *shost)
1da177e4 428{
2a3a59e5 429 LIST_HEAD(starved_list);
21a05df5 430 struct scsi_device *sdev;
1da177e4
LT
431 unsigned long flags;
432
1da177e4 433 spin_lock_irqsave(shost->host_lock, flags);
2a3a59e5
MC
434 list_splice_init(&shost->starved_list, &starved_list);
435
436 while (!list_empty(&starved_list)) {
e2eb7244
JB
437 struct request_queue *slq;
438
1da177e4
LT
439 /*
440 * As long as shost is accepting commands and we have
441 * starved queues, call blk_run_queue. scsi_request_fn
442 * drops the queue_lock and can add us back to the
443 * starved_list.
444 *
445 * host_lock protects the starved_list and starved_entry.
446 * scsi_request_fn must get the host_lock before checking
447 * or modifying starved_list or starved_entry.
448 */
2a3a59e5 449 if (scsi_host_is_busy(shost))
f0c0a376 450 break;
f0c0a376 451
2a3a59e5
MC
452 sdev = list_entry(starved_list.next,
453 struct scsi_device, starved_entry);
454 list_del_init(&sdev->starved_entry);
f0c0a376
MC
455 if (scsi_target_is_busy(scsi_target(sdev))) {
456 list_move_tail(&sdev->starved_entry,
457 &shost->starved_list);
458 continue;
459 }
460
e2eb7244
JB
461 /*
462 * Once we drop the host lock, a racing scsi_remove_device()
463 * call may remove the sdev from the starved list and destroy
464 * it and the queue. Mitigate by taking a reference to the
465 * queue and never touching the sdev again after we drop the
466 * host lock. Note: if __scsi_remove_device() invokes
467 * blk_cleanup_queue() before the queue is run from this
468 * function then blk_run_queue() will return immediately since
469 * blk_cleanup_queue() marks the queue with QUEUE_FLAG_DYING.
470 */
471 slq = sdev->request_queue;
472 if (!blk_get_queue(slq))
473 continue;
474 spin_unlock_irqrestore(shost->host_lock, flags);
475
d285203c 476 scsi_kick_queue(slq);
e2eb7244
JB
477 blk_put_queue(slq);
478
479 spin_lock_irqsave(shost->host_lock, flags);
1da177e4 480 }
2a3a59e5
MC
481 /* put any unprocessed entries back */
482 list_splice(&starved_list, &shost->starved_list);
1da177e4 483 spin_unlock_irqrestore(shost->host_lock, flags);
21a05df5
CH
484}
485
486/*
487 * Function: scsi_run_queue()
488 *
489 * Purpose: Select a proper request queue to serve next
490 *
491 * Arguments: q - last request's queue
492 *
493 * Returns: Nothing
494 *
495 * Notes: The previous command was completely finished, start
496 * a new one if possible.
497 */
498static void scsi_run_queue(struct request_queue *q)
499{
500 struct scsi_device *sdev = q->queuedata;
501
502 if (scsi_target(sdev)->single_lun)
503 scsi_single_lun_run(sdev);
504 if (!list_empty(&sdev->host->starved_list))
505 scsi_starved_list_run(sdev->host);
1da177e4 506
d285203c 507 if (q->mq_ops)
36e3cf27 508 blk_mq_run_hw_queues(q, false);
d285203c
CH
509 else
510 blk_run_queue(q);
1da177e4
LT
511}
512
9937a5e2
JA
513void scsi_requeue_run_queue(struct work_struct *work)
514{
515 struct scsi_device *sdev;
516 struct request_queue *q;
517
518 sdev = container_of(work, struct scsi_device, requeue_work);
519 q = sdev->request_queue;
520 scsi_run_queue(q);
521}
522
1da177e4
LT
523/*
524 * Function: scsi_requeue_command()
525 *
526 * Purpose: Handle post-processing of completed commands.
527 *
528 * Arguments: q - queue to operate on
529 * cmd - command that may need to be requeued.
530 *
531 * Returns: Nothing
532 *
533 * Notes: After command completion, there may be blocks left
534 * over which weren't finished by the previous command
535 * this can be for a number of reasons - the main one is
536 * I/O errors in the middle of the request, in which case
537 * we need to request the blocks that come after the bad
538 * sector.
e91442b6 539 * Notes: Upon return, cmd is a stale pointer.
1da177e4
LT
540 */
541static void scsi_requeue_command(struct request_queue *q, struct scsi_cmnd *cmd)
542{
940f5d47 543 struct scsi_device *sdev = cmd->device;
e91442b6 544 struct request *req = cmd->request;
283369cc
TH
545 unsigned long flags;
546
283369cc 547 spin_lock_irqsave(q->queue_lock, flags);
134997a0
CH
548 blk_unprep_request(req);
549 req->special = NULL;
550 scsi_put_command(cmd);
e91442b6 551 blk_requeue_request(q, req);
283369cc 552 spin_unlock_irqrestore(q->queue_lock, flags);
1da177e4
LT
553
554 scsi_run_queue(q);
940f5d47
BVA
555
556 put_device(&sdev->sdev_gendev);
1da177e4
LT
557}
558
1da177e4
LT
559void scsi_run_host_queues(struct Scsi_Host *shost)
560{
561 struct scsi_device *sdev;
562
563 shost_for_each_device(sdev, shost)
564 scsi_run_queue(sdev->request_queue);
565}
566
d285203c
CH
567static void scsi_uninit_cmd(struct scsi_cmnd *cmd)
568{
57292b58 569 if (!blk_rq_is_passthrough(cmd->request)) {
d285203c
CH
570 struct scsi_driver *drv = scsi_cmd_to_driver(cmd);
571
572 if (drv->uninit_command)
573 drv->uninit_command(cmd);
574 }
575}
576
577static void scsi_mq_free_sgtables(struct scsi_cmnd *cmd)
578{
91dbc08d
ML
579 struct scsi_data_buffer *sdb;
580
d285203c 581 if (cmd->sdb.table.nents)
001d63be 582 sg_free_table_chained(&cmd->sdb.table, true);
91dbc08d
ML
583 if (cmd->request->next_rq) {
584 sdb = cmd->request->next_rq->special;
585 if (sdb)
001d63be 586 sg_free_table_chained(&sdb->table, true);
91dbc08d 587 }
d285203c 588 if (scsi_prot_sg_count(cmd))
001d63be 589 sg_free_table_chained(&cmd->prot_sdb->table, true);
d285203c
CH
590}
591
592static void scsi_mq_uninit_cmd(struct scsi_cmnd *cmd)
593{
d285203c
CH
594 scsi_mq_free_sgtables(cmd);
595 scsi_uninit_cmd(cmd);
2dd6fb59 596 scsi_del_cmd_from_list(cmd);
d285203c
CH
597}
598
1da177e4
LT
599/*
600 * Function: scsi_release_buffers()
601 *
c682adf3 602 * Purpose: Free resources allocate for a scsi_command.
1da177e4
LT
603 *
604 * Arguments: cmd - command that we are bailing.
605 *
606 * Lock status: Assumed that no lock is held upon entry.
607 *
608 * Returns: Nothing
609 *
610 * Notes: In the event that an upper level driver rejects a
611 * command, we must release resources allocated during
612 * the __init_io() function. Primarily this would involve
c682adf3 613 * the scatter-gather table.
1da177e4 614 */
f1bea55d 615static void scsi_release_buffers(struct scsi_cmnd *cmd)
1da177e4 616{
c682adf3 617 if (cmd->sdb.table.nents)
001d63be 618 sg_free_table_chained(&cmd->sdb.table, false);
c682adf3
CH
619
620 memset(&cmd->sdb, 0, sizeof(cmd->sdb));
621
622 if (scsi_prot_sg_count(cmd))
001d63be 623 sg_free_table_chained(&cmd->prot_sdb->table, false);
1da177e4
LT
624}
625
c682adf3
CH
626static void scsi_release_bidi_buffers(struct scsi_cmnd *cmd)
627{
628 struct scsi_data_buffer *bidi_sdb = cmd->request->next_rq->special;
629
001d63be 630 sg_free_table_chained(&bidi_sdb->table, false);
c682adf3
CH
631 kmem_cache_free(scsi_sdb_cache, bidi_sdb);
632 cmd->request->next_rq->special = NULL;
633}
634
2a842aca 635static bool scsi_end_request(struct request *req, blk_status_t error,
f6d47e74
CH
636 unsigned int bytes, unsigned int bidi_bytes)
637{
bed2213d 638 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(req);
f6d47e74
CH
639 struct scsi_device *sdev = cmd->device;
640 struct request_queue *q = sdev->request_queue;
f6d47e74
CH
641
642 if (blk_update_request(req, error, bytes))
643 return true;
644
645 /* Bidi request must be completed as a whole */
646 if (unlikely(bidi_bytes) &&
647 blk_update_request(req->next_rq, error, bidi_bytes))
648 return true;
649
650 if (blk_queue_add_random(q))
651 add_disk_randomness(req->rq_disk);
652
64104f70
BVA
653 if (!blk_rq_is_scsi(req)) {
654 WARN_ON_ONCE(!(cmd->flags & SCMD_INITIALIZED));
655 cmd->flags &= ~SCMD_INITIALIZED;
656 }
657
d285203c
CH
658 if (req->mq_ctx) {
659 /*
c8a446ad 660 * In the MQ case the command gets freed by __blk_mq_end_request,
d285203c
CH
661 * so we have to do all cleanup that depends on it earlier.
662 *
663 * We also can't kick the queues from irq context, so we
664 * will have to defer it to a workqueue.
665 */
666 scsi_mq_uninit_cmd(cmd);
667
c8a446ad 668 __blk_mq_end_request(req, error);
d285203c
CH
669
670 if (scsi_target(sdev)->single_lun ||
671 !list_empty(&sdev->host->starved_list))
672 kblockd_schedule_work(&sdev->requeue_work);
673 else
36e3cf27 674 blk_mq_run_hw_queues(q, true);
d285203c
CH
675 } else {
676 unsigned long flags;
677
f81426a8
DG
678 if (bidi_bytes)
679 scsi_release_bidi_buffers(cmd);
e9c787e6
CH
680 scsi_release_buffers(cmd);
681 scsi_put_command(cmd);
f81426a8 682
d285203c
CH
683 spin_lock_irqsave(q->queue_lock, flags);
684 blk_finish_request(req, error);
685 spin_unlock_irqrestore(q->queue_lock, flags);
686
bb3ec62a 687 scsi_run_queue(q);
d285203c 688 }
f6d47e74 689
bb3ec62a 690 put_device(&sdev->sdev_gendev);
f6d47e74
CH
691 return false;
692}
693
0f7f6234
HR
694/**
695 * __scsi_error_from_host_byte - translate SCSI error code into errno
696 * @cmd: SCSI command (unused)
697 * @result: scsi error code
698 *
2a842aca 699 * Translate SCSI error code into block errors.
0f7f6234 700 */
2a842aca
CH
701static blk_status_t __scsi_error_from_host_byte(struct scsi_cmnd *cmd,
702 int result)
63583cca 703{
2a842aca 704 switch (host_byte(result)) {
63583cca 705 case DID_TRANSPORT_FAILFAST:
2a842aca 706 return BLK_STS_TRANSPORT;
63583cca 707 case DID_TARGET_FAILURE:
2082ebc4 708 set_host_byte(cmd, DID_OK);
2a842aca 709 return BLK_STS_TARGET;
63583cca 710 case DID_NEXUS_FAILURE:
2a842aca 711 return BLK_STS_NEXUS;
a9d6ceb8
HR
712 case DID_ALLOC_FAILURE:
713 set_host_byte(cmd, DID_OK);
2a842aca 714 return BLK_STS_NOSPC;
7e782af5
HR
715 case DID_MEDIUM_ERROR:
716 set_host_byte(cmd, DID_OK);
2a842aca 717 return BLK_STS_MEDIUM;
63583cca 718 default:
2a842aca 719 return BLK_STS_IOERR;
63583cca 720 }
63583cca
HR
721}
722
1da177e4
LT
723/*
724 * Function: scsi_io_completion()
725 *
726 * Purpose: Completion processing for block device I/O requests.
727 *
728 * Arguments: cmd - command that is finished.
729 *
730 * Lock status: Assumed that no lock is held upon entry.
731 *
732 * Returns: Nothing
733 *
bc85dc50
CH
734 * Notes: We will finish off the specified number of sectors. If we
735 * are done, the command block will be released and the queue
736 * function will be goosed. If we are not done then we have to
b60af5b0 737 * figure out what to do next:
1da177e4 738 *
b60af5b0
AS
739 * a) We can call scsi_requeue_command(). The request
740 * will be unprepared and put back on the queue. Then
741 * a new command will be created for it. This should
742 * be used if we made forward progress, or if we want
743 * to switch from READ(10) to READ(6) for example.
1da177e4 744 *
bc85dc50 745 * b) We can call __scsi_queue_insert(). The request will
b60af5b0
AS
746 * be put back on the queue and retried using the same
747 * command as before, possibly after a delay.
748 *
f6d47e74 749 * c) We can call scsi_end_request() with -EIO to fail
b60af5b0 750 * the remainder of the request.
1da177e4 751 */
03aba2f7 752void scsi_io_completion(struct scsi_cmnd *cmd, unsigned int good_bytes)
1da177e4
LT
753{
754 int result = cmd->result;
165125e1 755 struct request_queue *q = cmd->device->request_queue;
1da177e4 756 struct request *req = cmd->request;
2a842aca 757 blk_status_t error = BLK_STS_OK;
1da177e4 758 struct scsi_sense_hdr sshdr;
4753cbc0 759 bool sense_valid = false;
c11c004b 760 int sense_deferred = 0, level = 0;
b60af5b0
AS
761 enum {ACTION_FAIL, ACTION_REPREP, ACTION_RETRY,
762 ACTION_DELAYED_RETRY} action;
ee60b2c5 763 unsigned long wait_for = (cmd->allowed + 1) * req->timeout;
1da177e4 764
1da177e4
LT
765 if (result) {
766 sense_valid = scsi_command_normalize_sense(cmd, &sshdr);
767 if (sense_valid)
768 sense_deferred = scsi_sense_is_deferred(&sshdr);
769 }
631c228c 770
57292b58 771 if (blk_rq_is_passthrough(req)) {
1da177e4 772 if (result) {
82ed4db4 773 if (sense_valid) {
1da177e4
LT
774 /*
775 * SG_IO wants current and deferred errors
776 */
82ed4db4
CH
777 scsi_req(req)->sense_len =
778 min(8 + cmd->sense_buffer[7],
779 SCSI_SENSE_BUFFERSIZE);
1da177e4 780 }
fa8e36c3 781 if (!sense_deferred)
63583cca 782 error = __scsi_error_from_host_byte(cmd, result);
b22f687d 783 }
27c41973
MS
784 /*
785 * __scsi_error_from_host_byte may have reset the host_byte
786 */
17d5363b 787 scsi_req(req)->result = cmd->result;
82ed4db4 788 scsi_req(req)->resid_len = scsi_get_resid(cmd);
e6bb7a96 789
6f9a35e2 790 if (scsi_bidi_cmnd(cmd)) {
e6bb7a96
FT
791 /*
792 * Bidi commands Must be complete as a whole,
793 * both sides at once.
794 */
82ed4db4 795 scsi_req(req->next_rq)->resid_len = scsi_in(cmd)->resid;
2a842aca 796 if (scsi_end_request(req, BLK_STS_OK, blk_rq_bytes(req),
f6d47e74
CH
797 blk_rq_bytes(req->next_rq)))
798 BUG();
6f9a35e2
BH
799 return;
800 }
89fb4cd1
JB
801 } else if (blk_rq_bytes(req) == 0 && result && !sense_deferred) {
802 /*
aebf526b 803 * Flush commands do not transfers any data, and thus cannot use
89fb4cd1
JB
804 * good_bytes != blk_rq_bytes(req) as the signal for an error.
805 * This sets the error explicitly for the problem case.
806 */
807 error = __scsi_error_from_host_byte(cmd, result);
1da177e4
LT
808 }
809
57292b58 810 /* no bidi support for !blk_rq_is_passthrough yet */
33659ebb 811 BUG_ON(blk_bidi_rq(req));
30b0c37b 812
1da177e4
LT
813 /*
814 * Next deal with any sectors which we were able to correctly
815 * handle.
816 */
91921e01
HR
817 SCSI_LOG_HLCOMPLETE(1, scmd_printk(KERN_INFO, cmd,
818 "%u sectors total, %d bytes done.\n",
819 blk_rq_sectors(req), good_bytes));
d6b0c537 820
a9bddd74 821 /*
aebf526b
CH
822 * Recovered errors need reporting, but they're always treated as
823 * success, so fiddle the result code here. For passthrough requests
17d5363b 824 * we already took a copy of the original into sreq->result which
a9bddd74
JB
825 * is what gets returned to the user
826 */
e7efe593
DG
827 if (sense_valid && (sshdr.sense_key == RECOVERED_ERROR)) {
828 /* if ATA PASS-THROUGH INFORMATION AVAILABLE skip
829 * print since caller wants ATA registers. Only occurs on
830 * SCSI ATA PASS_THROUGH commands when CK_COND=1
831 */
832 if ((sshdr.asc == 0x0) && (sshdr.ascq == 0x1d))
833 ;
e8064021 834 else if (!(req->rq_flags & RQF_QUIET))
d811b848 835 scsi_print_sense(cmd);
a9bddd74 836 result = 0;
aebf526b 837 /* for passthrough error may be set */
2a842aca 838 error = BLK_STS_OK;
a9bddd74
JB
839 }
840
841 /*
a621bac3
JB
842 * special case: failed zero length commands always need to
843 * drop down into the retry code. Otherwise, if we finished
844 * all bytes in the request we are done now.
d6b0c537 845 */
a621bac3
JB
846 if (!(blk_rq_bytes(req) == 0 && error) &&
847 !scsi_end_request(req, error, good_bytes, 0))
f6d47e74 848 return;
bc85dc50
CH
849
850 /*
851 * Kill remainder if no retrys.
852 */
853 if (error && scsi_noretry_cmd(cmd)) {
f6d47e74
CH
854 if (scsi_end_request(req, error, blk_rq_bytes(req), 0))
855 BUG();
856 return;
bc85dc50
CH
857 }
858
859 /*
860 * If there had been no error, but we have leftover bytes in the
861 * requeues just queue the command up again.
d6b0c537 862 */
bc85dc50
CH
863 if (result == 0)
864 goto requeue;
03aba2f7 865
63583cca 866 error = __scsi_error_from_host_byte(cmd, result);
3e695f89 867
b60af5b0
AS
868 if (host_byte(result) == DID_RESET) {
869 /* Third party bus reset or reset for error recovery
870 * reasons. Just retry the command and see what
871 * happens.
872 */
873 action = ACTION_RETRY;
874 } else if (sense_valid && !sense_deferred) {
1da177e4
LT
875 switch (sshdr.sense_key) {
876 case UNIT_ATTENTION:
877 if (cmd->device->removable) {
03aba2f7 878 /* Detected disc change. Set a bit
1da177e4
LT
879 * and quietly refuse further access.
880 */
881 cmd->device->changed = 1;
b60af5b0 882 action = ACTION_FAIL;
1da177e4 883 } else {
03aba2f7
LT
884 /* Must have been a power glitch, or a
885 * bus reset. Could not have been a
886 * media change, so we just retry the
b60af5b0 887 * command and see what happens.
03aba2f7 888 */
b60af5b0 889 action = ACTION_RETRY;
1da177e4
LT
890 }
891 break;
892 case ILLEGAL_REQUEST:
03aba2f7
LT
893 /* If we had an ILLEGAL REQUEST returned, then
894 * we may have performed an unsupported
895 * command. The only thing this should be
896 * would be a ten byte read where only a six
897 * byte read was supported. Also, on a system
898 * where READ CAPACITY failed, we may have
899 * read past the end of the disk.
900 */
26a68019
JA
901 if ((cmd->device->use_10_for_rw &&
902 sshdr.asc == 0x20 && sshdr.ascq == 0x00) &&
1da177e4
LT
903 (cmd->cmnd[0] == READ_10 ||
904 cmd->cmnd[0] == WRITE_10)) {
b60af5b0 905 /* This will issue a new 6-byte command. */
1da177e4 906 cmd->device->use_10_for_rw = 0;
b60af5b0 907 action = ACTION_REPREP;
3e695f89 908 } else if (sshdr.asc == 0x10) /* DIX */ {
3e695f89 909 action = ACTION_FAIL;
2a842aca 910 error = BLK_STS_PROTECTION;
c98a0eb0 911 /* INVALID COMMAND OPCODE or INVALID FIELD IN CDB */
5db44863 912 } else if (sshdr.asc == 0x20 || sshdr.asc == 0x24) {
c98a0eb0 913 action = ACTION_FAIL;
2a842aca 914 error = BLK_STS_TARGET;
b60af5b0
AS
915 } else
916 action = ACTION_FAIL;
917 break;
511e44f4 918 case ABORTED_COMMAND:
126c0982 919 action = ACTION_FAIL;
e6c11dbb 920 if (sshdr.asc == 0x10) /* DIF */
2a842aca 921 error = BLK_STS_PROTECTION;
1da177e4
LT
922 break;
923 case NOT_READY:
03aba2f7 924 /* If the device is in the process of becoming
f3e93f73 925 * ready, or has a temporary blockage, retry.
1da177e4 926 */
f3e93f73
JB
927 if (sshdr.asc == 0x04) {
928 switch (sshdr.ascq) {
929 case 0x01: /* becoming ready */
930 case 0x04: /* format in progress */
931 case 0x05: /* rebuild in progress */
932 case 0x06: /* recalculation in progress */
933 case 0x07: /* operation in progress */
934 case 0x08: /* Long write in progress */
935 case 0x09: /* self test in progress */
d8705f11 936 case 0x14: /* space allocation in progress */
b60af5b0 937 action = ACTION_DELAYED_RETRY;
f3e93f73 938 break;
3dbf6a54 939 default:
3dbf6a54
AS
940 action = ACTION_FAIL;
941 break;
f3e93f73 942 }
e6c11dbb 943 } else
b60af5b0 944 action = ACTION_FAIL;
b60af5b0 945 break;
1da177e4 946 case VOLUME_OVERFLOW:
03aba2f7 947 /* See SSC3rXX or current. */
b60af5b0
AS
948 action = ACTION_FAIL;
949 break;
1da177e4 950 default:
b60af5b0 951 action = ACTION_FAIL;
1da177e4
LT
952 break;
953 }
e6c11dbb 954 } else
b60af5b0 955 action = ACTION_FAIL;
b60af5b0 956
ee60b2c5 957 if (action != ACTION_FAIL &&
e6c11dbb 958 time_before(cmd->jiffies_at_alloc + wait_for, jiffies))
ee60b2c5 959 action = ACTION_FAIL;
ee60b2c5 960
b60af5b0
AS
961 switch (action) {
962 case ACTION_FAIL:
963 /* Give up and fail the remainder of the request */
e8064021 964 if (!(req->rq_flags & RQF_QUIET)) {
f1569ff1
HR
965 static DEFINE_RATELIMIT_STATE(_rs,
966 DEFAULT_RATELIMIT_INTERVAL,
967 DEFAULT_RATELIMIT_BURST);
968
969 if (unlikely(scsi_logging_level))
970 level = SCSI_LOG_LEVEL(SCSI_LOG_MLCOMPLETE_SHIFT,
971 SCSI_LOG_MLCOMPLETE_BITS);
972
973 /*
974 * if logging is enabled the failure will be printed
975 * in scsi_log_completion(), so avoid duplicate messages
976 */
977 if (!level && __ratelimit(&_rs)) {
978 scsi_print_result(cmd, NULL, FAILED);
979 if (driver_byte(result) & DRIVER_SENSE)
980 scsi_print_sense(cmd);
981 scsi_print_command(cmd);
982 }
3173d8c3 983 }
f6d47e74
CH
984 if (!scsi_end_request(req, error, blk_rq_err_bytes(req), 0))
985 return;
bc85dc50 986 /*FALLTHRU*/
b60af5b0 987 case ACTION_REPREP:
bc85dc50 988 requeue:
b60af5b0
AS
989 /* Unprep the request and put it back at the head of the queue.
990 * A new command will be prepared and issued.
991 */
d285203c 992 if (q->mq_ops) {
d285203c
CH
993 scsi_mq_requeue_cmd(cmd);
994 } else {
995 scsi_release_buffers(cmd);
996 scsi_requeue_command(q, cmd);
997 }
b60af5b0
AS
998 break;
999 case ACTION_RETRY:
1000 /* Retry the same command immediately */
4f5299ac 1001 __scsi_queue_insert(cmd, SCSI_MLQUEUE_EH_RETRY, 0);
b60af5b0
AS
1002 break;
1003 case ACTION_DELAYED_RETRY:
1004 /* Retry the same command after a delay */
4f5299ac 1005 __scsi_queue_insert(cmd, SCSI_MLQUEUE_DEVICE_BUSY, 0);
b60af5b0 1006 break;
1da177e4
LT
1007 }
1008}
1da177e4 1009
3c356bde 1010static int scsi_init_sgtable(struct request *req, struct scsi_data_buffer *sdb)
1da177e4 1011{
6f9a35e2 1012 int count;
1da177e4
LT
1013
1014 /*
3b003157 1015 * If sg table allocation fails, requeue request later.
1da177e4 1016 */
f9d03f96
CH
1017 if (unlikely(sg_alloc_table_chained(&sdb->table,
1018 blk_rq_nr_phys_segments(req), sdb->table.sgl)))
1da177e4 1019 return BLKPREP_DEFER;
1da177e4 1020
1da177e4
LT
1021 /*
1022 * Next, walk the list, and fill in the addresses and sizes of
1023 * each segment.
1024 */
30b0c37b
BH
1025 count = blk_rq_map_sg(req->q, req, sdb->table.sgl);
1026 BUG_ON(count > sdb->table.nents);
1027 sdb->table.nents = count;
fd102b12 1028 sdb->length = blk_rq_payload_bytes(req);
4a03d90e 1029 return BLKPREP_OK;
1da177e4 1030}
6f9a35e2
BH
1031
1032/*
1033 * Function: scsi_init_io()
1034 *
1035 * Purpose: SCSI I/O initialize function.
1036 *
1037 * Arguments: cmd - Command descriptor we wish to initialize
1038 *
1039 * Returns: 0 on success
1040 * BLKPREP_DEFER if the failure is retryable
1041 * BLKPREP_KILL if the failure is fatal
1042 */
3c356bde 1043int scsi_init_io(struct scsi_cmnd *cmd)
6f9a35e2 1044{
5e012aad 1045 struct scsi_device *sdev = cmd->device;
13f05c8d 1046 struct request *rq = cmd->request;
d285203c 1047 bool is_mq = (rq->mq_ctx != NULL);
e7661a8e 1048 int error = BLKPREP_KILL;
13f05c8d 1049
fd3fc0b4 1050 if (WARN_ON_ONCE(!blk_rq_nr_phys_segments(rq)))
e7661a8e 1051 goto err_exit;
635d98b1 1052
3c356bde 1053 error = scsi_init_sgtable(rq, &cmd->sdb);
6f9a35e2
BH
1054 if (error)
1055 goto err_exit;
1056
13f05c8d 1057 if (blk_bidi_rq(rq)) {
d285203c
CH
1058 if (!rq->q->mq_ops) {
1059 struct scsi_data_buffer *bidi_sdb =
1060 kmem_cache_zalloc(scsi_sdb_cache, GFP_ATOMIC);
1061 if (!bidi_sdb) {
1062 error = BLKPREP_DEFER;
1063 goto err_exit;
1064 }
1065
1066 rq->next_rq->special = bidi_sdb;
6f9a35e2
BH
1067 }
1068
3c356bde 1069 error = scsi_init_sgtable(rq->next_rq, rq->next_rq->special);
6f9a35e2
BH
1070 if (error)
1071 goto err_exit;
1072 }
1073
13f05c8d 1074 if (blk_integrity_rq(rq)) {
7027ad72
MP
1075 struct scsi_data_buffer *prot_sdb = cmd->prot_sdb;
1076 int ivecs, count;
1077
91724c20
EM
1078 if (prot_sdb == NULL) {
1079 /*
1080 * This can happen if someone (e.g. multipath)
1081 * queues a command to a device on an adapter
1082 * that does not support DIX.
1083 */
1084 WARN_ON_ONCE(1);
1085 error = BLKPREP_KILL;
1086 goto err_exit;
1087 }
1088
13f05c8d 1089 ivecs = blk_rq_count_integrity_sg(rq->q, rq->bio);
7027ad72 1090
001d63be 1091 if (sg_alloc_table_chained(&prot_sdb->table, ivecs,
22cc3d4c 1092 prot_sdb->table.sgl)) {
7027ad72
MP
1093 error = BLKPREP_DEFER;
1094 goto err_exit;
1095 }
1096
13f05c8d 1097 count = blk_rq_map_integrity_sg(rq->q, rq->bio,
7027ad72
MP
1098 prot_sdb->table.sgl);
1099 BUG_ON(unlikely(count > ivecs));
13f05c8d 1100 BUG_ON(unlikely(count > queue_max_integrity_segments(rq->q)));
7027ad72
MP
1101
1102 cmd->prot_sdb = prot_sdb;
1103 cmd->prot_sdb->table.nents = count;
1104 }
1105
d285203c 1106 return BLKPREP_OK;
6f9a35e2 1107err_exit:
d285203c
CH
1108 if (is_mq) {
1109 scsi_mq_free_sgtables(cmd);
1110 } else {
1111 scsi_release_buffers(cmd);
1112 cmd->request->special = NULL;
1113 scsi_put_command(cmd);
1114 put_device(&sdev->sdev_gendev);
1115 }
6f9a35e2
BH
1116 return error;
1117}
bb52d82f 1118EXPORT_SYMBOL(scsi_init_io);
1da177e4 1119
ca18d6f7 1120/**
832889f5 1121 * scsi_initialize_rq - initialize struct scsi_cmnd partially
35c0506f 1122 * @rq: Request associated with the SCSI command to be initialized.
ca18d6f7 1123 *
832889f5
BVA
1124 * This function initializes the members of struct scsi_cmnd that must be
1125 * initialized before request processing starts and that won't be
1126 * reinitialized if a SCSI command is requeued.
1127 *
64104f70
BVA
1128 * Called from inside blk_get_request() for pass-through requests and from
1129 * inside scsi_init_command() for filesystem requests.
ca18d6f7
BVA
1130 */
1131void scsi_initialize_rq(struct request *rq)
1132{
c8d9cf22
BVA
1133 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(rq);
1134
1135 scsi_req_init(&cmd->req);
832889f5
BVA
1136 cmd->jiffies_at_alloc = jiffies;
1137 cmd->retries = 0;
ca18d6f7
BVA
1138}
1139EXPORT_SYMBOL(scsi_initialize_rq);
1140
2dd6fb59
BVA
1141/* Add a command to the list used by the aacraid and dpt_i2o drivers */
1142void scsi_add_cmd_to_list(struct scsi_cmnd *cmd)
1143{
1144 struct scsi_device *sdev = cmd->device;
1145 struct Scsi_Host *shost = sdev->host;
1146 unsigned long flags;
1147
1148 if (shost->use_cmd_list) {
1149 spin_lock_irqsave(&sdev->list_lock, flags);
1150 list_add_tail(&cmd->list, &sdev->cmd_list);
1151 spin_unlock_irqrestore(&sdev->list_lock, flags);
1152 }
1153}
1154
1155/* Remove a command from the list used by the aacraid and dpt_i2o drivers */
1156void scsi_del_cmd_from_list(struct scsi_cmnd *cmd)
1157{
1158 struct scsi_device *sdev = cmd->device;
1159 struct Scsi_Host *shost = sdev->host;
1160 unsigned long flags;
1161
1162 if (shost->use_cmd_list) {
1163 spin_lock_irqsave(&sdev->list_lock, flags);
1164 BUG_ON(list_empty(&cmd->list));
1165 list_del_init(&cmd->list);
1166 spin_unlock_irqrestore(&sdev->list_lock, flags);
1167 }
1168}
1169
ca18d6f7 1170/* Called after a request has been started. */
e9c787e6 1171void scsi_init_command(struct scsi_device *dev, struct scsi_cmnd *cmd)
3b003157 1172{
e9c787e6
CH
1173 void *buf = cmd->sense_buffer;
1174 void *prot = cmd->prot_sdb;
64104f70
BVA
1175 struct request *rq = blk_mq_rq_from_pdu(cmd);
1176 unsigned int flags = cmd->flags & SCMD_PRESERVED_FLAGS;
832889f5
BVA
1177 unsigned long jiffies_at_alloc;
1178 int retries;
64104f70
BVA
1179
1180 if (!blk_rq_is_scsi(rq) && !(flags & SCMD_INITIALIZED)) {
1181 flags |= SCMD_INITIALIZED;
1182 scsi_initialize_rq(rq);
1183 }
3b003157 1184
832889f5
BVA
1185 jiffies_at_alloc = cmd->jiffies_at_alloc;
1186 retries = cmd->retries;
82ed4db4
CH
1187 /* zero out the cmd, except for the embedded scsi_request */
1188 memset((char *)cmd + sizeof(cmd->req), 0,
ee524236 1189 sizeof(*cmd) - sizeof(cmd->req) + dev->host->hostt->cmd_size);
3b003157 1190
e9c787e6
CH
1191 cmd->device = dev;
1192 cmd->sense_buffer = buf;
1193 cmd->prot_sdb = prot;
64104f70 1194 cmd->flags = flags;
e9c787e6 1195 INIT_DELAYED_WORK(&cmd->abort_work, scmd_eh_abort_handler);
832889f5
BVA
1196 cmd->jiffies_at_alloc = jiffies_at_alloc;
1197 cmd->retries = retries;
64a87b24 1198
2dd6fb59 1199 scsi_add_cmd_to_list(cmd);
3b003157
CH
1200}
1201
aebf526b 1202static int scsi_setup_scsi_cmnd(struct scsi_device *sdev, struct request *req)
7b16318d 1203{
bed2213d 1204 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(req);
3b003157
CH
1205
1206 /*
aebf526b 1207 * Passthrough requests may transfer data, in which case they must
3b003157
CH
1208 * a bio attached to them. Or they might contain a SCSI command
1209 * that does not transfer data, in which case they may optionally
1210 * submit a request without an attached bio.
1211 */
1212 if (req->bio) {
3c356bde 1213 int ret = scsi_init_io(cmd);
3b003157
CH
1214 if (unlikely(ret))
1215 return ret;
1216 } else {
b0790410 1217 BUG_ON(blk_rq_bytes(req));
3b003157 1218
30b0c37b 1219 memset(&cmd->sdb, 0, sizeof(cmd->sdb));
3b003157 1220 }
7b16318d 1221
82ed4db4
CH
1222 cmd->cmd_len = scsi_req(req)->cmd_len;
1223 cmd->cmnd = scsi_req(req)->cmd;
b0790410 1224 cmd->transfersize = blk_rq_bytes(req);
64c7f1d1 1225 cmd->allowed = scsi_req(req)->retries;
3b003157 1226 return BLKPREP_OK;
7b16318d 1227}
7b16318d 1228
3b003157 1229/*
aebf526b 1230 * Setup a normal block command. These are simple request from filesystems
3868cf8e 1231 * that still need to be translated to SCSI CDBs from the ULD.
3b003157 1232 */
3868cf8e 1233static int scsi_setup_fs_cmnd(struct scsi_device *sdev, struct request *req)
1da177e4 1234{
bed2213d 1235 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(req);
a6a8d9f8 1236
ee14c674
CH
1237 if (unlikely(sdev->handler && sdev->handler->prep_fn)) {
1238 int ret = sdev->handler->prep_fn(sdev, req);
a6a8d9f8
CS
1239 if (ret != BLKPREP_OK)
1240 return ret;
1241 }
1242
82ed4db4 1243 cmd->cmnd = scsi_req(req)->cmd = scsi_req(req)->__cmd;
64a87b24 1244 memset(cmd->cmnd, 0, BLK_MAX_CDB);
3868cf8e 1245 return scsi_cmd_to_driver(cmd)->init_command(cmd);
3b003157
CH
1246}
1247
6af7a4ff
CH
1248static int scsi_setup_cmnd(struct scsi_device *sdev, struct request *req)
1249{
bed2213d 1250 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(req);
6af7a4ff
CH
1251
1252 if (!blk_rq_bytes(req))
1253 cmd->sc_data_direction = DMA_NONE;
1254 else if (rq_data_dir(req) == WRITE)
1255 cmd->sc_data_direction = DMA_TO_DEVICE;
1256 else
1257 cmd->sc_data_direction = DMA_FROM_DEVICE;
1258
aebf526b
CH
1259 if (blk_rq_is_scsi(req))
1260 return scsi_setup_scsi_cmnd(sdev, req);
1261 else
6af7a4ff 1262 return scsi_setup_fs_cmnd(sdev, req);
6af7a4ff
CH
1263}
1264
a1b73fc1
CH
1265static int
1266scsi_prep_state_check(struct scsi_device *sdev, struct request *req)
3b003157 1267{
3b003157
CH
1268 int ret = BLKPREP_OK;
1269
1da177e4 1270 /*
3b003157
CH
1271 * If the device is not in running state we will reject some
1272 * or all commands.
1da177e4 1273 */
3b003157
CH
1274 if (unlikely(sdev->sdev_state != SDEV_RUNNING)) {
1275 switch (sdev->sdev_state) {
1276 case SDEV_OFFLINE:
1b8d2620 1277 case SDEV_TRANSPORT_OFFLINE:
3b003157
CH
1278 /*
1279 * If the device is offline we refuse to process any
1280 * commands. The device must be brought online
1281 * before trying any recovery commands.
1282 */
1283 sdev_printk(KERN_ERR, sdev,
1284 "rejecting I/O to offline device\n");
1285 ret = BLKPREP_KILL;
1286 break;
1287 case SDEV_DEL:
1288 /*
1289 * If the device is fully deleted, we refuse to
1290 * process any commands as well.
1291 */
9ccfc756 1292 sdev_printk(KERN_ERR, sdev,
3b003157
CH
1293 "rejecting I/O to dead device\n");
1294 ret = BLKPREP_KILL;
1295 break;
3b003157 1296 case SDEV_BLOCK:
6f4267e3 1297 case SDEV_CREATED_BLOCK:
bba0bdd7
BVA
1298 ret = BLKPREP_DEFER;
1299 break;
1300 case SDEV_QUIESCE:
3b003157
CH
1301 /*
1302 * If the devices is blocked we defer normal commands.
1303 */
aeec7762 1304 if (req && !(req->rq_flags & RQF_PREEMPT))
3b003157
CH
1305 ret = BLKPREP_DEFER;
1306 break;
1307 default:
1308 /*
1309 * For any other not fully online state we only allow
1310 * special commands. In particular any user initiated
1311 * command is not allowed.
1312 */
aeec7762 1313 if (req && !(req->rq_flags & RQF_PREEMPT))
3b003157
CH
1314 ret = BLKPREP_KILL;
1315 break;
1da177e4 1316 }
1da177e4 1317 }
7f9a6bc4
JB
1318 return ret;
1319}
1da177e4 1320
a1b73fc1
CH
1321static int
1322scsi_prep_return(struct request_queue *q, struct request *req, int ret)
7f9a6bc4
JB
1323{
1324 struct scsi_device *sdev = q->queuedata;
1da177e4 1325
3b003157
CH
1326 switch (ret) {
1327 case BLKPREP_KILL:
e1cd3911 1328 case BLKPREP_INVALID:
17d5363b 1329 scsi_req(req)->result = DID_NO_CONNECT << 16;
7f9a6bc4
JB
1330 /* release the command and kill it */
1331 if (req->special) {
1332 struct scsi_cmnd *cmd = req->special;
1333 scsi_release_buffers(cmd);
1334 scsi_put_command(cmd);
68c03d91 1335 put_device(&sdev->sdev_gendev);
7f9a6bc4
JB
1336 req->special = NULL;
1337 }
3b003157
CH
1338 break;
1339 case BLKPREP_DEFER:
1da177e4 1340 /*
9934c8c0 1341 * If we defer, the blk_peek_request() returns NULL, but the
a488e749
JA
1342 * queue must be restarted, so we schedule a callback to happen
1343 * shortly.
1da177e4 1344 */
71e75c97 1345 if (atomic_read(&sdev->device_busy) == 0)
a488e749 1346 blk_delay_queue(q, SCSI_QUEUE_DELAY);
3b003157
CH
1347 break;
1348 default:
e8064021 1349 req->rq_flags |= RQF_DONTPREP;
1da177e4
LT
1350 }
1351
3b003157 1352 return ret;
1da177e4 1353}
7f9a6bc4 1354
a1b73fc1 1355static int scsi_prep_fn(struct request_queue *q, struct request *req)
7f9a6bc4
JB
1356{
1357 struct scsi_device *sdev = q->queuedata;
e9c787e6 1358 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(req);
a1b73fc1
CH
1359 int ret;
1360
1361 ret = scsi_prep_state_check(sdev, req);
1362 if (ret != BLKPREP_OK)
1363 goto out;
1364
e9c787e6
CH
1365 if (!req->special) {
1366 /* Bail if we can't get a reference to the device */
1367 if (unlikely(!get_device(&sdev->sdev_gendev))) {
1368 ret = BLKPREP_DEFER;
1369 goto out;
1370 }
1371
1372 scsi_init_command(sdev, cmd);
1373 req->special = cmd;
a1b73fc1 1374 }
7f9a6bc4 1375
e9c787e6
CH
1376 cmd->tag = req->tag;
1377 cmd->request = req;
e9c787e6
CH
1378 cmd->prot_op = SCSI_PROT_NORMAL;
1379
6af7a4ff 1380 ret = scsi_setup_cmnd(sdev, req);
a1b73fc1 1381out:
64104f70
BVA
1382 if (ret != BLKPREP_OK)
1383 cmd->flags &= ~SCMD_INITIALIZED;
7f9a6bc4
JB
1384 return scsi_prep_return(q, req, ret);
1385}
a1b73fc1
CH
1386
1387static void scsi_unprep_fn(struct request_queue *q, struct request *req)
1388{
bed2213d 1389 scsi_uninit_cmd(blk_mq_rq_to_pdu(req));
a1b73fc1 1390}
1da177e4
LT
1391
1392/*
1393 * scsi_dev_queue_ready: if we can send requests to sdev, return 1 else
1394 * return 0.
1395 *
1396 * Called with the queue_lock held.
1397 */
1398static inline int scsi_dev_queue_ready(struct request_queue *q,
1399 struct scsi_device *sdev)
1400{
71e75c97
CH
1401 unsigned int busy;
1402
1403 busy = atomic_inc_return(&sdev->device_busy) - 1;
cd9070c9 1404 if (atomic_read(&sdev->device_blocked)) {
71e75c97
CH
1405 if (busy)
1406 goto out_dec;
1407
1da177e4
LT
1408 /*
1409 * unblock after device_blocked iterates to zero
1410 */
cd9070c9 1411 if (atomic_dec_return(&sdev->device_blocked) > 0) {
d285203c
CH
1412 /*
1413 * For the MQ case we take care of this in the caller.
1414 */
1415 if (!q->mq_ops)
1416 blk_delay_queue(q, SCSI_QUEUE_DELAY);
71e75c97 1417 goto out_dec;
1da177e4 1418 }
71e75c97
CH
1419 SCSI_LOG_MLQUEUE(3, sdev_printk(KERN_INFO, sdev,
1420 "unblocking device at zero depth\n"));
1da177e4 1421 }
71e75c97
CH
1422
1423 if (busy >= sdev->queue_depth)
1424 goto out_dec;
1da177e4
LT
1425
1426 return 1;
71e75c97
CH
1427out_dec:
1428 atomic_dec(&sdev->device_busy);
1429 return 0;
1da177e4
LT
1430}
1431
f0c0a376
MC
1432/*
1433 * scsi_target_queue_ready: checks if there we can send commands to target
1434 * @sdev: scsi device on starget to check.
f0c0a376
MC
1435 */
1436static inline int scsi_target_queue_ready(struct Scsi_Host *shost,
1437 struct scsi_device *sdev)
1438{
1439 struct scsi_target *starget = scsi_target(sdev);
7ae65c0f 1440 unsigned int busy;
f0c0a376
MC
1441
1442 if (starget->single_lun) {
7ae65c0f 1443 spin_lock_irq(shost->host_lock);
f0c0a376 1444 if (starget->starget_sdev_user &&
7ae65c0f
CH
1445 starget->starget_sdev_user != sdev) {
1446 spin_unlock_irq(shost->host_lock);
1447 return 0;
1448 }
f0c0a376 1449 starget->starget_sdev_user = sdev;
7ae65c0f 1450 spin_unlock_irq(shost->host_lock);
f0c0a376
MC
1451 }
1452
2ccbb008
CH
1453 if (starget->can_queue <= 0)
1454 return 1;
1455
7ae65c0f 1456 busy = atomic_inc_return(&starget->target_busy) - 1;
cd9070c9 1457 if (atomic_read(&starget->target_blocked) > 0) {
7ae65c0f
CH
1458 if (busy)
1459 goto starved;
1460
f0c0a376
MC
1461 /*
1462 * unblock after target_blocked iterates to zero
1463 */
cd9070c9 1464 if (atomic_dec_return(&starget->target_blocked) > 0)
7ae65c0f 1465 goto out_dec;
cf68d334
CH
1466
1467 SCSI_LOG_MLQUEUE(3, starget_printk(KERN_INFO, starget,
1468 "unblocking target at zero depth\n"));
f0c0a376
MC
1469 }
1470
2ccbb008 1471 if (busy >= starget->can_queue)
7ae65c0f 1472 goto starved;
f0c0a376 1473
7ae65c0f
CH
1474 return 1;
1475
1476starved:
1477 spin_lock_irq(shost->host_lock);
1478 list_move_tail(&sdev->starved_entry, &shost->starved_list);
cf68d334 1479 spin_unlock_irq(shost->host_lock);
7ae65c0f 1480out_dec:
2ccbb008
CH
1481 if (starget->can_queue > 0)
1482 atomic_dec(&starget->target_busy);
7ae65c0f 1483 return 0;
f0c0a376
MC
1484}
1485
1da177e4
LT
1486/*
1487 * scsi_host_queue_ready: if we can send requests to shost, return 1 else
1488 * return 0. We must end up running the queue again whenever 0 is
1489 * returned, else IO can hang.
1da177e4
LT
1490 */
1491static inline int scsi_host_queue_ready(struct request_queue *q,
1492 struct Scsi_Host *shost,
1493 struct scsi_device *sdev)
1494{
74665016 1495 unsigned int busy;
cf68d334 1496
939647ee 1497 if (scsi_host_in_recovery(shost))
74665016
CH
1498 return 0;
1499
1500 busy = atomic_inc_return(&shost->host_busy) - 1;
cd9070c9 1501 if (atomic_read(&shost->host_blocked) > 0) {
74665016
CH
1502 if (busy)
1503 goto starved;
1504
1da177e4
LT
1505 /*
1506 * unblock after host_blocked iterates to zero
1507 */
cd9070c9 1508 if (atomic_dec_return(&shost->host_blocked) > 0)
74665016 1509 goto out_dec;
cf68d334
CH
1510
1511 SCSI_LOG_MLQUEUE(3,
1512 shost_printk(KERN_INFO, shost,
1513 "unblocking host at zero depth\n"));
1da177e4 1514 }
74665016
CH
1515
1516 if (shost->can_queue > 0 && busy >= shost->can_queue)
1517 goto starved;
1518 if (shost->host_self_blocked)
1519 goto starved;
1da177e4
LT
1520
1521 /* We're OK to process the command, so we can't be starved */
74665016
CH
1522 if (!list_empty(&sdev->starved_entry)) {
1523 spin_lock_irq(shost->host_lock);
1524 if (!list_empty(&sdev->starved_entry))
1525 list_del_init(&sdev->starved_entry);
1526 spin_unlock_irq(shost->host_lock);
1527 }
1da177e4 1528
74665016
CH
1529 return 1;
1530
1531starved:
1532 spin_lock_irq(shost->host_lock);
1533 if (list_empty(&sdev->starved_entry))
1534 list_add_tail(&sdev->starved_entry, &shost->starved_list);
cf68d334 1535 spin_unlock_irq(shost->host_lock);
74665016
CH
1536out_dec:
1537 atomic_dec(&shost->host_busy);
1538 return 0;
1da177e4
LT
1539}
1540
6c5121b7
KU
1541/*
1542 * Busy state exporting function for request stacking drivers.
1543 *
1544 * For efficiency, no lock is taken to check the busy state of
1545 * shost/starget/sdev, since the returned value is not guaranteed and
1546 * may be changed after request stacking drivers call the function,
1547 * regardless of taking lock or not.
1548 *
67bd9413
BVA
1549 * When scsi can't dispatch I/Os anymore and needs to kill I/Os scsi
1550 * needs to return 'not busy'. Otherwise, request stacking drivers
1551 * may hold requests forever.
6c5121b7
KU
1552 */
1553static int scsi_lld_busy(struct request_queue *q)
1554{
1555 struct scsi_device *sdev = q->queuedata;
1556 struct Scsi_Host *shost;
6c5121b7 1557
3f3299d5 1558 if (blk_queue_dying(q))
6c5121b7
KU
1559 return 0;
1560
1561 shost = sdev->host;
6c5121b7 1562
b7e94a16
JN
1563 /*
1564 * Ignore host/starget busy state.
1565 * Since block layer does not have a concept of fairness across
1566 * multiple queues, congestion of host/starget needs to be handled
1567 * in SCSI layer.
1568 */
1569 if (scsi_host_in_recovery(shost) || scsi_device_is_busy(sdev))
6c5121b7
KU
1570 return 1;
1571
1572 return 0;
1573}
1574
1da177e4 1575/*
e91442b6 1576 * Kill a request for a dead device
1da177e4 1577 */
165125e1 1578static void scsi_kill_request(struct request *req, struct request_queue *q)
1da177e4 1579{
bed2213d 1580 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(req);
03b14708
JS
1581 struct scsi_device *sdev;
1582 struct scsi_target *starget;
1583 struct Scsi_Host *shost;
1da177e4 1584
9934c8c0 1585 blk_start_request(req);
788ce43a 1586
74571813
HR
1587 scmd_printk(KERN_INFO, cmd, "killing request\n");
1588
03b14708
JS
1589 sdev = cmd->device;
1590 starget = scsi_target(sdev);
1591 shost = sdev->host;
e91442b6
JB
1592 scsi_init_cmd_errh(cmd);
1593 cmd->result = DID_NO_CONNECT << 16;
1594 atomic_inc(&cmd->device->iorequest_cnt);
e36e0c80
TH
1595
1596 /*
1597 * SCSI request completion path will do scsi_device_unbusy(),
1598 * bump busy counts. To bump the counters, we need to dance
1599 * with the locks as normal issue path does.
1600 */
71e75c97 1601 atomic_inc(&sdev->device_busy);
74665016 1602 atomic_inc(&shost->host_busy);
2ccbb008
CH
1603 if (starget->can_queue > 0)
1604 atomic_inc(&starget->target_busy);
e36e0c80 1605
242f9dcb 1606 blk_complete_request(req);
1da177e4
LT
1607}
1608
1aea6434
JA
1609static void scsi_softirq_done(struct request *rq)
1610{
bed2213d 1611 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(rq);
242f9dcb 1612 unsigned long wait_for = (cmd->allowed + 1) * rq->timeout;
1aea6434
JA
1613 int disposition;
1614
1615 INIT_LIST_HEAD(&cmd->eh_entry);
1616
242f9dcb
JA
1617 atomic_inc(&cmd->device->iodone_cnt);
1618 if (cmd->result)
1619 atomic_inc(&cmd->device->ioerr_cnt);
1620
1aea6434
JA
1621 disposition = scsi_decide_disposition(cmd);
1622 if (disposition != SUCCESS &&
1623 time_before(cmd->jiffies_at_alloc + wait_for, jiffies)) {
1624 sdev_printk(KERN_ERR, cmd->device,
1625 "timing out command, waited %lus\n",
1626 wait_for/HZ);
1627 disposition = SUCCESS;
1628 }
91921e01 1629
1aea6434
JA
1630 scsi_log_completion(cmd, disposition);
1631
1632 switch (disposition) {
1633 case SUCCESS:
1634 scsi_finish_command(cmd);
1635 break;
1636 case NEEDS_RETRY:
596f482a 1637 scsi_queue_insert(cmd, SCSI_MLQUEUE_EH_RETRY);
1aea6434
JA
1638 break;
1639 case ADD_TO_MLQUEUE:
1640 scsi_queue_insert(cmd, SCSI_MLQUEUE_DEVICE_BUSY);
1641 break;
1642 default:
a0658632 1643 scsi_eh_scmd_add(cmd);
2171b6d0 1644 break;
1aea6434
JA
1645 }
1646}
1647
82042a2c
CH
1648/**
1649 * scsi_dispatch_command - Dispatch a command to the low-level driver.
1650 * @cmd: command block we are dispatching.
1651 *
1652 * Return: nonzero return request was rejected and device's queue needs to be
1653 * plugged.
1654 */
1655static int scsi_dispatch_cmd(struct scsi_cmnd *cmd)
1656{
1657 struct Scsi_Host *host = cmd->device->host;
1658 int rtn = 0;
1659
1660 atomic_inc(&cmd->device->iorequest_cnt);
1661
1662 /* check if the device is still usable */
1663 if (unlikely(cmd->device->sdev_state == SDEV_DEL)) {
1664 /* in SDEV_DEL we error all commands. DID_NO_CONNECT
1665 * returns an immediate error upwards, and signals
1666 * that the device is no longer present */
1667 cmd->result = DID_NO_CONNECT << 16;
1668 goto done;
1669 }
1670
1671 /* Check to see if the scsi lld made this device blocked. */
1672 if (unlikely(scsi_device_blocked(cmd->device))) {
1673 /*
1674 * in blocked state, the command is just put back on
1675 * the device queue. The suspend state has already
1676 * blocked the queue so future requests should not
1677 * occur until the device transitions out of the
1678 * suspend state.
1679 */
1680 SCSI_LOG_MLQUEUE(3, scmd_printk(KERN_INFO, cmd,
1681 "queuecommand : device blocked\n"));
1682 return SCSI_MLQUEUE_DEVICE_BUSY;
1683 }
1684
1685 /* Store the LUN value in cmnd, if needed. */
1686 if (cmd->device->lun_in_cdb)
1687 cmd->cmnd[1] = (cmd->cmnd[1] & 0x1f) |
1688 (cmd->device->lun << 5 & 0xe0);
1689
1690 scsi_log_send(cmd);
1691
1692 /*
1693 * Before we queue this command, check if the command
1694 * length exceeds what the host adapter can handle.
1695 */
1696 if (cmd->cmd_len > cmd->device->host->max_cmd_len) {
1697 SCSI_LOG_MLQUEUE(3, scmd_printk(KERN_INFO, cmd,
1698 "queuecommand : command too long. "
1699 "cdb_size=%d host->max_cmd_len=%d\n",
1700 cmd->cmd_len, cmd->device->host->max_cmd_len));
1701 cmd->result = (DID_ABORT << 16);
1702 goto done;
1703 }
1704
1705 if (unlikely(host->shost_state == SHOST_DEL)) {
1706 cmd->result = (DID_NO_CONNECT << 16);
1707 goto done;
1708
1709 }
1710
1711 trace_scsi_dispatch_cmd_start(cmd);
1712 rtn = host->hostt->queuecommand(host, cmd);
1713 if (rtn) {
1714 trace_scsi_dispatch_cmd_error(cmd, rtn);
1715 if (rtn != SCSI_MLQUEUE_DEVICE_BUSY &&
1716 rtn != SCSI_MLQUEUE_TARGET_BUSY)
1717 rtn = SCSI_MLQUEUE_HOST_BUSY;
1718
1719 SCSI_LOG_MLQUEUE(3, scmd_printk(KERN_INFO, cmd,
1720 "queuecommand : request rejected\n"));
1721 }
1722
1723 return rtn;
1724 done:
1725 cmd->scsi_done(cmd);
1726 return 0;
1727}
1728
3b5382c4
CH
1729/**
1730 * scsi_done - Invoke completion on finished SCSI command.
1731 * @cmd: The SCSI Command for which a low-level device driver (LLDD) gives
1732 * ownership back to SCSI Core -- i.e. the LLDD has finished with it.
1733 *
1734 * Description: This function is the mid-level's (SCSI Core) interrupt routine,
1735 * which regains ownership of the SCSI command (de facto) from a LLDD, and
1736 * calls blk_complete_request() for further processing.
1737 *
1738 * This function is interrupt context safe.
1739 */
1740static void scsi_done(struct scsi_cmnd *cmd)
1741{
1742 trace_scsi_dispatch_cmd_done(cmd);
1743 blk_complete_request(cmd->request);
1744}
1745
1da177e4
LT
1746/*
1747 * Function: scsi_request_fn()
1748 *
1749 * Purpose: Main strategy routine for SCSI.
1750 *
1751 * Arguments: q - Pointer to actual queue.
1752 *
1753 * Returns: Nothing
1754 *
1755 * Lock status: IO request lock assumed to be held when called.
1756 */
1757static void scsi_request_fn(struct request_queue *q)
613be1f6
BVA
1758 __releases(q->queue_lock)
1759 __acquires(q->queue_lock)
1da177e4
LT
1760{
1761 struct scsi_device *sdev = q->queuedata;
1762 struct Scsi_Host *shost;
1763 struct scsi_cmnd *cmd;
1764 struct request *req;
1765
1da177e4
LT
1766 /*
1767 * To start with, we keep looping until the queue is empty, or until
1768 * the host is no longer able to accept any more requests.
1769 */
1770 shost = sdev->host;
a488e749 1771 for (;;) {
1da177e4
LT
1772 int rtn;
1773 /*
1774 * get next queueable request. We do this early to make sure
91921e01 1775 * that the request is fully prepared even if we cannot
1da177e4
LT
1776 * accept it.
1777 */
9934c8c0 1778 req = blk_peek_request(q);
71e75c97 1779 if (!req)
1da177e4
LT
1780 break;
1781
1782 if (unlikely(!scsi_device_online(sdev))) {
9ccfc756
JB
1783 sdev_printk(KERN_ERR, sdev,
1784 "rejecting I/O to offline device\n");
e91442b6 1785 scsi_kill_request(req, q);
1da177e4
LT
1786 continue;
1787 }
1788
71e75c97
CH
1789 if (!scsi_dev_queue_ready(q, sdev))
1790 break;
1da177e4
LT
1791
1792 /*
1793 * Remove the request from the request list.
1794 */
1795 if (!(blk_queue_tagged(q) && !blk_queue_start_tag(q, req)))
9934c8c0 1796 blk_start_request(req);
1da177e4 1797
cf68d334 1798 spin_unlock_irq(q->queue_lock);
bed2213d
BVA
1799 cmd = blk_mq_rq_to_pdu(req);
1800 if (cmd != req->special) {
e91442b6
JB
1801 printk(KERN_CRIT "impossible request in %s.\n"
1802 "please mail a stack trace to "
4aff5e23 1803 "linux-scsi@vger.kernel.org\n",
cadbd4a5 1804 __func__);
4aff5e23 1805 blk_dump_rq_flags(req, "foo");
e91442b6
JB
1806 BUG();
1807 }
1da177e4 1808
ecefe8a9
MC
1809 /*
1810 * We hit this when the driver is using a host wide
1811 * tag map. For device level tag maps the queue_depth check
1812 * in the device ready fn would prevent us from trying
1813 * to allocate a tag. Since the map is a shared host resource
1814 * we add the dev to the starved list so it eventually gets
1815 * a run when a tag is freed.
1816 */
e8064021 1817 if (blk_queue_tagged(q) && !(req->rq_flags & RQF_QUEUED)) {
cf68d334 1818 spin_lock_irq(shost->host_lock);
ecefe8a9
MC
1819 if (list_empty(&sdev->starved_entry))
1820 list_add_tail(&sdev->starved_entry,
1821 &shost->starved_list);
cf68d334 1822 spin_unlock_irq(shost->host_lock);
ecefe8a9
MC
1823 goto not_ready;
1824 }
1825
f0c0a376
MC
1826 if (!scsi_target_queue_ready(shost, sdev))
1827 goto not_ready;
1828
1da177e4 1829 if (!scsi_host_queue_ready(q, shost, sdev))
cf68d334 1830 goto host_not_ready;
125c99bc
CH
1831
1832 if (sdev->simple_tags)
1833 cmd->flags |= SCMD_TAGGED;
1834 else
1835 cmd->flags &= ~SCMD_TAGGED;
1da177e4 1836
1da177e4
LT
1837 /*
1838 * Finally, initialize any error handling parameters, and set up
1839 * the timers for timeouts.
1840 */
1841 scsi_init_cmd_errh(cmd);
1842
1843 /*
1844 * Dispatch the command to the low-level driver.
1845 */
3b5382c4 1846 cmd->scsi_done = scsi_done;
1da177e4 1847 rtn = scsi_dispatch_cmd(cmd);
d0d3bbf9
CH
1848 if (rtn) {
1849 scsi_queue_insert(cmd, rtn);
1850 spin_lock_irq(q->queue_lock);
a488e749 1851 goto out_delay;
d0d3bbf9
CH
1852 }
1853 spin_lock_irq(q->queue_lock);
1da177e4
LT
1854 }
1855
613be1f6 1856 return;
1da177e4 1857
cf68d334 1858 host_not_ready:
2ccbb008
CH
1859 if (scsi_target(sdev)->can_queue > 0)
1860 atomic_dec(&scsi_target(sdev)->target_busy);
cf68d334 1861 not_ready:
1da177e4
LT
1862 /*
1863 * lock q, handle tag, requeue req, and decrement device_busy. We
1864 * must return with queue_lock held.
1865 *
1866 * Decrementing device_busy without checking it is OK, as all such
1867 * cases (host limits or settings) should run the queue at some
1868 * later time.
1869 */
1870 spin_lock_irq(q->queue_lock);
1871 blk_requeue_request(q, req);
71e75c97 1872 atomic_dec(&sdev->device_busy);
a488e749 1873out_delay:
480cadc2 1874 if (!atomic_read(&sdev->device_busy) && !scsi_device_blocked(sdev))
a488e749 1875 blk_delay_queue(q, SCSI_QUEUE_DELAY);
1da177e4
LT
1876}
1877
fc17b653 1878static inline blk_status_t prep_to_mq(int ret)
d285203c
CH
1879{
1880 switch (ret) {
1881 case BLKPREP_OK:
fc17b653 1882 return BLK_STS_OK;
d285203c 1883 case BLKPREP_DEFER:
fc17b653 1884 return BLK_STS_RESOURCE;
d285203c 1885 default:
fc17b653 1886 return BLK_STS_IOERR;
d285203c
CH
1887 }
1888}
1889
be4c186c
BVA
1890/* Size in bytes of the sg-list stored in the scsi-mq command-private data. */
1891static unsigned int scsi_mq_sgl_size(struct Scsi_Host *shost)
1892{
1893 return min_t(unsigned int, shost->sg_tablesize, SG_CHUNK_SIZE) *
1894 sizeof(struct scatterlist);
1895}
1896
d285203c
CH
1897static int scsi_mq_prep_fn(struct request *req)
1898{
1899 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(req);
1900 struct scsi_device *sdev = req->q->queuedata;
1901 struct Scsi_Host *shost = sdev->host;
d285203c 1902 struct scatterlist *sg;
64104f70 1903 int ret;
d285203c 1904
08f78436 1905 scsi_init_command(sdev, cmd);
d285203c
CH
1906
1907 req->special = cmd;
1908
1909 cmd->request = req;
d285203c
CH
1910
1911 cmd->tag = req->tag;
d285203c
CH
1912 cmd->prot_op = SCSI_PROT_NORMAL;
1913
d285203c
CH
1914 sg = (void *)cmd + sizeof(struct scsi_cmnd) + shost->hostt->cmd_size;
1915 cmd->sdb.table.sgl = sg;
1916
1917 if (scsi_host_get_prot(shost)) {
d285203c
CH
1918 memset(cmd->prot_sdb, 0, sizeof(struct scsi_data_buffer));
1919
1920 cmd->prot_sdb->table.sgl =
1921 (struct scatterlist *)(cmd->prot_sdb + 1);
1922 }
1923
1924 if (blk_bidi_rq(req)) {
1925 struct request *next_rq = req->next_rq;
1926 struct scsi_data_buffer *bidi_sdb = blk_mq_rq_to_pdu(next_rq);
1927
1928 memset(bidi_sdb, 0, sizeof(struct scsi_data_buffer));
1929 bidi_sdb->table.sgl =
1930 (struct scatterlist *)(bidi_sdb + 1);
1931
1932 next_rq->special = bidi_sdb;
1933 }
1934
fe052529
CH
1935 blk_mq_start_request(req);
1936
64104f70
BVA
1937 ret = scsi_setup_cmnd(sdev, req);
1938 if (ret != BLK_STS_OK)
1939 cmd->flags &= ~SCMD_INITIALIZED;
1940 return ret;
d285203c
CH
1941}
1942
1943static void scsi_mq_done(struct scsi_cmnd *cmd)
1944{
1945 trace_scsi_dispatch_cmd_done(cmd);
08e0029a 1946 blk_mq_complete_request(cmd->request);
d285203c
CH
1947}
1948
0df21c86 1949static void scsi_mq_put_budget(struct blk_mq_hw_ctx *hctx)
d285203c 1950{
0df21c86
ML
1951 struct request_queue *q = hctx->queue;
1952 struct scsi_device *sdev = q->queuedata;
0df21c86 1953
0df21c86
ML
1954 atomic_dec(&sdev->device_busy);
1955 put_device(&sdev->sdev_gendev);
1956}
1957
1958static blk_status_t scsi_mq_get_budget(struct blk_mq_hw_ctx *hctx)
1959{
1960 struct request_queue *q = hctx->queue;
d285203c 1961 struct scsi_device *sdev = q->queuedata;
fc17b653 1962 blk_status_t ret;
d285203c 1963
0df21c86
ML
1964 ret = prep_to_mq(scsi_prep_state_check(sdev, NULL));
1965 if (ret == BLK_STS_RESOURCE || ret != BLK_STS_OK)
1966 return ret;
d285203c 1967
d285203c
CH
1968 if (!get_device(&sdev->sdev_gendev))
1969 goto out;
d285203c
CH
1970 if (!scsi_dev_queue_ready(q, sdev))
1971 goto out_put_device;
d285203c 1972
0df21c86
ML
1973 return BLK_STS_OK;
1974
0df21c86
ML
1975out_put_device:
1976 put_device(&sdev->sdev_gendev);
1977out:
1978 return BLK_STS_RESOURCE;
1979}
1980
1981static blk_status_t scsi_queue_rq(struct blk_mq_hw_ctx *hctx,
1982 const struct blk_mq_queue_data *bd)
1983{
1984 struct request *req = bd->rq;
1985 struct request_queue *q = req->q;
1986 struct scsi_device *sdev = q->queuedata;
826a70a0 1987 struct Scsi_Host *shost = sdev->host;
0df21c86
ML
1988 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(req);
1989 blk_status_t ret;
1990 int reason;
1991
1992 ret = prep_to_mq(scsi_prep_state_check(sdev, req));
1993 if (ret != BLK_STS_OK)
1994 goto out_put_budget;
1995
1996 ret = BLK_STS_RESOURCE;
826a70a0
ML
1997 if (!scsi_target_queue_ready(shost, sdev))
1998 goto out_put_budget;
1999 if (!scsi_host_queue_ready(q, shost, sdev))
2000 goto out_dec_target_busy;
2001
e8064021 2002 if (!(req->rq_flags & RQF_DONTPREP)) {
d285203c 2003 ret = prep_to_mq(scsi_mq_prep_fn(req));
fc17b653 2004 if (ret != BLK_STS_OK)
826a70a0 2005 goto out_dec_host_busy;
e8064021 2006 req->rq_flags |= RQF_DONTPREP;
fe052529
CH
2007 } else {
2008 blk_mq_start_request(req);
d285203c
CH
2009 }
2010
125c99bc
CH
2011 if (sdev->simple_tags)
2012 cmd->flags |= SCMD_TAGGED;
b1dd2aac 2013 else
125c99bc 2014 cmd->flags &= ~SCMD_TAGGED;
b1dd2aac 2015
d285203c
CH
2016 scsi_init_cmd_errh(cmd);
2017 cmd->scsi_done = scsi_mq_done;
2018
2019 reason = scsi_dispatch_cmd(cmd);
2020 if (reason) {
2021 scsi_set_blocked(cmd, reason);
fc17b653 2022 ret = BLK_STS_RESOURCE;
826a70a0 2023 goto out_dec_host_busy;
d285203c
CH
2024 }
2025
fc17b653 2026 return BLK_STS_OK;
d285203c 2027
826a70a0
ML
2028out_dec_host_busy:
2029 atomic_dec(&shost->host_busy);
2030out_dec_target_busy:
2031 if (scsi_target(sdev)->can_queue > 0)
2032 atomic_dec(&scsi_target(sdev)->target_busy);
0df21c86
ML
2033out_put_budget:
2034 scsi_mq_put_budget(hctx);
d285203c 2035 switch (ret) {
fc17b653
CH
2036 case BLK_STS_OK:
2037 break;
2038 case BLK_STS_RESOURCE:
d285203c
CH
2039 if (atomic_read(&sdev->device_busy) == 0 &&
2040 !scsi_device_blocked(sdev))
36e3cf27 2041 blk_mq_delay_run_hw_queue(hctx, SCSI_QUEUE_DELAY);
d285203c 2042 break;
fc17b653 2043 default:
d285203c
CH
2044 /*
2045 * Make sure to release all allocated ressources when
2046 * we hit an error, as we will never see this command
2047 * again.
2048 */
e8064021 2049 if (req->rq_flags & RQF_DONTPREP)
d285203c
CH
2050 scsi_mq_uninit_cmd(cmd);
2051 break;
d285203c
CH
2052 }
2053 return ret;
2054}
2055
0152fb6b
CH
2056static enum blk_eh_timer_return scsi_timeout(struct request *req,
2057 bool reserved)
2058{
2059 if (reserved)
2060 return BLK_EH_RESET_TIMER;
2061 return scsi_times_out(req);
2062}
2063
e7008ff5
BVA
2064static int scsi_mq_init_request(struct blk_mq_tag_set *set, struct request *rq,
2065 unsigned int hctx_idx, unsigned int numa_node)
d285203c 2066{
d6296d39 2067 struct Scsi_Host *shost = set->driver_data;
8e688254 2068 const bool unchecked_isa_dma = shost->unchecked_isa_dma;
d285203c 2069 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(rq);
08f78436 2070 struct scatterlist *sg;
d285203c 2071
8e688254
BVA
2072 if (unchecked_isa_dma)
2073 cmd->flags |= SCMD_UNCHECKED_ISA_DMA;
2074 cmd->sense_buffer = scsi_alloc_sense_buffer(unchecked_isa_dma,
2075 GFP_KERNEL, numa_node);
d285203c
CH
2076 if (!cmd->sense_buffer)
2077 return -ENOMEM;
82ed4db4 2078 cmd->req.sense = cmd->sense_buffer;
08f78436
BVA
2079
2080 if (scsi_host_get_prot(shost)) {
2081 sg = (void *)cmd + sizeof(struct scsi_cmnd) +
2082 shost->hostt->cmd_size;
2083 cmd->prot_sdb = (void *)sg + scsi_mq_sgl_size(shost);
2084 }
2085
d285203c
CH
2086 return 0;
2087}
2088
e7008ff5
BVA
2089static void scsi_mq_exit_request(struct blk_mq_tag_set *set, struct request *rq,
2090 unsigned int hctx_idx)
d285203c
CH
2091{
2092 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(rq);
2093
8e688254
BVA
2094 scsi_free_sense_buffer(cmd->flags & SCMD_UNCHECKED_ISA_DMA,
2095 cmd->sense_buffer);
d285203c
CH
2096}
2097
2d9c5c20
CH
2098static int scsi_map_queues(struct blk_mq_tag_set *set)
2099{
2100 struct Scsi_Host *shost = container_of(set, struct Scsi_Host, tag_set);
2101
2102 if (shost->hostt->map_queues)
2103 return shost->hostt->map_queues(shost);
2104 return blk_mq_map_queues(set);
2105}
2106
f1bea55d 2107static u64 scsi_calculate_bounce_limit(struct Scsi_Host *shost)
1da177e4
LT
2108{
2109 struct device *host_dev;
2110 u64 bounce_limit = 0xffffffff;
2111
2112 if (shost->unchecked_isa_dma)
2113 return BLK_BOUNCE_ISA;
2114 /*
2115 * Platforms with virtual-DMA translation
2116 * hardware have no practical limit.
2117 */
2118 if (!PCI_DMA_BUS_IS_PHYS)
2119 return BLK_BOUNCE_ANY;
2120
2121 host_dev = scsi_get_device(shost);
2122 if (host_dev && host_dev->dma_mask)
e83b3664 2123 bounce_limit = (u64)dma_max_pfn(host_dev) << PAGE_SHIFT;
1da177e4
LT
2124
2125 return bounce_limit;
2126}
1da177e4 2127
d48777a6 2128void __scsi_init_queue(struct Scsi_Host *shost, struct request_queue *q)
1da177e4 2129{
6f381fa3 2130 struct device *dev = shost->dma_dev;
1da177e4 2131
9efc160f
BVA
2132 queue_flag_set_unlocked(QUEUE_FLAG_SCSI_PASSTHROUGH, q);
2133
a8474ce2
JA
2134 /*
2135 * this limit is imposed by hardware restrictions
2136 */
8a78362c 2137 blk_queue_max_segments(q, min_t(unsigned short, shost->sg_tablesize,
65e8617f 2138 SG_MAX_SEGMENTS));
a8474ce2 2139
13f05c8d
MP
2140 if (scsi_host_prot_dma(shost)) {
2141 shost->sg_prot_tablesize =
2142 min_not_zero(shost->sg_prot_tablesize,
2143 (unsigned short)SCSI_MAX_PROT_SG_SEGMENTS);
2144 BUG_ON(shost->sg_prot_tablesize < shost->sg_tablesize);
2145 blk_queue_max_integrity_segments(q, shost->sg_prot_tablesize);
2146 }
2147
086fa5ff 2148 blk_queue_max_hw_sectors(q, shost->max_sectors);
1da177e4
LT
2149 blk_queue_bounce_limit(q, scsi_calculate_bounce_limit(shost));
2150 blk_queue_segment_boundary(q, shost->dma_boundary);
99c84dbd 2151 dma_set_seg_boundary(dev, shost->dma_boundary);
1da177e4 2152
860ac568
FT
2153 blk_queue_max_segment_size(q, dma_get_max_seg_size(dev));
2154
1da177e4 2155 if (!shost->use_clustering)
e692cb66 2156 q->limits.cluster = 0;
465ff318
JB
2157
2158 /*
2159 * set a reasonable default alignment on word boundaries: the
2160 * host and device may alter it using
2161 * blk_queue_update_dma_alignment() later.
2162 */
2163 blk_queue_dma_alignment(q, 0x03);
d285203c 2164}
d48777a6 2165EXPORT_SYMBOL_GPL(__scsi_init_queue);
465ff318 2166
e7008ff5
BVA
2167static int scsi_old_init_rq(struct request_queue *q, struct request *rq,
2168 gfp_t gfp)
d285203c 2169{
e9c787e6 2170 struct Scsi_Host *shost = q->rq_alloc_data;
8e688254 2171 const bool unchecked_isa_dma = shost->unchecked_isa_dma;
e9c787e6 2172 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(rq);
d285203c 2173
e9c787e6
CH
2174 memset(cmd, 0, sizeof(*cmd));
2175
8e688254
BVA
2176 if (unchecked_isa_dma)
2177 cmd->flags |= SCMD_UNCHECKED_ISA_DMA;
2178 cmd->sense_buffer = scsi_alloc_sense_buffer(unchecked_isa_dma, gfp,
2179 NUMA_NO_NODE);
e9c787e6
CH
2180 if (!cmd->sense_buffer)
2181 goto fail;
82ed4db4 2182 cmd->req.sense = cmd->sense_buffer;
e9c787e6
CH
2183
2184 if (scsi_host_get_prot(shost) >= SHOST_DIX_TYPE0_PROTECTION) {
2185 cmd->prot_sdb = kmem_cache_zalloc(scsi_sdb_cache, gfp);
2186 if (!cmd->prot_sdb)
2187 goto fail_free_sense;
2188 }
2189
2190 return 0;
2191
2192fail_free_sense:
8e688254 2193 scsi_free_sense_buffer(unchecked_isa_dma, cmd->sense_buffer);
e9c787e6
CH
2194fail:
2195 return -ENOMEM;
2196}
2197
e7008ff5 2198static void scsi_old_exit_rq(struct request_queue *q, struct request *rq)
e9c787e6 2199{
e9c787e6
CH
2200 struct scsi_cmnd *cmd = blk_mq_rq_to_pdu(rq);
2201
2202 if (cmd->prot_sdb)
2203 kmem_cache_free(scsi_sdb_cache, cmd->prot_sdb);
8e688254
BVA
2204 scsi_free_sense_buffer(cmd->flags & SCMD_UNCHECKED_ISA_DMA,
2205 cmd->sense_buffer);
1da177e4 2206}
b58d9154 2207
e7008ff5 2208struct request_queue *scsi_old_alloc_queue(struct scsi_device *sdev)
b58d9154 2209{
e9c787e6 2210 struct Scsi_Host *shost = sdev->host;
b58d9154
FT
2211 struct request_queue *q;
2212
e9c787e6 2213 q = blk_alloc_queue_node(GFP_KERNEL, NUMA_NO_NODE);
b58d9154
FT
2214 if (!q)
2215 return NULL;
e9c787e6
CH
2216 q->cmd_size = sizeof(struct scsi_cmnd) + shost->hostt->cmd_size;
2217 q->rq_alloc_data = shost;
2218 q->request_fn = scsi_request_fn;
e7008ff5
BVA
2219 q->init_rq_fn = scsi_old_init_rq;
2220 q->exit_rq_fn = scsi_old_exit_rq;
ca18d6f7 2221 q->initialize_rq_fn = scsi_initialize_rq;
e9c787e6
CH
2222
2223 if (blk_init_allocated_queue(q) < 0) {
2224 blk_cleanup_queue(q);
2225 return NULL;
2226 }
b58d9154 2227
e9c787e6 2228 __scsi_init_queue(shost, q);
b58d9154 2229 blk_queue_prep_rq(q, scsi_prep_fn);
a1b73fc1 2230 blk_queue_unprep_rq(q, scsi_unprep_fn);
b58d9154 2231 blk_queue_softirq_done(q, scsi_softirq_done);
242f9dcb 2232 blk_queue_rq_timed_out(q, scsi_times_out);
6c5121b7 2233 blk_queue_lld_busy(q, scsi_lld_busy);
b58d9154
FT
2234 return q;
2235}
1da177e4 2236
f363b089 2237static const struct blk_mq_ops scsi_mq_ops = {
0df21c86
ML
2238 .get_budget = scsi_mq_get_budget,
2239 .put_budget = scsi_mq_put_budget,
d285203c
CH
2240 .queue_rq = scsi_queue_rq,
2241 .complete = scsi_softirq_done,
0152fb6b 2242 .timeout = scsi_timeout,
0eebd005
BVA
2243#ifdef CONFIG_BLK_DEBUG_FS
2244 .show_rq = scsi_show_rq,
2245#endif
e7008ff5
BVA
2246 .init_request = scsi_mq_init_request,
2247 .exit_request = scsi_mq_exit_request,
ca18d6f7 2248 .initialize_rq_fn = scsi_initialize_rq,
2d9c5c20 2249 .map_queues = scsi_map_queues,
d285203c
CH
2250};
2251
2252struct request_queue *scsi_mq_alloc_queue(struct scsi_device *sdev)
2253{
2254 sdev->request_queue = blk_mq_init_queue(&sdev->host->tag_set);
2255 if (IS_ERR(sdev->request_queue))
2256 return NULL;
2257
2258 sdev->request_queue->queuedata = sdev;
2259 __scsi_init_queue(sdev->host, sdev->request_queue);
2260 return sdev->request_queue;
2261}
2262
2263int scsi_mq_setup_tags(struct Scsi_Host *shost)
2264{
be4c186c 2265 unsigned int cmd_size, sgl_size;
d285203c 2266
be4c186c 2267 sgl_size = scsi_mq_sgl_size(shost);
d285203c
CH
2268 cmd_size = sizeof(struct scsi_cmnd) + shost->hostt->cmd_size + sgl_size;
2269 if (scsi_host_get_prot(shost))
2270 cmd_size += sizeof(struct scsi_data_buffer) + sgl_size;
2271
2272 memset(&shost->tag_set, 0, sizeof(shost->tag_set));
2273 shost->tag_set.ops = &scsi_mq_ops;
efec4b90 2274 shost->tag_set.nr_hw_queues = shost->nr_hw_queues ? : 1;
d285203c
CH
2275 shost->tag_set.queue_depth = shost->can_queue;
2276 shost->tag_set.cmd_size = cmd_size;
2277 shost->tag_set.numa_node = NUMA_NO_NODE;
2278 shost->tag_set.flags = BLK_MQ_F_SHOULD_MERGE | BLK_MQ_F_SG_MERGE;
24391c0d
SL
2279 shost->tag_set.flags |=
2280 BLK_ALLOC_POLICY_TO_MQ_FLAG(shost->hostt->tag_alloc_policy);
d285203c
CH
2281 shost->tag_set.driver_data = shost;
2282
2283 return blk_mq_alloc_tag_set(&shost->tag_set);
2284}
2285
2286void scsi_mq_destroy_tags(struct Scsi_Host *shost)
2287{
2288 blk_mq_free_tag_set(&shost->tag_set);
2289}
2290
857de6e0
HR
2291/**
2292 * scsi_device_from_queue - return sdev associated with a request_queue
2293 * @q: The request queue to return the sdev from
2294 *
2295 * Return the sdev associated with a request queue or NULL if the
2296 * request_queue does not reference a SCSI device.
2297 */
2298struct scsi_device *scsi_device_from_queue(struct request_queue *q)
2299{
2300 struct scsi_device *sdev = NULL;
2301
2302 if (q->mq_ops) {
2303 if (q->mq_ops == &scsi_mq_ops)
2304 sdev = q->queuedata;
2305 } else if (q->request_fn == scsi_request_fn)
2306 sdev = q->queuedata;
2307 if (!sdev || !get_device(&sdev->sdev_gendev))
2308 sdev = NULL;
2309
2310 return sdev;
2311}
2312EXPORT_SYMBOL_GPL(scsi_device_from_queue);
2313
1da177e4
LT
2314/*
2315 * Function: scsi_block_requests()
2316 *
2317 * Purpose: Utility function used by low-level drivers to prevent further
2318 * commands from being queued to the device.
2319 *
2320 * Arguments: shost - Host in question
2321 *
2322 * Returns: Nothing
2323 *
2324 * Lock status: No locks are assumed held.
2325 *
2326 * Notes: There is no timer nor any other means by which the requests
2327 * get unblocked other than the low-level driver calling
2328 * scsi_unblock_requests().
2329 */
2330void scsi_block_requests(struct Scsi_Host *shost)
2331{
2332 shost->host_self_blocked = 1;
2333}
2334EXPORT_SYMBOL(scsi_block_requests);
2335
2336/*
2337 * Function: scsi_unblock_requests()
2338 *
2339 * Purpose: Utility function used by low-level drivers to allow further
2340 * commands from being queued to the device.
2341 *
2342 * Arguments: shost - Host in question
2343 *
2344 * Returns: Nothing
2345 *
2346 * Lock status: No locks are assumed held.
2347 *
2348 * Notes: There is no timer nor any other means by which the requests
2349 * get unblocked other than the low-level driver calling
2350 * scsi_unblock_requests().
2351 *
2352 * This is done as an API function so that changes to the
2353 * internals of the scsi mid-layer won't require wholesale
2354 * changes to drivers that use this feature.
2355 */
2356void scsi_unblock_requests(struct Scsi_Host *shost)
2357{
2358 shost->host_self_blocked = 0;
2359 scsi_run_host_queues(shost);
2360}
2361EXPORT_SYMBOL(scsi_unblock_requests);
2362
2363int __init scsi_init_queue(void)
2364{
6362abd3
MP
2365 scsi_sdb_cache = kmem_cache_create("scsi_data_buffer",
2366 sizeof(struct scsi_data_buffer),
2367 0, 0, NULL);
2368 if (!scsi_sdb_cache) {
2369 printk(KERN_ERR "SCSI: can't init scsi sdb cache\n");
f078727b 2370 return -ENOMEM;
6f9a35e2
BH
2371 }
2372
1da177e4
LT
2373 return 0;
2374}
2375
2376void scsi_exit_queue(void)
2377{
0a6ac4ee
CH
2378 kmem_cache_destroy(scsi_sense_cache);
2379 kmem_cache_destroy(scsi_sense_isadma_cache);
6362abd3 2380 kmem_cache_destroy(scsi_sdb_cache);
1da177e4 2381}
5baba830
JB
2382
2383/**
2384 * scsi_mode_select - issue a mode select
2385 * @sdev: SCSI device to be queried
2386 * @pf: Page format bit (1 == standard, 0 == vendor specific)
2387 * @sp: Save page bit (0 == don't save, 1 == save)
2388 * @modepage: mode page being requested
2389 * @buffer: request buffer (may not be smaller than eight bytes)
2390 * @len: length of request buffer.
2391 * @timeout: command timeout
2392 * @retries: number of retries before failing
2393 * @data: returns a structure abstracting the mode header data
eb44820c 2394 * @sshdr: place to put sense data (or NULL if no sense to be collected).
5baba830
JB
2395 * must be SCSI_SENSE_BUFFERSIZE big.
2396 *
2397 * Returns zero if successful; negative error number or scsi
2398 * status on error
2399 *
2400 */
2401int
2402scsi_mode_select(struct scsi_device *sdev, int pf, int sp, int modepage,
2403 unsigned char *buffer, int len, int timeout, int retries,
2404 struct scsi_mode_data *data, struct scsi_sense_hdr *sshdr)
2405{
2406 unsigned char cmd[10];
2407 unsigned char *real_buffer;
2408 int ret;
2409
2410 memset(cmd, 0, sizeof(cmd));
2411 cmd[1] = (pf ? 0x10 : 0) | (sp ? 0x01 : 0);
2412
2413 if (sdev->use_10_for_ms) {
2414 if (len > 65535)
2415 return -EINVAL;
2416 real_buffer = kmalloc(8 + len, GFP_KERNEL);
2417 if (!real_buffer)
2418 return -ENOMEM;
2419 memcpy(real_buffer + 8, buffer, len);
2420 len += 8;
2421 real_buffer[0] = 0;
2422 real_buffer[1] = 0;
2423 real_buffer[2] = data->medium_type;
2424 real_buffer[3] = data->device_specific;
2425 real_buffer[4] = data->longlba ? 0x01 : 0;
2426 real_buffer[5] = 0;
2427 real_buffer[6] = data->block_descriptor_length >> 8;
2428 real_buffer[7] = data->block_descriptor_length;
2429
2430 cmd[0] = MODE_SELECT_10;
2431 cmd[7] = len >> 8;
2432 cmd[8] = len;
2433 } else {
2434 if (len > 255 || data->block_descriptor_length > 255 ||
2435 data->longlba)
2436 return -EINVAL;
2437
2438 real_buffer = kmalloc(4 + len, GFP_KERNEL);
2439 if (!real_buffer)
2440 return -ENOMEM;
2441 memcpy(real_buffer + 4, buffer, len);
2442 len += 4;
2443 real_buffer[0] = 0;
2444 real_buffer[1] = data->medium_type;
2445 real_buffer[2] = data->device_specific;
2446 real_buffer[3] = data->block_descriptor_length;
2447
2448
2449 cmd[0] = MODE_SELECT;
2450 cmd[4] = len;
2451 }
2452
2453 ret = scsi_execute_req(sdev, cmd, DMA_TO_DEVICE, real_buffer, len,
f4f4e47e 2454 sshdr, timeout, retries, NULL);
5baba830
JB
2455 kfree(real_buffer);
2456 return ret;
2457}
2458EXPORT_SYMBOL_GPL(scsi_mode_select);
2459
1da177e4 2460/**
eb44820c 2461 * scsi_mode_sense - issue a mode sense, falling back from 10 to six bytes if necessary.
1cf72699 2462 * @sdev: SCSI device to be queried
1da177e4
LT
2463 * @dbd: set if mode sense will allow block descriptors to be returned
2464 * @modepage: mode page being requested
2465 * @buffer: request buffer (may not be smaller than eight bytes)
2466 * @len: length of request buffer.
2467 * @timeout: command timeout
2468 * @retries: number of retries before failing
2469 * @data: returns a structure abstracting the mode header data
eb44820c 2470 * @sshdr: place to put sense data (or NULL if no sense to be collected).
1cf72699 2471 * must be SCSI_SENSE_BUFFERSIZE big.
1da177e4
LT
2472 *
2473 * Returns zero if unsuccessful, or the header offset (either 4
2474 * or 8 depending on whether a six or ten byte command was
2475 * issued) if successful.
eb44820c 2476 */
1da177e4 2477int
1cf72699 2478scsi_mode_sense(struct scsi_device *sdev, int dbd, int modepage,
1da177e4 2479 unsigned char *buffer, int len, int timeout, int retries,
5baba830
JB
2480 struct scsi_mode_data *data, struct scsi_sense_hdr *sshdr)
2481{
1da177e4
LT
2482 unsigned char cmd[12];
2483 int use_10_for_ms;
2484 int header_length;
0ae80ba9 2485 int result, retry_count = retries;
ea73a9f2 2486 struct scsi_sense_hdr my_sshdr;
1da177e4
LT
2487
2488 memset(data, 0, sizeof(*data));
2489 memset(&cmd[0], 0, 12);
2490 cmd[1] = dbd & 0x18; /* allows DBD and LLBA bits */
2491 cmd[2] = modepage;
2492
ea73a9f2
JB
2493 /* caller might not be interested in sense, but we need it */
2494 if (!sshdr)
2495 sshdr = &my_sshdr;
2496
1da177e4 2497 retry:
1cf72699 2498 use_10_for_ms = sdev->use_10_for_ms;
1da177e4
LT
2499
2500 if (use_10_for_ms) {
2501 if (len < 8)
2502 len = 8;
2503
2504 cmd[0] = MODE_SENSE_10;
2505 cmd[8] = len;
2506 header_length = 8;
2507 } else {
2508 if (len < 4)
2509 len = 4;
2510
2511 cmd[0] = MODE_SENSE;
2512 cmd[4] = len;
2513 header_length = 4;
2514 }
2515
1da177e4
LT
2516 memset(buffer, 0, len);
2517
1cf72699 2518 result = scsi_execute_req(sdev, cmd, DMA_FROM_DEVICE, buffer, len,
f4f4e47e 2519 sshdr, timeout, retries, NULL);
1da177e4
LT
2520
2521 /* This code looks awful: what it's doing is making sure an
2522 * ILLEGAL REQUEST sense return identifies the actual command
2523 * byte as the problem. MODE_SENSE commands can return
2524 * ILLEGAL REQUEST if the code page isn't supported */
2525
1cf72699
JB
2526 if (use_10_for_ms && !scsi_status_is_good(result) &&
2527 (driver_byte(result) & DRIVER_SENSE)) {
ea73a9f2
JB
2528 if (scsi_sense_valid(sshdr)) {
2529 if ((sshdr->sense_key == ILLEGAL_REQUEST) &&
2530 (sshdr->asc == 0x20) && (sshdr->ascq == 0)) {
1da177e4
LT
2531 /*
2532 * Invalid command operation code
2533 */
1cf72699 2534 sdev->use_10_for_ms = 0;
1da177e4
LT
2535 goto retry;
2536 }
2537 }
2538 }
2539
1cf72699 2540 if(scsi_status_is_good(result)) {
6d73c851
AV
2541 if (unlikely(buffer[0] == 0x86 && buffer[1] == 0x0b &&
2542 (modepage == 6 || modepage == 8))) {
2543 /* Initio breakage? */
2544 header_length = 0;
2545 data->length = 13;
2546 data->medium_type = 0;
2547 data->device_specific = 0;
2548 data->longlba = 0;
2549 data->block_descriptor_length = 0;
2550 } else if(use_10_for_ms) {
1da177e4
LT
2551 data->length = buffer[0]*256 + buffer[1] + 2;
2552 data->medium_type = buffer[2];
2553 data->device_specific = buffer[3];
2554 data->longlba = buffer[4] & 0x01;
2555 data->block_descriptor_length = buffer[6]*256
2556 + buffer[7];
2557 } else {
2558 data->length = buffer[0] + 1;
2559 data->medium_type = buffer[1];
2560 data->device_specific = buffer[2];
2561 data->block_descriptor_length = buffer[3];
2562 }
6d73c851 2563 data->header_length = header_length;
0ae80ba9
HR
2564 } else if ((status_byte(result) == CHECK_CONDITION) &&
2565 scsi_sense_valid(sshdr) &&
2566 sshdr->sense_key == UNIT_ATTENTION && retry_count) {
2567 retry_count--;
2568 goto retry;
1da177e4
LT
2569 }
2570
1cf72699 2571 return result;
1da177e4
LT
2572}
2573EXPORT_SYMBOL(scsi_mode_sense);
2574
001aac25
JB
2575/**
2576 * scsi_test_unit_ready - test if unit is ready
2577 * @sdev: scsi device to change the state of.
2578 * @timeout: command timeout
2579 * @retries: number of retries before failing
74a78ebd 2580 * @sshdr: outpout pointer for decoded sense information.
001aac25
JB
2581 *
2582 * Returns zero if unsuccessful or an error if TUR failed. For
9f8a2c23 2583 * removable media, UNIT_ATTENTION sets ->changed flag.
001aac25 2584 **/
1da177e4 2585int
001aac25 2586scsi_test_unit_ready(struct scsi_device *sdev, int timeout, int retries,
74a78ebd 2587 struct scsi_sense_hdr *sshdr)
1da177e4 2588{
1da177e4
LT
2589 char cmd[] = {
2590 TEST_UNIT_READY, 0, 0, 0, 0, 0,
2591 };
2592 int result;
001aac25 2593
001aac25
JB
2594 /* try to eat the UNIT_ATTENTION if there are enough retries */
2595 do {
2596 result = scsi_execute_req(sdev, cmd, DMA_NONE, NULL, 0, sshdr,
f4f4e47e 2597 timeout, retries, NULL);
32c356d7
JB
2598 if (sdev->removable && scsi_sense_valid(sshdr) &&
2599 sshdr->sense_key == UNIT_ATTENTION)
2600 sdev->changed = 1;
2601 } while (scsi_sense_valid(sshdr) &&
2602 sshdr->sense_key == UNIT_ATTENTION && --retries);
001aac25 2603
1da177e4
LT
2604 return result;
2605}
2606EXPORT_SYMBOL(scsi_test_unit_ready);
2607
2608/**
eb44820c 2609 * scsi_device_set_state - Take the given device through the device state model.
1da177e4
LT
2610 * @sdev: scsi device to change the state of.
2611 * @state: state to change to.
2612 *
23cb27fd 2613 * Returns zero if successful or an error if the requested
1da177e4 2614 * transition is illegal.
eb44820c 2615 */
1da177e4
LT
2616int
2617scsi_device_set_state(struct scsi_device *sdev, enum scsi_device_state state)
2618{
2619 enum scsi_device_state oldstate = sdev->sdev_state;
2620
2621 if (state == oldstate)
2622 return 0;
2623
2624 switch (state) {
2625 case SDEV_CREATED:
6f4267e3
JB
2626 switch (oldstate) {
2627 case SDEV_CREATED_BLOCK:
2628 break;
2629 default:
2630 goto illegal;
2631 }
2632 break;
1da177e4
LT
2633
2634 case SDEV_RUNNING:
2635 switch (oldstate) {
2636 case SDEV_CREATED:
2637 case SDEV_OFFLINE:
1b8d2620 2638 case SDEV_TRANSPORT_OFFLINE:
1da177e4
LT
2639 case SDEV_QUIESCE:
2640 case SDEV_BLOCK:
2641 break;
2642 default:
2643 goto illegal;
2644 }
2645 break;
2646
2647 case SDEV_QUIESCE:
2648 switch (oldstate) {
2649 case SDEV_RUNNING:
2650 case SDEV_OFFLINE:
1b8d2620 2651 case SDEV_TRANSPORT_OFFLINE:
1da177e4
LT
2652 break;
2653 default:
2654 goto illegal;
2655 }
2656 break;
2657
2658 case SDEV_OFFLINE:
1b8d2620 2659 case SDEV_TRANSPORT_OFFLINE:
1da177e4
LT
2660 switch (oldstate) {
2661 case SDEV_CREATED:
2662 case SDEV_RUNNING:
2663 case SDEV_QUIESCE:
2664 case SDEV_BLOCK:
2665 break;
2666 default:
2667 goto illegal;
2668 }
2669 break;
2670
2671 case SDEV_BLOCK:
2672 switch (oldstate) {
1da177e4 2673 case SDEV_RUNNING:
6f4267e3
JB
2674 case SDEV_CREATED_BLOCK:
2675 break;
2676 default:
2677 goto illegal;
2678 }
2679 break;
2680
2681 case SDEV_CREATED_BLOCK:
2682 switch (oldstate) {
2683 case SDEV_CREATED:
1da177e4
LT
2684 break;
2685 default:
2686 goto illegal;
2687 }
2688 break;
2689
2690 case SDEV_CANCEL:
2691 switch (oldstate) {
2692 case SDEV_CREATED:
2693 case SDEV_RUNNING:
9ea72909 2694 case SDEV_QUIESCE:
1da177e4 2695 case SDEV_OFFLINE:
1b8d2620 2696 case SDEV_TRANSPORT_OFFLINE:
1da177e4
LT
2697 break;
2698 default:
2699 goto illegal;
2700 }
2701 break;
2702
2703 case SDEV_DEL:
2704 switch (oldstate) {
309bd271
BK
2705 case SDEV_CREATED:
2706 case SDEV_RUNNING:
2707 case SDEV_OFFLINE:
1b8d2620 2708 case SDEV_TRANSPORT_OFFLINE:
1da177e4 2709 case SDEV_CANCEL:
255ee932 2710 case SDEV_BLOCK:
0516c08d 2711 case SDEV_CREATED_BLOCK:
1da177e4
LT
2712 break;
2713 default:
2714 goto illegal;
2715 }
2716 break;
2717
2718 }
2719 sdev->sdev_state = state;
8a97712e 2720 sysfs_notify(&sdev->sdev_gendev.kobj, NULL, "state");
1da177e4
LT
2721 return 0;
2722
2723 illegal:
91921e01 2724 SCSI_LOG_ERROR_RECOVERY(1,
9ccfc756 2725 sdev_printk(KERN_ERR, sdev,
91921e01 2726 "Illegal state transition %s->%s",
9ccfc756
JB
2727 scsi_device_state_name(oldstate),
2728 scsi_device_state_name(state))
1da177e4
LT
2729 );
2730 return -EINVAL;
2731}
2732EXPORT_SYMBOL(scsi_device_set_state);
2733
a341cd0f
JG
2734/**
2735 * sdev_evt_emit - emit a single SCSI device uevent
2736 * @sdev: associated SCSI device
2737 * @evt: event to emit
2738 *
2739 * Send a single uevent (scsi_event) to the associated scsi_device.
2740 */
2741static void scsi_evt_emit(struct scsi_device *sdev, struct scsi_event *evt)
2742{
2743 int idx = 0;
2744 char *envp[3];
2745
2746 switch (evt->evt_type) {
2747 case SDEV_EVT_MEDIA_CHANGE:
2748 envp[idx++] = "SDEV_MEDIA_CHANGE=1";
2749 break;
279afdfe 2750 case SDEV_EVT_INQUIRY_CHANGE_REPORTED:
d3d32891 2751 scsi_rescan_device(&sdev->sdev_gendev);
279afdfe
EM
2752 envp[idx++] = "SDEV_UA=INQUIRY_DATA_HAS_CHANGED";
2753 break;
2754 case SDEV_EVT_CAPACITY_CHANGE_REPORTED:
2755 envp[idx++] = "SDEV_UA=CAPACITY_DATA_HAS_CHANGED";
2756 break;
2757 case SDEV_EVT_SOFT_THRESHOLD_REACHED_REPORTED:
2758 envp[idx++] = "SDEV_UA=THIN_PROVISIONING_SOFT_THRESHOLD_REACHED";
2759 break;
2760 case SDEV_EVT_MODE_PARAMETER_CHANGE_REPORTED:
2761 envp[idx++] = "SDEV_UA=MODE_PARAMETERS_CHANGED";
2762 break;
2763 case SDEV_EVT_LUN_CHANGE_REPORTED:
2764 envp[idx++] = "SDEV_UA=REPORTED_LUNS_DATA_HAS_CHANGED";
2765 break;
14c3e677
HR
2766 case SDEV_EVT_ALUA_STATE_CHANGE_REPORTED:
2767 envp[idx++] = "SDEV_UA=ASYMMETRIC_ACCESS_STATE_CHANGED";
2768 break;
a341cd0f
JG
2769 default:
2770 /* do nothing */
2771 break;
2772 }
2773
2774 envp[idx++] = NULL;
2775
2776 kobject_uevent_env(&sdev->sdev_gendev.kobj, KOBJ_CHANGE, envp);
2777}
2778
2779/**
2780 * sdev_evt_thread - send a uevent for each scsi event
2781 * @work: work struct for scsi_device
2782 *
2783 * Dispatch queued events to their associated scsi_device kobjects
2784 * as uevents.
2785 */
2786void scsi_evt_thread(struct work_struct *work)
2787{
2788 struct scsi_device *sdev;
279afdfe 2789 enum scsi_device_event evt_type;
a341cd0f
JG
2790 LIST_HEAD(event_list);
2791
2792 sdev = container_of(work, struct scsi_device, event_work);
2793
279afdfe
EM
2794 for (evt_type = SDEV_EVT_FIRST; evt_type <= SDEV_EVT_LAST; evt_type++)
2795 if (test_and_clear_bit(evt_type, sdev->pending_events))
2796 sdev_evt_send_simple(sdev, evt_type, GFP_KERNEL);
2797
a341cd0f
JG
2798 while (1) {
2799 struct scsi_event *evt;
2800 struct list_head *this, *tmp;
2801 unsigned long flags;
2802
2803 spin_lock_irqsave(&sdev->list_lock, flags);
2804 list_splice_init(&sdev->event_list, &event_list);
2805 spin_unlock_irqrestore(&sdev->list_lock, flags);
2806
2807 if (list_empty(&event_list))
2808 break;
2809
2810 list_for_each_safe(this, tmp, &event_list) {
2811 evt = list_entry(this, struct scsi_event, node);
2812 list_del(&evt->node);
2813 scsi_evt_emit(sdev, evt);
2814 kfree(evt);
2815 }
2816 }
2817}
2818
2819/**
2820 * sdev_evt_send - send asserted event to uevent thread
2821 * @sdev: scsi_device event occurred on
2822 * @evt: event to send
2823 *
2824 * Assert scsi device event asynchronously.
2825 */
2826void sdev_evt_send(struct scsi_device *sdev, struct scsi_event *evt)
2827{
2828 unsigned long flags;
2829
4d1566ed
KS
2830#if 0
2831 /* FIXME: currently this check eliminates all media change events
2832 * for polled devices. Need to update to discriminate between AN
2833 * and polled events */
a341cd0f
JG
2834 if (!test_bit(evt->evt_type, sdev->supported_events)) {
2835 kfree(evt);
2836 return;
2837 }
4d1566ed 2838#endif
a341cd0f
JG
2839
2840 spin_lock_irqsave(&sdev->list_lock, flags);
2841 list_add_tail(&evt->node, &sdev->event_list);
2842 schedule_work(&sdev->event_work);
2843 spin_unlock_irqrestore(&sdev->list_lock, flags);
2844}
2845EXPORT_SYMBOL_GPL(sdev_evt_send);
2846
2847/**
2848 * sdev_evt_alloc - allocate a new scsi event
2849 * @evt_type: type of event to allocate
2850 * @gfpflags: GFP flags for allocation
2851 *
2852 * Allocates and returns a new scsi_event.
2853 */
2854struct scsi_event *sdev_evt_alloc(enum scsi_device_event evt_type,
2855 gfp_t gfpflags)
2856{
2857 struct scsi_event *evt = kzalloc(sizeof(struct scsi_event), gfpflags);
2858 if (!evt)
2859 return NULL;
2860
2861 evt->evt_type = evt_type;
2862 INIT_LIST_HEAD(&evt->node);
2863
2864 /* evt_type-specific initialization, if any */
2865 switch (evt_type) {
2866 case SDEV_EVT_MEDIA_CHANGE:
279afdfe
EM
2867 case SDEV_EVT_INQUIRY_CHANGE_REPORTED:
2868 case SDEV_EVT_CAPACITY_CHANGE_REPORTED:
2869 case SDEV_EVT_SOFT_THRESHOLD_REACHED_REPORTED:
2870 case SDEV_EVT_MODE_PARAMETER_CHANGE_REPORTED:
2871 case SDEV_EVT_LUN_CHANGE_REPORTED:
14c3e677 2872 case SDEV_EVT_ALUA_STATE_CHANGE_REPORTED:
a341cd0f
JG
2873 default:
2874 /* do nothing */
2875 break;
2876 }
2877
2878 return evt;
2879}
2880EXPORT_SYMBOL_GPL(sdev_evt_alloc);
2881
2882/**
2883 * sdev_evt_send_simple - send asserted event to uevent thread
2884 * @sdev: scsi_device event occurred on
2885 * @evt_type: type of event to send
2886 * @gfpflags: GFP flags for allocation
2887 *
2888 * Assert scsi device event asynchronously, given an event type.
2889 */
2890void sdev_evt_send_simple(struct scsi_device *sdev,
2891 enum scsi_device_event evt_type, gfp_t gfpflags)
2892{
2893 struct scsi_event *evt = sdev_evt_alloc(evt_type, gfpflags);
2894 if (!evt) {
2895 sdev_printk(KERN_ERR, sdev, "event %d eaten due to OOM\n",
2896 evt_type);
2897 return;
2898 }
2899
2900 sdev_evt_send(sdev, evt);
2901}
2902EXPORT_SYMBOL_GPL(sdev_evt_send_simple);
2903
669f0441
BVA
2904/**
2905 * scsi_request_fn_active() - number of kernel threads inside scsi_request_fn()
2906 * @sdev: SCSI device to count the number of scsi_request_fn() callers for.
2907 */
2908static int scsi_request_fn_active(struct scsi_device *sdev)
2909{
2910 struct request_queue *q = sdev->request_queue;
2911 int request_fn_active;
2912
2913 WARN_ON_ONCE(sdev->host->use_blk_mq);
2914
2915 spin_lock_irq(q->queue_lock);
2916 request_fn_active = q->request_fn_active;
2917 spin_unlock_irq(q->queue_lock);
2918
2919 return request_fn_active;
2920}
2921
2922/**
2923 * scsi_wait_for_queuecommand() - wait for ongoing queuecommand() calls
2924 * @sdev: SCSI device pointer.
2925 *
2926 * Wait until the ongoing shost->hostt->queuecommand() calls that are
2927 * invoked from scsi_request_fn() have finished.
2928 */
2929static void scsi_wait_for_queuecommand(struct scsi_device *sdev)
2930{
2931 WARN_ON_ONCE(sdev->host->use_blk_mq);
2932
2933 while (scsi_request_fn_active(sdev))
2934 msleep(20);
2935}
2936
1da177e4
LT
2937/**
2938 * scsi_device_quiesce - Block user issued commands.
2939 * @sdev: scsi device to quiesce.
2940 *
2941 * This works by trying to transition to the SDEV_QUIESCE state
2942 * (which must be a legal transition). When the device is in this
2943 * state, only special requests will be accepted, all others will
2944 * be deferred. Since special requests may also be requeued requests,
2945 * a successful return doesn't guarantee the device will be
2946 * totally quiescent.
2947 *
2948 * Must be called with user context, may sleep.
2949 *
2950 * Returns zero if unsuccessful or an error if not.
eb44820c 2951 */
1da177e4
LT
2952int
2953scsi_device_quiesce(struct scsi_device *sdev)
2954{
0db6ca8a
BVA
2955 int err;
2956
2957 mutex_lock(&sdev->state_mutex);
2958 err = scsi_device_set_state(sdev, SDEV_QUIESCE);
2959 mutex_unlock(&sdev->state_mutex);
2960
1da177e4
LT
2961 if (err)
2962 return err;
2963
2964 scsi_run_queue(sdev->request_queue);
71e75c97 2965 while (atomic_read(&sdev->device_busy)) {
1da177e4
LT
2966 msleep_interruptible(200);
2967 scsi_run_queue(sdev->request_queue);
2968 }
2969 return 0;
2970}
2971EXPORT_SYMBOL(scsi_device_quiesce);
2972
2973/**
2974 * scsi_device_resume - Restart user issued commands to a quiesced device.
2975 * @sdev: scsi device to resume.
2976 *
2977 * Moves the device from quiesced back to running and restarts the
2978 * queues.
2979 *
2980 * Must be called with user context, may sleep.
eb44820c 2981 */
a7a20d10 2982void scsi_device_resume(struct scsi_device *sdev)
1da177e4 2983{
a7a20d10
DW
2984 /* check if the device state was mutated prior to resume, and if
2985 * so assume the state is being managed elsewhere (for example
2986 * device deleted during suspend)
2987 */
0db6ca8a
BVA
2988 mutex_lock(&sdev->state_mutex);
2989 if (sdev->sdev_state == SDEV_QUIESCE &&
2990 scsi_device_set_state(sdev, SDEV_RUNNING) == 0)
2991 scsi_run_queue(sdev->request_queue);
2992 mutex_unlock(&sdev->state_mutex);
1da177e4
LT
2993}
2994EXPORT_SYMBOL(scsi_device_resume);
2995
2996static void
2997device_quiesce_fn(struct scsi_device *sdev, void *data)
2998{
2999 scsi_device_quiesce(sdev);
3000}
3001
3002void
3003scsi_target_quiesce(struct scsi_target *starget)
3004{
3005 starget_for_each_device(starget, NULL, device_quiesce_fn);
3006}
3007EXPORT_SYMBOL(scsi_target_quiesce);
3008
3009static void
3010device_resume_fn(struct scsi_device *sdev, void *data)
3011{
3012 scsi_device_resume(sdev);
3013}
3014
3015void
3016scsi_target_resume(struct scsi_target *starget)
3017{
3018 starget_for_each_device(starget, NULL, device_resume_fn);
3019}
3020EXPORT_SYMBOL(scsi_target_resume);
3021
3022/**
551eb598
BVA
3023 * scsi_internal_device_block_nowait - try to transition to the SDEV_BLOCK state
3024 * @sdev: device to block
1da177e4 3025 *
551eb598 3026 * Pause SCSI command processing on the specified device. Does not sleep.
1da177e4 3027 *
551eb598 3028 * Returns zero if successful or a negative error code upon failure.
669f0441 3029 *
551eb598
BVA
3030 * Notes:
3031 * This routine transitions the device to the SDEV_BLOCK state (which must be
3032 * a legal transition). When the device is in this state, command processing
3033 * is paused until the device leaves the SDEV_BLOCK state. See also
3034 * scsi_internal_device_unblock_nowait().
eb44820c 3035 */
551eb598 3036int scsi_internal_device_block_nowait(struct scsi_device *sdev)
1da177e4 3037{
165125e1 3038 struct request_queue *q = sdev->request_queue;
1da177e4
LT
3039 unsigned long flags;
3040 int err = 0;
3041
3042 err = scsi_device_set_state(sdev, SDEV_BLOCK);
6f4267e3
JB
3043 if (err) {
3044 err = scsi_device_set_state(sdev, SDEV_CREATED_BLOCK);
3045
3046 if (err)
3047 return err;
3048 }
1da177e4
LT
3049
3050 /*
3051 * The device has transitioned to SDEV_BLOCK. Stop the
3052 * block layer from calling the midlayer with this device's
3053 * request queue.
3054 */
d285203c 3055 if (q->mq_ops) {
90311148 3056 blk_mq_quiesce_queue_nowait(q);
d285203c
CH
3057 } else {
3058 spin_lock_irqsave(q->queue_lock, flags);
3059 blk_stop_queue(q);
3060 spin_unlock_irqrestore(q->queue_lock, flags);
3061 }
1da177e4
LT
3062
3063 return 0;
3064}
551eb598
BVA
3065EXPORT_SYMBOL_GPL(scsi_internal_device_block_nowait);
3066
1da177e4 3067/**
551eb598
BVA
3068 * scsi_internal_device_block - try to transition to the SDEV_BLOCK state
3069 * @sdev: device to block
3070 *
3071 * Pause SCSI command processing on the specified device and wait until all
3072 * ongoing scsi_request_fn() / scsi_queue_rq() calls have finished. May sleep.
1da177e4 3073 *
551eb598 3074 * Returns zero if successful or a negative error code upon failure.
1da177e4 3075 *
551eb598
BVA
3076 * Note:
3077 * This routine transitions the device to the SDEV_BLOCK state (which must be
3078 * a legal transition). When the device is in this state, command processing
3079 * is paused until the device leaves the SDEV_BLOCK state. See also
3080 * scsi_internal_device_unblock().
1da177e4 3081 *
551eb598
BVA
3082 * To do: avoid that scsi_send_eh_cmnd() calls queuecommand() after
3083 * scsi_internal_device_block() has blocked a SCSI device and also
3084 * remove the rport mutex lock and unlock calls from srp_queuecommand().
eb44820c 3085 */
551eb598 3086static int scsi_internal_device_block(struct scsi_device *sdev)
1da177e4 3087{
551eb598
BVA
3088 struct request_queue *q = sdev->request_queue;
3089 int err;
3090
0db6ca8a 3091 mutex_lock(&sdev->state_mutex);
551eb598
BVA
3092 err = scsi_internal_device_block_nowait(sdev);
3093 if (err == 0) {
3094 if (q->mq_ops)
3095 blk_mq_quiesce_queue(q);
3096 else
3097 scsi_wait_for_queuecommand(sdev);
3098 }
0db6ca8a
BVA
3099 mutex_unlock(&sdev->state_mutex);
3100
551eb598
BVA
3101 return err;
3102}
1da177e4 3103
66483a4a
BVA
3104void scsi_start_queue(struct scsi_device *sdev)
3105{
3106 struct request_queue *q = sdev->request_queue;
1da177e4 3107 unsigned long flags;
5d9fb5cc 3108
66483a4a 3109 if (q->mq_ops) {
90311148 3110 blk_mq_unquiesce_queue(q);
66483a4a
BVA
3111 } else {
3112 spin_lock_irqsave(q->queue_lock, flags);
3113 blk_start_queue(q);
3114 spin_unlock_irqrestore(q->queue_lock, flags);
3115 }
3116}
3117
1da177e4 3118/**
43f7571b 3119 * scsi_internal_device_unblock_nowait - resume a device after a block request
1da177e4 3120 * @sdev: device to resume
43f7571b 3121 * @new_state: state to set the device to after unblocking
1da177e4 3122 *
43f7571b
BVA
3123 * Restart the device queue for a previously suspended SCSI device. Does not
3124 * sleep.
1da177e4 3125 *
43f7571b 3126 * Returns zero if successful or a negative error code upon failure.
1da177e4 3127 *
43f7571b
BVA
3128 * Notes:
3129 * This routine transitions the device to the SDEV_RUNNING state or to one of
3130 * the offline states (which must be a legal transition) allowing the midlayer
3131 * to goose the queue for this device.
eb44820c 3132 */
43f7571b
BVA
3133int scsi_internal_device_unblock_nowait(struct scsi_device *sdev,
3134 enum scsi_device_state new_state)
1da177e4 3135{
5d9fb5cc
MC
3136 /*
3137 * Try to transition the scsi device to SDEV_RUNNING or one of the
3138 * offlined states and goose the device queue if successful.
1da177e4 3139 */
8cd1ec78
HR
3140 switch (sdev->sdev_state) {
3141 case SDEV_BLOCK:
3142 case SDEV_TRANSPORT_OFFLINE:
5d9fb5cc 3143 sdev->sdev_state = new_state;
8a97712e 3144 sysfs_notify(&sdev->sdev_gendev.kobj, NULL, "state");
8cd1ec78
HR
3145 break;
3146 case SDEV_CREATED_BLOCK:
5d9fb5cc
MC
3147 if (new_state == SDEV_TRANSPORT_OFFLINE ||
3148 new_state == SDEV_OFFLINE)
3149 sdev->sdev_state = new_state;
3150 else
3151 sdev->sdev_state = SDEV_CREATED;
8a97712e 3152 sysfs_notify(&sdev->sdev_gendev.kobj, NULL, "state");
8cd1ec78
HR
3153 break;
3154 case SDEV_CANCEL:
3155 case SDEV_OFFLINE:
3156 break;
3157 default:
5c10e63c 3158 return -EINVAL;
8cd1ec78 3159 }
66483a4a 3160 scsi_start_queue(sdev);
1da177e4
LT
3161
3162 return 0;
3163}
43f7571b
BVA
3164EXPORT_SYMBOL_GPL(scsi_internal_device_unblock_nowait);
3165
3166/**
3167 * scsi_internal_device_unblock - resume a device after a block request
3168 * @sdev: device to resume
3169 * @new_state: state to set the device to after unblocking
3170 *
3171 * Restart the device queue for a previously suspended SCSI device. May sleep.
3172 *
3173 * Returns zero if successful or a negative error code upon failure.
3174 *
3175 * Notes:
3176 * This routine transitions the device to the SDEV_RUNNING state or to one of
3177 * the offline states (which must be a legal transition) allowing the midlayer
3178 * to goose the queue for this device.
3179 */
3180static int scsi_internal_device_unblock(struct scsi_device *sdev,
3181 enum scsi_device_state new_state)
3182{
0db6ca8a
BVA
3183 int ret;
3184
3185 mutex_lock(&sdev->state_mutex);
3186 ret = scsi_internal_device_unblock_nowait(sdev, new_state);
3187 mutex_unlock(&sdev->state_mutex);
3188
3189 return ret;
43f7571b 3190}
1da177e4
LT
3191
3192static void
3193device_block(struct scsi_device *sdev, void *data)
3194{
551eb598 3195 scsi_internal_device_block(sdev);
1da177e4
LT
3196}
3197
3198static int
3199target_block(struct device *dev, void *data)
3200{
3201 if (scsi_is_target_device(dev))
3202 starget_for_each_device(to_scsi_target(dev), NULL,
3203 device_block);
3204 return 0;
3205}
3206
3207void
3208scsi_target_block(struct device *dev)
3209{
3210 if (scsi_is_target_device(dev))
3211 starget_for_each_device(to_scsi_target(dev), NULL,
3212 device_block);
3213 else
3214 device_for_each_child(dev, NULL, target_block);
3215}
3216EXPORT_SYMBOL_GPL(scsi_target_block);
3217
3218static void
3219device_unblock(struct scsi_device *sdev, void *data)
3220{
5d9fb5cc 3221 scsi_internal_device_unblock(sdev, *(enum scsi_device_state *)data);
1da177e4
LT
3222}
3223
3224static int
3225target_unblock(struct device *dev, void *data)
3226{
3227 if (scsi_is_target_device(dev))
5d9fb5cc 3228 starget_for_each_device(to_scsi_target(dev), data,
1da177e4
LT
3229 device_unblock);
3230 return 0;
3231}
3232
3233void
5d9fb5cc 3234scsi_target_unblock(struct device *dev, enum scsi_device_state new_state)
1da177e4
LT
3235{
3236 if (scsi_is_target_device(dev))
5d9fb5cc 3237 starget_for_each_device(to_scsi_target(dev), &new_state,
1da177e4
LT
3238 device_unblock);
3239 else
5d9fb5cc 3240 device_for_each_child(dev, &new_state, target_unblock);
1da177e4
LT
3241}
3242EXPORT_SYMBOL_GPL(scsi_target_unblock);
cdb8c2a6
GL
3243
3244/**
3245 * scsi_kmap_atomic_sg - find and atomically map an sg-elemnt
eb44820c 3246 * @sgl: scatter-gather list
cdb8c2a6
GL
3247 * @sg_count: number of segments in sg
3248 * @offset: offset in bytes into sg, on return offset into the mapped area
3249 * @len: bytes to map, on return number of bytes mapped
3250 *
3251 * Returns virtual address of the start of the mapped page
3252 */
c6132da1 3253void *scsi_kmap_atomic_sg(struct scatterlist *sgl, int sg_count,
cdb8c2a6
GL
3254 size_t *offset, size_t *len)
3255{
3256 int i;
3257 size_t sg_len = 0, len_complete = 0;
c6132da1 3258 struct scatterlist *sg;
cdb8c2a6
GL
3259 struct page *page;
3260
22cfefb5
AM
3261 WARN_ON(!irqs_disabled());
3262
c6132da1 3263 for_each_sg(sgl, sg, sg_count, i) {
cdb8c2a6 3264 len_complete = sg_len; /* Complete sg-entries */
c6132da1 3265 sg_len += sg->length;
cdb8c2a6
GL
3266 if (sg_len > *offset)
3267 break;
3268 }
3269
3270 if (unlikely(i == sg_count)) {
169e1a2a
AM
3271 printk(KERN_ERR "%s: Bytes in sg: %zu, requested offset %zu, "
3272 "elements %d\n",
cadbd4a5 3273 __func__, sg_len, *offset, sg_count);
cdb8c2a6
GL
3274 WARN_ON(1);
3275 return NULL;
3276 }
3277
3278 /* Offset starting from the beginning of first page in this sg-entry */
c6132da1 3279 *offset = *offset - len_complete + sg->offset;
cdb8c2a6
GL
3280
3281 /* Assumption: contiguous pages can be accessed as "page + i" */
45711f1a 3282 page = nth_page(sg_page(sg), (*offset >> PAGE_SHIFT));
cdb8c2a6
GL
3283 *offset &= ~PAGE_MASK;
3284
3285 /* Bytes in this sg-entry from *offset to the end of the page */
3286 sg_len = PAGE_SIZE - *offset;
3287 if (*len > sg_len)
3288 *len = sg_len;
3289
77dfce07 3290 return kmap_atomic(page);
cdb8c2a6
GL
3291}
3292EXPORT_SYMBOL(scsi_kmap_atomic_sg);
3293
3294/**
eb44820c 3295 * scsi_kunmap_atomic_sg - atomically unmap a virtual address, previously mapped with scsi_kmap_atomic_sg
cdb8c2a6
GL
3296 * @virt: virtual address to be unmapped
3297 */
3298void scsi_kunmap_atomic_sg(void *virt)
3299{
77dfce07 3300 kunmap_atomic(virt);
cdb8c2a6
GL
3301}
3302EXPORT_SYMBOL(scsi_kunmap_atomic_sg);
6f4c827e
AL
3303
3304void sdev_disable_disk_events(struct scsi_device *sdev)
3305{
3306 atomic_inc(&sdev->disk_events_disable_depth);
3307}
3308EXPORT_SYMBOL(sdev_disable_disk_events);
3309
3310void sdev_enable_disk_events(struct scsi_device *sdev)
3311{
3312 if (WARN_ON_ONCE(atomic_read(&sdev->disk_events_disable_depth) <= 0))
3313 return;
3314 atomic_dec(&sdev->disk_events_disable_depth);
3315}
3316EXPORT_SYMBOL(sdev_enable_disk_events);
9983bed3
HR
3317
3318/**
3319 * scsi_vpd_lun_id - return a unique device identification
3320 * @sdev: SCSI device
3321 * @id: buffer for the identification
3322 * @id_len: length of the buffer
3323 *
3324 * Copies a unique device identification into @id based
3325 * on the information in the VPD page 0x83 of the device.
3326 * The string will be formatted as a SCSI name string.
3327 *
3328 * Returns the length of the identification or error on failure.
3329 * If the identifier is longer than the supplied buffer the actual
3330 * identifier length is returned and the buffer is not zero-padded.
3331 */
3332int scsi_vpd_lun_id(struct scsi_device *sdev, char *id, size_t id_len)
3333{
3334 u8 cur_id_type = 0xff;
3335 u8 cur_id_size = 0;
ccf1e004
BVA
3336 const unsigned char *d, *cur_id_str;
3337 const struct scsi_vpd *vpd_pg83;
9983bed3
HR
3338 int id_size = -EINVAL;
3339
3340 rcu_read_lock();
3341 vpd_pg83 = rcu_dereference(sdev->vpd_pg83);
3342 if (!vpd_pg83) {
3343 rcu_read_unlock();
3344 return -ENXIO;
3345 }
3346
3347 /*
3348 * Look for the correct descriptor.
3349 * Order of preference for lun descriptor:
3350 * - SCSI name string
3351 * - NAA IEEE Registered Extended
3352 * - EUI-64 based 16-byte
3353 * - EUI-64 based 12-byte
3354 * - NAA IEEE Registered
3355 * - NAA IEEE Extended
d230823a 3356 * - T10 Vendor ID
9983bed3
HR
3357 * as longer descriptors reduce the likelyhood
3358 * of identification clashes.
3359 */
3360
3361 /* The id string must be at least 20 bytes + terminating NULL byte */
3362 if (id_len < 21) {
3363 rcu_read_unlock();
3364 return -EINVAL;
3365 }
3366
3367 memset(id, 0, id_len);
ccf1e004
BVA
3368 d = vpd_pg83->data + 4;
3369 while (d < vpd_pg83->data + vpd_pg83->len) {
9983bed3
HR
3370 /* Skip designators not referring to the LUN */
3371 if ((d[1] & 0x30) != 0x00)
3372 goto next_desig;
3373
3374 switch (d[1] & 0xf) {
d230823a
HR
3375 case 0x1:
3376 /* T10 Vendor ID */
3377 if (cur_id_size > d[3])
3378 break;
3379 /* Prefer anything */
3380 if (cur_id_type > 0x01 && cur_id_type != 0xff)
3381 break;
3382 cur_id_size = d[3];
3383 if (cur_id_size + 4 > id_len)
3384 cur_id_size = id_len - 4;
3385 cur_id_str = d + 4;
3386 cur_id_type = d[1] & 0xf;
3387 id_size = snprintf(id, id_len, "t10.%*pE",
3388 cur_id_size, cur_id_str);
3389 break;
9983bed3
HR
3390 case 0x2:
3391 /* EUI-64 */
3392 if (cur_id_size > d[3])
3393 break;
3394 /* Prefer NAA IEEE Registered Extended */
3395 if (cur_id_type == 0x3 &&
3396 cur_id_size == d[3])
3397 break;
3398 cur_id_size = d[3];
3399 cur_id_str = d + 4;
3400 cur_id_type = d[1] & 0xf;
3401 switch (cur_id_size) {
3402 case 8:
3403 id_size = snprintf(id, id_len,
3404 "eui.%8phN",
3405 cur_id_str);
3406 break;
3407 case 12:
3408 id_size = snprintf(id, id_len,
3409 "eui.%12phN",
3410 cur_id_str);
3411 break;
3412 case 16:
3413 id_size = snprintf(id, id_len,
3414 "eui.%16phN",
3415 cur_id_str);
3416 break;
3417 default:
3418 cur_id_size = 0;
3419 break;
3420 }
3421 break;
3422 case 0x3:
3423 /* NAA */
3424 if (cur_id_size > d[3])
3425 break;
3426 cur_id_size = d[3];
3427 cur_id_str = d + 4;
3428 cur_id_type = d[1] & 0xf;
3429 switch (cur_id_size) {
3430 case 8:
3431 id_size = snprintf(id, id_len,
3432 "naa.%8phN",
3433 cur_id_str);
3434 break;
3435 case 16:
3436 id_size = snprintf(id, id_len,
3437 "naa.%16phN",
3438 cur_id_str);
3439 break;
3440 default:
3441 cur_id_size = 0;
3442 break;
3443 }
3444 break;
3445 case 0x8:
3446 /* SCSI name string */
3447 if (cur_id_size + 4 > d[3])
3448 break;
3449 /* Prefer others for truncated descriptor */
3450 if (cur_id_size && d[3] > id_len)
3451 break;
3452 cur_id_size = id_size = d[3];
3453 cur_id_str = d + 4;
3454 cur_id_type = d[1] & 0xf;
3455 if (cur_id_size >= id_len)
3456 cur_id_size = id_len - 1;
3457 memcpy(id, cur_id_str, cur_id_size);
3458 /* Decrease priority for truncated descriptor */
3459 if (cur_id_size != id_size)
3460 cur_id_size = 6;
3461 break;
3462 default:
3463 break;
3464 }
3465next_desig:
3466 d += d[3] + 4;
3467 }
3468 rcu_read_unlock();
3469
3470 return id_size;
3471}
3472EXPORT_SYMBOL(scsi_vpd_lun_id);
a8aa3978
HR
3473
3474/*
3475 * scsi_vpd_tpg_id - return a target port group identifier
3476 * @sdev: SCSI device
3477 *
3478 * Returns the Target Port Group identifier from the information
3479 * froom VPD page 0x83 of the device.
3480 *
3481 * Returns the identifier or error on failure.
3482 */
3483int scsi_vpd_tpg_id(struct scsi_device *sdev, int *rel_id)
3484{
ccf1e004
BVA
3485 const unsigned char *d;
3486 const struct scsi_vpd *vpd_pg83;
a8aa3978
HR
3487 int group_id = -EAGAIN, rel_port = -1;
3488
3489 rcu_read_lock();
3490 vpd_pg83 = rcu_dereference(sdev->vpd_pg83);
3491 if (!vpd_pg83) {
3492 rcu_read_unlock();
3493 return -ENXIO;
3494 }
3495
ccf1e004
BVA
3496 d = vpd_pg83->data + 4;
3497 while (d < vpd_pg83->data + vpd_pg83->len) {
a8aa3978
HR
3498 switch (d[1] & 0xf) {
3499 case 0x4:
3500 /* Relative target port */
3501 rel_port = get_unaligned_be16(&d[6]);
3502 break;
3503 case 0x5:
3504 /* Target port group */
3505 group_id = get_unaligned_be16(&d[6]);
3506 break;
3507 default:
3508 break;
3509 }
3510 d += d[3] + 4;
3511 }
3512 rcu_read_unlock();
3513
3514 if (group_id >= 0 && rel_id && rel_port != -1)
3515 *rel_id = rel_port;
3516
3517 return group_id;
3518}
3519EXPORT_SYMBOL(scsi_vpd_tpg_id);