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CommitLineData
1da177e4
LT
1/*
2 * sd.c Copyright (C) 1992 Drew Eckhardt
3 * Copyright (C) 1993, 1994, 1995, 1999 Eric Youngdale
4 *
5 * Linux scsi disk driver
6 * Initial versions: Drew Eckhardt
7 * Subsequent revisions: Eric Youngdale
8 * Modification history:
9 * - Drew Eckhardt <drew@colorado.edu> original
10 * - Eric Youngdale <eric@andante.org> add scatter-gather, multiple
11 * outstanding request, and other enhancements.
12 * Support loadable low-level scsi drivers.
13 * - Jirka Hanika <geo@ff.cuni.cz> support more scsi disks using
14 * eight major numbers.
15 * - Richard Gooch <rgooch@atnf.csiro.au> support devfs.
16 * - Torben Mathiasen <tmm@image.dk> Resource allocation fixes in
17 * sd_init and cleanups.
18 * - Alex Davis <letmein@erols.com> Fix problem where partition info
19 * not being read in sd_open. Fix problem where removable media
20 * could be ejected after sd_open.
21 * - Douglas Gilbert <dgilbert@interlog.com> cleanup for lk 2.5.x
22 * - Badari Pulavarty <pbadari@us.ibm.com>, Matthew Wilcox
23 * <willy@debian.org>, Kurt Garloff <garloff@suse.de>:
24 * Support 32k/1M disks.
25 *
26 * Logging policy (needs CONFIG_SCSI_LOGGING defined):
27 * - setting up transfer: SCSI_LOG_HLQUEUE levels 1 and 2
28 * - end of transfer (bh + scsi_lib): SCSI_LOG_HLCOMPLETE level 1
29 * - entering sd_ioctl: SCSI_LOG_IOCTL level 1
30 * - entering other commands: SCSI_LOG_HLQUEUE level 3
31 * Note: when the logging level is set by the user, it must be greater
32 * than the level indicated above to trigger output.
33 */
34
1da177e4
LT
35#include <linux/module.h>
36#include <linux/fs.h>
37#include <linux/kernel.h>
1da177e4
LT
38#include <linux/mm.h>
39#include <linux/bio.h>
40#include <linux/genhd.h>
41#include <linux/hdreg.h>
42#include <linux/errno.h>
43#include <linux/idr.h>
44#include <linux/interrupt.h>
45#include <linux/init.h>
46#include <linux/blkdev.h>
47#include <linux/blkpg.h>
1da177e4 48#include <linux/delay.h>
0b950672 49#include <linux/mutex.h>
7404ad3b 50#include <linux/string_helpers.h>
4ace92fc 51#include <linux/async.h>
5a0e3ad6 52#include <linux/slab.h>
54f57588 53#include <linux/pm_runtime.h>
1da177e4 54#include <asm/uaccess.h>
8f76d151 55#include <asm/unaligned.h>
1da177e4
LT
56
57#include <scsi/scsi.h>
58#include <scsi/scsi_cmnd.h>
59#include <scsi/scsi_dbg.h>
60#include <scsi/scsi_device.h>
61#include <scsi/scsi_driver.h>
62#include <scsi/scsi_eh.h>
63#include <scsi/scsi_host.h>
64#include <scsi/scsi_ioctl.h>
1da177e4
LT
65#include <scsi/scsicam.h>
66
aa91696e 67#include "sd.h"
a7a20d10 68#include "scsi_priv.h"
1da177e4
LT
69#include "scsi_logging.h"
70
f018fa55
RH
71MODULE_AUTHOR("Eric Youngdale");
72MODULE_DESCRIPTION("SCSI disk (sd) driver");
73MODULE_LICENSE("GPL");
74
75MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK0_MAJOR);
76MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK1_MAJOR);
77MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK2_MAJOR);
78MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK3_MAJOR);
79MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK4_MAJOR);
80MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK5_MAJOR);
81MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK6_MAJOR);
82MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK7_MAJOR);
83MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK8_MAJOR);
84MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK9_MAJOR);
85MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK10_MAJOR);
86MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK11_MAJOR);
87MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK12_MAJOR);
88MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK13_MAJOR);
89MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK14_MAJOR);
90MODULE_ALIAS_BLOCKDEV_MAJOR(SCSI_DISK15_MAJOR);
d7b8bcb0
MT
91MODULE_ALIAS_SCSI_DEVICE(TYPE_DISK);
92MODULE_ALIAS_SCSI_DEVICE(TYPE_MOD);
93MODULE_ALIAS_SCSI_DEVICE(TYPE_RBC);
f018fa55 94
870d6656 95#if !defined(CONFIG_DEBUG_BLOCK_EXT_DEVT)
f615b48c 96#define SD_MINORS 16
870d6656 97#else
3e1a7ff8 98#define SD_MINORS 0
870d6656
TH
99#endif
100
c98a0eb0 101static void sd_config_discard(struct scsi_disk *, unsigned int);
5db44863 102static void sd_config_write_same(struct scsi_disk *);
7b3d9545 103static int sd_revalidate_disk(struct gendisk *);
72ec24bd 104static void sd_unlock_native_capacity(struct gendisk *disk);
7b3d9545
LT
105static int sd_probe(struct device *);
106static int sd_remove(struct device *);
107static void sd_shutdown(struct device *);
95897910
ON
108static int sd_suspend_system(struct device *);
109static int sd_suspend_runtime(struct device *);
7b3d9545
LT
110static int sd_resume(struct device *);
111static void sd_rescan(struct device *);
a1b73fc1
CH
112static int sd_init_command(struct scsi_cmnd *SCpnt);
113static void sd_uninit_command(struct scsi_cmnd *SCpnt);
7b3d9545 114static int sd_done(struct scsi_cmnd *);
2451079b 115static int sd_eh_action(struct scsi_cmnd *, int);
7b3d9545 116static void sd_read_capacity(struct scsi_disk *sdkp, unsigned char *buffer);
ee959b00 117static void scsi_disk_release(struct device *cdev);
7b3d9545 118static void sd_print_sense_hdr(struct scsi_disk *, struct scsi_sense_hdr *);
ef61329d 119static void sd_print_result(const struct scsi_disk *, const char *, int);
7b3d9545 120
4034cc68 121static DEFINE_SPINLOCK(sd_index_lock);
f27bac27 122static DEFINE_IDA(sd_index_ida);
1da177e4
LT
123
124/* This semaphore is used to mediate the 0->1 reference get in the
125 * face of object destruction (i.e. we can't allow a get on an
126 * object after last put) */
0b950672 127static DEFINE_MUTEX(sd_ref_mutex);
1da177e4 128
439d77f7
HS
129static struct kmem_cache *sd_cdb_cache;
130static mempool_t *sd_cdb_pool;
4e7392ec 131
6bdaa1f1
JB
132static const char *sd_cache_types[] = {
133 "write through", "none", "write back",
134 "write back, no read (daft)"
135};
136
cb2fb68d
VC
137static void sd_set_flush_flag(struct scsi_disk *sdkp)
138{
139 unsigned flush = 0;
140
141 if (sdkp->WCE) {
142 flush |= REQ_FLUSH;
143 if (sdkp->DPOFUA)
144 flush |= REQ_FUA;
145 }
146
147 blk_queue_flush(sdkp->disk->queue, flush);
148}
149
ee959b00 150static ssize_t
e1ea2351
GKH
151cache_type_store(struct device *dev, struct device_attribute *attr,
152 const char *buf, size_t count)
6bdaa1f1
JB
153{
154 int i, ct = -1, rcd, wce, sp;
ee959b00 155 struct scsi_disk *sdkp = to_scsi_disk(dev);
6bdaa1f1
JB
156 struct scsi_device *sdp = sdkp->device;
157 char buffer[64];
158 char *buffer_data;
159 struct scsi_mode_data data;
160 struct scsi_sense_hdr sshdr;
2ee3e26c 161 static const char temp[] = "temporary ";
6bdaa1f1
JB
162 int len;
163
164 if (sdp->type != TYPE_DISK)
165 /* no cache control on RBC devices; theoretically they
166 * can do it, but there's probably so many exceptions
167 * it's not worth the risk */
168 return -EINVAL;
169
39c60a09
JB
170 if (strncmp(buf, temp, sizeof(temp) - 1) == 0) {
171 buf += sizeof(temp) - 1;
172 sdkp->cache_override = 1;
173 } else {
174 sdkp->cache_override = 0;
175 }
176
6391a113 177 for (i = 0; i < ARRAY_SIZE(sd_cache_types); i++) {
439d77f7 178 len = strlen(sd_cache_types[i]);
6bdaa1f1
JB
179 if (strncmp(sd_cache_types[i], buf, len) == 0 &&
180 buf[len] == '\n') {
181 ct = i;
182 break;
183 }
184 }
185 if (ct < 0)
186 return -EINVAL;
187 rcd = ct & 0x01 ? 1 : 0;
2eefd57b 188 wce = (ct & 0x02) && !sdkp->write_prot ? 1 : 0;
39c60a09
JB
189
190 if (sdkp->cache_override) {
191 sdkp->WCE = wce;
192 sdkp->RCD = rcd;
cb2fb68d 193 sd_set_flush_flag(sdkp);
39c60a09
JB
194 return count;
195 }
196
6bdaa1f1
JB
197 if (scsi_mode_sense(sdp, 0x08, 8, buffer, sizeof(buffer), SD_TIMEOUT,
198 SD_MAX_RETRIES, &data, NULL))
199 return -EINVAL;
a9312fb8 200 len = min_t(size_t, sizeof(buffer), data.length - data.header_length -
6bdaa1f1
JB
201 data.block_descriptor_length);
202 buffer_data = buffer + data.header_length +
203 data.block_descriptor_length;
204 buffer_data[2] &= ~0x05;
205 buffer_data[2] |= wce << 2 | rcd;
206 sp = buffer_data[0] & 0x80 ? 1 : 0;
207
208 if (scsi_mode_select(sdp, 1, sp, 8, buffer_data, len, SD_TIMEOUT,
209 SD_MAX_RETRIES, &data, &sshdr)) {
210 if (scsi_sense_valid(&sshdr))
e73aec82 211 sd_print_sense_hdr(sdkp, &sshdr);
6bdaa1f1
JB
212 return -EINVAL;
213 }
f98a8cae 214 revalidate_disk(sdkp->disk);
6bdaa1f1
JB
215 return count;
216}
217
ee959b00 218static ssize_t
e1ea2351
GKH
219manage_start_stop_show(struct device *dev, struct device_attribute *attr,
220 char *buf)
221{
222 struct scsi_disk *sdkp = to_scsi_disk(dev);
223 struct scsi_device *sdp = sdkp->device;
224
225 return snprintf(buf, 20, "%u\n", sdp->manage_start_stop);
226}
227
228static ssize_t
229manage_start_stop_store(struct device *dev, struct device_attribute *attr,
230 const char *buf, size_t count)
c3c94c5a 231{
ee959b00 232 struct scsi_disk *sdkp = to_scsi_disk(dev);
c3c94c5a
TH
233 struct scsi_device *sdp = sdkp->device;
234
235 if (!capable(CAP_SYS_ADMIN))
236 return -EACCES;
237
238 sdp->manage_start_stop = simple_strtoul(buf, NULL, 10);
239
240 return count;
241}
e1ea2351 242static DEVICE_ATTR_RW(manage_start_stop);
c3c94c5a 243
ee959b00 244static ssize_t
e1ea2351
GKH
245allow_restart_show(struct device *dev, struct device_attribute *attr, char *buf)
246{
247 struct scsi_disk *sdkp = to_scsi_disk(dev);
248
249 return snprintf(buf, 40, "%d\n", sdkp->device->allow_restart);
250}
251
252static ssize_t
253allow_restart_store(struct device *dev, struct device_attribute *attr,
254 const char *buf, size_t count)
a144c5ae 255{
ee959b00 256 struct scsi_disk *sdkp = to_scsi_disk(dev);
a144c5ae
BK
257 struct scsi_device *sdp = sdkp->device;
258
259 if (!capable(CAP_SYS_ADMIN))
260 return -EACCES;
261
262 if (sdp->type != TYPE_DISK)
263 return -EINVAL;
264
265 sdp->allow_restart = simple_strtoul(buf, NULL, 10);
266
267 return count;
268}
e1ea2351 269static DEVICE_ATTR_RW(allow_restart);
a144c5ae 270
ee959b00 271static ssize_t
e1ea2351 272cache_type_show(struct device *dev, struct device_attribute *attr, char *buf)
6bdaa1f1 273{
ee959b00 274 struct scsi_disk *sdkp = to_scsi_disk(dev);
6bdaa1f1
JB
275 int ct = sdkp->RCD + 2*sdkp->WCE;
276
277 return snprintf(buf, 40, "%s\n", sd_cache_types[ct]);
278}
e1ea2351 279static DEVICE_ATTR_RW(cache_type);
6bdaa1f1 280
ee959b00 281static ssize_t
e1ea2351 282FUA_show(struct device *dev, struct device_attribute *attr, char *buf)
6bdaa1f1 283{
ee959b00 284 struct scsi_disk *sdkp = to_scsi_disk(dev);
6bdaa1f1
JB
285
286 return snprintf(buf, 20, "%u\n", sdkp->DPOFUA);
287}
e1ea2351 288static DEVICE_ATTR_RO(FUA);
6bdaa1f1 289
ee959b00 290static ssize_t
e1ea2351
GKH
291protection_type_show(struct device *dev, struct device_attribute *attr,
292 char *buf)
e0597d70
MP
293{
294 struct scsi_disk *sdkp = to_scsi_disk(dev);
295
296 return snprintf(buf, 20, "%u\n", sdkp->protection_type);
297}
298
8172499a 299static ssize_t
e1ea2351
GKH
300protection_type_store(struct device *dev, struct device_attribute *attr,
301 const char *buf, size_t count)
8172499a
MP
302{
303 struct scsi_disk *sdkp = to_scsi_disk(dev);
304 unsigned int val;
305 int err;
306
307 if (!capable(CAP_SYS_ADMIN))
308 return -EACCES;
309
310 err = kstrtouint(buf, 10, &val);
311
312 if (err)
313 return err;
314
315 if (val >= 0 && val <= SD_DIF_TYPE3_PROTECTION)
316 sdkp->protection_type = val;
317
318 return count;
319}
e1ea2351 320static DEVICE_ATTR_RW(protection_type);
8172499a 321
518fa8e3 322static ssize_t
e1ea2351
GKH
323protection_mode_show(struct device *dev, struct device_attribute *attr,
324 char *buf)
518fa8e3
MP
325{
326 struct scsi_disk *sdkp = to_scsi_disk(dev);
327 struct scsi_device *sdp = sdkp->device;
328 unsigned int dif, dix;
329
330 dif = scsi_host_dif_capable(sdp->host, sdkp->protection_type);
331 dix = scsi_host_dix_capable(sdp->host, sdkp->protection_type);
332
333 if (!dix && scsi_host_dix_capable(sdp->host, SD_DIF_TYPE0_PROTECTION)) {
334 dif = 0;
335 dix = 1;
336 }
337
338 if (!dif && !dix)
339 return snprintf(buf, 20, "none\n");
340
341 return snprintf(buf, 20, "%s%u\n", dix ? "dix" : "dif", dif);
342}
e1ea2351 343static DEVICE_ATTR_RO(protection_mode);
518fa8e3 344
e0597d70 345static ssize_t
e1ea2351 346app_tag_own_show(struct device *dev, struct device_attribute *attr, char *buf)
e0597d70
MP
347{
348 struct scsi_disk *sdkp = to_scsi_disk(dev);
349
350 return snprintf(buf, 20, "%u\n", sdkp->ATO);
351}
e1ea2351 352static DEVICE_ATTR_RO(app_tag_own);
e0597d70 353
e339c1a7 354static ssize_t
e1ea2351
GKH
355thin_provisioning_show(struct device *dev, struct device_attribute *attr,
356 char *buf)
e339c1a7
MP
357{
358 struct scsi_disk *sdkp = to_scsi_disk(dev);
359
c98a0eb0
MP
360 return snprintf(buf, 20, "%u\n", sdkp->lbpme);
361}
e1ea2351 362static DEVICE_ATTR_RO(thin_provisioning);
c98a0eb0
MP
363
364static const char *lbp_mode[] = {
365 [SD_LBP_FULL] = "full",
366 [SD_LBP_UNMAP] = "unmap",
367 [SD_LBP_WS16] = "writesame_16",
368 [SD_LBP_WS10] = "writesame_10",
369 [SD_LBP_ZERO] = "writesame_zero",
370 [SD_LBP_DISABLE] = "disabled",
371};
372
373static ssize_t
e1ea2351
GKH
374provisioning_mode_show(struct device *dev, struct device_attribute *attr,
375 char *buf)
c98a0eb0
MP
376{
377 struct scsi_disk *sdkp = to_scsi_disk(dev);
378
379 return snprintf(buf, 20, "%s\n", lbp_mode[sdkp->provisioning_mode]);
380}
381
382static ssize_t
e1ea2351
GKH
383provisioning_mode_store(struct device *dev, struct device_attribute *attr,
384 const char *buf, size_t count)
c98a0eb0
MP
385{
386 struct scsi_disk *sdkp = to_scsi_disk(dev);
387 struct scsi_device *sdp = sdkp->device;
388
389 if (!capable(CAP_SYS_ADMIN))
390 return -EACCES;
391
392 if (sdp->type != TYPE_DISK)
393 return -EINVAL;
394
395 if (!strncmp(buf, lbp_mode[SD_LBP_UNMAP], 20))
396 sd_config_discard(sdkp, SD_LBP_UNMAP);
397 else if (!strncmp(buf, lbp_mode[SD_LBP_WS16], 20))
398 sd_config_discard(sdkp, SD_LBP_WS16);
399 else if (!strncmp(buf, lbp_mode[SD_LBP_WS10], 20))
400 sd_config_discard(sdkp, SD_LBP_WS10);
401 else if (!strncmp(buf, lbp_mode[SD_LBP_ZERO], 20))
402 sd_config_discard(sdkp, SD_LBP_ZERO);
403 else if (!strncmp(buf, lbp_mode[SD_LBP_DISABLE], 20))
404 sd_config_discard(sdkp, SD_LBP_DISABLE);
405 else
406 return -EINVAL;
407
408 return count;
e339c1a7 409}
e1ea2351 410static DEVICE_ATTR_RW(provisioning_mode);
e339c1a7 411
18a4d0a2 412static ssize_t
e1ea2351
GKH
413max_medium_access_timeouts_show(struct device *dev,
414 struct device_attribute *attr, char *buf)
18a4d0a2
MP
415{
416 struct scsi_disk *sdkp = to_scsi_disk(dev);
417
418 return snprintf(buf, 20, "%u\n", sdkp->max_medium_access_timeouts);
419}
420
421static ssize_t
e1ea2351
GKH
422max_medium_access_timeouts_store(struct device *dev,
423 struct device_attribute *attr, const char *buf,
424 size_t count)
18a4d0a2
MP
425{
426 struct scsi_disk *sdkp = to_scsi_disk(dev);
427 int err;
428
429 if (!capable(CAP_SYS_ADMIN))
430 return -EACCES;
431
432 err = kstrtouint(buf, 10, &sdkp->max_medium_access_timeouts);
433
434 return err ? err : count;
435}
e1ea2351 436static DEVICE_ATTR_RW(max_medium_access_timeouts);
18a4d0a2 437
5db44863 438static ssize_t
e1ea2351
GKH
439max_write_same_blocks_show(struct device *dev, struct device_attribute *attr,
440 char *buf)
5db44863
MP
441{
442 struct scsi_disk *sdkp = to_scsi_disk(dev);
443
444 return snprintf(buf, 20, "%u\n", sdkp->max_ws_blocks);
445}
446
447static ssize_t
e1ea2351
GKH
448max_write_same_blocks_store(struct device *dev, struct device_attribute *attr,
449 const char *buf, size_t count)
5db44863
MP
450{
451 struct scsi_disk *sdkp = to_scsi_disk(dev);
452 struct scsi_device *sdp = sdkp->device;
453 unsigned long max;
454 int err;
455
456 if (!capable(CAP_SYS_ADMIN))
457 return -EACCES;
458
459 if (sdp->type != TYPE_DISK)
460 return -EINVAL;
461
462 err = kstrtoul(buf, 10, &max);
463
464 if (err)
465 return err;
466
467 if (max == 0)
468 sdp->no_write_same = 1;
66c28f97
MP
469 else if (max <= SD_MAX_WS16_BLOCKS) {
470 sdp->no_write_same = 0;
5db44863 471 sdkp->max_ws_blocks = max;
66c28f97 472 }
5db44863
MP
473
474 sd_config_write_same(sdkp);
475
476 return count;
477}
e1ea2351
GKH
478static DEVICE_ATTR_RW(max_write_same_blocks);
479
480static struct attribute *sd_disk_attrs[] = {
481 &dev_attr_cache_type.attr,
482 &dev_attr_FUA.attr,
483 &dev_attr_allow_restart.attr,
484 &dev_attr_manage_start_stop.attr,
485 &dev_attr_protection_type.attr,
486 &dev_attr_protection_mode.attr,
487 &dev_attr_app_tag_own.attr,
488 &dev_attr_thin_provisioning.attr,
489 &dev_attr_provisioning_mode.attr,
490 &dev_attr_max_write_same_blocks.attr,
491 &dev_attr_max_medium_access_timeouts.attr,
492 NULL,
6bdaa1f1 493};
e1ea2351 494ATTRIBUTE_GROUPS(sd_disk);
6bdaa1f1
JB
495
496static struct class sd_disk_class = {
497 .name = "scsi_disk",
498 .owner = THIS_MODULE,
ee959b00 499 .dev_release = scsi_disk_release,
e1ea2351 500 .dev_groups = sd_disk_groups,
6bdaa1f1 501};
1da177e4 502
691e3d31 503static const struct dev_pm_ops sd_pm_ops = {
95897910 504 .suspend = sd_suspend_system,
691e3d31 505 .resume = sd_resume,
95897910 506 .poweroff = sd_suspend_system,
691e3d31 507 .restore = sd_resume,
95897910 508 .runtime_suspend = sd_suspend_runtime,
691e3d31
AL
509 .runtime_resume = sd_resume,
510};
511
1da177e4
LT
512static struct scsi_driver sd_template = {
513 .owner = THIS_MODULE,
514 .gendrv = {
515 .name = "sd",
516 .probe = sd_probe,
517 .remove = sd_remove,
518 .shutdown = sd_shutdown,
691e3d31 519 .pm = &sd_pm_ops,
1da177e4
LT
520 },
521 .rescan = sd_rescan,
a1b73fc1
CH
522 .init_command = sd_init_command,
523 .uninit_command = sd_uninit_command,
7b3d9545 524 .done = sd_done,
18a4d0a2 525 .eh_action = sd_eh_action,
1da177e4
LT
526};
527
0761df9c
HR
528/*
529 * Dummy kobj_map->probe function.
530 * The default ->probe function will call modprobe, which is
531 * pointless as this module is already loaded.
532 */
533static struct kobject *sd_default_probe(dev_t devt, int *partno, void *data)
534{
535 return NULL;
536}
537
1da177e4
LT
538/*
539 * Device no to disk mapping:
540 *
541 * major disc2 disc p1
542 * |............|.............|....|....| <- dev_t
543 * 31 20 19 8 7 4 3 0
544 *
545 * Inside a major, we have 16k disks, however mapped non-
546 * contiguously. The first 16 disks are for major0, the next
547 * ones with major1, ... Disk 256 is for major0 again, disk 272
548 * for major1, ...
549 * As we stay compatible with our numbering scheme, we can reuse
550 * the well-know SCSI majors 8, 65--71, 136--143.
551 */
552static int sd_major(int major_idx)
553{
554 switch (major_idx) {
555 case 0:
556 return SCSI_DISK0_MAJOR;
557 case 1 ... 7:
558 return SCSI_DISK1_MAJOR + major_idx - 1;
559 case 8 ... 15:
560 return SCSI_DISK8_MAJOR + major_idx - 8;
561 default:
562 BUG();
563 return 0; /* shut up gcc */
564 }
565}
566
39b7f1e2 567static struct scsi_disk *__scsi_disk_get(struct gendisk *disk)
1da177e4
LT
568{
569 struct scsi_disk *sdkp = NULL;
570
39b7f1e2
AS
571 if (disk->private_data) {
572 sdkp = scsi_disk(disk);
573 if (scsi_device_get(sdkp->device) == 0)
ee959b00 574 get_device(&sdkp->dev);
39b7f1e2
AS
575 else
576 sdkp = NULL;
577 }
578 return sdkp;
579}
580
581static struct scsi_disk *scsi_disk_get(struct gendisk *disk)
582{
583 struct scsi_disk *sdkp;
584
0b950672 585 mutex_lock(&sd_ref_mutex);
39b7f1e2 586 sdkp = __scsi_disk_get(disk);
0b950672 587 mutex_unlock(&sd_ref_mutex);
1da177e4 588 return sdkp;
39b7f1e2 589}
1da177e4 590
39b7f1e2
AS
591static struct scsi_disk *scsi_disk_get_from_dev(struct device *dev)
592{
593 struct scsi_disk *sdkp;
594
0b950672 595 mutex_lock(&sd_ref_mutex);
39b7f1e2
AS
596 sdkp = dev_get_drvdata(dev);
597 if (sdkp)
598 sdkp = __scsi_disk_get(sdkp->disk);
0b950672 599 mutex_unlock(&sd_ref_mutex);
1da177e4
LT
600 return sdkp;
601}
602
603static void scsi_disk_put(struct scsi_disk *sdkp)
604{
605 struct scsi_device *sdev = sdkp->device;
606
0b950672 607 mutex_lock(&sd_ref_mutex);
ee959b00 608 put_device(&sdkp->dev);
1da177e4 609 scsi_device_put(sdev);
0b950672 610 mutex_unlock(&sd_ref_mutex);
1da177e4
LT
611}
612
c611529e
MP
613
614
615static unsigned char sd_setup_protect_cmnd(struct scsi_cmnd *scmd,
616 unsigned int dix, unsigned int dif)
35e1a5d9 617{
c611529e
MP
618 struct bio *bio = scmd->request->bio;
619 unsigned int prot_op = sd_prot_op(rq_data_dir(scmd->request), dix, dif);
620 unsigned int protect = 0;
621
622 if (dix) { /* DIX Type 0, 1, 2, 3 */
623 if (bio_integrity_flagged(bio, BIP_IP_CHECKSUM))
624 scmd->prot_flags |= SCSI_PROT_IP_CHECKSUM;
625
626 if (bio_integrity_flagged(bio, BIP_CTRL_NOCHECK) == false)
627 scmd->prot_flags |= SCSI_PROT_GUARD_CHECK;
628 }
629
630 if (dif != SD_DIF_TYPE3_PROTECTION) { /* DIX/DIF Type 0, 1, 2 */
631 scmd->prot_flags |= SCSI_PROT_REF_INCREMENT;
632
633 if (bio_integrity_flagged(bio, BIP_CTRL_NOCHECK) == false)
634 scmd->prot_flags |= SCSI_PROT_REF_CHECK;
635 }
636
637 if (dif) { /* DIX/DIF Type 1, 2, 3 */
638 scmd->prot_flags |= SCSI_PROT_TRANSFER_PI;
639
640 if (bio_integrity_flagged(bio, BIP_DISK_NOCHECK))
641 protect = 3 << 5; /* Disable target PI checking */
642 else
643 protect = 1 << 5; /* Enable target PI checking */
35e1a5d9
MP
644 }
645
646 scsi_set_prot_op(scmd, prot_op);
647 scsi_set_prot_type(scmd, dif);
c611529e
MP
648 scmd->prot_flags &= sd_prot_flag_mask(prot_op);
649
650 return protect;
35e1a5d9
MP
651}
652
c98a0eb0
MP
653static void sd_config_discard(struct scsi_disk *sdkp, unsigned int mode)
654{
655 struct request_queue *q = sdkp->disk->queue;
656 unsigned int logical_block_size = sdkp->device->sector_size;
657 unsigned int max_blocks = 0;
658
659 q->limits.discard_zeroes_data = sdkp->lbprz;
2a8cfad0
MP
660 q->limits.discard_alignment = sdkp->unmap_alignment *
661 logical_block_size;
c98a0eb0
MP
662 q->limits.discard_granularity =
663 max(sdkp->physical_block_size,
664 sdkp->unmap_granularity * logical_block_size);
665
89730393
MP
666 sdkp->provisioning_mode = mode;
667
c98a0eb0
MP
668 switch (mode) {
669
670 case SD_LBP_DISABLE:
671 q->limits.max_discard_sectors = 0;
672 queue_flag_clear_unlocked(QUEUE_FLAG_DISCARD, q);
673 return;
674
675 case SD_LBP_UNMAP:
5db44863
MP
676 max_blocks = min_not_zero(sdkp->max_unmap_blocks,
677 (u32)SD_MAX_WS16_BLOCKS);
c98a0eb0
MP
678 break;
679
680 case SD_LBP_WS16:
5db44863
MP
681 max_blocks = min_not_zero(sdkp->max_ws_blocks,
682 (u32)SD_MAX_WS16_BLOCKS);
c98a0eb0
MP
683 break;
684
685 case SD_LBP_WS10:
5db44863
MP
686 max_blocks = min_not_zero(sdkp->max_ws_blocks,
687 (u32)SD_MAX_WS10_BLOCKS);
c98a0eb0
MP
688 break;
689
690 case SD_LBP_ZERO:
5db44863
MP
691 max_blocks = min_not_zero(sdkp->max_ws_blocks,
692 (u32)SD_MAX_WS10_BLOCKS);
c98a0eb0
MP
693 q->limits.discard_zeroes_data = 1;
694 break;
695 }
696
697 q->limits.max_discard_sectors = max_blocks * (logical_block_size >> 9);
698 queue_flag_set_unlocked(QUEUE_FLAG_DISCARD, q);
c98a0eb0
MP
699}
700
e339c1a7 701/**
26e85fcd 702 * sd_setup_discard_cmnd - unmap blocks on thinly provisioned device
66ac0280 703 * @sdp: scsi device to operate one
e339c1a7
MP
704 * @rq: Request to prepare
705 *
706 * Will issue either UNMAP or WRITE SAME(16) depending on preference
707 * indicated by target device.
708 **/
6a7b4398 709static int sd_setup_discard_cmnd(struct scsi_cmnd *cmd)
e339c1a7 710{
6a7b4398
CH
711 struct request *rq = cmd->request;
712 struct scsi_device *sdp = cmd->device;
e339c1a7 713 struct scsi_disk *sdkp = scsi_disk(rq->rq_disk);
26e85fcd
MP
714 sector_t sector = blk_rq_pos(rq);
715 unsigned int nr_sectors = blk_rq_sectors(rq);
716 unsigned int nr_bytes = blk_rq_bytes(rq);
66ac0280 717 unsigned int len;
f1126e95 718 int ret;
c98a0eb0 719 char *buf;
66ac0280 720 struct page *page;
e339c1a7 721
26e85fcd
MP
722 sector >>= ilog2(sdp->sector_size) - 9;
723 nr_sectors >>= ilog2(sdp->sector_size) - 9;
e339c1a7 724
66ac0280
CH
725 page = alloc_page(GFP_ATOMIC | __GFP_ZERO);
726 if (!page)
727 return BLKPREP_DEFER;
728
c98a0eb0
MP
729 switch (sdkp->provisioning_mode) {
730 case SD_LBP_UNMAP:
731 buf = page_address(page);
e339c1a7 732
6a7b4398
CH
733 cmd->cmd_len = 10;
734 cmd->cmnd[0] = UNMAP;
735 cmd->cmnd[8] = 24;
e339c1a7
MP
736
737 put_unaligned_be16(6 + 16, &buf[0]);
738 put_unaligned_be16(16, &buf[2]);
739 put_unaligned_be64(sector, &buf[8]);
66ac0280 740 put_unaligned_be32(nr_sectors, &buf[16]);
e339c1a7 741
66ac0280 742 len = 24;
c98a0eb0
MP
743 break;
744
745 case SD_LBP_WS16:
6a7b4398
CH
746 cmd->cmd_len = 16;
747 cmd->cmnd[0] = WRITE_SAME_16;
748 cmd->cmnd[1] = 0x8; /* UNMAP */
749 put_unaligned_be64(sector, &cmd->cmnd[2]);
750 put_unaligned_be32(nr_sectors, &cmd->cmnd[10]);
66ac0280
CH
751
752 len = sdkp->device->sector_size;
c98a0eb0
MP
753 break;
754
755 case SD_LBP_WS10:
756 case SD_LBP_ZERO:
6a7b4398
CH
757 cmd->cmd_len = 10;
758 cmd->cmnd[0] = WRITE_SAME;
c98a0eb0 759 if (sdkp->provisioning_mode == SD_LBP_WS10)
6a7b4398
CH
760 cmd->cmnd[1] = 0x8; /* UNMAP */
761 put_unaligned_be32(sector, &cmd->cmnd[2]);
762 put_unaligned_be16(nr_sectors, &cmd->cmnd[7]);
c98a0eb0
MP
763
764 len = sdkp->device->sector_size;
765 break;
766
767 default:
09b9cc44 768 ret = BLKPREP_KILL;
c98a0eb0 769 goto out;
e339c1a7
MP
770 }
771
dc4a9307 772 rq->completion_data = page;
6a7b4398
CH
773 rq->timeout = SD_TIMEOUT;
774
775 cmd->transfersize = len;
e4200f8e 776 cmd->allowed = SD_MAX_RETRIES;
6a7b4398
CH
777
778 /*
779 * Initially __data_len is set to the amount of data that needs to be
780 * transferred to the target. This amount depends on whether WRITE SAME
781 * or UNMAP is being used. After the scatterlist has been mapped by
782 * scsi_init_io() we set __data_len to the size of the area to be
783 * discarded on disk. This allows us to report completion on the full
784 * amount of blocks described by the request.
785 */
66ac0280 786 blk_add_request_payload(rq, page, len);
6a7b4398 787 ret = scsi_init_io(cmd, GFP_ATOMIC);
26e85fcd 788 rq->__data_len = nr_bytes;
c98a0eb0
MP
789
790out:
b4f42e28 791 if (ret != BLKPREP_OK)
610a6349 792 __free_page(page);
f1126e95
FT
793 return ret;
794}
795
5db44863
MP
796static void sd_config_write_same(struct scsi_disk *sdkp)
797{
798 struct request_queue *q = sdkp->disk->queue;
799 unsigned int logical_block_size = sdkp->device->sector_size;
5db44863
MP
800
801 if (sdkp->device->no_write_same) {
802 sdkp->max_ws_blocks = 0;
803 goto out;
804 }
805
806 /* Some devices can not handle block counts above 0xffff despite
807 * supporting WRITE SAME(16). Consequently we default to 64k
808 * blocks per I/O unless the device explicitly advertises a
809 * bigger limit.
810 */
66c28f97
MP
811 if (sdkp->max_ws_blocks > SD_MAX_WS10_BLOCKS)
812 sdkp->max_ws_blocks = min_not_zero(sdkp->max_ws_blocks,
813 (u32)SD_MAX_WS16_BLOCKS);
814 else if (sdkp->ws16 || sdkp->ws10 || sdkp->device->no_report_opcodes)
815 sdkp->max_ws_blocks = min_not_zero(sdkp->max_ws_blocks,
816 (u32)SD_MAX_WS10_BLOCKS);
817 else {
818 sdkp->device->no_write_same = 1;
819 sdkp->max_ws_blocks = 0;
820 }
5db44863
MP
821
822out:
66c28f97
MP
823 blk_queue_max_write_same_sectors(q, sdkp->max_ws_blocks *
824 (logical_block_size >> 9));
5db44863
MP
825}
826
827/**
828 * sd_setup_write_same_cmnd - write the same data to multiple blocks
59b1134c 829 * @cmd: command to prepare
5db44863
MP
830 *
831 * Will issue either WRITE SAME(10) or WRITE SAME(16) depending on
832 * preference indicated by target device.
833 **/
59b1134c 834static int sd_setup_write_same_cmnd(struct scsi_cmnd *cmd)
5db44863 835{
59b1134c
CH
836 struct request *rq = cmd->request;
837 struct scsi_device *sdp = cmd->device;
5db44863
MP
838 struct scsi_disk *sdkp = scsi_disk(rq->rq_disk);
839 struct bio *bio = rq->bio;
840 sector_t sector = blk_rq_pos(rq);
841 unsigned int nr_sectors = blk_rq_sectors(rq);
842 unsigned int nr_bytes = blk_rq_bytes(rq);
843 int ret;
844
845 if (sdkp->device->no_write_same)
846 return BLKPREP_KILL;
847
a4ad39b1 848 BUG_ON(bio_offset(bio) || bio_iovec(bio).bv_len != sdp->sector_size);
5db44863
MP
849
850 sector >>= ilog2(sdp->sector_size) - 9;
851 nr_sectors >>= ilog2(sdp->sector_size) - 9;
852
5db44863 853 rq->timeout = SD_WRITE_SAME_TIMEOUT;
5db44863
MP
854
855 if (sdkp->ws16 || sector > 0xffffffff || nr_sectors > 0xffff) {
59b1134c
CH
856 cmd->cmd_len = 16;
857 cmd->cmnd[0] = WRITE_SAME_16;
858 put_unaligned_be64(sector, &cmd->cmnd[2]);
859 put_unaligned_be32(nr_sectors, &cmd->cmnd[10]);
5db44863 860 } else {
59b1134c
CH
861 cmd->cmd_len = 10;
862 cmd->cmnd[0] = WRITE_SAME;
863 put_unaligned_be32(sector, &cmd->cmnd[2]);
864 put_unaligned_be16(nr_sectors, &cmd->cmnd[7]);
5db44863
MP
865 }
866
59b1134c 867 cmd->transfersize = sdp->sector_size;
a25ee548 868 cmd->allowed = SD_MAX_RETRIES;
5db44863 869
59b1134c
CH
870 /*
871 * For WRITE_SAME the data transferred in the DATA IN buffer is
872 * different from the amount of data actually written to the target.
873 *
874 * We set up __data_len to the amount of data transferred from the
875 * DATA IN buffer so that blk_rq_map_sg set up the proper S/G list
876 * to transfer a single sector of data first, but then reset it to
877 * the amount of data to be written right after so that the I/O path
878 * knows how much to actually write.
879 */
880 rq->__data_len = sdp->sector_size;
881 ret = scsi_init_io(cmd, GFP_ATOMIC);
882 rq->__data_len = nr_bytes;
5db44863
MP
883 return ret;
884}
885
a118c6c1 886static int sd_setup_flush_cmnd(struct scsi_cmnd *cmd)
90467c29 887{
a118c6c1
CH
888 struct request *rq = cmd->request;
889
890 /* flush requests don't perform I/O, zero the S/G table */
891 memset(&cmd->sdb, 0, sizeof(cmd->sdb));
90467c29 892
a118c6c1
CH
893 cmd->cmnd[0] = SYNCHRONIZE_CACHE;
894 cmd->cmd_len = 10;
895 cmd->transfersize = 0;
896 cmd->allowed = SD_MAX_RETRIES;
897
26b9fd8b 898 rq->timeout = rq->q->rq_timeout * SD_FLUSH_TIMEOUT_MULTIPLIER;
a118c6c1 899 return BLKPREP_OK;
90467c29
FT
900}
901
87949eee 902static int sd_setup_read_write_cmnd(struct scsi_cmnd *SCpnt)
1da177e4 903{
a1b73fc1
CH
904 struct request *rq = SCpnt->request;
905 struct scsi_device *sdp = SCpnt->device;
776b23a0 906 struct gendisk *disk = rq->rq_disk;
af55ff67 907 struct scsi_disk *sdkp;
83096ebf 908 sector_t block = blk_rq_pos(rq);
18351070 909 sector_t threshold;
83096ebf 910 unsigned int this_count = blk_rq_sectors(rq);
c611529e
MP
911 unsigned int dif, dix;
912 int ret;
4e7392ec 913 unsigned char protect;
7f9a6bc4 914
3868cf8e 915 ret = scsi_init_io(SCpnt, GFP_ATOMIC);
7f9a6bc4
JB
916 if (ret != BLKPREP_OK)
917 goto out;
918 SCpnt = rq->special;
af55ff67 919 sdkp = scsi_disk(disk);
7f9a6bc4
JB
920
921 /* from here on until we're complete, any goto out
922 * is used for a killable error condition */
923 ret = BLKPREP_KILL;
1da177e4 924
a1b73fc1
CH
925 SCSI_LOG_HLQUEUE(1,
926 scmd_printk(KERN_INFO, SCpnt,
927 "%s: block=%llu, count=%d\n",
928 __func__, (unsigned long long)block, this_count));
1da177e4
LT
929
930 if (!sdp || !scsi_device_online(sdp) ||
83096ebf 931 block + blk_rq_sectors(rq) > get_capacity(disk)) {
fa0d34be 932 SCSI_LOG_HLQUEUE(2, scmd_printk(KERN_INFO, SCpnt,
83096ebf
TH
933 "Finishing %u sectors\n",
934 blk_rq_sectors(rq)));
fa0d34be
MP
935 SCSI_LOG_HLQUEUE(2, scmd_printk(KERN_INFO, SCpnt,
936 "Retry with 0x%p\n", SCpnt));
7f9a6bc4 937 goto out;
1da177e4
LT
938 }
939
940 if (sdp->changed) {
941 /*
942 * quietly refuse to do anything to a changed disc until
943 * the changed bit has been reset
944 */
3ff5588d 945 /* printk("SCSI disk has been changed or is not present. Prohibiting further I/O.\n"); */
7f9a6bc4 946 goto out;
1da177e4 947 }
7f9a6bc4 948
a0899d4d 949 /*
18351070
LT
950 * Some SD card readers can't handle multi-sector accesses which touch
951 * the last one or two hardware sectors. Split accesses as needed.
a0899d4d 952 */
18351070
LT
953 threshold = get_capacity(disk) - SD_LAST_BUGGY_SECTORS *
954 (sdp->sector_size / 512);
955
956 if (unlikely(sdp->last_sector_bug && block + this_count > threshold)) {
957 if (block < threshold) {
958 /* Access up to the threshold but not beyond */
959 this_count = threshold - block;
960 } else {
961 /* Access only a single hardware sector */
962 this_count = sdp->sector_size / 512;
963 }
964 }
a0899d4d 965
fa0d34be
MP
966 SCSI_LOG_HLQUEUE(2, scmd_printk(KERN_INFO, SCpnt, "block=%llu\n",
967 (unsigned long long)block));
1da177e4
LT
968
969 /*
970 * If we have a 1K hardware sectorsize, prevent access to single
971 * 512 byte sectors. In theory we could handle this - in fact
972 * the scsi cdrom driver must be able to handle this because
973 * we typically use 1K blocksizes, and cdroms typically have
974 * 2K hardware sectorsizes. Of course, things are simpler
975 * with the cdrom, since it is read-only. For performance
976 * reasons, the filesystems should be able to handle this
977 * and not force the scsi disk driver to use bounce buffers
978 * for this.
979 */
980 if (sdp->sector_size == 1024) {
83096ebf 981 if ((block & 1) || (blk_rq_sectors(rq) & 1)) {
e73aec82
MP
982 scmd_printk(KERN_ERR, SCpnt,
983 "Bad block number requested\n");
7f9a6bc4 984 goto out;
1da177e4
LT
985 } else {
986 block = block >> 1;
987 this_count = this_count >> 1;
988 }
989 }
990 if (sdp->sector_size == 2048) {
83096ebf 991 if ((block & 3) || (blk_rq_sectors(rq) & 3)) {
e73aec82
MP
992 scmd_printk(KERN_ERR, SCpnt,
993 "Bad block number requested\n");
7f9a6bc4 994 goto out;
1da177e4
LT
995 } else {
996 block = block >> 2;
997 this_count = this_count >> 2;
998 }
999 }
1000 if (sdp->sector_size == 4096) {
83096ebf 1001 if ((block & 7) || (blk_rq_sectors(rq) & 7)) {
e73aec82
MP
1002 scmd_printk(KERN_ERR, SCpnt,
1003 "Bad block number requested\n");
7f9a6bc4 1004 goto out;
1da177e4
LT
1005 } else {
1006 block = block >> 3;
1007 this_count = this_count >> 3;
1008 }
1009 }
1010 if (rq_data_dir(rq) == WRITE) {
1da177e4 1011 SCpnt->cmnd[0] = WRITE_6;
af55ff67 1012
8c579ab6 1013 if (blk_integrity_rq(rq))
c611529e 1014 sd_dif_prepare(SCpnt);
af55ff67 1015
1da177e4
LT
1016 } else if (rq_data_dir(rq) == READ) {
1017 SCpnt->cmnd[0] = READ_6;
1da177e4 1018 } else {
5953316d 1019 scmd_printk(KERN_ERR, SCpnt, "Unknown command %llx\n", (unsigned long long) rq->cmd_flags);
7f9a6bc4 1020 goto out;
1da177e4
LT
1021 }
1022
fa0d34be 1023 SCSI_LOG_HLQUEUE(2, scmd_printk(KERN_INFO, SCpnt,
83096ebf 1024 "%s %d/%u 512 byte blocks.\n",
fa0d34be
MP
1025 (rq_data_dir(rq) == WRITE) ?
1026 "writing" : "reading", this_count,
83096ebf 1027 blk_rq_sectors(rq)));
1da177e4 1028
c611529e
MP
1029 dix = scsi_prot_sg_count(SCpnt);
1030 dif = scsi_host_dif_capable(SCpnt->device->host, sdkp->protection_type);
1031
1032 if (dif || dix)
1033 protect = sd_setup_protect_cmnd(SCpnt, dix, dif);
af55ff67 1034 else
4e7392ec
MP
1035 protect = 0;
1036
c611529e 1037 if (protect && sdkp->protection_type == SD_DIF_TYPE2_PROTECTION) {
4e7392ec
MP
1038 SCpnt->cmnd = mempool_alloc(sd_cdb_pool, GFP_ATOMIC);
1039
1040 if (unlikely(SCpnt->cmnd == NULL)) {
1041 ret = BLKPREP_DEFER;
1042 goto out;
1043 }
af55ff67 1044
4e7392ec
MP
1045 SCpnt->cmd_len = SD_EXT_CDB_SIZE;
1046 memset(SCpnt->cmnd, 0, SCpnt->cmd_len);
1047 SCpnt->cmnd[0] = VARIABLE_LENGTH_CMD;
1048 SCpnt->cmnd[7] = 0x18;
1049 SCpnt->cmnd[9] = (rq_data_dir(rq) == READ) ? READ_32 : WRITE_32;
33659ebb 1050 SCpnt->cmnd[10] = protect | ((rq->cmd_flags & REQ_FUA) ? 0x8 : 0);
4e7392ec
MP
1051
1052 /* LBA */
1053 SCpnt->cmnd[12] = sizeof(block) > 4 ? (unsigned char) (block >> 56) & 0xff : 0;
1054 SCpnt->cmnd[13] = sizeof(block) > 4 ? (unsigned char) (block >> 48) & 0xff : 0;
1055 SCpnt->cmnd[14] = sizeof(block) > 4 ? (unsigned char) (block >> 40) & 0xff : 0;
1056 SCpnt->cmnd[15] = sizeof(block) > 4 ? (unsigned char) (block >> 32) & 0xff : 0;
1057 SCpnt->cmnd[16] = (unsigned char) (block >> 24) & 0xff;
1058 SCpnt->cmnd[17] = (unsigned char) (block >> 16) & 0xff;
1059 SCpnt->cmnd[18] = (unsigned char) (block >> 8) & 0xff;
1060 SCpnt->cmnd[19] = (unsigned char) block & 0xff;
1061
1062 /* Expected Indirect LBA */
1063 SCpnt->cmnd[20] = (unsigned char) (block >> 24) & 0xff;
1064 SCpnt->cmnd[21] = (unsigned char) (block >> 16) & 0xff;
1065 SCpnt->cmnd[22] = (unsigned char) (block >> 8) & 0xff;
1066 SCpnt->cmnd[23] = (unsigned char) block & 0xff;
1067
1068 /* Transfer length */
1069 SCpnt->cmnd[28] = (unsigned char) (this_count >> 24) & 0xff;
1070 SCpnt->cmnd[29] = (unsigned char) (this_count >> 16) & 0xff;
1071 SCpnt->cmnd[30] = (unsigned char) (this_count >> 8) & 0xff;
1072 SCpnt->cmnd[31] = (unsigned char) this_count & 0xff;
e430cbc8 1073 } else if (sdp->use_16_for_rw || (this_count > 0xffff)) {
1da177e4 1074 SCpnt->cmnd[0] += READ_16 - READ_6;
33659ebb 1075 SCpnt->cmnd[1] = protect | ((rq->cmd_flags & REQ_FUA) ? 0x8 : 0);
1da177e4
LT
1076 SCpnt->cmnd[2] = sizeof(block) > 4 ? (unsigned char) (block >> 56) & 0xff : 0;
1077 SCpnt->cmnd[3] = sizeof(block) > 4 ? (unsigned char) (block >> 48) & 0xff : 0;
1078 SCpnt->cmnd[4] = sizeof(block) > 4 ? (unsigned char) (block >> 40) & 0xff : 0;
1079 SCpnt->cmnd[5] = sizeof(block) > 4 ? (unsigned char) (block >> 32) & 0xff : 0;
1080 SCpnt->cmnd[6] = (unsigned char) (block >> 24) & 0xff;
1081 SCpnt->cmnd[7] = (unsigned char) (block >> 16) & 0xff;
1082 SCpnt->cmnd[8] = (unsigned char) (block >> 8) & 0xff;
1083 SCpnt->cmnd[9] = (unsigned char) block & 0xff;
1084 SCpnt->cmnd[10] = (unsigned char) (this_count >> 24) & 0xff;
1085 SCpnt->cmnd[11] = (unsigned char) (this_count >> 16) & 0xff;
1086 SCpnt->cmnd[12] = (unsigned char) (this_count >> 8) & 0xff;
1087 SCpnt->cmnd[13] = (unsigned char) this_count & 0xff;
1088 SCpnt->cmnd[14] = SCpnt->cmnd[15] = 0;
1089 } else if ((this_count > 0xff) || (block > 0x1fffff) ||
af55ff67 1090 scsi_device_protection(SCpnt->device) ||
1da177e4 1091 SCpnt->device->use_10_for_rw) {
1da177e4 1092 SCpnt->cmnd[0] += READ_10 - READ_6;
33659ebb 1093 SCpnt->cmnd[1] = protect | ((rq->cmd_flags & REQ_FUA) ? 0x8 : 0);
1da177e4
LT
1094 SCpnt->cmnd[2] = (unsigned char) (block >> 24) & 0xff;
1095 SCpnt->cmnd[3] = (unsigned char) (block >> 16) & 0xff;
1096 SCpnt->cmnd[4] = (unsigned char) (block >> 8) & 0xff;
1097 SCpnt->cmnd[5] = (unsigned char) block & 0xff;
1098 SCpnt->cmnd[6] = SCpnt->cmnd[9] = 0;
1099 SCpnt->cmnd[7] = (unsigned char) (this_count >> 8) & 0xff;
1100 SCpnt->cmnd[8] = (unsigned char) this_count & 0xff;
1101 } else {
33659ebb 1102 if (unlikely(rq->cmd_flags & REQ_FUA)) {
007365ad
TH
1103 /*
1104 * This happens only if this drive failed
1105 * 10byte rw command with ILLEGAL_REQUEST
1106 * during operation and thus turned off
1107 * use_10_for_rw.
1108 */
e73aec82
MP
1109 scmd_printk(KERN_ERR, SCpnt,
1110 "FUA write on READ/WRITE(6) drive\n");
7f9a6bc4 1111 goto out;
007365ad
TH
1112 }
1113
1da177e4
LT
1114 SCpnt->cmnd[1] |= (unsigned char) ((block >> 16) & 0x1f);
1115 SCpnt->cmnd[2] = (unsigned char) ((block >> 8) & 0xff);
1116 SCpnt->cmnd[3] = (unsigned char) block & 0xff;
1117 SCpnt->cmnd[4] = (unsigned char) this_count;
1118 SCpnt->cmnd[5] = 0;
1119 }
30b0c37b 1120 SCpnt->sdb.length = this_count * sdp->sector_size;
1da177e4
LT
1121
1122 /*
1123 * We shouldn't disconnect in the middle of a sector, so with a dumb
1124 * host adapter, it's safe to assume that we can at least transfer
1125 * this many bytes between each connect / disconnect.
1126 */
1127 SCpnt->transfersize = sdp->sector_size;
1128 SCpnt->underflow = this_count << 9;
1129 SCpnt->allowed = SD_MAX_RETRIES;
1da177e4 1130
1da177e4
LT
1131 /*
1132 * This indicates that the command is ready from our end to be
1133 * queued.
1134 */
7f9a6bc4
JB
1135 ret = BLKPREP_OK;
1136 out:
a1b73fc1 1137 return ret;
1da177e4
LT
1138}
1139
87949eee
CH
1140static int sd_init_command(struct scsi_cmnd *cmd)
1141{
1142 struct request *rq = cmd->request;
1143
1144 if (rq->cmd_flags & REQ_DISCARD)
1145 return sd_setup_discard_cmnd(cmd);
1146 else if (rq->cmd_flags & REQ_WRITE_SAME)
1147 return sd_setup_write_same_cmnd(cmd);
1148 else if (rq->cmd_flags & REQ_FLUSH)
1149 return sd_setup_flush_cmnd(cmd);
1150 else
1151 return sd_setup_read_write_cmnd(cmd);
1152}
1153
1154static void sd_uninit_command(struct scsi_cmnd *SCpnt)
1155{
1156 struct request *rq = SCpnt->request;
1157
1158 if (rq->cmd_flags & REQ_DISCARD)
1159 __free_page(rq->completion_data);
1160
1161 if (SCpnt->cmnd != rq->cmd) {
1162 mempool_free(SCpnt->cmnd, sd_cdb_pool);
1163 SCpnt->cmnd = NULL;
1164 SCpnt->cmd_len = 0;
1165 }
1166}
1167
1da177e4
LT
1168/**
1169 * sd_open - open a scsi disk device
1170 * @inode: only i_rdev member may be used
1171 * @filp: only f_mode and f_flags may be used
1172 *
1173 * Returns 0 if successful. Returns a negated errno value in case
1174 * of error.
1175 *
1176 * Note: This can be called from a user context (e.g. fsck(1) )
1177 * or from within the kernel (e.g. as a result of a mount(1) ).
1178 * In the latter case @inode and @filp carry an abridged amount
1179 * of information as noted above.
409f3499
AB
1180 *
1181 * Locking: called with bdev->bd_mutex held.
1da177e4 1182 **/
0338e291 1183static int sd_open(struct block_device *bdev, fmode_t mode)
1da177e4 1184{
0338e291 1185 struct scsi_disk *sdkp = scsi_disk_get(bdev->bd_disk);
1da177e4
LT
1186 struct scsi_device *sdev;
1187 int retval;
1188
0338e291 1189 if (!sdkp)
1da177e4
LT
1190 return -ENXIO;
1191
fa0d34be 1192 SCSI_LOG_HLQUEUE(3, sd_printk(KERN_INFO, sdkp, "sd_open\n"));
1da177e4
LT
1193
1194 sdev = sdkp->device;
1195
1196 /*
1197 * If the device is in error recovery, wait until it is done.
1198 * If the device is offline, then disallow any access to it.
1199 */
1200 retval = -ENXIO;
1201 if (!scsi_block_when_processing_errors(sdev))
1202 goto error_out;
1203
1204 if (sdev->removable || sdkp->write_prot)
0338e291 1205 check_disk_change(bdev);
1da177e4
LT
1206
1207 /*
1208 * If the drive is empty, just let the open fail.
1209 */
1210 retval = -ENOMEDIUM;
0338e291 1211 if (sdev->removable && !sdkp->media_present && !(mode & FMODE_NDELAY))
1da177e4
LT
1212 goto error_out;
1213
1214 /*
1215 * If the device has the write protect tab set, have the open fail
1216 * if the user expects to be able to write to the thing.
1217 */
1218 retval = -EROFS;
0338e291 1219 if (sdkp->write_prot && (mode & FMODE_WRITE))
1da177e4
LT
1220 goto error_out;
1221
1222 /*
1223 * It is possible that the disk changing stuff resulted in
1224 * the device being taken offline. If this is the case,
1225 * report this to the user, and don't pretend that the
1226 * open actually succeeded.
1227 */
1228 retval = -ENXIO;
1229 if (!scsi_device_online(sdev))
1230 goto error_out;
1231
409f3499 1232 if ((atomic_inc_return(&sdkp->openers) == 1) && sdev->removable) {
1da177e4
LT
1233 if (scsi_block_when_processing_errors(sdev))
1234 scsi_set_medium_removal(sdev, SCSI_REMOVAL_PREVENT);
1235 }
1236
1237 return 0;
1238
1239error_out:
1240 scsi_disk_put(sdkp);
1241 return retval;
1242}
1243
1244/**
1245 * sd_release - invoked when the (last) close(2) is called on this
1246 * scsi disk.
1247 * @inode: only i_rdev member may be used
1248 * @filp: only f_mode and f_flags may be used
1249 *
1250 * Returns 0.
1251 *
1252 * Note: may block (uninterruptible) if error recovery is underway
1253 * on this disk.
409f3499
AB
1254 *
1255 * Locking: called with bdev->bd_mutex held.
1da177e4 1256 **/
db2a144b 1257static void sd_release(struct gendisk *disk, fmode_t mode)
1da177e4 1258{
1da177e4
LT
1259 struct scsi_disk *sdkp = scsi_disk(disk);
1260 struct scsi_device *sdev = sdkp->device;
1261
56937f7b 1262 SCSI_LOG_HLQUEUE(3, sd_printk(KERN_INFO, sdkp, "sd_release\n"));
1da177e4 1263
7e443312 1264 if (atomic_dec_return(&sdkp->openers) == 0 && sdev->removable) {
1da177e4
LT
1265 if (scsi_block_when_processing_errors(sdev))
1266 scsi_set_medium_removal(sdev, SCSI_REMOVAL_ALLOW);
1267 }
1268
1269 /*
1270 * XXX and what if there are packets in flight and this close()
1271 * XXX is followed by a "rmmod sd_mod"?
1272 */
478a8a05 1273
1da177e4 1274 scsi_disk_put(sdkp);
1da177e4
LT
1275}
1276
a885c8c4 1277static int sd_getgeo(struct block_device *bdev, struct hd_geometry *geo)
1da177e4
LT
1278{
1279 struct scsi_disk *sdkp = scsi_disk(bdev->bd_disk);
1280 struct scsi_device *sdp = sdkp->device;
1281 struct Scsi_Host *host = sdp->host;
1282 int diskinfo[4];
1283
1284 /* default to most commonly used values */
1285 diskinfo[0] = 0x40; /* 1 << 6 */
1286 diskinfo[1] = 0x20; /* 1 << 5 */
1287 diskinfo[2] = sdkp->capacity >> 11;
1288
1289 /* override with calculated, extended default, or driver values */
1290 if (host->hostt->bios_param)
1291 host->hostt->bios_param(sdp, bdev, sdkp->capacity, diskinfo);
1292 else
1293 scsicam_bios_param(bdev, sdkp->capacity, diskinfo);
1294
a885c8c4
CH
1295 geo->heads = diskinfo[0];
1296 geo->sectors = diskinfo[1];
1297 geo->cylinders = diskinfo[2];
1da177e4
LT
1298 return 0;
1299}
1300
1301/**
1302 * sd_ioctl - process an ioctl
1303 * @inode: only i_rdev/i_bdev members may be used
1304 * @filp: only f_mode and f_flags may be used
1305 * @cmd: ioctl command number
1306 * @arg: this is third argument given to ioctl(2) system call.
1307 * Often contains a pointer.
1308 *
25985edc 1309 * Returns 0 if successful (some ioctls return positive numbers on
1da177e4
LT
1310 * success as well). Returns a negated errno value in case of error.
1311 *
1312 * Note: most ioctls are forward onto the block subsystem or further
3a4fa0a2 1313 * down in the scsi subsystem.
1da177e4 1314 **/
0338e291 1315static int sd_ioctl(struct block_device *bdev, fmode_t mode,
1da177e4
LT
1316 unsigned int cmd, unsigned long arg)
1317{
1da177e4 1318 struct gendisk *disk = bdev->bd_disk;
fe2d1851
NN
1319 struct scsi_disk *sdkp = scsi_disk(disk);
1320 struct scsi_device *sdp = sdkp->device;
1da177e4
LT
1321 void __user *p = (void __user *)arg;
1322 int error;
1323
fe2d1851
NN
1324 SCSI_LOG_IOCTL(1, sd_printk(KERN_INFO, sdkp, "sd_ioctl: disk=%s, "
1325 "cmd=0x%x\n", disk->disk_name, cmd));
1da177e4 1326
0bfc96cb
PB
1327 error = scsi_verify_blk_ioctl(bdev, cmd);
1328 if (error < 0)
1329 return error;
1330
1da177e4
LT
1331 /*
1332 * If we are in the middle of error recovery, don't let anyone
1333 * else try and use this device. Also, if error recovery fails, it
1334 * may try and take the device offline, in which case all further
1335 * access to the device is prohibited.
1336 */
906d15fb
CH
1337 error = scsi_ioctl_block_when_processing_errors(sdp, cmd,
1338 (mode & FMODE_NDELAY) != 0);
1339 if (error)
8a6cfeb6 1340 goto out;
1da177e4 1341
1da177e4
LT
1342 /*
1343 * Send SCSI addressing ioctls directly to mid level, send other
1344 * ioctls to block level and then onto mid level if they can't be
1345 * resolved.
1346 */
1347 switch (cmd) {
1348 case SCSI_IOCTL_GET_IDLUN:
1349 case SCSI_IOCTL_GET_BUS_NUMBER:
8a6cfeb6
AB
1350 error = scsi_ioctl(sdp, cmd, p);
1351 break;
1da177e4 1352 default:
577ebb37 1353 error = scsi_cmd_blk_ioctl(bdev, mode, cmd, p);
1da177e4 1354 if (error != -ENOTTY)
8a6cfeb6
AB
1355 break;
1356 error = scsi_ioctl(sdp, cmd, p);
1357 break;
1da177e4 1358 }
8a6cfeb6 1359out:
8a6cfeb6 1360 return error;
1da177e4
LT
1361}
1362
1363static void set_media_not_present(struct scsi_disk *sdkp)
1364{
2bae0093
TH
1365 if (sdkp->media_present)
1366 sdkp->device->changed = 1;
1367
1368 if (sdkp->device->removable) {
1369 sdkp->media_present = 0;
1370 sdkp->capacity = 0;
1371 }
1372}
1373
1374static int media_not_present(struct scsi_disk *sdkp,
1375 struct scsi_sense_hdr *sshdr)
1376{
1377 if (!scsi_sense_valid(sshdr))
1378 return 0;
1379
1380 /* not invoked for commands that could return deferred errors */
1381 switch (sshdr->sense_key) {
1382 case UNIT_ATTENTION:
1383 case NOT_READY:
1384 /* medium not present */
1385 if (sshdr->asc == 0x3A) {
1386 set_media_not_present(sdkp);
1387 return 1;
1388 }
1389 }
1390 return 0;
1da177e4
LT
1391}
1392
1393/**
2bae0093
TH
1394 * sd_check_events - check media events
1395 * @disk: kernel device descriptor
1396 * @clearing: disk events currently being cleared
1da177e4 1397 *
2bae0093 1398 * Returns mask of DISK_EVENT_*.
1da177e4
LT
1399 *
1400 * Note: this function is invoked from the block subsystem.
1401 **/
2bae0093 1402static unsigned int sd_check_events(struct gendisk *disk, unsigned int clearing)
1da177e4
LT
1403{
1404 struct scsi_disk *sdkp = scsi_disk(disk);
1405 struct scsi_device *sdp = sdkp->device;
001aac25 1406 struct scsi_sense_hdr *sshdr = NULL;
1da177e4
LT
1407 int retval;
1408
2bae0093 1409 SCSI_LOG_HLQUEUE(3, sd_printk(KERN_INFO, sdkp, "sd_check_events\n"));
1da177e4
LT
1410
1411 /*
1412 * If the device is offline, don't send any commands - just pretend as
1413 * if the command failed. If the device ever comes back online, we
1414 * can deal with it then. It is only because of unrecoverable errors
1415 * that we would ever take a device offline in the first place.
1416 */
285e9670
KS
1417 if (!scsi_device_online(sdp)) {
1418 set_media_not_present(sdkp);
285e9670
KS
1419 goto out;
1420 }
1da177e4
LT
1421
1422 /*
1423 * Using TEST_UNIT_READY enables differentiation between drive with
1424 * no cartridge loaded - NOT READY, drive with changed cartridge -
1425 * UNIT ATTENTION, or with same cartridge - GOOD STATUS.
1426 *
1427 * Drives that auto spin down. eg iomega jaz 1G, will be started
1428 * by sd_spinup_disk() from sd_revalidate_disk(), which happens whenever
1429 * sd_revalidate() is called.
1430 */
1431 retval = -ENODEV;
285e9670 1432
001aac25
JB
1433 if (scsi_block_when_processing_errors(sdp)) {
1434 sshdr = kzalloc(sizeof(*sshdr), GFP_KERNEL);
1435 retval = scsi_test_unit_ready(sdp, SD_TIMEOUT, SD_MAX_RETRIES,
1436 sshdr);
1437 }
1da177e4 1438
2bae0093
TH
1439 /* failed to execute TUR, assume media not present */
1440 if (host_byte(retval)) {
285e9670 1441 set_media_not_present(sdkp);
285e9670
KS
1442 goto out;
1443 }
1da177e4 1444
2bae0093
TH
1445 if (media_not_present(sdkp, sshdr))
1446 goto out;
1447
1da177e4
LT
1448 /*
1449 * For removable scsi disk we have to recognise the presence
2bae0093 1450 * of a disk in the drive.
1da177e4 1451 */
2bae0093
TH
1452 if (!sdkp->media_present)
1453 sdp->changed = 1;
1da177e4 1454 sdkp->media_present = 1;
285e9670 1455out:
3ff5588d 1456 /*
2bae0093 1457 * sdp->changed is set under the following conditions:
3ff5588d 1458 *
2bae0093
TH
1459 * Medium present state has changed in either direction.
1460 * Device has indicated UNIT_ATTENTION.
3ff5588d 1461 */
001aac25 1462 kfree(sshdr);
2bae0093
TH
1463 retval = sdp->changed ? DISK_EVENT_MEDIA_CHANGE : 0;
1464 sdp->changed = 0;
1da177e4 1465 return retval;
1da177e4
LT
1466}
1467
e73aec82 1468static int sd_sync_cache(struct scsi_disk *sdkp)
1da177e4 1469{
1da177e4 1470 int retries, res;
e73aec82 1471 struct scsi_device *sdp = sdkp->device;
7e660100
JB
1472 const int timeout = sdp->request_queue->rq_timeout
1473 * SD_FLUSH_TIMEOUT_MULTIPLIER;
ea73a9f2 1474 struct scsi_sense_hdr sshdr;
1da177e4
LT
1475
1476 if (!scsi_device_online(sdp))
1477 return -ENODEV;
1478
1da177e4
LT
1479 for (retries = 3; retries > 0; --retries) {
1480 unsigned char cmd[10] = { 0 };
1481
1482 cmd[0] = SYNCHRONIZE_CACHE;
1483 /*
1484 * Leave the rest of the command zero to indicate
1485 * flush everything.
1486 */
9b21493c 1487 res = scsi_execute_req_flags(sdp, cmd, DMA_NONE, NULL, 0,
7e660100
JB
1488 &sshdr, timeout, SD_MAX_RETRIES,
1489 NULL, REQ_PM);
ea73a9f2 1490 if (res == 0)
1da177e4
LT
1491 break;
1492 }
1493
e73aec82 1494 if (res) {
ef61329d 1495 sd_print_result(sdkp, "Synchronize Cache(10) failed", res);
95897910 1496
e73aec82
MP
1497 if (driver_byte(res) & DRIVER_SENSE)
1498 sd_print_sense_hdr(sdkp, &sshdr);
95897910
ON
1499 /* we need to evaluate the error return */
1500 if (scsi_sense_valid(&sshdr) &&
7aae5134
AS
1501 (sshdr.asc == 0x3a || /* medium not present */
1502 sshdr.asc == 0x20)) /* invalid command */
95897910
ON
1503 /* this is no error here */
1504 return 0;
1505
1506 switch (host_byte(res)) {
1507 /* ignore errors due to racing a disconnection */
1508 case DID_BAD_TARGET:
1509 case DID_NO_CONNECT:
1510 return 0;
1511 /* signal the upper layer it might try again */
1512 case DID_BUS_BUSY:
1513 case DID_IMM_RETRY:
1514 case DID_REQUEUE:
1515 case DID_SOFT_ERROR:
1516 return -EBUSY;
1517 default:
1518 return -EIO;
1519 }
1da177e4 1520 }
3721050a 1521 return 0;
1da177e4
LT
1522}
1523
1da177e4
LT
1524static void sd_rescan(struct device *dev)
1525{
39b7f1e2
AS
1526 struct scsi_disk *sdkp = scsi_disk_get_from_dev(dev);
1527
1528 if (sdkp) {
f98a8cae 1529 revalidate_disk(sdkp->disk);
39b7f1e2
AS
1530 scsi_disk_put(sdkp);
1531 }
1da177e4
LT
1532}
1533
1534
1535#ifdef CONFIG_COMPAT
1536/*
1537 * This gets directly called from VFS. When the ioctl
1538 * is not recognized we go back to the other translation paths.
1539 */
0338e291
AV
1540static int sd_compat_ioctl(struct block_device *bdev, fmode_t mode,
1541 unsigned int cmd, unsigned long arg)
1da177e4 1542{
0338e291 1543 struct scsi_device *sdev = scsi_disk(bdev->bd_disk)->device;
21a9d4c9 1544 int error;
1da177e4 1545
21a9d4c9
CH
1546 error = scsi_ioctl_block_when_processing_errors(sdev, cmd,
1547 (mode & FMODE_NDELAY) != 0);
1548 if (error)
1549 return error;
1da177e4 1550
1da177e4
LT
1551 /*
1552 * Let the static ioctl translation table take care of it.
1553 */
21a9d4c9
CH
1554 if (!sdev->host->hostt->compat_ioctl)
1555 return -ENOIOCTLCMD;
1556 return sdev->host->hostt->compat_ioctl(sdev, cmd, (void __user *)arg);
1da177e4
LT
1557}
1558#endif
1559
83d5cde4 1560static const struct block_device_operations sd_fops = {
1da177e4 1561 .owner = THIS_MODULE,
0338e291
AV
1562 .open = sd_open,
1563 .release = sd_release,
8a6cfeb6 1564 .ioctl = sd_ioctl,
a885c8c4 1565 .getgeo = sd_getgeo,
1da177e4 1566#ifdef CONFIG_COMPAT
0338e291 1567 .compat_ioctl = sd_compat_ioctl,
1da177e4 1568#endif
2bae0093 1569 .check_events = sd_check_events,
1da177e4 1570 .revalidate_disk = sd_revalidate_disk,
72ec24bd 1571 .unlock_native_capacity = sd_unlock_native_capacity,
1da177e4
LT
1572};
1573
18a4d0a2
MP
1574/**
1575 * sd_eh_action - error handling callback
1576 * @scmd: sd-issued command that has failed
18a4d0a2
MP
1577 * @eh_disp: The recovery disposition suggested by the midlayer
1578 *
2451079b
JB
1579 * This function is called by the SCSI midlayer upon completion of an
1580 * error test command (currently TEST UNIT READY). The result of sending
1581 * the eh command is passed in eh_disp. We're looking for devices that
1582 * fail medium access commands but are OK with non access commands like
1583 * test unit ready (so wrongly see the device as having a successful
1584 * recovery)
18a4d0a2 1585 **/
2451079b 1586static int sd_eh_action(struct scsi_cmnd *scmd, int eh_disp)
18a4d0a2
MP
1587{
1588 struct scsi_disk *sdkp = scsi_disk(scmd->request->rq_disk);
1589
1590 if (!scsi_device_online(scmd->device) ||
2451079b
JB
1591 !scsi_medium_access_command(scmd) ||
1592 host_byte(scmd->result) != DID_TIME_OUT ||
1593 eh_disp != SUCCESS)
18a4d0a2
MP
1594 return eh_disp;
1595
1596 /*
1597 * The device has timed out executing a medium access command.
1598 * However, the TEST UNIT READY command sent during error
1599 * handling completed successfully. Either the device is in the
1600 * process of recovering or has it suffered an internal failure
1601 * that prevents access to the storage medium.
1602 */
2451079b 1603 sdkp->medium_access_timed_out++;
18a4d0a2
MP
1604
1605 /*
1606 * If the device keeps failing read/write commands but TEST UNIT
1607 * READY always completes successfully we assume that medium
1608 * access is no longer possible and take the device offline.
1609 */
1610 if (sdkp->medium_access_timed_out >= sdkp->max_medium_access_timeouts) {
1611 scmd_printk(KERN_ERR, scmd,
1612 "Medium access timeout failure. Offlining disk!\n");
1613 scsi_device_set_state(scmd->device, SDEV_OFFLINE);
1614
1615 return FAILED;
1616 }
1617
1618 return eh_disp;
1619}
1620
af55ff67
MP
1621static unsigned int sd_completed_bytes(struct scsi_cmnd *scmd)
1622{
83096ebf
TH
1623 u64 start_lba = blk_rq_pos(scmd->request);
1624 u64 end_lba = blk_rq_pos(scmd->request) + (scsi_bufflen(scmd) / 512);
af55ff67
MP
1625 u64 bad_lba;
1626 int info_valid;
a8733c7b
JB
1627 /*
1628 * resid is optional but mostly filled in. When it's unused,
1629 * its value is zero, so we assume the whole buffer transferred
1630 */
1631 unsigned int transferred = scsi_bufflen(scmd) - scsi_get_resid(scmd);
1632 unsigned int good_bytes;
af55ff67 1633
33659ebb 1634 if (scmd->request->cmd_type != REQ_TYPE_FS)
af55ff67
MP
1635 return 0;
1636
1637 info_valid = scsi_get_sense_info_fld(scmd->sense_buffer,
1638 SCSI_SENSE_BUFFERSIZE,
1639 &bad_lba);
1640 if (!info_valid)
1641 return 0;
1642
1643 if (scsi_bufflen(scmd) <= scmd->device->sector_size)
1644 return 0;
1645
1646 if (scmd->device->sector_size < 512) {
1647 /* only legitimate sector_size here is 256 */
1648 start_lba <<= 1;
1649 end_lba <<= 1;
1650 } else {
1651 /* be careful ... don't want any overflows */
ef80d1e1 1652 unsigned int factor = scmd->device->sector_size / 512;
af55ff67
MP
1653 do_div(start_lba, factor);
1654 do_div(end_lba, factor);
1655 }
1656
1657 /* The bad lba was reported incorrectly, we have no idea where
1658 * the error is.
1659 */
1660 if (bad_lba < start_lba || bad_lba >= end_lba)
1661 return 0;
1662
1663 /* This computation should always be done in terms of
1664 * the resolution of the device's medium.
1665 */
a8733c7b
JB
1666 good_bytes = (bad_lba - start_lba) * scmd->device->sector_size;
1667 return min(good_bytes, transferred);
af55ff67
MP
1668}
1669
1da177e4 1670/**
7b3d9545 1671 * sd_done - bottom half handler: called when the lower level
1da177e4
LT
1672 * driver has completed (successfully or otherwise) a scsi command.
1673 * @SCpnt: mid-level's per command structure.
1674 *
1675 * Note: potentially run from within an ISR. Must not block.
1676 **/
7b3d9545 1677static int sd_done(struct scsi_cmnd *SCpnt)
1da177e4
LT
1678{
1679 int result = SCpnt->result;
af55ff67 1680 unsigned int good_bytes = result ? 0 : scsi_bufflen(SCpnt);
1da177e4 1681 struct scsi_sense_hdr sshdr;
4e7392ec 1682 struct scsi_disk *sdkp = scsi_disk(SCpnt->request->rq_disk);
26e85fcd 1683 struct request *req = SCpnt->request;
1da177e4
LT
1684 int sense_valid = 0;
1685 int sense_deferred = 0;
c98a0eb0 1686 unsigned char op = SCpnt->cmnd[0];
5db44863 1687 unsigned char unmap = SCpnt->cmnd[1] & 8;
1da177e4 1688
5db44863 1689 if (req->cmd_flags & REQ_DISCARD || req->cmd_flags & REQ_WRITE_SAME) {
26e85fcd
MP
1690 if (!result) {
1691 good_bytes = blk_rq_bytes(req);
1692 scsi_set_resid(SCpnt, 0);
1693 } else {
1694 good_bytes = 0;
1695 scsi_set_resid(SCpnt, blk_rq_bytes(req));
1696 }
1697 }
6a32a8ae 1698
1da177e4
LT
1699 if (result) {
1700 sense_valid = scsi_command_normalize_sense(SCpnt, &sshdr);
1701 if (sense_valid)
1702 sense_deferred = scsi_sense_is_deferred(&sshdr);
1703 }
2a863ba8
DJ
1704 sdkp->medium_access_timed_out = 0;
1705
03aba2f7
LT
1706 if (driver_byte(result) != DRIVER_SENSE &&
1707 (!sense_valid || sense_deferred))
1708 goto out;
1709
1710 switch (sshdr.sense_key) {
1711 case HARDWARE_ERROR:
1712 case MEDIUM_ERROR:
af55ff67 1713 good_bytes = sd_completed_bytes(SCpnt);
03aba2f7
LT
1714 break;
1715 case RECOVERED_ERROR:
af55ff67
MP
1716 good_bytes = scsi_bufflen(SCpnt);
1717 break;
10dab226
JW
1718 case NO_SENSE:
1719 /* This indicates a false check condition, so ignore it. An
1720 * unknown amount of data was transferred so treat it as an
1721 * error.
1722 */
10dab226
JW
1723 SCpnt->result = 0;
1724 memset(SCpnt->sense_buffer, 0, SCSI_SENSE_BUFFERSIZE);
1725 break;
c98a0eb0
MP
1726 case ABORTED_COMMAND:
1727 if (sshdr.asc == 0x10) /* DIF: Target detected corruption */
1728 good_bytes = sd_completed_bytes(SCpnt);
1729 break;
1730 case ILLEGAL_REQUEST:
1731 if (sshdr.asc == 0x10) /* DIX: Host detected corruption */
af55ff67 1732 good_bytes = sd_completed_bytes(SCpnt);
c98a0eb0 1733 /* INVALID COMMAND OPCODE or INVALID FIELD IN CDB */
5db44863
MP
1734 if (sshdr.asc == 0x20 || sshdr.asc == 0x24) {
1735 switch (op) {
1736 case UNMAP:
1737 sd_config_discard(sdkp, SD_LBP_DISABLE);
1738 break;
1739 case WRITE_SAME_16:
1740 case WRITE_SAME:
1741 if (unmap)
1742 sd_config_discard(sdkp, SD_LBP_DISABLE);
1743 else {
1744 sdkp->device->no_write_same = 1;
1745 sd_config_write_same(sdkp);
1746
1747 good_bytes = 0;
1748 req->__data_len = blk_rq_bytes(req);
1749 req->cmd_flags |= REQ_QUIET;
1750 }
1751 }
1752 }
03aba2f7
LT
1753 break;
1754 default:
1755 break;
1da177e4 1756 }
03aba2f7 1757 out:
ef61329d
HR
1758 SCSI_LOG_HLCOMPLETE(1, scmd_printk(KERN_INFO, SCpnt,
1759 "sd_done: completed %d of %d bytes\n",
1760 good_bytes, scsi_bufflen(SCpnt)));
1761
af55ff67
MP
1762 if (rq_data_dir(SCpnt->request) == READ && scsi_prot_sg_count(SCpnt))
1763 sd_dif_complete(SCpnt, good_bytes);
1764
7b3d9545 1765 return good_bytes;
1da177e4
LT
1766}
1767
1da177e4
LT
1768/*
1769 * spinup disk - called only in sd_revalidate_disk()
1770 */
1771static void
e73aec82 1772sd_spinup_disk(struct scsi_disk *sdkp)
ea73a9f2 1773{
1da177e4 1774 unsigned char cmd[10];
4451e472 1775 unsigned long spintime_expire = 0;
1da177e4
LT
1776 int retries, spintime;
1777 unsigned int the_result;
1778 struct scsi_sense_hdr sshdr;
1779 int sense_valid = 0;
1780
1781 spintime = 0;
1782
1783 /* Spin up drives, as required. Only do this at boot time */
1784 /* Spinup needs to be done for module loads too. */
1785 do {
1786 retries = 0;
1787
1788 do {
1789 cmd[0] = TEST_UNIT_READY;
1790 memset((void *) &cmd[1], 0, 9);
1791
ea73a9f2
JB
1792 the_result = scsi_execute_req(sdkp->device, cmd,
1793 DMA_NONE, NULL, 0,
1794 &sshdr, SD_TIMEOUT,
f4f4e47e 1795 SD_MAX_RETRIES, NULL);
1da177e4 1796
b4d38e38
AS
1797 /*
1798 * If the drive has indicated to us that it
1799 * doesn't have any media in it, don't bother
1800 * with any more polling.
1801 */
1802 if (media_not_present(sdkp, &sshdr))
1803 return;
1804
1da177e4 1805 if (the_result)
ea73a9f2 1806 sense_valid = scsi_sense_valid(&sshdr);
1da177e4
LT
1807 retries++;
1808 } while (retries < 3 &&
1809 (!scsi_status_is_good(the_result) ||
1810 ((driver_byte(the_result) & DRIVER_SENSE) &&
1811 sense_valid && sshdr.sense_key == UNIT_ATTENTION)));
1812
1da177e4
LT
1813 if ((driver_byte(the_result) & DRIVER_SENSE) == 0) {
1814 /* no sense, TUR either succeeded or failed
1815 * with a status error */
e73aec82 1816 if(!spintime && !scsi_status_is_good(the_result)) {
ef61329d
HR
1817 sd_print_result(sdkp, "Test Unit Ready failed",
1818 the_result);
e73aec82 1819 }
1da177e4
LT
1820 break;
1821 }
ef61329d 1822
1da177e4
LT
1823 /*
1824 * The device does not want the automatic start to be issued.
1825 */
33dd6f92 1826 if (sdkp->device->no_start_on_add)
1da177e4 1827 break;
1da177e4 1828
33dd6f92
MW
1829 if (sense_valid && sshdr.sense_key == NOT_READY) {
1830 if (sshdr.asc == 4 && sshdr.ascq == 3)
1831 break; /* manual intervention required */
1832 if (sshdr.asc == 4 && sshdr.ascq == 0xb)
1833 break; /* standby */
1834 if (sshdr.asc == 4 && sshdr.ascq == 0xc)
1835 break; /* unavailable */
1836 /*
1837 * Issue command to spin up drive when not ready
1838 */
1da177e4 1839 if (!spintime) {
e73aec82 1840 sd_printk(KERN_NOTICE, sdkp, "Spinning up disk...");
1da177e4
LT
1841 cmd[0] = START_STOP;
1842 cmd[1] = 1; /* Return immediately */
1843 memset((void *) &cmd[2], 0, 8);
1844 cmd[4] = 1; /* Start spin cycle */
d2886ea3
SR
1845 if (sdkp->device->start_stop_pwr_cond)
1846 cmd[4] |= 1 << 4;
ea73a9f2
JB
1847 scsi_execute_req(sdkp->device, cmd, DMA_NONE,
1848 NULL, 0, &sshdr,
f4f4e47e
FT
1849 SD_TIMEOUT, SD_MAX_RETRIES,
1850 NULL);
4451e472
AS
1851 spintime_expire = jiffies + 100 * HZ;
1852 spintime = 1;
1da177e4 1853 }
1da177e4
LT
1854 /* Wait 1 second for next try */
1855 msleep(1000);
1856 printk(".");
4451e472
AS
1857
1858 /*
1859 * Wait for USB flash devices with slow firmware.
1860 * Yes, this sense key/ASC combination shouldn't
1861 * occur here. It's characteristic of these devices.
1862 */
1863 } else if (sense_valid &&
1864 sshdr.sense_key == UNIT_ATTENTION &&
1865 sshdr.asc == 0x28) {
1866 if (!spintime) {
1867 spintime_expire = jiffies + 5 * HZ;
1868 spintime = 1;
1869 }
1870 /* Wait 1 second for next try */
1871 msleep(1000);
1da177e4
LT
1872 } else {
1873 /* we don't understand the sense code, so it's
1874 * probably pointless to loop */
1875 if(!spintime) {
e73aec82
MP
1876 sd_printk(KERN_NOTICE, sdkp, "Unit Not Ready\n");
1877 sd_print_sense_hdr(sdkp, &sshdr);
1da177e4
LT
1878 }
1879 break;
1880 }
1881
4451e472 1882 } while (spintime && time_before_eq(jiffies, spintime_expire));
1da177e4
LT
1883
1884 if (spintime) {
1885 if (scsi_status_is_good(the_result))
1886 printk("ready\n");
1887 else
1888 printk("not responding...\n");
1889 }
1890}
1891
e0597d70
MP
1892
1893/*
1894 * Determine whether disk supports Data Integrity Field.
1895 */
fe542396 1896static int sd_read_protection_type(struct scsi_disk *sdkp, unsigned char *buffer)
e0597d70
MP
1897{
1898 struct scsi_device *sdp = sdkp->device;
1899 u8 type;
fe542396 1900 int ret = 0;
e0597d70
MP
1901
1902 if (scsi_device_protection(sdp) == 0 || (buffer[12] & 1) == 0)
fe542396 1903 return ret;
35e1a5d9
MP
1904
1905 type = ((buffer[12] >> 1) & 7) + 1; /* P_TYPE 0 = Type 1 */
1906
fe542396
MP
1907 if (type > SD_DIF_TYPE3_PROTECTION)
1908 ret = -ENODEV;
1909 else if (scsi_host_dif_capable(sdp->host, type))
1910 ret = 1;
1911
1912 if (sdkp->first_scan || type != sdkp->protection_type)
1913 switch (ret) {
1914 case -ENODEV:
1915 sd_printk(KERN_ERR, sdkp, "formatted with unsupported" \
1916 " protection type %u. Disabling disk!\n",
1917 type);
1918 break;
1919 case 1:
1920 sd_printk(KERN_NOTICE, sdkp,
1921 "Enabling DIF Type %u protection\n", type);
1922 break;
1923 case 0:
1924 sd_printk(KERN_NOTICE, sdkp,
1925 "Disabling DIF Type %u protection\n", type);
1926 break;
1927 }
e0597d70 1928
be922f47
MP
1929 sdkp->protection_type = type;
1930
fe542396 1931 return ret;
e0597d70
MP
1932}
1933
0da205e0
MW
1934static void read_capacity_error(struct scsi_disk *sdkp, struct scsi_device *sdp,
1935 struct scsi_sense_hdr *sshdr, int sense_valid,
1936 int the_result)
1937{
0da205e0
MW
1938 if (driver_byte(the_result) & DRIVER_SENSE)
1939 sd_print_sense_hdr(sdkp, sshdr);
1940 else
1941 sd_printk(KERN_NOTICE, sdkp, "Sense not available.\n");
1942
1943 /*
1944 * Set dirty bit for removable devices if not ready -
1945 * sometimes drives will not report this properly.
1946 */
1947 if (sdp->removable &&
1948 sense_valid && sshdr->sense_key == NOT_READY)
2bae0093 1949 set_media_not_present(sdkp);
0da205e0
MW
1950
1951 /*
1952 * We used to set media_present to 0 here to indicate no media
1953 * in the drive, but some drives fail read capacity even with
1954 * media present, so we can't do that.
1955 */
1956 sdkp->capacity = 0; /* unknown mapped to zero - as usual */
1957}
1958
1959#define RC16_LEN 32
1960#if RC16_LEN > SD_BUF_SIZE
1961#error RC16_LEN must not be more than SD_BUF_SIZE
1962#endif
1963
3233ac19
JB
1964#define READ_CAPACITY_RETRIES_ON_RESET 10
1965
0da205e0
MW
1966static int read_capacity_16(struct scsi_disk *sdkp, struct scsi_device *sdp,
1967 unsigned char *buffer)
ea73a9f2 1968{
1da177e4 1969 unsigned char cmd[16];
1da177e4
LT
1970 struct scsi_sense_hdr sshdr;
1971 int sense_valid = 0;
0da205e0 1972 int the_result;
3233ac19 1973 int retries = 3, reset_retries = READ_CAPACITY_RETRIES_ON_RESET;
ea09bcc9 1974 unsigned int alignment;
0da205e0
MW
1975 unsigned long long lba;
1976 unsigned sector_size;
1da177e4 1977
5ce524bd
HG
1978 if (sdp->no_read_capacity_16)
1979 return -EINVAL;
1980
1da177e4 1981 do {
0da205e0
MW
1982 memset(cmd, 0, 16);
1983 cmd[0] = SERVICE_ACTION_IN;
1984 cmd[1] = SAI_READ_CAPACITY_16;
1985 cmd[13] = RC16_LEN;
1986 memset(buffer, 0, RC16_LEN);
1987
ea73a9f2 1988 the_result = scsi_execute_req(sdp, cmd, DMA_FROM_DEVICE,
0da205e0
MW
1989 buffer, RC16_LEN, &sshdr,
1990 SD_TIMEOUT, SD_MAX_RETRIES, NULL);
1da177e4 1991
ea73a9f2 1992 if (media_not_present(sdkp, &sshdr))
0da205e0 1993 return -ENODEV;
1da177e4 1994
2b301307 1995 if (the_result) {
ea73a9f2 1996 sense_valid = scsi_sense_valid(&sshdr);
2b301307
MW
1997 if (sense_valid &&
1998 sshdr.sense_key == ILLEGAL_REQUEST &&
1999 (sshdr.asc == 0x20 || sshdr.asc == 0x24) &&
2000 sshdr.ascq == 0x00)
2001 /* Invalid Command Operation Code or
2002 * Invalid Field in CDB, just retry
2003 * silently with RC10 */
2004 return -EINVAL;
3233ac19
JB
2005 if (sense_valid &&
2006 sshdr.sense_key == UNIT_ATTENTION &&
2007 sshdr.asc == 0x29 && sshdr.ascq == 0x00)
2008 /* Device reset might occur several times,
2009 * give it one more chance */
2010 if (--reset_retries > 0)
2011 continue;
2b301307 2012 }
1da177e4
LT
2013 retries--;
2014
2015 } while (the_result && retries);
2016
0da205e0 2017 if (the_result) {
ef61329d 2018 sd_print_result(sdkp, "Read Capacity(16) failed", the_result);
0da205e0
MW
2019 read_capacity_error(sdkp, sdp, &sshdr, sense_valid, the_result);
2020 return -EINVAL;
2021 }
e73aec82 2022
8f76d151
DH
2023 sector_size = get_unaligned_be32(&buffer[8]);
2024 lba = get_unaligned_be64(&buffer[0]);
0da205e0 2025
fe542396
MP
2026 if (sd_read_protection_type(sdkp, buffer) < 0) {
2027 sdkp->capacity = 0;
2028 return -ENODEV;
2029 }
0da205e0
MW
2030
2031 if ((sizeof(sdkp->capacity) == 4) && (lba >= 0xffffffffULL)) {
2032 sd_printk(KERN_ERR, sdkp, "Too big for this kernel. Use a "
2033 "kernel compiled with support for large block "
2034 "devices.\n");
2035 sdkp->capacity = 0;
2036 return -EOVERFLOW;
2037 }
2038
ea09bcc9 2039 /* Logical blocks per physical block exponent */
526f7c79 2040 sdkp->physical_block_size = (1 << (buffer[13] & 0xf)) * sector_size;
ea09bcc9
MP
2041
2042 /* Lowest aligned logical block */
2043 alignment = ((buffer[14] & 0x3f) << 8 | buffer[15]) * sector_size;
2044 blk_queue_alignment_offset(sdp->request_queue, alignment);
2045 if (alignment && sdkp->first_scan)
2046 sd_printk(KERN_NOTICE, sdkp,
2047 "physical block alignment offset: %u\n", alignment);
2048
c98a0eb0
MP
2049 if (buffer[14] & 0x80) { /* LBPME */
2050 sdkp->lbpme = 1;
e339c1a7 2051
c98a0eb0
MP
2052 if (buffer[14] & 0x40) /* LBPRZ */
2053 sdkp->lbprz = 1;
e339c1a7 2054
c98a0eb0 2055 sd_config_discard(sdkp, SD_LBP_WS16);
e339c1a7
MP
2056 }
2057
0da205e0
MW
2058 sdkp->capacity = lba + 1;
2059 return sector_size;
2060}
2061
2062static int read_capacity_10(struct scsi_disk *sdkp, struct scsi_device *sdp,
2063 unsigned char *buffer)
2064{
2065 unsigned char cmd[16];
2066 struct scsi_sense_hdr sshdr;
2067 int sense_valid = 0;
2068 int the_result;
3233ac19 2069 int retries = 3, reset_retries = READ_CAPACITY_RETRIES_ON_RESET;
0da205e0
MW
2070 sector_t lba;
2071 unsigned sector_size;
2072
2073 do {
2074 cmd[0] = READ_CAPACITY;
2075 memset(&cmd[1], 0, 9);
2076 memset(buffer, 0, 8);
2077
2078 the_result = scsi_execute_req(sdp, cmd, DMA_FROM_DEVICE,
2079 buffer, 8, &sshdr,
2080 SD_TIMEOUT, SD_MAX_RETRIES, NULL);
2081
2082 if (media_not_present(sdkp, &sshdr))
2083 return -ENODEV;
2084
3233ac19 2085 if (the_result) {
0da205e0 2086 sense_valid = scsi_sense_valid(&sshdr);
3233ac19
JB
2087 if (sense_valid &&
2088 sshdr.sense_key == UNIT_ATTENTION &&
2089 sshdr.asc == 0x29 && sshdr.ascq == 0x00)
2090 /* Device reset might occur several times,
2091 * give it one more chance */
2092 if (--reset_retries > 0)
2093 continue;
2094 }
0da205e0
MW
2095 retries--;
2096
2097 } while (the_result && retries);
2098
2099 if (the_result) {
ef61329d 2100 sd_print_result(sdkp, "Read Capacity(10) failed", the_result);
0da205e0
MW
2101 read_capacity_error(sdkp, sdp, &sshdr, sense_valid, the_result);
2102 return -EINVAL;
2103 }
2104
8f76d151
DH
2105 sector_size = get_unaligned_be32(&buffer[4]);
2106 lba = get_unaligned_be32(&buffer[0]);
0da205e0 2107
5ce524bd
HG
2108 if (sdp->no_read_capacity_16 && (lba == 0xffffffff)) {
2109 /* Some buggy (usb cardreader) devices return an lba of
2110 0xffffffff when the want to report a size of 0 (with
2111 which they really mean no media is present) */
2112 sdkp->capacity = 0;
5cc10350 2113 sdkp->physical_block_size = sector_size;
5ce524bd
HG
2114 return sector_size;
2115 }
2116
0da205e0
MW
2117 if ((sizeof(sdkp->capacity) == 4) && (lba == 0xffffffff)) {
2118 sd_printk(KERN_ERR, sdkp, "Too big for this kernel. Use a "
2119 "kernel compiled with support for large block "
2120 "devices.\n");
2121 sdkp->capacity = 0;
2122 return -EOVERFLOW;
2123 }
2124
2125 sdkp->capacity = lba + 1;
526f7c79 2126 sdkp->physical_block_size = sector_size;
0da205e0
MW
2127 return sector_size;
2128}
2129
2b301307
MW
2130static int sd_try_rc16_first(struct scsi_device *sdp)
2131{
f87146bb
HR
2132 if (sdp->host->max_cmd_len < 16)
2133 return 0;
6a0bdffa
AS
2134 if (sdp->try_rc_10_first)
2135 return 0;
2b301307
MW
2136 if (sdp->scsi_level > SCSI_SPC_2)
2137 return 1;
2138 if (scsi_device_protection(sdp))
2139 return 1;
2140 return 0;
2141}
2142
0da205e0
MW
2143/*
2144 * read disk capacity
2145 */
2146static void
2147sd_read_capacity(struct scsi_disk *sdkp, unsigned char *buffer)
2148{
2149 int sector_size;
2150 struct scsi_device *sdp = sdkp->device;
70a9b873 2151 sector_t old_capacity = sdkp->capacity;
0da205e0 2152
2b301307 2153 if (sd_try_rc16_first(sdp)) {
0da205e0
MW
2154 sector_size = read_capacity_16(sdkp, sdp, buffer);
2155 if (sector_size == -EOVERFLOW)
1da177e4 2156 goto got_data;
2b301307
MW
2157 if (sector_size == -ENODEV)
2158 return;
2159 if (sector_size < 0)
2160 sector_size = read_capacity_10(sdkp, sdp, buffer);
0da205e0
MW
2161 if (sector_size < 0)
2162 return;
1da177e4 2163 } else {
0da205e0
MW
2164 sector_size = read_capacity_10(sdkp, sdp, buffer);
2165 if (sector_size == -EOVERFLOW)
2166 goto got_data;
2167 if (sector_size < 0)
2168 return;
2169 if ((sizeof(sdkp->capacity) > 4) &&
2170 (sdkp->capacity > 0xffffffffULL)) {
2171 int old_sector_size = sector_size;
2172 sd_printk(KERN_NOTICE, sdkp, "Very big device. "
2173 "Trying to use READ CAPACITY(16).\n");
2174 sector_size = read_capacity_16(sdkp, sdp, buffer);
2175 if (sector_size < 0) {
2176 sd_printk(KERN_NOTICE, sdkp,
2177 "Using 0xffffffff as device size\n");
2178 sdkp->capacity = 1 + (sector_t) 0xffffffff;
2179 sector_size = old_sector_size;
2180 goto got_data;
2181 }
2182 }
2183 }
1da177e4 2184
5c211caa
AS
2185 /* Some devices are known to return the total number of blocks,
2186 * not the highest block number. Some devices have versions
2187 * which do this and others which do not. Some devices we might
2188 * suspect of doing this but we don't know for certain.
2189 *
2190 * If we know the reported capacity is wrong, decrement it. If
2191 * we can only guess, then assume the number of blocks is even
2192 * (usually true but not always) and err on the side of lowering
2193 * the capacity.
2194 */
2195 if (sdp->fix_capacity ||
2196 (sdp->guess_capacity && (sdkp->capacity & 0x01))) {
2197 sd_printk(KERN_INFO, sdkp, "Adjusting the sector count "
2198 "from its reported value: %llu\n",
2199 (unsigned long long) sdkp->capacity);
1da177e4 2200 --sdkp->capacity;
61bf54b7
ON
2201 }
2202
1da177e4
LT
2203got_data:
2204 if (sector_size == 0) {
2205 sector_size = 512;
e73aec82
MP
2206 sd_printk(KERN_NOTICE, sdkp, "Sector size 0 reported, "
2207 "assuming 512.\n");
1da177e4
LT
2208 }
2209
2210 if (sector_size != 512 &&
2211 sector_size != 1024 &&
2212 sector_size != 2048 &&
2213 sector_size != 4096 &&
2214 sector_size != 256) {
e73aec82
MP
2215 sd_printk(KERN_NOTICE, sdkp, "Unsupported sector size %d.\n",
2216 sector_size);
1da177e4
LT
2217 /*
2218 * The user might want to re-format the drive with
2219 * a supported sectorsize. Once this happens, it
2220 * would be relatively trivial to set the thing up.
2221 * For this reason, we leave the thing in the table.
2222 */
2223 sdkp->capacity = 0;
2224 /*
2225 * set a bogus sector size so the normal read/write
2226 * logic in the block layer will eventually refuse any
2227 * request on this device without tripping over power
2228 * of two sector size assumptions
2229 */
2230 sector_size = 512;
2231 }
e1defc4f 2232 blk_queue_logical_block_size(sdp->request_queue, sector_size);
7404ad3b 2233
1da177e4 2234 {
7404ad3b 2235 char cap_str_2[10], cap_str_10[10];
520a2c27 2236 u64 sz = (u64)sdkp->capacity << ilog2(sector_size);
1da177e4 2237
7404ad3b
JB
2238 string_get_size(sz, STRING_UNITS_2, cap_str_2,
2239 sizeof(cap_str_2));
2240 string_get_size(sz, STRING_UNITS_10, cap_str_10,
2241 sizeof(cap_str_10));
1da177e4 2242
ea09bcc9 2243 if (sdkp->first_scan || old_capacity != sdkp->capacity) {
70a9b873 2244 sd_printk(KERN_NOTICE, sdkp,
ea09bcc9 2245 "%llu %d-byte logical blocks: (%s/%s)\n",
70a9b873
MP
2246 (unsigned long long)sdkp->capacity,
2247 sector_size, cap_str_10, cap_str_2);
ea09bcc9 2248
526f7c79 2249 if (sdkp->physical_block_size != sector_size)
ea09bcc9
MP
2250 sd_printk(KERN_NOTICE, sdkp,
2251 "%u-byte physical blocks\n",
526f7c79 2252 sdkp->physical_block_size);
ea09bcc9 2253 }
1da177e4
LT
2254 }
2255
bcdb247c
MP
2256 if (sdkp->capacity > 0xffffffff) {
2257 sdp->use_16_for_rw = 1;
2258 sdkp->max_xfer_blocks = SD_MAX_XFER_BLOCKS;
2259 } else
2260 sdkp->max_xfer_blocks = SD_DEF_XFER_BLOCKS;
53ad570b 2261
1da177e4
LT
2262 /* Rescale capacity to 512-byte units */
2263 if (sector_size == 4096)
2264 sdkp->capacity <<= 3;
2265 else if (sector_size == 2048)
2266 sdkp->capacity <<= 2;
2267 else if (sector_size == 1024)
2268 sdkp->capacity <<= 1;
2269 else if (sector_size == 256)
2270 sdkp->capacity >>= 1;
2271
526f7c79
MP
2272 blk_queue_physical_block_size(sdp->request_queue,
2273 sdkp->physical_block_size);
1da177e4
LT
2274 sdkp->device->sector_size = sector_size;
2275}
2276
2277/* called with buffer of length 512 */
2278static inline int
ea73a9f2
JB
2279sd_do_mode_sense(struct scsi_device *sdp, int dbd, int modepage,
2280 unsigned char *buffer, int len, struct scsi_mode_data *data,
2281 struct scsi_sense_hdr *sshdr)
1da177e4 2282{
ea73a9f2 2283 return scsi_mode_sense(sdp, dbd, modepage, buffer, len,
1cf72699 2284 SD_TIMEOUT, SD_MAX_RETRIES, data,
ea73a9f2 2285 sshdr);
1da177e4
LT
2286}
2287
2288/*
2289 * read write protect setting, if possible - called only in sd_revalidate_disk()
48970800 2290 * called with buffer of length SD_BUF_SIZE
1da177e4
LT
2291 */
2292static void
e73aec82 2293sd_read_write_protect_flag(struct scsi_disk *sdkp, unsigned char *buffer)
ea73a9f2 2294{
1da177e4 2295 int res;
ea73a9f2 2296 struct scsi_device *sdp = sdkp->device;
1da177e4 2297 struct scsi_mode_data data;
70a9b873 2298 int old_wp = sdkp->write_prot;
1da177e4
LT
2299
2300 set_disk_ro(sdkp->disk, 0);
ea73a9f2 2301 if (sdp->skip_ms_page_3f) {
b2bff6ce 2302 sd_first_printk(KERN_NOTICE, sdkp, "Assuming Write Enabled\n");
1da177e4
LT
2303 return;
2304 }
2305
ea73a9f2
JB
2306 if (sdp->use_192_bytes_for_3f) {
2307 res = sd_do_mode_sense(sdp, 0, 0x3F, buffer, 192, &data, NULL);
1da177e4
LT
2308 } else {
2309 /*
2310 * First attempt: ask for all pages (0x3F), but only 4 bytes.
2311 * We have to start carefully: some devices hang if we ask
2312 * for more than is available.
2313 */
ea73a9f2 2314 res = sd_do_mode_sense(sdp, 0, 0x3F, buffer, 4, &data, NULL);
1da177e4
LT
2315
2316 /*
2317 * Second attempt: ask for page 0 When only page 0 is
2318 * implemented, a request for page 3F may return Sense Key
2319 * 5: Illegal Request, Sense Code 24: Invalid field in
2320 * CDB.
2321 */
2322 if (!scsi_status_is_good(res))
ea73a9f2 2323 res = sd_do_mode_sense(sdp, 0, 0, buffer, 4, &data, NULL);
1da177e4
LT
2324
2325 /*
2326 * Third attempt: ask 255 bytes, as we did earlier.
2327 */
2328 if (!scsi_status_is_good(res))
ea73a9f2
JB
2329 res = sd_do_mode_sense(sdp, 0, 0x3F, buffer, 255,
2330 &data, NULL);
1da177e4
LT
2331 }
2332
2333 if (!scsi_status_is_good(res)) {
b2bff6ce 2334 sd_first_printk(KERN_WARNING, sdkp,
e73aec82 2335 "Test WP failed, assume Write Enabled\n");
1da177e4
LT
2336 } else {
2337 sdkp->write_prot = ((data.device_specific & 0x80) != 0);
2338 set_disk_ro(sdkp->disk, sdkp->write_prot);
70a9b873
MP
2339 if (sdkp->first_scan || old_wp != sdkp->write_prot) {
2340 sd_printk(KERN_NOTICE, sdkp, "Write Protect is %s\n",
2341 sdkp->write_prot ? "on" : "off");
2342 sd_printk(KERN_DEBUG, sdkp,
2343 "Mode Sense: %02x %02x %02x %02x\n",
2344 buffer[0], buffer[1], buffer[2], buffer[3]);
2345 }
1da177e4
LT
2346 }
2347}
2348
2349/*
2350 * sd_read_cache_type - called only from sd_revalidate_disk()
48970800 2351 * called with buffer of length SD_BUF_SIZE
1da177e4
LT
2352 */
2353static void
e73aec82 2354sd_read_cache_type(struct scsi_disk *sdkp, unsigned char *buffer)
631e8a13 2355{
1da177e4 2356 int len = 0, res;
ea73a9f2 2357 struct scsi_device *sdp = sdkp->device;
1da177e4 2358
631e8a13
AV
2359 int dbd;
2360 int modepage;
0bcaa111 2361 int first_len;
1da177e4
LT
2362 struct scsi_mode_data data;
2363 struct scsi_sense_hdr sshdr;
70a9b873
MP
2364 int old_wce = sdkp->WCE;
2365 int old_rcd = sdkp->RCD;
2366 int old_dpofua = sdkp->DPOFUA;
1da177e4 2367
39c60a09
JB
2368
2369 if (sdkp->cache_override)
2370 return;
2371
0bcaa111
LT
2372 first_len = 4;
2373 if (sdp->skip_ms_page_8) {
2374 if (sdp->type == TYPE_RBC)
2375 goto defaults;
2376 else {
2377 if (sdp->skip_ms_page_3f)
2378 goto defaults;
2379 modepage = 0x3F;
2380 if (sdp->use_192_bytes_for_3f)
2381 first_len = 192;
2382 dbd = 0;
2383 }
2384 } else if (sdp->type == TYPE_RBC) {
631e8a13
AV
2385 modepage = 6;
2386 dbd = 8;
2387 } else {
2388 modepage = 8;
2389 dbd = 0;
2390 }
2391
1da177e4 2392 /* cautiously ask */
0bcaa111
LT
2393 res = sd_do_mode_sense(sdp, dbd, modepage, buffer, first_len,
2394 &data, &sshdr);
1da177e4
LT
2395
2396 if (!scsi_status_is_good(res))
2397 goto bad_sense;
2398
6d73c851
AV
2399 if (!data.header_length) {
2400 modepage = 6;
0bcaa111 2401 first_len = 0;
b2bff6ce
MP
2402 sd_first_printk(KERN_ERR, sdkp,
2403 "Missing header in MODE_SENSE response\n");
6d73c851
AV
2404 }
2405
1da177e4
LT
2406 /* that went OK, now ask for the proper length */
2407 len = data.length;
2408
2409 /*
2410 * We're only interested in the first three bytes, actually.
2411 * But the data cache page is defined for the first 20.
2412 */
2413 if (len < 3)
2414 goto bad_sense;
0bcaa111 2415 else if (len > SD_BUF_SIZE) {
b2bff6ce 2416 sd_first_printk(KERN_NOTICE, sdkp, "Truncating mode parameter "
0bcaa111
LT
2417 "data from %d to %d bytes\n", len, SD_BUF_SIZE);
2418 len = SD_BUF_SIZE;
2419 }
2420 if (modepage == 0x3F && sdp->use_192_bytes_for_3f)
2421 len = 192;
1da177e4
LT
2422
2423 /* Get the data */
0bcaa111
LT
2424 if (len > first_len)
2425 res = sd_do_mode_sense(sdp, dbd, modepage, buffer, len,
2426 &data, &sshdr);
1da177e4
LT
2427
2428 if (scsi_status_is_good(res)) {
631e8a13 2429 int offset = data.header_length + data.block_descriptor_length;
1da177e4 2430
0bcaa111
LT
2431 while (offset < len) {
2432 u8 page_code = buffer[offset] & 0x3F;
2433 u8 spf = buffer[offset] & 0x40;
2434
2435 if (page_code == 8 || page_code == 6) {
2436 /* We're interested only in the first 3 bytes.
2437 */
2438 if (len - offset <= 2) {
b2bff6ce
MP
2439 sd_first_printk(KERN_ERR, sdkp,
2440 "Incomplete mode parameter "
2441 "data\n");
0bcaa111
LT
2442 goto defaults;
2443 } else {
2444 modepage = page_code;
2445 goto Page_found;
2446 }
2447 } else {
2448 /* Go to the next page */
2449 if (spf && len - offset > 3)
2450 offset += 4 + (buffer[offset+2] << 8) +
2451 buffer[offset+3];
2452 else if (!spf && len - offset > 1)
2453 offset += 2 + buffer[offset+1];
2454 else {
b2bff6ce
MP
2455 sd_first_printk(KERN_ERR, sdkp,
2456 "Incomplete mode "
2457 "parameter data\n");
0bcaa111
LT
2458 goto defaults;
2459 }
2460 }
48970800
AV
2461 }
2462
b2bff6ce 2463 sd_first_printk(KERN_ERR, sdkp, "No Caching mode page found\n");
984f1733
AS
2464 goto defaults;
2465
0bcaa111 2466 Page_found:
631e8a13
AV
2467 if (modepage == 8) {
2468 sdkp->WCE = ((buffer[offset + 2] & 0x04) != 0);
2469 sdkp->RCD = ((buffer[offset + 2] & 0x01) != 0);
2470 } else {
2471 sdkp->WCE = ((buffer[offset + 2] & 0x01) == 0);
2472 sdkp->RCD = 0;
2473 }
1da177e4 2474
007365ad 2475 sdkp->DPOFUA = (data.device_specific & 0x10) != 0;
b14bf2d0
AS
2476 if (sdp->broken_fua) {
2477 sd_first_printk(KERN_NOTICE, sdkp, "Disabling FUA\n");
2478 sdkp->DPOFUA = 0;
2479 } else if (sdkp->DPOFUA && !sdkp->device->use_10_for_rw) {
b2bff6ce 2480 sd_first_printk(KERN_NOTICE, sdkp,
e73aec82 2481 "Uses READ/WRITE(6), disabling FUA\n");
007365ad
TH
2482 sdkp->DPOFUA = 0;
2483 }
2484
2eefd57b
SRT
2485 /* No cache flush allowed for write protected devices */
2486 if (sdkp->WCE && sdkp->write_prot)
2487 sdkp->WCE = 0;
2488
70a9b873
MP
2489 if (sdkp->first_scan || old_wce != sdkp->WCE ||
2490 old_rcd != sdkp->RCD || old_dpofua != sdkp->DPOFUA)
2491 sd_printk(KERN_NOTICE, sdkp,
2492 "Write cache: %s, read cache: %s, %s\n",
2493 sdkp->WCE ? "enabled" : "disabled",
2494 sdkp->RCD ? "disabled" : "enabled",
2495 sdkp->DPOFUA ? "supports DPO and FUA"
2496 : "doesn't support DPO or FUA");
1da177e4
LT
2497
2498 return;
2499 }
2500
2501bad_sense:
ea73a9f2 2502 if (scsi_sense_valid(&sshdr) &&
1da177e4
LT
2503 sshdr.sense_key == ILLEGAL_REQUEST &&
2504 sshdr.asc == 0x24 && sshdr.ascq == 0x0)
e73aec82 2505 /* Invalid field in CDB */
b2bff6ce 2506 sd_first_printk(KERN_NOTICE, sdkp, "Cache data unavailable\n");
1da177e4 2507 else
b2bff6ce
MP
2508 sd_first_printk(KERN_ERR, sdkp,
2509 "Asking for cache data failed\n");
1da177e4
LT
2510
2511defaults:
b81478d8 2512 if (sdp->wce_default_on) {
b2bff6ce
MP
2513 sd_first_printk(KERN_NOTICE, sdkp,
2514 "Assuming drive cache: write back\n");
b81478d8
NJ
2515 sdkp->WCE = 1;
2516 } else {
b2bff6ce
MP
2517 sd_first_printk(KERN_ERR, sdkp,
2518 "Assuming drive cache: write through\n");
b81478d8
NJ
2519 sdkp->WCE = 0;
2520 }
1da177e4 2521 sdkp->RCD = 0;
48970800 2522 sdkp->DPOFUA = 0;
1da177e4
LT
2523}
2524
e0597d70
MP
2525/*
2526 * The ATO bit indicates whether the DIF application tag is available
2527 * for use by the operating system.
2528 */
439d77f7 2529static void sd_read_app_tag_own(struct scsi_disk *sdkp, unsigned char *buffer)
e0597d70
MP
2530{
2531 int res, offset;
2532 struct scsi_device *sdp = sdkp->device;
2533 struct scsi_mode_data data;
2534 struct scsi_sense_hdr sshdr;
2535
2536 if (sdp->type != TYPE_DISK)
2537 return;
2538
2539 if (sdkp->protection_type == 0)
2540 return;
2541
2542 res = scsi_mode_sense(sdp, 1, 0x0a, buffer, 36, SD_TIMEOUT,
2543 SD_MAX_RETRIES, &data, &sshdr);
2544
2545 if (!scsi_status_is_good(res) || !data.header_length ||
2546 data.length < 6) {
b2bff6ce 2547 sd_first_printk(KERN_WARNING, sdkp,
e0597d70
MP
2548 "getting Control mode page failed, assume no ATO\n");
2549
2550 if (scsi_sense_valid(&sshdr))
2551 sd_print_sense_hdr(sdkp, &sshdr);
2552
2553 return;
2554 }
2555
2556 offset = data.header_length + data.block_descriptor_length;
2557
2558 if ((buffer[offset] & 0x3f) != 0x0a) {
b2bff6ce 2559 sd_first_printk(KERN_ERR, sdkp, "ATO Got wrong page\n");
e0597d70
MP
2560 return;
2561 }
2562
2563 if ((buffer[offset + 5] & 0x80) == 0)
2564 return;
2565
2566 sdkp->ATO = 1;
2567
2568 return;
2569}
2570
d11b6916
MP
2571/**
2572 * sd_read_block_limits - Query disk device for preferred I/O sizes.
2573 * @disk: disk to query
2574 */
2575static void sd_read_block_limits(struct scsi_disk *sdkp)
2576{
2577 unsigned int sector_sz = sdkp->device->sector_size;
bb2d3de1 2578 const int vpd_len = 64;
bcdb247c 2579 u32 max_xfer_length;
e3deec09 2580 unsigned char *buffer = kmalloc(vpd_len, GFP_KERNEL);
d11b6916 2581
e3deec09
JB
2582 if (!buffer ||
2583 /* Block Limits VPD */
2584 scsi_get_vpd_page(sdkp->device, 0xb0, buffer, vpd_len))
2585 goto out;
d11b6916 2586
bcdb247c
MP
2587 max_xfer_length = get_unaligned_be32(&buffer[8]);
2588 if (max_xfer_length)
2589 sdkp->max_xfer_blocks = max_xfer_length;
2590
d11b6916
MP
2591 blk_queue_io_min(sdkp->disk->queue,
2592 get_unaligned_be16(&buffer[6]) * sector_sz);
2593 blk_queue_io_opt(sdkp->disk->queue,
2594 get_unaligned_be32(&buffer[12]) * sector_sz);
2595
c98a0eb0
MP
2596 if (buffer[3] == 0x3c) {
2597 unsigned int lba_count, desc_count;
e339c1a7 2598
5db44863 2599 sdkp->max_ws_blocks = (u32)get_unaligned_be64(&buffer[36]);
e339c1a7 2600
c98a0eb0 2601 if (!sdkp->lbpme)
045d3fe7 2602 goto out;
045d3fe7 2603
c98a0eb0
MP
2604 lba_count = get_unaligned_be32(&buffer[20]);
2605 desc_count = get_unaligned_be32(&buffer[24]);
045d3fe7 2606
c98a0eb0
MP
2607 if (lba_count && desc_count)
2608 sdkp->max_unmap_blocks = lba_count;
e339c1a7 2609
c98a0eb0 2610 sdkp->unmap_granularity = get_unaligned_be32(&buffer[28]);
e339c1a7
MP
2611
2612 if (buffer[32] & 0x80)
c98a0eb0 2613 sdkp->unmap_alignment =
e339c1a7 2614 get_unaligned_be32(&buffer[32]) & ~(1 << 31);
c98a0eb0
MP
2615
2616 if (!sdkp->lbpvpd) { /* LBP VPD page not provided */
2617
2618 if (sdkp->max_unmap_blocks)
2619 sd_config_discard(sdkp, SD_LBP_UNMAP);
2620 else
2621 sd_config_discard(sdkp, SD_LBP_WS16);
2622
2623 } else { /* LBP VPD page tells us what to use */
2624
2625 if (sdkp->lbpu && sdkp->max_unmap_blocks)
2626 sd_config_discard(sdkp, SD_LBP_UNMAP);
2627 else if (sdkp->lbpws)
2628 sd_config_discard(sdkp, SD_LBP_WS16);
2629 else if (sdkp->lbpws10)
2630 sd_config_discard(sdkp, SD_LBP_WS10);
2631 else
2632 sd_config_discard(sdkp, SD_LBP_DISABLE);
2633 }
e339c1a7
MP
2634 }
2635
e3deec09 2636 out:
d11b6916
MP
2637 kfree(buffer);
2638}
2639
3821d768
MP
2640/**
2641 * sd_read_block_characteristics - Query block dev. characteristics
2642 * @disk: disk to query
2643 */
2644static void sd_read_block_characteristics(struct scsi_disk *sdkp)
2645{
e3deec09 2646 unsigned char *buffer;
3821d768 2647 u16 rot;
bb2d3de1 2648 const int vpd_len = 64;
3821d768 2649
e3deec09 2650 buffer = kmalloc(vpd_len, GFP_KERNEL);
3821d768 2651
e3deec09
JB
2652 if (!buffer ||
2653 /* Block Device Characteristics VPD */
2654 scsi_get_vpd_page(sdkp->device, 0xb1, buffer, vpd_len))
2655 goto out;
3821d768
MP
2656
2657 rot = get_unaligned_be16(&buffer[4]);
2658
b277da0a 2659 if (rot == 1) {
3821d768 2660 queue_flag_set_unlocked(QUEUE_FLAG_NONROT, sdkp->disk->queue);
b277da0a
MS
2661 queue_flag_clear_unlocked(QUEUE_FLAG_ADD_RANDOM, sdkp->disk->queue);
2662 }
3821d768 2663
e3deec09 2664 out:
3821d768
MP
2665 kfree(buffer);
2666}
2667
045d3fe7 2668/**
c98a0eb0 2669 * sd_read_block_provisioning - Query provisioning VPD page
045d3fe7
MP
2670 * @disk: disk to query
2671 */
c98a0eb0 2672static void sd_read_block_provisioning(struct scsi_disk *sdkp)
045d3fe7
MP
2673{
2674 unsigned char *buffer;
2675 const int vpd_len = 8;
2676
c98a0eb0 2677 if (sdkp->lbpme == 0)
045d3fe7
MP
2678 return;
2679
2680 buffer = kmalloc(vpd_len, GFP_KERNEL);
2681
2682 if (!buffer || scsi_get_vpd_page(sdkp->device, 0xb2, buffer, vpd_len))
2683 goto out;
2684
c98a0eb0
MP
2685 sdkp->lbpvpd = 1;
2686 sdkp->lbpu = (buffer[5] >> 7) & 1; /* UNMAP */
2687 sdkp->lbpws = (buffer[5] >> 6) & 1; /* WRITE SAME(16) with UNMAP */
2688 sdkp->lbpws10 = (buffer[5] >> 5) & 1; /* WRITE SAME(10) with UNMAP */
045d3fe7
MP
2689
2690 out:
2691 kfree(buffer);
2692}
2693
5db44863
MP
2694static void sd_read_write_same(struct scsi_disk *sdkp, unsigned char *buffer)
2695{
66c28f97
MP
2696 struct scsi_device *sdev = sdkp->device;
2697
54b2b50c
MP
2698 if (sdev->host->no_write_same) {
2699 sdev->no_write_same = 1;
2700
2701 return;
2702 }
2703
66c28f97 2704 if (scsi_report_opcode(sdev, buffer, SD_BUF_SIZE, INQUIRY) < 0) {
af73623f
BS
2705 /* too large values might cause issues with arcmsr */
2706 int vpd_buf_len = 64;
2707
66c28f97
MP
2708 sdev->no_report_opcodes = 1;
2709
2710 /* Disable WRITE SAME if REPORT SUPPORTED OPERATION
2711 * CODES is unsupported and the device has an ATA
2712 * Information VPD page (SAT).
2713 */
af73623f 2714 if (!scsi_get_vpd_page(sdev, 0x89, buffer, vpd_buf_len))
66c28f97
MP
2715 sdev->no_write_same = 1;
2716 }
2717
2718 if (scsi_report_opcode(sdev, buffer, SD_BUF_SIZE, WRITE_SAME_16) == 1)
5db44863 2719 sdkp->ws16 = 1;
66c28f97
MP
2720
2721 if (scsi_report_opcode(sdev, buffer, SD_BUF_SIZE, WRITE_SAME) == 1)
2722 sdkp->ws10 = 1;
5db44863
MP
2723}
2724
ffd4bc2a
MP
2725static int sd_try_extended_inquiry(struct scsi_device *sdp)
2726{
c1d40a52
MP
2727 /* Attempt VPD inquiry if the device blacklist explicitly calls
2728 * for it.
2729 */
2730 if (sdp->try_vpd_pages)
2731 return 1;
ffd4bc2a
MP
2732 /*
2733 * Although VPD inquiries can go to SCSI-2 type devices,
2734 * some USB ones crash on receiving them, and the pages
2735 * we currently ask for are for SPC-3 and beyond
2736 */
09b6b51b 2737 if (sdp->scsi_level > SCSI_SPC_2 && !sdp->skip_vpd_pages)
ffd4bc2a
MP
2738 return 1;
2739 return 0;
2740}
2741
1da177e4
LT
2742/**
2743 * sd_revalidate_disk - called the first time a new disk is seen,
2744 * performs disk spin up, read_capacity, etc.
2745 * @disk: struct gendisk we care about
2746 **/
2747static int sd_revalidate_disk(struct gendisk *disk)
2748{
2749 struct scsi_disk *sdkp = scsi_disk(disk);
2750 struct scsi_device *sdp = sdkp->device;
1da177e4 2751 unsigned char *buffer;
bcdb247c 2752 unsigned int max_xfer;
1da177e4 2753
fa0d34be
MP
2754 SCSI_LOG_HLQUEUE(3, sd_printk(KERN_INFO, sdkp,
2755 "sd_revalidate_disk\n"));
1da177e4
LT
2756
2757 /*
2758 * If the device is offline, don't try and read capacity or any
2759 * of the other niceties.
2760 */
2761 if (!scsi_device_online(sdp))
2762 goto out;
2763
a6123f14 2764 buffer = kmalloc(SD_BUF_SIZE, GFP_KERNEL);
1da177e4 2765 if (!buffer) {
e73aec82
MP
2766 sd_printk(KERN_WARNING, sdkp, "sd_revalidate_disk: Memory "
2767 "allocation failure.\n");
ea73a9f2 2768 goto out;
1da177e4
LT
2769 }
2770
e73aec82 2771 sd_spinup_disk(sdkp);
1da177e4
LT
2772
2773 /*
2774 * Without media there is no reason to ask; moreover, some devices
2775 * react badly if we do.
2776 */
2777 if (sdkp->media_present) {
e73aec82 2778 sd_read_capacity(sdkp, buffer);
ffd4bc2a
MP
2779
2780 if (sd_try_extended_inquiry(sdp)) {
c98a0eb0 2781 sd_read_block_provisioning(sdkp);
ffd4bc2a
MP
2782 sd_read_block_limits(sdkp);
2783 sd_read_block_characteristics(sdkp);
2784 }
2785
e73aec82
MP
2786 sd_read_write_protect_flag(sdkp, buffer);
2787 sd_read_cache_type(sdkp, buffer);
e0597d70 2788 sd_read_app_tag_own(sdkp, buffer);
5db44863 2789 sd_read_write_same(sdkp, buffer);
1da177e4 2790 }
461d4e90 2791
70a9b873
MP
2792 sdkp->first_scan = 0;
2793
461d4e90
TH
2794 /*
2795 * We now have all cache related info, determine how we deal
4913efe4 2796 * with flush requests.
461d4e90 2797 */
cb2fb68d 2798 sd_set_flush_flag(sdkp);
461d4e90 2799
bcdb247c
MP
2800 max_xfer = min_not_zero(queue_max_hw_sectors(sdkp->disk->queue),
2801 sdkp->max_xfer_blocks);
2802 max_xfer <<= ilog2(sdp->sector_size) - 9;
2803 blk_queue_max_hw_sectors(sdkp->disk->queue, max_xfer);
1da177e4 2804 set_capacity(disk, sdkp->capacity);
5db44863 2805 sd_config_write_same(sdkp);
1da177e4
LT
2806 kfree(buffer);
2807
1da177e4
LT
2808 out:
2809 return 0;
2810}
2811
72ec24bd
TH
2812/**
2813 * sd_unlock_native_capacity - unlock native capacity
2814 * @disk: struct gendisk to set capacity for
2815 *
2816 * Block layer calls this function if it detects that partitions
2817 * on @disk reach beyond the end of the device. If the SCSI host
2818 * implements ->unlock_native_capacity() method, it's invoked to
2819 * give it a chance to adjust the device capacity.
2820 *
2821 * CONTEXT:
2822 * Defined by block layer. Might sleep.
2823 */
2824static void sd_unlock_native_capacity(struct gendisk *disk)
2825{
2826 struct scsi_device *sdev = scsi_disk(disk)->device;
2827
2828 if (sdev->host->hostt->unlock_native_capacity)
2829 sdev->host->hostt->unlock_native_capacity(sdev);
2830}
2831
3e1a7ff8
TH
2832/**
2833 * sd_format_disk_name - format disk name
2834 * @prefix: name prefix - ie. "sd" for SCSI disks
2835 * @index: index of the disk to format name for
2836 * @buf: output buffer
2837 * @buflen: length of the output buffer
2838 *
2839 * SCSI disk names starts at sda. The 26th device is sdz and the
2840 * 27th is sdaa. The last one for two lettered suffix is sdzz
2841 * which is followed by sdaaa.
2842 *
2843 * This is basically 26 base counting with one extra 'nil' entry
3ad2f3fb 2844 * at the beginning from the second digit on and can be
3e1a7ff8
TH
2845 * determined using similar method as 26 base conversion with the
2846 * index shifted -1 after each digit is computed.
2847 *
2848 * CONTEXT:
2849 * Don't care.
2850 *
2851 * RETURNS:
2852 * 0 on success, -errno on failure.
2853 */
2854static int sd_format_disk_name(char *prefix, int index, char *buf, int buflen)
2855{
2856 const int base = 'z' - 'a' + 1;
2857 char *begin = buf + strlen(prefix);
2858 char *end = buf + buflen;
2859 char *p;
2860 int unit;
2861
2862 p = end - 1;
2863 *p = '\0';
2864 unit = base;
2865 do {
2866 if (p == begin)
2867 return -EINVAL;
2868 *--p = 'a' + (index % unit);
2869 index = (index / unit) - 1;
2870 } while (index >= 0);
2871
2872 memmove(begin, p, end - p);
2873 memcpy(buf, prefix, strlen(prefix));
2874
2875 return 0;
2876}
2877
4ace92fc
AV
2878/*
2879 * The asynchronous part of sd_probe
2880 */
2881static void sd_probe_async(void *data, async_cookie_t cookie)
2882{
2883 struct scsi_disk *sdkp = data;
2884 struct scsi_device *sdp;
2885 struct gendisk *gd;
2886 u32 index;
2887 struct device *dev;
2888
2889 sdp = sdkp->device;
2890 gd = sdkp->disk;
2891 index = sdkp->index;
2892 dev = &sdp->sdev_gendev;
2893
1a03ae0f
MR
2894 gd->major = sd_major((index & 0xf0) >> 4);
2895 gd->first_minor = ((index & 0xf) << 4) | (index & 0xfff00);
2896 gd->minors = SD_MINORS;
2897
4ace92fc
AV
2898 gd->fops = &sd_fops;
2899 gd->private_data = &sdkp->driver;
2900 gd->queue = sdkp->device->request_queue;
2901
70a9b873
MP
2902 /* defaults, until the device tells us otherwise */
2903 sdp->sector_size = 512;
2904 sdkp->capacity = 0;
2905 sdkp->media_present = 1;
2906 sdkp->write_prot = 0;
39c60a09 2907 sdkp->cache_override = 0;
70a9b873
MP
2908 sdkp->WCE = 0;
2909 sdkp->RCD = 0;
2910 sdkp->ATO = 0;
2911 sdkp->first_scan = 1;
18a4d0a2 2912 sdkp->max_medium_access_timeouts = SD_MAX_MEDIUM_TIMEOUTS;
70a9b873 2913
4ace92fc
AV
2914 sd_revalidate_disk(gd);
2915
4ace92fc 2916 gd->driverfs_dev = &sdp->sdev_gendev;
97fedbbe 2917 gd->flags = GENHD_FL_EXT_DEVT;
2bae0093 2918 if (sdp->removable) {
4ace92fc 2919 gd->flags |= GENHD_FL_REMOVABLE;
2bae0093
TH
2920 gd->events |= DISK_EVENT_MEDIA_CHANGE;
2921 }
4ace92fc 2922
10c580e4 2923 blk_pm_runtime_init(sdp->request_queue, dev);
4ace92fc 2924 add_disk(gd);
fe542396
MP
2925 if (sdkp->capacity)
2926 sd_dif_config_host(sdkp);
4ace92fc 2927
3821d768
MP
2928 sd_revalidate_disk(gd);
2929
4ace92fc
AV
2930 sd_printk(KERN_NOTICE, sdkp, "Attached SCSI %sdisk\n",
2931 sdp->removable ? "removable " : "");
478a8a05 2932 scsi_autopm_put_device(sdp);
ea038f63 2933 put_device(&sdkp->dev);
4ace92fc
AV
2934}
2935
1da177e4
LT
2936/**
2937 * sd_probe - called during driver initialization and whenever a
2938 * new scsi device is attached to the system. It is called once
2939 * for each scsi device (not just disks) present.
2940 * @dev: pointer to device object
2941 *
2942 * Returns 0 if successful (or not interested in this scsi device
2943 * (e.g. scanner)); 1 when there is an error.
2944 *
2945 * Note: this function is invoked from the scsi mid-level.
2946 * This function sets up the mapping between a given
2947 * <host,channel,id,lun> (found in sdp) and new device name
2948 * (e.g. /dev/sda). More precisely it is the block device major
2949 * and minor number that is chosen here.
2950 *
2db93ce8
PU
2951 * Assume sd_probe is not re-entrant (for time being)
2952 * Also think about sd_probe() and sd_remove() running coincidentally.
1da177e4
LT
2953 **/
2954static int sd_probe(struct device *dev)
2955{
2956 struct scsi_device *sdp = to_scsi_device(dev);
2957 struct scsi_disk *sdkp;
2958 struct gendisk *gd;
439d77f7 2959 int index;
1da177e4
LT
2960 int error;
2961
6fe8c1db 2962 scsi_autopm_get_device(sdp);
1da177e4 2963 error = -ENODEV;
631e8a13 2964 if (sdp->type != TYPE_DISK && sdp->type != TYPE_MOD && sdp->type != TYPE_RBC)
1da177e4
LT
2965 goto out;
2966
9ccfc756 2967 SCSI_LOG_HLQUEUE(3, sdev_printk(KERN_INFO, sdp,
2db93ce8 2968 "sd_probe\n"));
1da177e4
LT
2969
2970 error = -ENOMEM;
24669f75 2971 sdkp = kzalloc(sizeof(*sdkp), GFP_KERNEL);
1da177e4
LT
2972 if (!sdkp)
2973 goto out;
2974
689d6fac 2975 gd = alloc_disk(SD_MINORS);
1da177e4
LT
2976 if (!gd)
2977 goto out_free;
2978
f27bac27
TH
2979 do {
2980 if (!ida_pre_get(&sd_index_ida, GFP_KERNEL))
2981 goto out_put;
1da177e4 2982
4034cc68 2983 spin_lock(&sd_index_lock);
f27bac27 2984 error = ida_get_new(&sd_index_ida, &index);
4034cc68 2985 spin_unlock(&sd_index_lock);
f27bac27 2986 } while (error == -EAGAIN);
1da177e4 2987
21208ae5
DK
2988 if (error) {
2989 sdev_printk(KERN_WARNING, sdp, "sd_probe: memory exhausted.\n");
1da177e4 2990 goto out_put;
1a03ae0f
MR
2991 }
2992
3e1a7ff8 2993 error = sd_format_disk_name("sd", index, gd->disk_name, DISK_NAME_LEN);
21208ae5
DK
2994 if (error) {
2995 sdev_printk(KERN_WARNING, sdp, "SCSI disk (sd) name length exceeded.\n");
f27bac27 2996 goto out_free_index;
21208ae5 2997 }
f27bac27 2998
1da177e4
LT
2999 sdkp->device = sdp;
3000 sdkp->driver = &sd_template;
3001 sdkp->disk = gd;
3002 sdkp->index = index;
409f3499 3003 atomic_set(&sdkp->openers, 0);
9e1a1537 3004 atomic_set(&sdkp->device->ioerr_cnt, 0);
1da177e4 3005
601e7638
JB
3006 if (!sdp->request_queue->rq_timeout) {
3007 if (sdp->type != TYPE_MOD)
3008 blk_queue_rq_timeout(sdp->request_queue, SD_TIMEOUT);
3009 else
3010 blk_queue_rq_timeout(sdp->request_queue,
3011 SD_MOD_TIMEOUT);
3012 }
3013
3014 device_initialize(&sdkp->dev);
478a8a05 3015 sdkp->dev.parent = dev;
601e7638 3016 sdkp->dev.class = &sd_disk_class;
02aa2a37 3017 dev_set_name(&sdkp->dev, "%s", dev_name(dev));
601e7638
JB
3018
3019 if (device_add(&sdkp->dev))
3020 goto out_free_index;
3021
478a8a05
AS
3022 get_device(dev);
3023 dev_set_drvdata(dev, sdkp);
601e7638 3024
ea038f63 3025 get_device(&sdkp->dev); /* prevent release before async_schedule */
a7a20d10 3026 async_schedule_domain(sd_probe_async, sdkp, &scsi_sd_probe_domain);
1da177e4
LT
3027
3028 return 0;
3029
f27bac27 3030 out_free_index:
4034cc68 3031 spin_lock(&sd_index_lock);
f27bac27 3032 ida_remove(&sd_index_ida, index);
4034cc68 3033 spin_unlock(&sd_index_lock);
6bdaa1f1 3034 out_put:
1da177e4 3035 put_disk(gd);
6bdaa1f1 3036 out_free:
1da177e4 3037 kfree(sdkp);
6bdaa1f1 3038 out:
6fe8c1db 3039 scsi_autopm_put_device(sdp);
1da177e4
LT
3040 return error;
3041}
3042
3043/**
3044 * sd_remove - called whenever a scsi disk (previously recognized by
3045 * sd_probe) is detached from the system. It is called (potentially
3046 * multiple times) during sd module unload.
3047 * @sdp: pointer to mid level scsi device object
3048 *
3049 * Note: this function is invoked from the scsi mid-level.
3050 * This function potentially frees up a device name (e.g. /dev/sdc)
3051 * that could be re-used by a subsequent sd_probe().
3052 * This function is not called when the built-in sd driver is "exit-ed".
3053 **/
3054static int sd_remove(struct device *dev)
3055{
601e7638 3056 struct scsi_disk *sdkp;
0761df9c 3057 dev_t devt;
1da177e4 3058
601e7638 3059 sdkp = dev_get_drvdata(dev);
0761df9c 3060 devt = disk_devt(sdkp->disk);
478a8a05
AS
3061 scsi_autopm_get_device(sdkp->device);
3062
3c31b52f 3063 async_synchronize_full_domain(&scsi_sd_pm_domain);
a7a20d10 3064 async_synchronize_full_domain(&scsi_sd_probe_domain);
ee959b00 3065 device_del(&sdkp->dev);
1da177e4
LT
3066 del_gendisk(sdkp->disk);
3067 sd_shutdown(dev);
39b7f1e2 3068
0761df9c
HR
3069 blk_register_region(devt, SD_MINORS, NULL,
3070 sd_default_probe, NULL, NULL);
3071
0b950672 3072 mutex_lock(&sd_ref_mutex);
39b7f1e2 3073 dev_set_drvdata(dev, NULL);
ee959b00 3074 put_device(&sdkp->dev);
0b950672 3075 mutex_unlock(&sd_ref_mutex);
1da177e4
LT
3076
3077 return 0;
3078}
3079
3080/**
3081 * scsi_disk_release - Called to free the scsi_disk structure
ee959b00 3082 * @dev: pointer to embedded class device
1da177e4 3083 *
0b950672 3084 * sd_ref_mutex must be held entering this routine. Because it is
1da177e4
LT
3085 * called on last put, you should always use the scsi_disk_get()
3086 * scsi_disk_put() helpers which manipulate the semaphore directly
ee959b00 3087 * and never do a direct put_device.
1da177e4 3088 **/
ee959b00 3089static void scsi_disk_release(struct device *dev)
1da177e4 3090{
ee959b00 3091 struct scsi_disk *sdkp = to_scsi_disk(dev);
1da177e4
LT
3092 struct gendisk *disk = sdkp->disk;
3093
4034cc68 3094 spin_lock(&sd_index_lock);
f27bac27 3095 ida_remove(&sd_index_ida, sdkp->index);
4034cc68 3096 spin_unlock(&sd_index_lock);
1da177e4
LT
3097
3098 disk->private_data = NULL;
1da177e4 3099 put_disk(disk);
39b7f1e2 3100 put_device(&sdkp->device->sdev_gendev);
1da177e4
LT
3101
3102 kfree(sdkp);
3103}
3104
cc5d2c8c 3105static int sd_start_stop_device(struct scsi_disk *sdkp, int start)
c3c94c5a
TH
3106{
3107 unsigned char cmd[6] = { START_STOP }; /* START_VALID */
3108 struct scsi_sense_hdr sshdr;
cc5d2c8c 3109 struct scsi_device *sdp = sdkp->device;
c3c94c5a
TH
3110 int res;
3111
3112 if (start)
3113 cmd[4] |= 1; /* START */
3114
d2886ea3
SR
3115 if (sdp->start_stop_pwr_cond)
3116 cmd[4] |= start ? 1 << 4 : 3 << 4; /* Active or Standby */
3117
c3c94c5a
TH
3118 if (!scsi_device_online(sdp))
3119 return -ENODEV;
3120
9b21493c
LM
3121 res = scsi_execute_req_flags(sdp, cmd, DMA_NONE, NULL, 0, &sshdr,
3122 SD_TIMEOUT, SD_MAX_RETRIES, NULL, REQ_PM);
c3c94c5a 3123 if (res) {
ef61329d 3124 sd_print_result(sdkp, "Start/Stop Unit failed", res);
c3c94c5a 3125 if (driver_byte(res) & DRIVER_SENSE)
cc5d2c8c 3126 sd_print_sense_hdr(sdkp, &sshdr);
95897910
ON
3127 if (scsi_sense_valid(&sshdr) &&
3128 /* 0x3a is medium not present */
3129 sshdr.asc == 0x3a)
3130 res = 0;
c3c94c5a
TH
3131 }
3132
95897910
ON
3133 /* SCSI error codes must not go to the generic layer */
3134 if (res)
3135 return -EIO;
3136
3137 return 0;
c3c94c5a
TH
3138}
3139
1da177e4
LT
3140/*
3141 * Send a SYNCHRONIZE CACHE instruction down to the device through
3142 * the normal SCSI command structure. Wait for the command to
3143 * complete.
3144 */
3145static void sd_shutdown(struct device *dev)
3146{
39b7f1e2 3147 struct scsi_disk *sdkp = scsi_disk_get_from_dev(dev);
1da177e4
LT
3148
3149 if (!sdkp)
3150 return; /* this can happen */
3151
54f57588
LM
3152 if (pm_runtime_suspended(dev))
3153 goto exit;
3154
95897910 3155 if (sdkp->WCE && sdkp->media_present) {
e73aec82
MP
3156 sd_printk(KERN_NOTICE, sdkp, "Synchronizing SCSI cache\n");
3157 sd_sync_cache(sdkp);
39b7f1e2 3158 }
c3c94c5a 3159
cc5d2c8c
JB
3160 if (system_state != SYSTEM_RESTART && sdkp->device->manage_start_stop) {
3161 sd_printk(KERN_NOTICE, sdkp, "Stopping disk\n");
3162 sd_start_stop_device(sdkp, 0);
c3c94c5a
TH
3163 }
3164
54f57588 3165exit:
39b7f1e2
AS
3166 scsi_disk_put(sdkp);
3167}
1da177e4 3168
95897910 3169static int sd_suspend_common(struct device *dev, bool ignore_stop_errors)
c3c94c5a 3170{
c3c94c5a 3171 struct scsi_disk *sdkp = scsi_disk_get_from_dev(dev);
09ff92fe 3172 int ret = 0;
c3c94c5a
TH
3173
3174 if (!sdkp)
3175 return 0; /* this can happen */
3176
95897910 3177 if (sdkp->WCE && sdkp->media_present) {
cc5d2c8c 3178 sd_printk(KERN_NOTICE, sdkp, "Synchronizing SCSI cache\n");
c3c94c5a 3179 ret = sd_sync_cache(sdkp);
95897910
ON
3180 if (ret) {
3181 /* ignore OFFLINE device */
3182 if (ret == -ENODEV)
3183 ret = 0;
09ff92fe 3184 goto done;
95897910 3185 }
c3c94c5a
TH
3186 }
3187
691e3d31 3188 if (sdkp->device->manage_start_stop) {
cc5d2c8c 3189 sd_printk(KERN_NOTICE, sdkp, "Stopping disk\n");
95897910 3190 /* an error is not worth aborting a system sleep */
cc5d2c8c 3191 ret = sd_start_stop_device(sdkp, 0);
95897910
ON
3192 if (ignore_stop_errors)
3193 ret = 0;
c3c94c5a
TH
3194 }
3195
09ff92fe
AS
3196done:
3197 scsi_disk_put(sdkp);
3198 return ret;
c3c94c5a
TH
3199}
3200
95897910
ON
3201static int sd_suspend_system(struct device *dev)
3202{
3203 return sd_suspend_common(dev, true);
3204}
3205
3206static int sd_suspend_runtime(struct device *dev)
3207{
3208 return sd_suspend_common(dev, false);
3209}
3210
c3c94c5a
TH
3211static int sd_resume(struct device *dev)
3212{
c3c94c5a 3213 struct scsi_disk *sdkp = scsi_disk_get_from_dev(dev);
09ff92fe 3214 int ret = 0;
c3c94c5a 3215
cc5d2c8c 3216 if (!sdkp->device->manage_start_stop)
09ff92fe 3217 goto done;
c3c94c5a 3218
cc5d2c8c 3219 sd_printk(KERN_NOTICE, sdkp, "Starting disk\n");
09ff92fe 3220 ret = sd_start_stop_device(sdkp, 1);
c3c94c5a 3221
09ff92fe
AS
3222done:
3223 scsi_disk_put(sdkp);
3224 return ret;
c3c94c5a
TH
3225}
3226
1da177e4
LT
3227/**
3228 * init_sd - entry point for this driver (both when built in or when
3229 * a module).
3230 *
3231 * Note: this function registers this driver with the scsi mid-level.
3232 **/
3233static int __init init_sd(void)
3234{
5e4009ba 3235 int majors = 0, i, err;
1da177e4
LT
3236
3237 SCSI_LOG_HLQUEUE(3, printk("init_sd: sd driver entry point\n"));
3238
0761df9c
HR
3239 for (i = 0; i < SD_MAJORS; i++) {
3240 if (register_blkdev(sd_major(i), "sd") != 0)
3241 continue;
3242 majors++;
3243 blk_register_region(sd_major(i), SD_MINORS, NULL,
3244 sd_default_probe, NULL, NULL);
3245 }
1da177e4
LT
3246
3247 if (!majors)
3248 return -ENODEV;
3249
5e4009ba
JG
3250 err = class_register(&sd_disk_class);
3251 if (err)
3252 goto err_out;
6bdaa1f1 3253
4e7392ec
MP
3254 sd_cdb_cache = kmem_cache_create("sd_ext_cdb", SD_EXT_CDB_SIZE,
3255 0, 0, NULL);
3256 if (!sd_cdb_cache) {
3257 printk(KERN_ERR "sd: can't init extended cdb cache\n");
8d964478 3258 err = -ENOMEM;
4e7392ec
MP
3259 goto err_out_class;
3260 }
3261
3262 sd_cdb_pool = mempool_create_slab_pool(SD_MEMPOOL_SIZE, sd_cdb_cache);
3263 if (!sd_cdb_pool) {
3264 printk(KERN_ERR "sd: can't init extended cdb pool\n");
8d964478 3265 err = -ENOMEM;
4e7392ec
MP
3266 goto err_out_cache;
3267 }
3268
afd5e34b
JD
3269 err = scsi_register_driver(&sd_template.gendrv);
3270 if (err)
3271 goto err_out_driver;
3272
5e4009ba
JG
3273 return 0;
3274
afd5e34b
JD
3275err_out_driver:
3276 mempool_destroy(sd_cdb_pool);
3277
4e7392ec
MP
3278err_out_cache:
3279 kmem_cache_destroy(sd_cdb_cache);
3280
5e4009ba
JG
3281err_out_class:
3282 class_unregister(&sd_disk_class);
3283err_out:
3284 for (i = 0; i < SD_MAJORS; i++)
3285 unregister_blkdev(sd_major(i), "sd");
3286 return err;
1da177e4
LT
3287}
3288
3289/**
3290 * exit_sd - exit point for this driver (when it is a module).
3291 *
3292 * Note: this function unregisters this driver from the scsi mid-level.
3293 **/
3294static void __exit exit_sd(void)
3295{
3296 int i;
3297
3298 SCSI_LOG_HLQUEUE(3, printk("exit_sd: exiting sd driver\n"));
3299
afd5e34b 3300 scsi_unregister_driver(&sd_template.gendrv);
4e7392ec
MP
3301 mempool_destroy(sd_cdb_pool);
3302 kmem_cache_destroy(sd_cdb_cache);
3303
5e4009ba
JG
3304 class_unregister(&sd_disk_class);
3305
0761df9c
HR
3306 for (i = 0; i < SD_MAJORS; i++) {
3307 blk_unregister_region(sd_major(i), SD_MINORS);
1da177e4 3308 unregister_blkdev(sd_major(i), "sd");
0761df9c 3309 }
1da177e4
LT
3310}
3311
1da177e4
LT
3312module_init(init_sd);
3313module_exit(exit_sd);
e73aec82
MP
3314
3315static void sd_print_sense_hdr(struct scsi_disk *sdkp,
3316 struct scsi_sense_hdr *sshdr)
3317{
d811b848
HR
3318 scsi_show_sense_hdr(sdkp->device,
3319 sdkp->disk ? sdkp->disk->disk_name : NULL, sshdr);
3320 scsi_show_extd_sense(sdkp->device,
3321 sdkp->disk ? sdkp->disk->disk_name : NULL,
3322 sshdr->asc, sshdr->ascq);
e73aec82
MP
3323}
3324
ef61329d
HR
3325static void sd_print_result(const struct scsi_disk *sdkp, const char *msg,
3326 int result)
e73aec82 3327{
ef61329d
HR
3328 const char *hb_string = scsi_hostbyte_string(result);
3329 const char *db_string = scsi_driverbyte_string(result);
3330
3331 if (hb_string || db_string)
3332 sd_printk(KERN_INFO, sdkp,
3333 "%s: Result: hostbyte=%s driverbyte=%s\n", msg,
3334 hb_string ? hb_string : "invalid",
3335 db_string ? db_string : "invalid");
3336 else
3337 sd_printk(KERN_INFO, sdkp,
3338 "%s: Result: hostbyte=0x%02x driverbyte=0x%02x\n",
3339 msg, host_byte(result), driver_byte(result));
e73aec82
MP
3340}
3341