1 // SPDX-License-Identifier: GPL-2.0-only
3 SCSI Tape Driver for Linux version 1.1 and newer. See the accompanying
4 file Documentation/scsi/st.rst for more information.
7 Rewritten from Dwayne Forsyth's SCSI tape driver by Kai Makisara.
8 Contribution and ideas from several people including (in alphabetical
9 order) Klaus Ehrenfried, Eugene Exarevsky, Eric Lee Green, Wolfgang Denk,
10 Steve Hirsch, Andreas Koppenh"ofer, Michael Leodolter, Eyal Lebedinsky,
11 Michael Schaefer, J"org Weule, and Eric Youngdale.
13 Copyright 1992 - 2016 Kai Makisara
14 email Kai.Makisara@kolumbus.fi
16 Some small formal changes - aeb, 950809
18 Last modified: 18-JAN-1998 Richard Gooch <rgooch@atnf.csiro.au> Devfs support
21 static const char *verstr = "20160209";
23 #include <linux/module.h>
25 #include <linux/compat.h>
27 #include <linux/kernel.h>
28 #include <linux/sched/signal.h>
30 #include <linux/init.h>
31 #include <linux/string.h>
32 #include <linux/slab.h>
33 #include <linux/errno.h>
34 #include <linux/mtio.h>
35 #include <linux/major.h>
36 #include <linux/cdrom.h>
37 #include <linux/ioctl.h>
38 #include <linux/fcntl.h>
39 #include <linux/spinlock.h>
40 #include <linux/blkdev.h>
41 #include <linux/moduleparam.h>
42 #include <linux/cdev.h>
43 #include <linux/idr.h>
44 #include <linux/delay.h>
45 #include <linux/mutex.h>
47 #include <linux/uaccess.h>
49 #include <asm/unaligned.h>
51 #include <scsi/scsi.h>
52 #include <scsi/scsi_dbg.h>
53 #include <scsi/scsi_device.h>
54 #include <scsi/scsi_driver.h>
55 #include <scsi/scsi_eh.h>
56 #include <scsi/scsi_host.h>
57 #include <scsi/scsi_ioctl.h>
61 /* The driver prints some debugging information on the console if DEBUG
62 is defined and non-zero. */
66 #define ST_DEB_MSG KERN_NOTICE
68 /* The message level for the debug messages is currently set to KERN_NOTICE
69 so that people can easily see the messages. Later when the debugging messages
70 in the drivers are more widely classified, this may be changed to KERN_DEBUG. */
72 #define DEBC(a) if (debugging) { a ; }
78 #define ST_KILOBYTE 1024
80 #include "st_options.h"
83 static int buffer_kbs;
84 static int max_sg_segs;
85 static int try_direct_io = TRY_DIRECT_IO;
86 static int try_rdio = 1;
87 static int try_wdio = 1;
88 static int debug_flag;
90 static struct class st_sysfs_class;
91 static const struct attribute_group *st_dev_groups[];
92 static const struct attribute_group *st_drv_groups[];
94 MODULE_AUTHOR("Kai Makisara");
95 MODULE_DESCRIPTION("SCSI tape (st) driver");
96 MODULE_LICENSE("GPL");
97 MODULE_ALIAS_CHARDEV_MAJOR(SCSI_TAPE_MAJOR);
98 MODULE_ALIAS_SCSI_DEVICE(TYPE_TAPE);
100 /* Set 'perm' (4th argument) to 0 to disable module_param's definition
101 * of sysfs parameters (which module_param doesn't yet support).
102 * Sysfs parameters defined explicitly later.
104 module_param_named(buffer_kbs, buffer_kbs, int, 0);
105 MODULE_PARM_DESC(buffer_kbs, "Default driver buffer size for fixed block mode (KB; 32)");
106 module_param_named(max_sg_segs, max_sg_segs, int, 0);
107 MODULE_PARM_DESC(max_sg_segs, "Maximum number of scatter/gather segments to use (256)");
108 module_param_named(try_direct_io, try_direct_io, int, 0);
109 MODULE_PARM_DESC(try_direct_io, "Try direct I/O between user buffer and tape drive (1)");
110 module_param_named(debug_flag, debug_flag, int, 0);
111 MODULE_PARM_DESC(debug_flag, "Enable DEBUG, same as setting debugging=1");
114 /* Extra parameters for testing */
115 module_param_named(try_rdio, try_rdio, int, 0);
116 MODULE_PARM_DESC(try_rdio, "Try direct read i/o when possible");
117 module_param_named(try_wdio, try_wdio, int, 0);
118 MODULE_PARM_DESC(try_wdio, "Try direct write i/o when possible");
121 static int write_threshold_kbs; /* retained for compatibility */
122 static struct st_dev_parm {
125 } parms[] __initdata = {
127 "buffer_kbs", &buffer_kbs
129 { /* Retained for compatibility with 2.4 */
130 "write_threshold_kbs", &write_threshold_kbs
136 "try_direct_io", &try_direct_io
139 "debug_flag", &debug_flag
144 /* Restrict the number of modes so that names for all are assigned */
145 #if ST_NBR_MODES > 16
146 #error "Maximum number of modes is 16"
148 /* Bit reversed order to get same names for same minors with all
150 static const char *st_formats[] = {
151 "", "r", "k", "s", "l", "t", "o", "u",
152 "m", "v", "p", "x", "a", "y", "q", "z"};
154 /* The default definitions have been moved to st_options.h */
156 #define ST_FIXED_BUFFER_SIZE (ST_FIXED_BUFFER_BLOCKS * ST_KILOBYTE)
158 /* The buffer size should fit into the 24 bits for length in the
159 6-byte SCSI read and write commands. */
160 #if ST_FIXED_BUFFER_SIZE >= (2 << 24 - 1)
161 #error "Buffer size should not exceed (2 << 24 - 1) bytes!"
164 static int debugging = DEBUG;
166 #define MAX_RETRIES 0
167 #define MAX_WRITE_RETRIES 0
168 #define MAX_READY_RETRIES 0
169 #define NO_TAPE NOT_READY
171 #define ST_TIMEOUT (900 * HZ)
172 #define ST_LONG_TIMEOUT (14000 * HZ)
174 /* Remove mode bits and auto-rewind bit (7) */
175 #define TAPE_NR(x) ( ((iminor(x) & ~255) >> (ST_NBR_MODE_BITS + 1)) | \
176 (iminor(x) & ((1 << ST_MODE_SHIFT)-1)))
177 #define TAPE_MODE(x) ((iminor(x) & ST_MODE_MASK) >> ST_MODE_SHIFT)
179 /* Construct the minor number from the device (d), mode (m), and non-rewind (n) data */
180 #define TAPE_MINOR(d, m, n) (((d & ~(255 >> (ST_NBR_MODE_BITS + 1))) << (ST_NBR_MODE_BITS + 1)) | \
181 (d & (255 >> (ST_NBR_MODE_BITS + 1))) | (m << ST_MODE_SHIFT) | ((n != 0) << 7) )
183 /* Internal ioctl to set both density (uppermost 8 bits) and blocksize (lower
185 #define SET_DENS_AND_BLK 0x10001
187 static int st_fixed_buffer_size = ST_FIXED_BUFFER_SIZE;
188 static int st_max_sg_segs = ST_MAX_SG;
190 static int modes_defined;
192 static int enlarge_buffer(struct st_buffer *, int);
193 static void clear_buffer(struct st_buffer *);
194 static void normalize_buffer(struct st_buffer *);
195 static int append_to_buffer(const char __user *, struct st_buffer *, int);
196 static int from_buffer(struct st_buffer *, char __user *, int);
197 static void move_buffer_data(struct st_buffer *, int);
199 static int sgl_map_user_pages(struct st_buffer *, const unsigned int,
200 unsigned long, size_t, int);
201 static int sgl_unmap_user_pages(struct st_buffer *, const unsigned int, int);
203 static int st_probe(struct device *);
204 static int st_remove(struct device *);
206 static struct scsi_driver st_template = {
209 .owner = THIS_MODULE,
212 .groups = st_drv_groups,
216 static int st_compression(struct scsi_tape *, int);
218 static int find_partition(struct scsi_tape *);
219 static int switch_partition(struct scsi_tape *);
221 static int st_int_ioctl(struct scsi_tape *, unsigned int, unsigned long);
223 static void scsi_tape_release(struct kref *);
225 #define to_scsi_tape(obj) container_of(obj, struct scsi_tape, kref)
227 static DEFINE_MUTEX(st_ref_mutex);
228 static DEFINE_SPINLOCK(st_index_lock);
229 static DEFINE_SPINLOCK(st_use_lock);
230 static DEFINE_IDR(st_index_idr);
234 #ifndef SIGS_FROM_OSST
235 #define SIGS_FROM_OSST \
236 {"OnStream", "SC-", "", "osst"}, \
237 {"OnStream", "DI-", "", "osst"}, \
238 {"OnStream", "DP-", "", "osst"}, \
239 {"OnStream", "USB", "", "osst"}, \
240 {"OnStream", "FW-", "", "osst"}
243 static struct scsi_tape *scsi_tape_get(int dev)
245 struct scsi_tape *STp = NULL;
247 mutex_lock(&st_ref_mutex);
248 spin_lock(&st_index_lock);
250 STp = idr_find(&st_index_idr, dev);
253 kref_get(&STp->kref);
258 if (scsi_device_get(STp->device))
264 kref_put(&STp->kref, scsi_tape_release);
267 spin_unlock(&st_index_lock);
268 mutex_unlock(&st_ref_mutex);
272 static void scsi_tape_put(struct scsi_tape *STp)
274 struct scsi_device *sdev = STp->device;
276 mutex_lock(&st_ref_mutex);
277 kref_put(&STp->kref, scsi_tape_release);
278 scsi_device_put(sdev);
279 mutex_unlock(&st_ref_mutex);
282 struct st_reject_data {
286 char *driver_hint; /* Name of the correct driver, NULL if unknown */
289 static struct st_reject_data reject_list[] = {
290 /* {"XXX", "Yy-", "", NULL}, example */
294 /* If the device signature is on the list of incompatible drives, the
295 function returns a pointer to the name of the correct driver (if known) */
296 static char * st_incompatible(struct scsi_device* SDp)
298 struct st_reject_data *rp;
300 for (rp=&(reject_list[0]); rp->vendor != NULL; rp++)
301 if (!strncmp(rp->vendor, SDp->vendor, strlen(rp->vendor)) &&
302 !strncmp(rp->model, SDp->model, strlen(rp->model)) &&
303 !strncmp(rp->rev, SDp->rev, strlen(rp->rev))) {
305 return rp->driver_hint;
313 #define st_printk(prefix, t, fmt, a...) \
314 sdev_prefix_printk(prefix, (t)->device, (t)->name, fmt, ##a)
316 #define DEBC_printk(t, fmt, a...) \
317 if (debugging) { st_printk(ST_DEB_MSG, t, fmt, ##a ); }
319 #define DEBC_printk(t, fmt, a...)
322 static void st_analyze_sense(struct st_request *SRpnt, struct st_cmdstatus *s)
325 const u8 *sense = SRpnt->sense;
327 s->have_sense = scsi_normalize_sense(SRpnt->sense,
328 SCSI_SENSE_BUFFERSIZE, &s->sense_hdr);
334 scsi_get_sense_info_fld(sense, SCSI_SENSE_BUFFERSIZE, &s->uremainder64);
335 switch (sense[0] & 0x7f) {
341 s->flags = sense[2] & 0xe0;
348 ucp = scsi_sense_desc_find(sense, SCSI_SENSE_BUFFERSIZE, 4);
349 s->flags = ucp ? (ucp[3] & 0xe0) : 0;
356 /* Convert the result to success code */
357 static int st_chk_result(struct scsi_tape *STp, struct st_request * SRpnt)
359 int result = SRpnt->result;
361 DEB(const char *stp;)
362 char *name = STp->name;
363 struct st_cmdstatus *cmdstatp;
368 cmdstatp = &STp->buffer->cmdstat;
369 st_analyze_sense(SRpnt, cmdstatp);
371 if (cmdstatp->have_sense)
372 scode = STp->buffer->cmdstat.sense_hdr.sense_key;
378 st_printk(ST_DEB_MSG, STp,
379 "Error: %x, cmd: %x %x %x %x %x %x\n", result,
380 SRpnt->cmd[0], SRpnt->cmd[1], SRpnt->cmd[2],
381 SRpnt->cmd[3], SRpnt->cmd[4], SRpnt->cmd[5]);
382 if (cmdstatp->have_sense)
383 __scsi_print_sense(STp->device, name,
384 SRpnt->sense, SCSI_SENSE_BUFFERSIZE);
386 if (!debugging) { /* Abnormal conditions for tape */
387 if (!cmdstatp->have_sense)
388 st_printk(KERN_WARNING, STp,
389 "Error %x (driver bt 0, host bt 0x%x).\n",
390 result, host_byte(result));
391 else if (cmdstatp->have_sense &&
393 scode != RECOVERED_ERROR &&
394 /* scode != UNIT_ATTENTION && */
395 scode != BLANK_CHECK &&
396 scode != VOLUME_OVERFLOW &&
397 SRpnt->cmd[0] != MODE_SENSE &&
398 SRpnt->cmd[0] != TEST_UNIT_READY) {
400 __scsi_print_sense(STp->device, name,
401 SRpnt->sense, SCSI_SENSE_BUFFERSIZE);
405 if (cmdstatp->fixed_format &&
406 STp->cln_mode >= EXTENDED_SENSE_START) { /* Only fixed format sense */
407 if (STp->cln_sense_value)
408 STp->cleaning_req |= ((SRpnt->sense[STp->cln_mode] &
409 STp->cln_sense_mask) == STp->cln_sense_value);
411 STp->cleaning_req |= ((SRpnt->sense[STp->cln_mode] &
412 STp->cln_sense_mask) != 0);
414 if (cmdstatp->have_sense &&
415 cmdstatp->sense_hdr.asc == 0 && cmdstatp->sense_hdr.ascq == 0x17)
416 STp->cleaning_req = 1; /* ASC and ASCQ => cleaning requested */
418 STp->pos_unknown |= STp->device->was_reset;
420 if (cmdstatp->have_sense &&
421 scode == RECOVERED_ERROR
422 #if ST_RECOVERED_WRITE_FATAL
423 && SRpnt->cmd[0] != WRITE_6
424 && SRpnt->cmd[0] != WRITE_FILEMARKS
427 STp->recover_count++;
432 if (SRpnt->cmd[0] == READ_6)
434 else if (SRpnt->cmd[0] == WRITE_6)
438 st_printk(ST_DEB_MSG, STp,
439 "Recovered %s error (%d).\n",
440 stp, STp->recover_count);
443 if (cmdstatp->flags == 0)
449 static struct st_request *st_allocate_request(struct scsi_tape *stp)
451 struct st_request *streq;
453 streq = kzalloc(sizeof(*streq), GFP_KERNEL);
457 st_printk(KERN_ERR, stp,
458 "Can't get SCSI request.\n");
459 if (signal_pending(current))
460 stp->buffer->syscall_result = -EINTR;
462 stp->buffer->syscall_result = -EBUSY;
468 static void st_release_request(struct st_request *streq)
473 static void st_do_stats(struct scsi_tape *STp, struct request *req)
475 struct scsi_cmnd *scmd = blk_mq_rq_to_pdu(req);
479 if (scmd->cmnd[0] == WRITE_6) {
480 now = ktime_sub(now, STp->stats->write_time);
481 atomic64_add(ktime_to_ns(now), &STp->stats->tot_write_time);
482 atomic64_add(ktime_to_ns(now), &STp->stats->tot_io_time);
483 atomic64_inc(&STp->stats->write_cnt);
485 atomic64_add(atomic_read(&STp->stats->last_write_size)
486 - STp->buffer->cmdstat.residual,
487 &STp->stats->write_byte_cnt);
488 if (STp->buffer->cmdstat.residual > 0)
489 atomic64_inc(&STp->stats->resid_cnt);
491 atomic64_add(atomic_read(&STp->stats->last_write_size),
492 &STp->stats->write_byte_cnt);
493 } else if (scmd->cmnd[0] == READ_6) {
494 now = ktime_sub(now, STp->stats->read_time);
495 atomic64_add(ktime_to_ns(now), &STp->stats->tot_read_time);
496 atomic64_add(ktime_to_ns(now), &STp->stats->tot_io_time);
497 atomic64_inc(&STp->stats->read_cnt);
499 atomic64_add(atomic_read(&STp->stats->last_read_size)
500 - STp->buffer->cmdstat.residual,
501 &STp->stats->read_byte_cnt);
502 if (STp->buffer->cmdstat.residual > 0)
503 atomic64_inc(&STp->stats->resid_cnt);
505 atomic64_add(atomic_read(&STp->stats->last_read_size),
506 &STp->stats->read_byte_cnt);
508 now = ktime_sub(now, STp->stats->other_time);
509 atomic64_add(ktime_to_ns(now), &STp->stats->tot_io_time);
510 atomic64_inc(&STp->stats->other_cnt);
512 atomic64_dec(&STp->stats->in_flight);
515 static enum rq_end_io_ret st_scsi_execute_end(struct request *req,
518 struct scsi_cmnd *scmd = blk_mq_rq_to_pdu(req);
519 struct st_request *SRpnt = req->end_io_data;
520 struct scsi_tape *STp = SRpnt->stp;
523 STp->buffer->cmdstat.midlevel_result = SRpnt->result = scmd->result;
524 STp->buffer->cmdstat.residual = scmd->resid_len;
526 st_do_stats(STp, req);
530 memcpy(SRpnt->sense, scmd->sense_buffer, SCSI_SENSE_BUFFERSIZE);
532 complete(SRpnt->waiting);
534 blk_rq_unmap_user(tmp);
535 blk_mq_free_request(req);
536 return RQ_END_IO_NONE;
539 static int st_scsi_execute(struct st_request *SRpnt, const unsigned char *cmd,
540 int data_direction, void *buffer, unsigned bufflen,
541 int timeout, int retries)
544 struct rq_map_data *mdata = &SRpnt->stp->buffer->map_data;
546 struct scsi_tape *STp = SRpnt->stp;
547 struct scsi_cmnd *scmd;
549 req = scsi_alloc_request(SRpnt->stp->device->request_queue,
550 data_direction == DMA_TO_DEVICE ?
551 REQ_OP_DRV_OUT : REQ_OP_DRV_IN, 0);
554 scmd = blk_mq_rq_to_pdu(req);
555 req->rq_flags |= RQF_QUIET;
557 mdata->null_mapped = 1;
560 err = blk_rq_map_user(req->q, req, mdata, NULL, bufflen,
563 blk_mq_free_request(req);
568 atomic64_inc(&STp->stats->in_flight);
569 if (cmd[0] == WRITE_6) {
570 atomic_set(&STp->stats->last_write_size, bufflen);
571 STp->stats->write_time = ktime_get();
572 } else if (cmd[0] == READ_6) {
573 atomic_set(&STp->stats->last_read_size, bufflen);
574 STp->stats->read_time = ktime_get();
576 STp->stats->other_time = ktime_get();
579 SRpnt->bio = req->bio;
580 scmd->cmd_len = COMMAND_SIZE(cmd[0]);
581 memcpy(scmd->cmnd, cmd, scmd->cmd_len);
582 req->timeout = timeout;
583 scmd->allowed = retries;
584 req->end_io = st_scsi_execute_end;
585 req->end_io_data = SRpnt;
587 blk_execute_rq_nowait(req, true);
591 /* Do the scsi command. Waits until command performed if do_wait is true.
592 Otherwise write_behind_check() is used to check that the command
594 static struct st_request *
595 st_do_scsi(struct st_request * SRpnt, struct scsi_tape * STp, unsigned char *cmd,
596 int bytes, int direction, int timeout, int retries, int do_wait)
598 struct completion *waiting;
599 struct rq_map_data *mdata = &STp->buffer->map_data;
602 /* if async, make sure there's no command outstanding */
603 if (!do_wait && ((STp->buffer)->last_SRpnt)) {
604 st_printk(KERN_ERR, STp,
605 "Async command already active.\n");
606 if (signal_pending(current))
607 (STp->buffer)->syscall_result = (-EINTR);
609 (STp->buffer)->syscall_result = (-EBUSY);
614 SRpnt = st_allocate_request(STp);
619 /* If async IO, set last_SRpnt. This ptr tells write_behind_check
620 which IO is outstanding. It's nulled out when the IO completes. */
622 (STp->buffer)->last_SRpnt = SRpnt;
624 waiting = &STp->wait;
625 init_completion(waiting);
626 SRpnt->waiting = waiting;
628 if (STp->buffer->do_dio) {
629 mdata->page_order = 0;
630 mdata->nr_entries = STp->buffer->sg_segs;
631 mdata->pages = STp->buffer->mapped_pages;
633 mdata->page_order = STp->buffer->reserved_page_order;
635 DIV_ROUND_UP(bytes, PAGE_SIZE << mdata->page_order);
636 mdata->pages = STp->buffer->reserved_pages;
640 memcpy(SRpnt->cmd, cmd, sizeof(SRpnt->cmd));
641 STp->buffer->cmdstat.have_sense = 0;
642 STp->buffer->syscall_result = 0;
644 ret = st_scsi_execute(SRpnt, cmd, direction, NULL, bytes, timeout,
647 /* could not allocate the buffer or request was too large */
648 (STp->buffer)->syscall_result = (-EBUSY);
649 (STp->buffer)->last_SRpnt = NULL;
650 } else if (do_wait) {
651 wait_for_completion(waiting);
652 SRpnt->waiting = NULL;
653 (STp->buffer)->syscall_result = st_chk_result(STp, SRpnt);
660 /* Handle the write-behind checking (waits for completion). Returns -ENOSPC if
661 write has been correct but EOM early warning reached, -EIO if write ended in
662 error or zero if write successful. Asynchronous writes are used only in
663 variable block mode. */
664 static int write_behind_check(struct scsi_tape * STp)
667 struct st_buffer *STbuffer;
668 struct st_partstat *STps;
669 struct st_cmdstatus *cmdstatp;
670 struct st_request *SRpnt;
672 STbuffer = STp->buffer;
673 if (!STbuffer->writing)
677 if (STp->write_pending)
683 wait_for_completion(&(STp->wait));
684 SRpnt = STbuffer->last_SRpnt;
685 STbuffer->last_SRpnt = NULL;
686 SRpnt->waiting = NULL;
688 (STp->buffer)->syscall_result = st_chk_result(STp, SRpnt);
689 st_release_request(SRpnt);
691 STbuffer->buffer_bytes -= STbuffer->writing;
692 STps = &(STp->ps[STp->partition]);
693 if (STps->drv_block >= 0) {
694 if (STp->block_size == 0)
697 STps->drv_block += STbuffer->writing / STp->block_size;
700 cmdstatp = &STbuffer->cmdstat;
701 if (STbuffer->syscall_result) {
703 if (cmdstatp->have_sense && !cmdstatp->deferred &&
704 (cmdstatp->flags & SENSE_EOM) &&
705 (cmdstatp->sense_hdr.sense_key == NO_SENSE ||
706 cmdstatp->sense_hdr.sense_key == RECOVERED_ERROR)) {
707 /* EOM at write-behind, has all data been written? */
708 if (!cmdstatp->remainder_valid ||
709 cmdstatp->uremainder64 == 0)
713 STps->drv_block = -1;
715 STbuffer->writing = 0;
717 DEB(if (debugging && retval)
718 st_printk(ST_DEB_MSG, STp,
719 "Async write error %x, return value %d.\n",
720 STbuffer->cmdstat.midlevel_result, retval);) /* end DEB */
726 /* Step over EOF if it has been inadvertently crossed (ioctl not used because
727 it messes up the block number). */
728 static int cross_eof(struct scsi_tape * STp, int forward)
730 struct st_request *SRpnt;
731 unsigned char cmd[MAX_COMMAND_SIZE];
734 cmd[1] = 0x01; /* Space FileMarks */
739 cmd[2] = cmd[3] = cmd[4] = 0xff; /* -1 filemarks */
742 DEBC_printk(STp, "Stepping over filemark %s.\n",
743 forward ? "forward" : "backward");
745 SRpnt = st_do_scsi(NULL, STp, cmd, 0, DMA_NONE,
746 STp->device->request_queue->rq_timeout,
749 return (STp->buffer)->syscall_result;
751 st_release_request(SRpnt);
754 if ((STp->buffer)->cmdstat.midlevel_result != 0)
755 st_printk(KERN_ERR, STp,
756 "Stepping over filemark %s failed.\n",
757 forward ? "forward" : "backward");
759 return (STp->buffer)->syscall_result;
763 /* Flush the write buffer (never need to write if variable blocksize). */
764 static int st_flush_write_buffer(struct scsi_tape * STp)
768 unsigned char cmd[MAX_COMMAND_SIZE];
769 struct st_request *SRpnt;
770 struct st_partstat *STps;
772 result = write_behind_check(STp);
777 if (STp->dirty == 1) {
779 transfer = STp->buffer->buffer_bytes;
780 DEBC_printk(STp, "Flushing %d bytes.\n", transfer);
782 memset(cmd, 0, MAX_COMMAND_SIZE);
785 blks = transfer / STp->block_size;
790 SRpnt = st_do_scsi(NULL, STp, cmd, transfer, DMA_TO_DEVICE,
791 STp->device->request_queue->rq_timeout,
792 MAX_WRITE_RETRIES, 1);
794 return (STp->buffer)->syscall_result;
796 STps = &(STp->ps[STp->partition]);
797 if ((STp->buffer)->syscall_result != 0) {
798 struct st_cmdstatus *cmdstatp = &STp->buffer->cmdstat;
800 if (cmdstatp->have_sense && !cmdstatp->deferred &&
801 (cmdstatp->flags & SENSE_EOM) &&
802 (cmdstatp->sense_hdr.sense_key == NO_SENSE ||
803 cmdstatp->sense_hdr.sense_key == RECOVERED_ERROR) &&
804 (!cmdstatp->remainder_valid ||
805 cmdstatp->uremainder64 == 0)) { /* All written at EOM early warning */
807 (STp->buffer)->buffer_bytes = 0;
808 if (STps->drv_block >= 0)
809 STps->drv_block += blks;
812 st_printk(KERN_ERR, STp, "Error on flush.\n");
813 STps->drv_block = (-1);
817 if (STps->drv_block >= 0)
818 STps->drv_block += blks;
820 (STp->buffer)->buffer_bytes = 0;
822 st_release_request(SRpnt);
829 /* Flush the tape buffer. The tape will be positioned correctly unless
830 seek_next is true. */
831 static int flush_buffer(struct scsi_tape *STp, int seek_next)
833 int backspace, result;
834 struct st_partstat *STps;
837 * If there was a bus reset, block further access
840 if (STp->pos_unknown)
843 if (STp->ready != ST_READY)
845 STps = &(STp->ps[STp->partition]);
846 if (STps->rw == ST_WRITING) /* Writing */
847 return st_flush_write_buffer(STp);
849 if (STp->block_size == 0)
852 backspace = ((STp->buffer)->buffer_bytes +
853 (STp->buffer)->read_pointer) / STp->block_size -
854 ((STp->buffer)->read_pointer + STp->block_size - 1) /
856 (STp->buffer)->buffer_bytes = 0;
857 (STp->buffer)->read_pointer = 0;
860 if (STps->eof == ST_FM_HIT) {
861 result = cross_eof(STp, 0); /* Back over the EOF hit */
863 STps->eof = ST_NOEOF;
865 if (STps->drv_file >= 0)
870 if (!result && backspace > 0)
871 result = st_int_ioctl(STp, MTBSR, backspace);
872 } else if (STps->eof == ST_FM_HIT) {
873 if (STps->drv_file >= 0)
876 STps->eof = ST_NOEOF;
882 /* Set the mode parameters */
883 static int set_mode_densblk(struct scsi_tape * STp, struct st_modedef * STm)
888 if (!STp->density_changed &&
889 STm->default_density >= 0 &&
890 STm->default_density != STp->density) {
891 arg = STm->default_density;
895 arg <<= MT_ST_DENSITY_SHIFT;
896 if (!STp->blksize_changed &&
897 STm->default_blksize >= 0 &&
898 STm->default_blksize != STp->block_size) {
899 arg |= STm->default_blksize;
902 arg |= STp->block_size;
904 st_int_ioctl(STp, SET_DENS_AND_BLK, arg)) {
905 st_printk(KERN_WARNING, STp,
906 "Can't set default block size to %d bytes "
908 STm->default_blksize, STm->default_density);
916 /* Lock or unlock the drive door. Don't use when st_request allocated. */
917 static int do_door_lock(struct scsi_tape * STp, int do_lock)
921 DEBC_printk(STp, "%socking drive door.\n", do_lock ? "L" : "Unl");
923 retval = scsi_set_medium_removal(STp->device,
924 do_lock ? SCSI_REMOVAL_PREVENT : SCSI_REMOVAL_ALLOW);
926 STp->door_locked = do_lock ? ST_LOCKED_EXPLICIT : ST_UNLOCKED;
928 STp->door_locked = ST_LOCK_FAILS;
933 /* Set the internal state after reset */
934 static void reset_state(struct scsi_tape *STp)
937 struct st_partstat *STps;
939 STp->pos_unknown = 0;
940 for (i = 0; i < ST_NBR_PARTITIONS; i++) {
941 STps = &(STp->ps[i]);
943 STps->eof = ST_NOEOF;
945 STps->last_block_valid = 0;
946 STps->drv_block = -1;
949 if (STp->can_partitions) {
950 STp->partition = find_partition(STp);
951 if (STp->partition < 0)
953 STp->new_partition = STp->partition;
957 /* Test if the drive is ready. Returns either one of the codes below or a negative system
959 #define CHKRES_READY 0
960 #define CHKRES_NEW_SESSION 1
961 #define CHKRES_NOT_READY 2
962 #define CHKRES_NO_TAPE 3
964 #define MAX_ATTENTIONS 10
966 static int test_ready(struct scsi_tape *STp, int do_wait)
968 int attentions, waits, max_wait, scode;
969 int retval = CHKRES_READY, new_session = 0;
970 unsigned char cmd[MAX_COMMAND_SIZE];
971 struct st_request *SRpnt = NULL;
972 struct st_cmdstatus *cmdstatp = &STp->buffer->cmdstat;
974 max_wait = do_wait ? ST_BLOCK_SECONDS : 0;
976 for (attentions=waits=0; ; ) {
977 memset((void *) &cmd[0], 0, MAX_COMMAND_SIZE);
978 cmd[0] = TEST_UNIT_READY;
979 SRpnt = st_do_scsi(SRpnt, STp, cmd, 0, DMA_NONE,
980 STp->long_timeout, MAX_READY_RETRIES, 1);
983 retval = (STp->buffer)->syscall_result;
987 if (cmdstatp->have_sense) {
989 scode = cmdstatp->sense_hdr.sense_key;
991 if (scode == UNIT_ATTENTION) { /* New media? */
993 if (attentions < MAX_ATTENTIONS) {
1003 if (scode == NOT_READY) {
1004 if (waits < max_wait) {
1005 if (msleep_interruptible(1000)) {
1013 if ((STp->device)->scsi_level >= SCSI_2 &&
1014 cmdstatp->sense_hdr.asc == 0x3a) /* Check ASC */
1015 retval = CHKRES_NO_TAPE;
1017 retval = CHKRES_NOT_READY;
1023 retval = (STp->buffer)->syscall_result;
1025 retval = new_session ? CHKRES_NEW_SESSION : CHKRES_READY;
1030 st_release_request(SRpnt);
1035 /* See if the drive is ready and gather information about the tape. Return values:
1036 < 0 negative error code from errno.h
1038 1 drive not ready (possibly no tape)
1040 static int check_tape(struct scsi_tape *STp, struct file *filp)
1042 int i, retval, new_session = 0, do_wait;
1043 unsigned char cmd[MAX_COMMAND_SIZE], saved_cleaning;
1044 unsigned short st_flags = filp->f_flags;
1045 struct st_request *SRpnt = NULL;
1046 struct st_modedef *STm;
1047 struct st_partstat *STps;
1048 struct inode *inode = file_inode(filp);
1049 int mode = TAPE_MODE(inode);
1051 STp->ready = ST_READY;
1053 if (mode != STp->current_mode) {
1054 DEBC_printk(STp, "Mode change from %d to %d.\n",
1055 STp->current_mode, mode);
1057 STp->current_mode = mode;
1059 STm = &(STp->modes[STp->current_mode]);
1061 saved_cleaning = STp->cleaning_req;
1062 STp->cleaning_req = 0;
1064 do_wait = ((filp->f_flags & O_NONBLOCK) == 0);
1065 retval = test_ready(STp, do_wait);
1070 if (retval == CHKRES_NEW_SESSION) {
1071 STp->pos_unknown = 0;
1072 STp->partition = STp->new_partition = 0;
1073 if (STp->can_partitions)
1074 STp->nbr_partitions = 1; /* This guess will be updated later
1076 for (i = 0; i < ST_NBR_PARTITIONS; i++) {
1077 STps = &(STp->ps[i]);
1079 STps->eof = ST_NOEOF;
1081 STps->last_block_valid = 0;
1082 STps->drv_block = 0;
1088 STp->cleaning_req |= saved_cleaning;
1090 if (retval == CHKRES_NOT_READY || retval == CHKRES_NO_TAPE) {
1091 if (retval == CHKRES_NO_TAPE)
1092 STp->ready = ST_NO_TAPE;
1094 STp->ready = ST_NOT_READY;
1096 STp->density = 0; /* Clear the erroneous "residue" */
1097 STp->write_prot = 0;
1098 STp->block_size = 0;
1099 STp->ps[0].drv_file = STp->ps[0].drv_block = (-1);
1100 STp->partition = STp->new_partition = 0;
1101 STp->door_locked = ST_UNLOCKED;
1102 return CHKRES_NOT_READY;
1106 if (STp->omit_blklims)
1107 STp->min_block = STp->max_block = (-1);
1109 memset((void *) &cmd[0], 0, MAX_COMMAND_SIZE);
1110 cmd[0] = READ_BLOCK_LIMITS;
1112 SRpnt = st_do_scsi(SRpnt, STp, cmd, 6, DMA_FROM_DEVICE,
1113 STp->device->request_queue->rq_timeout,
1114 MAX_READY_RETRIES, 1);
1116 retval = (STp->buffer)->syscall_result;
1120 if (!SRpnt->result && !STp->buffer->cmdstat.have_sense) {
1121 STp->max_block = ((STp->buffer)->b_data[1] << 16) |
1122 ((STp->buffer)->b_data[2] << 8) | (STp->buffer)->b_data[3];
1123 STp->min_block = ((STp->buffer)->b_data[4] << 8) |
1124 (STp->buffer)->b_data[5];
1125 if ( DEB( debugging || ) !STp->inited)
1126 st_printk(KERN_INFO, STp,
1127 "Block limits %d - %d bytes.\n",
1128 STp->min_block, STp->max_block);
1130 STp->min_block = STp->max_block = (-1);
1131 DEBC_printk(STp, "Can't read block limits.\n");
1135 memset((void *) &cmd[0], 0, MAX_COMMAND_SIZE);
1136 cmd[0] = MODE_SENSE;
1139 SRpnt = st_do_scsi(SRpnt, STp, cmd, 12, DMA_FROM_DEVICE,
1140 STp->device->request_queue->rq_timeout,
1141 MAX_READY_RETRIES, 1);
1143 retval = (STp->buffer)->syscall_result;
1147 if ((STp->buffer)->syscall_result != 0) {
1148 DEBC_printk(STp, "No Mode Sense.\n");
1149 STp->block_size = ST_DEFAULT_BLOCK; /* Educated guess (?) */
1150 (STp->buffer)->syscall_result = 0; /* Prevent error propagation */
1151 STp->drv_write_prot = 0;
1153 DEBC_printk(STp,"Mode sense. Length %d, "
1154 "medium %x, WBS %x, BLL %d\n",
1155 (STp->buffer)->b_data[0],
1156 (STp->buffer)->b_data[1],
1157 (STp->buffer)->b_data[2],
1158 (STp->buffer)->b_data[3]);
1160 if ((STp->buffer)->b_data[3] >= 8) {
1161 STp->drv_buffer = ((STp->buffer)->b_data[2] >> 4) & 7;
1162 STp->density = (STp->buffer)->b_data[4];
1163 STp->block_size = (STp->buffer)->b_data[9] * 65536 +
1164 (STp->buffer)->b_data[10] * 256 + (STp->buffer)->b_data[11];
1165 DEBC_printk(STp, "Density %x, tape length: %x, "
1168 (STp->buffer)->b_data[5] * 65536 +
1169 (STp->buffer)->b_data[6] * 256 +
1170 (STp->buffer)->b_data[7],
1173 STp->drv_write_prot = ((STp->buffer)->b_data[2] & 0x80) != 0;
1174 if (!STp->drv_buffer && STp->immediate_filemark) {
1175 st_printk(KERN_WARNING, STp,
1176 "non-buffered tape: disabling "
1177 "writing immediate filemarks\n");
1178 STp->immediate_filemark = 0;
1181 st_release_request(SRpnt);
1185 if (STp->block_size > 0)
1186 (STp->buffer)->buffer_blocks =
1187 (STp->buffer)->buffer_size / STp->block_size;
1189 (STp->buffer)->buffer_blocks = 1;
1190 (STp->buffer)->buffer_bytes = (STp->buffer)->read_pointer = 0;
1192 DEBC_printk(STp, "Block size: %d, buffer size: %d (%d blocks).\n",
1193 STp->block_size, (STp->buffer)->buffer_size,
1194 (STp->buffer)->buffer_blocks);
1196 if (STp->drv_write_prot) {
1197 STp->write_prot = 1;
1199 DEBC_printk(STp, "Write protected\n");
1202 ((st_flags & O_ACCMODE) == O_WRONLY ||
1203 (st_flags & O_ACCMODE) == O_RDWR)) {
1209 if (STp->can_partitions && STp->nbr_partitions < 1) {
1210 /* This code is reached when the device is opened for the first time
1211 after the driver has been initialized with tape in the drive and the
1212 partition support has been enabled. */
1213 DEBC_printk(STp, "Updating partition number in status.\n");
1214 if ((STp->partition = find_partition(STp)) < 0) {
1215 retval = STp->partition;
1218 STp->new_partition = STp->partition;
1219 STp->nbr_partitions = 1; /* This guess will be updated when necessary */
1222 if (new_session) { /* Change the drive parameters for the new mode */
1223 STp->density_changed = STp->blksize_changed = 0;
1224 STp->compression_changed = 0;
1225 if (!(STm->defaults_for_writes) &&
1226 (retval = set_mode_densblk(STp, STm)) < 0)
1229 if (STp->default_drvbuffer != 0xff) {
1230 if (st_int_ioctl(STp, MTSETDRVBUFFER, STp->default_drvbuffer))
1231 st_printk(KERN_WARNING, STp,
1232 "Can't set default drive "
1233 "buffering to %d.\n",
1234 STp->default_drvbuffer);
1238 return CHKRES_READY;
1245 \f/* Open the device. Needs to take the BKL only because of incrementing the SCSI host
1247 static int st_open(struct inode *inode, struct file *filp)
1249 int i, retval = (-EIO);
1251 struct scsi_tape *STp;
1252 struct st_partstat *STps;
1253 int dev = TAPE_NR(inode);
1256 * We really want to do nonseekable_open(inode, filp); here, but some
1257 * versions of tar incorrectly call lseek on tapes and bail out if that
1258 * fails. So we disallow pread() and pwrite(), but permit lseeks.
1260 filp->f_mode &= ~(FMODE_PREAD | FMODE_PWRITE);
1262 if (!(STp = scsi_tape_get(dev))) {
1266 filp->private_data = STp;
1268 spin_lock(&st_use_lock);
1270 spin_unlock(&st_use_lock);
1271 DEBC_printk(STp, "Device already in use.\n");
1277 spin_unlock(&st_use_lock);
1278 STp->rew_at_close = STp->autorew_dev = (iminor(inode) & 0x80) == 0;
1280 if (scsi_autopm_get_device(STp->device) < 0) {
1285 if (!scsi_block_when_processing_errors(STp->device)) {
1290 /* See that we have at least a one page buffer available */
1291 if (!enlarge_buffer(STp->buffer, PAGE_SIZE)) {
1292 st_printk(KERN_WARNING, STp,
1293 "Can't allocate one page tape buffer.\n");
1294 retval = (-EOVERFLOW);
1298 (STp->buffer)->cleared = 0;
1299 (STp->buffer)->writing = 0;
1300 (STp->buffer)->syscall_result = 0;
1302 STp->write_prot = ((filp->f_flags & O_ACCMODE) == O_RDONLY);
1305 for (i = 0; i < ST_NBR_PARTITIONS; i++) {
1306 STps = &(STp->ps[i]);
1309 STp->try_dio_now = STp->try_dio;
1310 STp->recover_count = 0;
1311 DEB( STp->nbr_waits = STp->nbr_finished = 0;
1312 STp->nbr_requests = STp->nbr_dio = STp->nbr_pages = 0; )
1314 retval = check_tape(STp, filp);
1317 if ((filp->f_flags & O_NONBLOCK) == 0 &&
1318 retval != CHKRES_READY) {
1319 if (STp->ready == NO_TAPE)
1320 retval = (-ENOMEDIUM);
1328 normalize_buffer(STp->buffer);
1329 spin_lock(&st_use_lock);
1331 spin_unlock(&st_use_lock);
1333 scsi_autopm_put_device(STp->device);
1340 /* Flush the tape buffer before close */
1341 static int st_flush(struct file *filp, fl_owner_t id)
1343 int result = 0, result2;
1344 unsigned char cmd[MAX_COMMAND_SIZE];
1345 struct st_request *SRpnt;
1346 struct scsi_tape *STp = filp->private_data;
1347 struct st_modedef *STm = &(STp->modes[STp->current_mode]);
1348 struct st_partstat *STps = &(STp->ps[STp->partition]);
1350 if (file_count(filp) > 1)
1353 if (STps->rw == ST_WRITING && !STp->pos_unknown) {
1354 result = st_flush_write_buffer(STp);
1355 if (result != 0 && result != (-ENOSPC))
1359 if (STp->can_partitions &&
1360 (result2 = switch_partition(STp)) < 0) {
1361 DEBC_printk(STp, "switch_partition at close failed.\n");
1367 DEBC( if (STp->nbr_requests)
1368 st_printk(KERN_DEBUG, STp,
1369 "Number of r/w requests %d, dio used in %d, "
1370 "pages %d.\n", STp->nbr_requests, STp->nbr_dio,
1373 if (STps->rw == ST_WRITING && !STp->pos_unknown) {
1374 struct st_cmdstatus *cmdstatp = &STp->buffer->cmdstat;
1377 DEBC_printk(STp, "Async write waits %d, finished %d.\n",
1378 STp->nbr_waits, STp->nbr_finished);
1380 memset(cmd, 0, MAX_COMMAND_SIZE);
1381 cmd[0] = WRITE_FILEMARKS;
1382 if (STp->immediate_filemark)
1384 cmd[4] = 1 + STp->two_fm;
1386 SRpnt = st_do_scsi(NULL, STp, cmd, 0, DMA_NONE,
1387 STp->device->request_queue->rq_timeout,
1388 MAX_WRITE_RETRIES, 1);
1390 result = (STp->buffer)->syscall_result;
1394 if (STp->buffer->syscall_result == 0 ||
1395 (cmdstatp->have_sense && !cmdstatp->deferred &&
1396 (cmdstatp->flags & SENSE_EOM) &&
1397 (cmdstatp->sense_hdr.sense_key == NO_SENSE ||
1398 cmdstatp->sense_hdr.sense_key == RECOVERED_ERROR) &&
1399 (!cmdstatp->remainder_valid || cmdstatp->uremainder64 == 0))) {
1400 /* Write successful at EOM */
1401 st_release_request(SRpnt);
1403 if (STps->drv_file >= 0)
1405 STps->drv_block = 0;
1410 else { /* Write error */
1411 st_release_request(SRpnt);
1413 st_printk(KERN_ERR, STp,
1414 "Error on write filemark.\n");
1419 DEBC_printk(STp, "Buffer flushed, %d EOF(s) written\n", cmd[4]);
1420 } else if (!STp->rew_at_close) {
1421 STps = &(STp->ps[STp->partition]);
1422 if (!STm->sysv || STps->rw != ST_READING) {
1424 result = flush_buffer(STp, 0);
1425 else if (STps->eof == ST_FM_HIT) {
1426 result = cross_eof(STp, 0);
1428 if (STps->drv_file >= 0)
1430 STps->drv_block = 0;
1433 STps->eof = ST_NOEOF;
1435 } else if ((STps->eof == ST_NOEOF &&
1436 !(result = cross_eof(STp, 1))) ||
1437 STps->eof == ST_FM_HIT) {
1438 if (STps->drv_file >= 0)
1440 STps->drv_block = 0;
1446 if (STp->rew_at_close) {
1447 result2 = st_int_ioctl(STp, MTREW, 1);
1455 /* Close the device and release it. BKL is not needed: this is the only thread
1456 accessing this tape. */
1457 static int st_release(struct inode *inode, struct file *filp)
1459 struct scsi_tape *STp = filp->private_data;
1461 if (STp->door_locked == ST_LOCKED_AUTO)
1462 do_door_lock(STp, 0);
1464 normalize_buffer(STp->buffer);
1465 spin_lock(&st_use_lock);
1467 spin_unlock(&st_use_lock);
1468 scsi_autopm_put_device(STp->device);
1474 /* The checks common to both reading and writing */
1475 static ssize_t rw_checks(struct scsi_tape *STp, struct file *filp, size_t count)
1480 * If we are in the middle of error recovery, don't let anyone
1481 * else try and use this device. Also, if error recovery fails, it
1482 * may try and take the device offline, in which case all further
1483 * access to the device is prohibited.
1485 if (!scsi_block_when_processing_errors(STp->device)) {
1490 if (STp->ready != ST_READY) {
1491 if (STp->ready == ST_NO_TAPE)
1492 retval = (-ENOMEDIUM);
1498 if (! STp->modes[STp->current_mode].defined) {
1505 * If there was a bus reset, block further access
1508 if (STp->pos_unknown) {
1518 st_printk(ST_DEB_MSG, STp,
1519 "Incorrect device.\n");
1524 if (STp->can_partitions &&
1525 (retval = switch_partition(STp)) < 0)
1528 if (STp->block_size == 0 && STp->max_block > 0 &&
1529 (count < STp->min_block || count > STp->max_block)) {
1534 if (STp->do_auto_lock && STp->door_locked == ST_UNLOCKED &&
1535 !do_door_lock(STp, 1))
1536 STp->door_locked = ST_LOCKED_AUTO;
1543 static int setup_buffering(struct scsi_tape *STp, const char __user *buf,
1544 size_t count, int is_read)
1546 int i, bufsize, retval = 0;
1547 struct st_buffer *STbp = STp->buffer;
1550 i = STp->try_dio_now && try_rdio;
1552 i = STp->try_dio_now && try_wdio;
1554 if (i && ((unsigned long)buf & queue_dma_alignment(
1555 STp->device->request_queue)) == 0) {
1556 i = sgl_map_user_pages(STbp, STbp->use_sg, (unsigned long)buf,
1557 count, (is_read ? READ : WRITE));
1560 STbp->buffer_bytes = 0; /* can be used as transfer counter */
1563 STbp->do_dio = 0; /* fall back to buffering with any error */
1564 STbp->sg_segs = STbp->do_dio;
1568 STp->nbr_pages += STbp->do_dio;
1573 DEB( STp->nbr_requests++; )
1575 if (!STbp->do_dio) {
1576 if (STp->block_size)
1577 bufsize = STp->block_size > st_fixed_buffer_size ?
1578 STp->block_size : st_fixed_buffer_size;
1581 /* Make sure that data from previous user is not leaked even if
1582 HBA does not return correct residual */
1583 if (is_read && STp->sili && !STbp->cleared)
1587 if (bufsize > STbp->buffer_size &&
1588 !enlarge_buffer(STbp, bufsize)) {
1589 st_printk(KERN_WARNING, STp,
1590 "Can't allocate %d byte tape buffer.\n",
1592 retval = (-EOVERFLOW);
1595 if (STp->block_size)
1596 STbp->buffer_blocks = bufsize / STp->block_size;
1604 /* Can be called more than once after each setup_buffer() */
1605 static void release_buffering(struct scsi_tape *STp, int is_read)
1607 struct st_buffer *STbp;
1611 sgl_unmap_user_pages(STbp, STbp->do_dio, is_read);
1620 st_write(struct file *filp, const char __user *buf, size_t count, loff_t * ppos)
1623 ssize_t i, do_count, blks, transfer;
1625 int undone, retry_eot = 0, scode;
1627 unsigned char cmd[MAX_COMMAND_SIZE];
1628 const char __user *b_point;
1629 struct st_request *SRpnt = NULL;
1630 struct scsi_tape *STp = filp->private_data;
1631 struct st_modedef *STm;
1632 struct st_partstat *STps;
1633 struct st_buffer *STbp;
1635 if (mutex_lock_interruptible(&STp->lock))
1636 return -ERESTARTSYS;
1638 retval = rw_checks(STp, filp, count);
1639 if (retval || count == 0)
1642 /* Write must be integral number of blocks */
1643 if (STp->block_size != 0 && (count % STp->block_size) != 0) {
1644 st_printk(KERN_WARNING, STp,
1645 "Write not multiple of tape block size.\n");
1650 STm = &(STp->modes[STp->current_mode]);
1651 STps = &(STp->ps[STp->partition]);
1653 if (STp->write_prot) {
1659 if (STps->rw == ST_READING) {
1660 retval = flush_buffer(STp, 0);
1663 STps->rw = ST_WRITING;
1664 } else if (STps->rw != ST_WRITING &&
1665 STps->drv_file == 0 && STps->drv_block == 0) {
1666 if ((retval = set_mode_densblk(STp, STm)) < 0)
1668 if (STm->default_compression != ST_DONT_TOUCH &&
1669 !(STp->compression_changed)) {
1670 if (st_compression(STp, (STm->default_compression == ST_YES))) {
1671 st_printk(KERN_WARNING, STp,
1672 "Can't set default compression.\n");
1673 if (modes_defined) {
1682 i = write_behind_check(STp);
1685 STps->eof = ST_EOM_OK;
1687 STps->eof = ST_EOM_ERROR;
1690 if (STps->eof == ST_EOM_OK) {
1691 STps->eof = ST_EOD_1; /* allow next write */
1695 else if (STps->eof == ST_EOM_ERROR) {
1700 /* Check the buffer readability in cases where copy_user might catch
1701 the problems after some tape movement. */
1702 if (STp->block_size != 0 &&
1704 (copy_from_user(&i, buf, 1) != 0 ||
1705 copy_from_user(&i, buf + count - 1, 1) != 0)) {
1710 retval = setup_buffering(STp, buf, count, 0);
1716 memset(cmd, 0, MAX_COMMAND_SIZE);
1718 cmd[1] = (STp->block_size != 0);
1720 STps->rw = ST_WRITING;
1723 while (count > 0 && !retry_eot) {
1729 if (STp->block_size == 0)
1732 do_count = STbp->buffer_blocks * STp->block_size -
1734 if (do_count > count)
1738 i = append_to_buffer(b_point, STbp, do_count);
1745 b_point += do_count;
1747 async_write = STp->block_size == 0 && !STbp->do_dio &&
1748 STm->do_async_writes && STps->eof < ST_EOM_OK;
1750 if (STp->block_size != 0 && STm->do_buffer_writes &&
1751 !(STp->try_dio_now && try_wdio) && STps->eof < ST_EOM_OK &&
1752 STbp->buffer_bytes < STbp->buffer_size) {
1754 /* Don't write a buffer that is not full enough. */
1755 if (!async_write && count == 0)
1760 if (STp->block_size == 0)
1761 blks = transfer = do_count;
1764 blks = STbp->buffer_bytes;
1767 blks /= STp->block_size;
1768 transfer = blks * STp->block_size;
1770 cmd[2] = blks >> 16;
1774 SRpnt = st_do_scsi(SRpnt, STp, cmd, transfer, DMA_TO_DEVICE,
1775 STp->device->request_queue->rq_timeout,
1776 MAX_WRITE_RETRIES, !async_write);
1778 retval = STbp->syscall_result;
1781 if (async_write && !STbp->syscall_result) {
1782 STbp->writing = transfer;
1783 STp->dirty = !(STbp->writing ==
1784 STbp->buffer_bytes);
1785 SRpnt = NULL; /* Prevent releasing this request! */
1786 DEB( STp->write_pending = 1; )
1790 if (STbp->syscall_result != 0) {
1791 struct st_cmdstatus *cmdstatp = &STp->buffer->cmdstat;
1793 DEBC_printk(STp, "Error on write:\n");
1794 if (cmdstatp->have_sense && (cmdstatp->flags & SENSE_EOM)) {
1795 scode = cmdstatp->sense_hdr.sense_key;
1796 if (cmdstatp->remainder_valid)
1797 undone = (int)cmdstatp->uremainder64;
1798 else if (STp->block_size == 0 &&
1799 scode == VOLUME_OVERFLOW)
1803 if (STp->block_size != 0)
1804 undone *= STp->block_size;
1805 if (undone <= do_count) {
1806 /* Only data from this write is not written */
1810 if (STp->block_size)
1811 blks = (transfer - undone) / STp->block_size;
1812 STps->eof = ST_EOM_OK;
1813 /* Continue in fixed block mode if all written
1814 in this request but still something left to write
1815 (retval left to zero)
1817 if (STp->block_size == 0 ||
1818 undone > 0 || count == 0)
1819 retval = (-ENOSPC); /* EOM within current request */
1820 DEBC_printk(STp, "EOM with %d "
1821 "bytes unwritten.\n",
1824 /* EOT within data buffered earlier (possible only
1825 in fixed block mode without direct i/o) */
1826 if (!retry_eot && !cmdstatp->deferred &&
1827 (scode == NO_SENSE || scode == RECOVERED_ERROR)) {
1828 move_buffer_data(STp->buffer, transfer - undone);
1830 if (STps->drv_block >= 0) {
1831 STps->drv_block += (transfer - undone) /
1834 STps->eof = ST_EOM_OK;
1835 DEBC_printk(STp, "Retry "
1838 STp->buffer->buffer_bytes);
1842 /* Either error within data buffered by driver or
1845 blks = do_count = 0;
1846 STps->eof = ST_EOM_ERROR;
1847 STps->drv_block = (-1); /* Too cautious? */
1848 retval = (-EIO); /* EOM for old data */
1849 DEBC_printk(STp, "EOM with "
1855 STps->drv_block = (-1); /* Too cautious? */
1856 retval = STbp->syscall_result;
1861 if (STps->drv_block >= 0) {
1862 if (STp->block_size == 0)
1863 STps->drv_block += (do_count > 0);
1865 STps->drv_block += blks;
1868 STbp->buffer_bytes = 0;
1871 if (retval || retry_eot) {
1873 retval = total - count;
1878 if (STps->eof == ST_EOD_1)
1879 STps->eof = ST_EOM_OK;
1880 else if (STps->eof != ST_EOM_OK)
1881 STps->eof = ST_NOEOF;
1882 retval = total - count;
1886 st_release_request(SRpnt);
1887 release_buffering(STp, 0);
1888 mutex_unlock(&STp->lock);
1893 /* Read data from the tape. Returns zero in the normal case, one if the
1894 eof status has changed, and the negative error code in case of a
1895 fatal error. Otherwise updates the buffer and the eof state.
1897 Does release user buffer mapping if it is set.
1899 static long read_tape(struct scsi_tape *STp, long count,
1900 struct st_request ** aSRpnt)
1902 int transfer, blks, bytes;
1903 unsigned char cmd[MAX_COMMAND_SIZE];
1904 struct st_request *SRpnt;
1905 struct st_modedef *STm;
1906 struct st_partstat *STps;
1907 struct st_buffer *STbp;
1913 STm = &(STp->modes[STp->current_mode]);
1914 STps = &(STp->ps[STp->partition]);
1915 if (STps->eof == ST_FM_HIT)
1919 if (STp->block_size == 0)
1920 blks = bytes = count;
1922 if (!(STp->try_dio_now && try_rdio) && STm->do_read_ahead) {
1923 blks = (STp->buffer)->buffer_blocks;
1924 bytes = blks * STp->block_size;
1927 if (!STbp->do_dio && bytes > (STp->buffer)->buffer_size)
1928 bytes = (STp->buffer)->buffer_size;
1929 blks = bytes / STp->block_size;
1930 bytes = blks * STp->block_size;
1934 memset(cmd, 0, MAX_COMMAND_SIZE);
1936 cmd[1] = (STp->block_size != 0);
1937 if (!cmd[1] && STp->sili)
1939 cmd[2] = blks >> 16;
1944 SRpnt = st_do_scsi(SRpnt, STp, cmd, bytes, DMA_FROM_DEVICE,
1945 STp->device->request_queue->rq_timeout,
1947 release_buffering(STp, 1);
1950 return STbp->syscall_result;
1952 STbp->read_pointer = 0;
1955 /* Something to check */
1956 if (STbp->syscall_result) {
1957 struct st_cmdstatus *cmdstatp = &STp->buffer->cmdstat;
1961 "Sense: %2x %2x %2x %2x %2x %2x %2x %2x\n",
1962 SRpnt->sense[0], SRpnt->sense[1],
1963 SRpnt->sense[2], SRpnt->sense[3],
1964 SRpnt->sense[4], SRpnt->sense[5],
1965 SRpnt->sense[6], SRpnt->sense[7]);
1966 if (cmdstatp->have_sense) {
1968 if (cmdstatp->sense_hdr.sense_key == BLANK_CHECK)
1969 cmdstatp->flags &= 0xcf; /* No need for EOM in this case */
1971 if (cmdstatp->flags != 0) { /* EOF, EOM, or ILI */
1972 /* Compute the residual count */
1973 if (cmdstatp->remainder_valid)
1974 transfer = (int)cmdstatp->uremainder64;
1977 if (cmdstatp->sense_hdr.sense_key == MEDIUM_ERROR) {
1978 if (STp->block_size == 0)
1980 /* Some drives set ILI with MEDIUM ERROR */
1981 cmdstatp->flags &= ~SENSE_ILI;
1984 if (cmdstatp->flags & SENSE_ILI) { /* ILI */
1985 if (STp->block_size == 0 &&
1987 st_printk(KERN_NOTICE, STp,
1988 "Failed to read %d "
1989 "byte block with %d "
1993 if (STps->drv_block >= 0)
1994 STps->drv_block += 1;
1995 STbp->buffer_bytes = 0;
1997 } else if (STp->block_size == 0) {
1998 STbp->buffer_bytes = bytes - transfer;
2000 st_release_request(SRpnt);
2001 SRpnt = *aSRpnt = NULL;
2002 if (transfer == blks) { /* We did not get anything, error */
2003 st_printk(KERN_NOTICE, STp,
2006 if (STps->drv_block >= 0)
2007 STps->drv_block += blks - transfer + 1;
2008 st_int_ioctl(STp, MTBSR, 1);
2011 /* We have some data, deliver it */
2012 STbp->buffer_bytes = (blks - transfer) *
2014 DEBC_printk(STp, "ILI but "
2018 STbp->buffer_bytes);
2019 if (STps->drv_block >= 0)
2020 STps->drv_block += 1;
2021 if (st_int_ioctl(STp, MTBSR, 1))
2024 } else if (cmdstatp->flags & SENSE_FMK) { /* FM overrides EOM */
2025 if (STps->eof != ST_FM_HIT)
2026 STps->eof = ST_FM_HIT;
2028 STps->eof = ST_EOD_2;
2029 if (STp->block_size == 0)
2030 STbp->buffer_bytes = 0;
2032 STbp->buffer_bytes =
2033 bytes - transfer * STp->block_size;
2034 DEBC_printk(STp, "EOF detected (%d "
2036 STbp->buffer_bytes);
2037 } else if (cmdstatp->flags & SENSE_EOM) {
2038 if (STps->eof == ST_FM)
2039 STps->eof = ST_EOD_1;
2041 STps->eof = ST_EOM_OK;
2042 if (STp->block_size == 0)
2043 STbp->buffer_bytes = bytes - transfer;
2045 STbp->buffer_bytes =
2046 bytes - transfer * STp->block_size;
2048 DEBC_printk(STp, "EOM detected (%d "
2050 STbp->buffer_bytes);
2053 /* end of EOF, EOM, ILI test */
2054 else { /* nonzero sense key */
2055 DEBC_printk(STp, "Tape error while reading.\n");
2056 STps->drv_block = (-1);
2057 if (STps->eof == ST_FM &&
2058 cmdstatp->sense_hdr.sense_key == BLANK_CHECK) {
2059 DEBC_printk(STp, "Zero returned for "
2060 "first BLANK CHECK "
2062 STps->eof = ST_EOD_2; /* First BLANK_CHECK after FM */
2063 } else /* Some other extended sense code */
2067 if (STbp->buffer_bytes < 0) /* Caused by bogus sense data */
2068 STbp->buffer_bytes = 0;
2070 /* End of extended sense test */
2071 else { /* Non-extended sense */
2072 retval = STbp->syscall_result;
2076 /* End of error handling */
2077 else { /* Read successful */
2078 STbp->buffer_bytes = bytes;
2079 if (STp->sili) /* In fixed block mode residual is always zero here */
2080 STbp->buffer_bytes -= STp->buffer->cmdstat.residual;
2083 if (STps->drv_block >= 0) {
2084 if (STp->block_size == 0)
2087 STps->drv_block += STbp->buffer_bytes / STp->block_size;
2095 st_read(struct file *filp, char __user *buf, size_t count, loff_t * ppos)
2099 ssize_t i, transfer;
2100 int special, do_dio = 0;
2101 struct st_request *SRpnt = NULL;
2102 struct scsi_tape *STp = filp->private_data;
2103 struct st_modedef *STm;
2104 struct st_partstat *STps;
2105 struct st_buffer *STbp = STp->buffer;
2107 if (mutex_lock_interruptible(&STp->lock))
2108 return -ERESTARTSYS;
2110 retval = rw_checks(STp, filp, count);
2111 if (retval || count == 0)
2114 STm = &(STp->modes[STp->current_mode]);
2115 if (STp->block_size != 0 && (count % STp->block_size) != 0) {
2116 if (!STm->do_read_ahead) {
2117 retval = (-EINVAL); /* Read must be integral number of blocks */
2120 STp->try_dio_now = 0; /* Direct i/o can't handle split blocks */
2123 STps = &(STp->ps[STp->partition]);
2124 if (STps->rw == ST_WRITING) {
2125 retval = flush_buffer(STp, 0);
2128 STps->rw = ST_READING;
2131 if (debugging && STps->eof != ST_NOEOF)
2132 st_printk(ST_DEB_MSG, STp,
2133 "EOF/EOM flag up (%d). Bytes %d\n",
2134 STps->eof, STbp->buffer_bytes);
2137 retval = setup_buffering(STp, buf, count, 1);
2140 do_dio = STbp->do_dio;
2142 if (STbp->buffer_bytes == 0 &&
2143 STps->eof >= ST_EOD_1) {
2144 if (STps->eof < ST_EOD) {
2149 retval = (-EIO); /* EOM or Blank Check */
2154 /* Check the buffer writability before any tape movement. Don't alter
2156 if (copy_from_user(&i, buf, 1) != 0 ||
2157 copy_to_user(buf, &i, 1) != 0 ||
2158 copy_from_user(&i, buf + count - 1, 1) != 0 ||
2159 copy_to_user(buf + count - 1, &i, 1) != 0) {
2165 STps->rw = ST_READING;
2168 /* Loop until enough data in buffer or a special condition found */
2169 for (total = 0, special = 0; total < count && !special;) {
2171 /* Get new data if the buffer is empty */
2172 if (STbp->buffer_bytes == 0) {
2173 special = read_tape(STp, count - total, &SRpnt);
2174 if (special < 0) { /* No need to continue read */
2180 /* Move the data from driver buffer to user buffer */
2181 if (STbp->buffer_bytes > 0) {
2183 if (debugging && STps->eof != ST_NOEOF)
2184 st_printk(ST_DEB_MSG, STp,
2185 "EOF up (%d). Left %d, needed %d.\n",
2186 STps->eof, STbp->buffer_bytes,
2187 (int)(count - total));
2189 transfer = STbp->buffer_bytes < count - total ?
2190 STbp->buffer_bytes : count - total;
2192 i = from_buffer(STbp, buf, transfer);
2202 if (STp->block_size == 0)
2203 break; /* Read only one variable length block */
2205 } /* for (total = 0, special = 0;
2206 total < count && !special; ) */
2208 /* Change the eof state if no data from tape or buffer */
2210 if (STps->eof == ST_FM_HIT) {
2212 STps->drv_block = 0;
2213 if (STps->drv_file >= 0)
2215 } else if (STps->eof == ST_EOD_1) {
2216 STps->eof = ST_EOD_2;
2217 STps->drv_block = 0;
2218 if (STps->drv_file >= 0)
2220 } else if (STps->eof == ST_EOD_2)
2222 } else if (STps->eof == ST_FM)
2223 STps->eof = ST_NOEOF;
2227 if (SRpnt != NULL) {
2228 st_release_request(SRpnt);
2232 release_buffering(STp, 1);
2233 STbp->buffer_bytes = 0;
2235 mutex_unlock(&STp->lock);
2243 /* Set the driver options */
2244 static void st_log_options(struct scsi_tape * STp, struct st_modedef * STm)
2247 st_printk(KERN_INFO, STp,
2248 "Mode %d options: buffer writes: %d, "
2249 "async writes: %d, read ahead: %d\n",
2250 STp->current_mode, STm->do_buffer_writes,
2251 STm->do_async_writes, STm->do_read_ahead);
2252 st_printk(KERN_INFO, STp,
2253 " can bsr: %d, two FMs: %d, "
2254 "fast mteom: %d, auto lock: %d,\n",
2255 STp->can_bsr, STp->two_fm, STp->fast_mteom,
2257 st_printk(KERN_INFO, STp,
2258 " defs for wr: %d, no block limits: %d, "
2259 "partitions: %d, s2 log: %d\n",
2260 STm->defaults_for_writes, STp->omit_blklims,
2261 STp->can_partitions, STp->scsi2_logical);
2262 st_printk(KERN_INFO, STp,
2263 " sysv: %d nowait: %d sili: %d "
2264 "nowait_filemark: %d\n",
2265 STm->sysv, STp->immediate, STp->sili,
2266 STp->immediate_filemark);
2267 st_printk(KERN_INFO, STp, " debugging: %d\n", debugging);
2273 static int st_set_options(struct scsi_tape *STp, long options)
2277 struct st_modedef *STm;
2278 struct cdev *cd0, *cd1;
2279 struct device *d0, *d1;
2281 STm = &(STp->modes[STp->current_mode]);
2282 if (!STm->defined) {
2283 cd0 = STm->cdevs[0];
2284 cd1 = STm->cdevs[1];
2287 memcpy(STm, &(STp->modes[0]), sizeof(struct st_modedef));
2288 STm->cdevs[0] = cd0;
2289 STm->cdevs[1] = cd1;
2293 DEBC_printk(STp, "Initialized mode %d definition from mode 0\n",
2297 code = options & MT_ST_OPTIONS;
2298 if (code == MT_ST_BOOLEANS) {
2299 STm->do_buffer_writes = (options & MT_ST_BUFFER_WRITES) != 0;
2300 STm->do_async_writes = (options & MT_ST_ASYNC_WRITES) != 0;
2301 STm->defaults_for_writes = (options & MT_ST_DEF_WRITES) != 0;
2302 STm->do_read_ahead = (options & MT_ST_READ_AHEAD) != 0;
2303 STp->two_fm = (options & MT_ST_TWO_FM) != 0;
2304 STp->fast_mteom = (options & MT_ST_FAST_MTEOM) != 0;
2305 STp->do_auto_lock = (options & MT_ST_AUTO_LOCK) != 0;
2306 STp->can_bsr = (options & MT_ST_CAN_BSR) != 0;
2307 STp->omit_blklims = (options & MT_ST_NO_BLKLIMS) != 0;
2308 if ((STp->device)->scsi_level >= SCSI_2)
2309 STp->can_partitions = (options & MT_ST_CAN_PARTITIONS) != 0;
2310 STp->scsi2_logical = (options & MT_ST_SCSI2LOGICAL) != 0;
2311 STp->immediate = (options & MT_ST_NOWAIT) != 0;
2312 STp->immediate_filemark = (options & MT_ST_NOWAIT_EOF) != 0;
2313 STm->sysv = (options & MT_ST_SYSV) != 0;
2314 STp->sili = (options & MT_ST_SILI) != 0;
2315 DEB( debugging = (options & MT_ST_DEBUGGING) != 0;
2316 st_log_options(STp, STm); )
2317 } else if (code == MT_ST_SETBOOLEANS || code == MT_ST_CLEARBOOLEANS) {
2318 value = (code == MT_ST_SETBOOLEANS);
2319 if ((options & MT_ST_BUFFER_WRITES) != 0)
2320 STm->do_buffer_writes = value;
2321 if ((options & MT_ST_ASYNC_WRITES) != 0)
2322 STm->do_async_writes = value;
2323 if ((options & MT_ST_DEF_WRITES) != 0)
2324 STm->defaults_for_writes = value;
2325 if ((options & MT_ST_READ_AHEAD) != 0)
2326 STm->do_read_ahead = value;
2327 if ((options & MT_ST_TWO_FM) != 0)
2328 STp->two_fm = value;
2329 if ((options & MT_ST_FAST_MTEOM) != 0)
2330 STp->fast_mteom = value;
2331 if ((options & MT_ST_AUTO_LOCK) != 0)
2332 STp->do_auto_lock = value;
2333 if ((options & MT_ST_CAN_BSR) != 0)
2334 STp->can_bsr = value;
2335 if ((options & MT_ST_NO_BLKLIMS) != 0)
2336 STp->omit_blklims = value;
2337 if ((STp->device)->scsi_level >= SCSI_2 &&
2338 (options & MT_ST_CAN_PARTITIONS) != 0)
2339 STp->can_partitions = value;
2340 if ((options & MT_ST_SCSI2LOGICAL) != 0)
2341 STp->scsi2_logical = value;
2342 if ((options & MT_ST_NOWAIT) != 0)
2343 STp->immediate = value;
2344 if ((options & MT_ST_NOWAIT_EOF) != 0)
2345 STp->immediate_filemark = value;
2346 if ((options & MT_ST_SYSV) != 0)
2348 if ((options & MT_ST_SILI) != 0)
2351 if ((options & MT_ST_DEBUGGING) != 0)
2353 st_log_options(STp, STm); )
2354 } else if (code == MT_ST_WRITE_THRESHOLD) {
2355 /* Retained for compatibility */
2356 } else if (code == MT_ST_DEF_BLKSIZE) {
2357 value = (options & ~MT_ST_OPTIONS);
2358 if (value == ~MT_ST_OPTIONS) {
2359 STm->default_blksize = (-1);
2360 DEBC_printk(STp, "Default block size disabled.\n");
2362 STm->default_blksize = value;
2363 DEBC_printk(STp,"Default block size set to "
2364 "%d bytes.\n", STm->default_blksize);
2365 if (STp->ready == ST_READY) {
2366 STp->blksize_changed = 0;
2367 set_mode_densblk(STp, STm);
2370 } else if (code == MT_ST_TIMEOUTS) {
2371 value = (options & ~MT_ST_OPTIONS);
2372 if ((value & MT_ST_SET_LONG_TIMEOUT) != 0) {
2373 STp->long_timeout = (value & ~MT_ST_SET_LONG_TIMEOUT) * HZ;
2374 DEBC_printk(STp, "Long timeout set to %d seconds.\n",
2375 (value & ~MT_ST_SET_LONG_TIMEOUT));
2377 blk_queue_rq_timeout(STp->device->request_queue,
2379 DEBC_printk(STp, "Normal timeout set to %d seconds.\n",
2382 } else if (code == MT_ST_SET_CLN) {
2383 value = (options & ~MT_ST_OPTIONS) & 0xff;
2385 (value < EXTENDED_SENSE_START ||
2386 value >= SCSI_SENSE_BUFFERSIZE))
2388 STp->cln_mode = value;
2389 STp->cln_sense_mask = (options >> 8) & 0xff;
2390 STp->cln_sense_value = (options >> 16) & 0xff;
2391 st_printk(KERN_INFO, STp,
2392 "Cleaning request mode %d, mask %02x, value %02x\n",
2393 value, STp->cln_sense_mask, STp->cln_sense_value);
2394 } else if (code == MT_ST_DEF_OPTIONS) {
2395 code = (options & ~MT_ST_CLEAR_DEFAULT);
2396 value = (options & MT_ST_CLEAR_DEFAULT);
2397 if (code == MT_ST_DEF_DENSITY) {
2398 if (value == MT_ST_CLEAR_DEFAULT) {
2399 STm->default_density = (-1);
2401 "Density default disabled.\n");
2403 STm->default_density = value & 0xff;
2404 DEBC_printk(STp, "Density default set to %x\n",
2405 STm->default_density);
2406 if (STp->ready == ST_READY) {
2407 STp->density_changed = 0;
2408 set_mode_densblk(STp, STm);
2411 } else if (code == MT_ST_DEF_DRVBUFFER) {
2412 if (value == MT_ST_CLEAR_DEFAULT) {
2413 STp->default_drvbuffer = 0xff;
2415 "Drive buffer default disabled.\n");
2417 STp->default_drvbuffer = value & 7;
2419 "Drive buffer default set to %x\n",
2420 STp->default_drvbuffer);
2421 if (STp->ready == ST_READY)
2422 st_int_ioctl(STp, MTSETDRVBUFFER, STp->default_drvbuffer);
2424 } else if (code == MT_ST_DEF_COMPRESSION) {
2425 if (value == MT_ST_CLEAR_DEFAULT) {
2426 STm->default_compression = ST_DONT_TOUCH;
2428 "Compression default disabled.\n");
2430 if ((value & 0xff00) != 0) {
2431 STp->c_algo = (value & 0xff00) >> 8;
2432 DEBC_printk(STp, "Compression "
2433 "algorithm set to 0x%x.\n",
2436 if ((value & 0xff) != 0xff) {
2437 STm->default_compression = (value & 1 ? ST_YES : ST_NO);
2438 DEBC_printk(STp, "Compression default "
2441 if (STp->ready == ST_READY) {
2442 STp->compression_changed = 0;
2443 st_compression(STp, (STm->default_compression == ST_YES));
2454 #define MODE_HEADER_LENGTH 4
2456 /* Mode header and page byte offsets */
2457 #define MH_OFF_DATA_LENGTH 0
2458 #define MH_OFF_MEDIUM_TYPE 1
2459 #define MH_OFF_DEV_SPECIFIC 2
2460 #define MH_OFF_BDESCS_LENGTH 3
2461 #define MP_OFF_PAGE_NBR 0
2462 #define MP_OFF_PAGE_LENGTH 1
2464 /* Mode header and page bit masks */
2465 #define MH_BIT_WP 0x80
2466 #define MP_MSK_PAGE_NBR 0x3f
2468 /* Don't return block descriptors */
2469 #define MODE_SENSE_OMIT_BDESCS 0x08
2471 #define MODE_SELECT_PAGE_FORMAT 0x10
2473 /* Read a mode page into the tape buffer. The block descriptors are included
2474 if incl_block_descs is true. The page control is ored to the page number
2475 parameter, if necessary. */
2476 static int read_mode_page(struct scsi_tape *STp, int page, int omit_block_descs)
2478 unsigned char cmd[MAX_COMMAND_SIZE];
2479 struct st_request *SRpnt;
2481 memset(cmd, 0, MAX_COMMAND_SIZE);
2482 cmd[0] = MODE_SENSE;
2483 if (omit_block_descs)
2484 cmd[1] = MODE_SENSE_OMIT_BDESCS;
2488 SRpnt = st_do_scsi(NULL, STp, cmd, cmd[4], DMA_FROM_DEVICE,
2489 STp->device->request_queue->rq_timeout, 0, 1);
2491 return (STp->buffer)->syscall_result;
2493 st_release_request(SRpnt);
2495 return STp->buffer->syscall_result;
2499 /* Send the mode page in the tape buffer to the drive. Assumes that the mode data
2500 in the buffer is correctly formatted. The long timeout is used if slow is non-zero. */
2501 static int write_mode_page(struct scsi_tape *STp, int page, int slow)
2504 unsigned char cmd[MAX_COMMAND_SIZE];
2505 struct st_request *SRpnt;
2508 memset(cmd, 0, MAX_COMMAND_SIZE);
2509 cmd[0] = MODE_SELECT;
2510 cmd[1] = MODE_SELECT_PAGE_FORMAT;
2511 pgo = MODE_HEADER_LENGTH + (STp->buffer)->b_data[MH_OFF_BDESCS_LENGTH];
2512 cmd[4] = pgo + (STp->buffer)->b_data[pgo + MP_OFF_PAGE_LENGTH] + 2;
2514 /* Clear reserved fields */
2515 (STp->buffer)->b_data[MH_OFF_DATA_LENGTH] = 0;
2516 (STp->buffer)->b_data[MH_OFF_MEDIUM_TYPE] = 0;
2517 (STp->buffer)->b_data[MH_OFF_DEV_SPECIFIC] &= ~MH_BIT_WP;
2518 (STp->buffer)->b_data[pgo + MP_OFF_PAGE_NBR] &= MP_MSK_PAGE_NBR;
2521 STp->long_timeout : STp->device->request_queue->rq_timeout;
2522 SRpnt = st_do_scsi(NULL, STp, cmd, cmd[4], DMA_TO_DEVICE,
2525 return (STp->buffer)->syscall_result;
2527 st_release_request(SRpnt);
2529 return STp->buffer->syscall_result;
2533 #define COMPRESSION_PAGE 0x0f
2534 #define COMPRESSION_PAGE_LENGTH 16
2536 #define CP_OFF_DCE_DCC 2
2537 #define CP_OFF_C_ALGO 7
2539 #define DCE_MASK 0x80
2540 #define DCC_MASK 0x40
2541 #define RED_MASK 0x60
2544 /* Control the compression with mode page 15. Algorithm not changed if zero.
2546 The block descriptors are read and written because Sony SDT-7000 does not
2547 work without this (suggestion from Michael Schaefer <Michael.Schaefer@dlr.de>).
2548 Including block descriptors should not cause any harm to other drives. */
2550 static int st_compression(struct scsi_tape * STp, int state)
2553 int mpoffs; /* Offset to mode page start */
2554 unsigned char *b_data = (STp->buffer)->b_data;
2556 if (STp->ready != ST_READY)
2559 /* Read the current page contents */
2560 retval = read_mode_page(STp, COMPRESSION_PAGE, 0);
2562 DEBC_printk(STp, "Compression mode page not supported.\n");
2566 mpoffs = MODE_HEADER_LENGTH + b_data[MH_OFF_BDESCS_LENGTH];
2567 DEBC_printk(STp, "Compression state is %d.\n",
2568 (b_data[mpoffs + CP_OFF_DCE_DCC] & DCE_MASK ? 1 : 0));
2570 /* Check if compression can be changed */
2571 if ((b_data[mpoffs + CP_OFF_DCE_DCC] & DCC_MASK) == 0) {
2572 DEBC_printk(STp, "Compression not supported.\n");
2578 b_data[mpoffs + CP_OFF_DCE_DCC] |= DCE_MASK;
2579 if (STp->c_algo != 0)
2580 b_data[mpoffs + CP_OFF_C_ALGO] = STp->c_algo;
2583 b_data[mpoffs + CP_OFF_DCE_DCC] &= ~DCE_MASK;
2584 if (STp->c_algo != 0)
2585 b_data[mpoffs + CP_OFF_C_ALGO] = 0; /* no compression */
2588 retval = write_mode_page(STp, COMPRESSION_PAGE, 0);
2590 DEBC_printk(STp, "Compression change failed.\n");
2593 DEBC_printk(STp, "Compression state changed to %d.\n", state);
2595 STp->compression_changed = 1;
2600 /* Process the load and unload commands (does unload if the load code is zero) */
2601 static int do_load_unload(struct scsi_tape *STp, struct file *filp, int load_code)
2603 int retval = (-EIO), timeout;
2604 unsigned char cmd[MAX_COMMAND_SIZE];
2605 struct st_partstat *STps;
2606 struct st_request *SRpnt;
2608 if (STp->ready != ST_READY && !load_code) {
2609 if (STp->ready == ST_NO_TAPE)
2610 return (-ENOMEDIUM);
2615 memset(cmd, 0, MAX_COMMAND_SIZE);
2616 cmd[0] = START_STOP;
2620 * If arg >= 1 && arg <= 6 Enhanced load/unload in HP C1553A
2622 if (load_code >= 1 + MT_ST_HPLOADER_OFFSET
2623 && load_code <= 6 + MT_ST_HPLOADER_OFFSET) {
2624 DEBC_printk(STp, " Enhanced %sload slot %2d.\n",
2625 (cmd[4]) ? "" : "un",
2626 load_code - MT_ST_HPLOADER_OFFSET);
2627 cmd[3] = load_code - MT_ST_HPLOADER_OFFSET; /* MediaID field of C1553A */
2629 if (STp->immediate) {
2630 cmd[1] = 1; /* Don't wait for completion */
2631 timeout = STp->device->request_queue->rq_timeout;
2634 timeout = STp->long_timeout;
2638 st_printk(ST_DEB_MSG, STp, "Unloading tape.\n");
2640 st_printk(ST_DEB_MSG, STp, "Loading tape.\n");
2643 SRpnt = st_do_scsi(NULL, STp, cmd, 0, DMA_NONE,
2644 timeout, MAX_RETRIES, 1);
2646 return (STp->buffer)->syscall_result;
2648 retval = (STp->buffer)->syscall_result;
2649 st_release_request(SRpnt);
2651 if (!retval) { /* SCSI command successful */
2654 STp->rew_at_close = 0;
2655 STp->ready = ST_NO_TAPE;
2658 STp->rew_at_close = STp->autorew_dev;
2659 retval = check_tape(STp, filp);
2665 STps = &(STp->ps[STp->partition]);
2666 STps->drv_file = STps->drv_block = (-1);
2673 #define ST_DEB_FORWARD 0
2674 #define ST_DEB_BACKWARD 1
2675 static void deb_space_print(struct scsi_tape *STp, int direction, char *units, unsigned char *cmd)
2682 sc = sign_extend32(get_unaligned_be24(&cmd[2]), 23);
2685 st_printk(ST_DEB_MSG, STp, "Spacing tape %s over %d %s.\n",
2686 direction ? "backward" : "forward", sc, units);
2689 #define ST_DEB_FORWARD 0
2690 #define ST_DEB_BACKWARD 1
2691 static void deb_space_print(struct scsi_tape *STp, int direction, char *units, unsigned char *cmd) {}
2695 /* Internal ioctl function */
2696 static int st_int_ioctl(struct scsi_tape *STp, unsigned int cmd_in, unsigned long arg)
2702 unsigned char cmd[MAX_COMMAND_SIZE];
2703 struct st_request *SRpnt;
2704 struct st_partstat *STps;
2705 int fileno, blkno, at_sm, undone;
2706 int datalen = 0, direction = DMA_NONE;
2708 WARN_ON(STp->buffer->do_dio != 0);
2709 if (STp->ready != ST_READY) {
2710 if (STp->ready == ST_NO_TAPE)
2711 return (-ENOMEDIUM);
2715 timeout = STp->long_timeout;
2716 STps = &(STp->ps[STp->partition]);
2717 fileno = STps->drv_file;
2718 blkno = STps->drv_block;
2719 at_sm = STps->at_sm;
2721 memset(cmd, 0, MAX_COMMAND_SIZE);
2724 chg_eof = 0; /* Changed from the FSF after this */
2728 cmd[1] = 0x01; /* Space FileMarks */
2729 cmd[2] = (arg >> 16);
2730 cmd[3] = (arg >> 8);
2732 deb_space_print(STp, ST_DEB_FORWARD, "filemarks", cmd);
2736 at_sm &= (arg == 0);
2739 chg_eof = 0; /* Changed from the FSF after this */
2743 cmd[1] = 0x01; /* Space FileMarks */
2745 cmd[2] = (ltmp >> 16);
2746 cmd[3] = (ltmp >> 8);
2748 deb_space_print(STp, ST_DEB_BACKWARD, "filemarks", cmd);
2751 blkno = (-1); /* We can't know the block number */
2752 at_sm &= (arg == 0);
2756 cmd[1] = 0x00; /* Space Blocks */
2757 cmd[2] = (arg >> 16);
2758 cmd[3] = (arg >> 8);
2760 deb_space_print(STp, ST_DEB_FORWARD, "blocks", cmd);
2763 at_sm &= (arg == 0);
2767 cmd[1] = 0x00; /* Space Blocks */
2769 cmd[2] = (ltmp >> 16);
2770 cmd[3] = (ltmp >> 8);
2772 deb_space_print(STp, ST_DEB_BACKWARD, "blocks", cmd);
2775 at_sm &= (arg == 0);
2779 cmd[1] = 0x04; /* Space Setmarks */
2780 cmd[2] = (arg >> 16);
2781 cmd[3] = (arg >> 8);
2783 deb_space_print(STp, ST_DEB_FORWARD, "setmarks", cmd);
2785 blkno = fileno = (-1);
2791 cmd[1] = 0x04; /* Space Setmarks */
2793 cmd[2] = (ltmp >> 16);
2794 cmd[3] = (ltmp >> 8);
2796 deb_space_print(STp, ST_DEB_BACKWARD, "setmarks", cmd);
2798 blkno = fileno = (-1);
2805 if (STp->write_prot)
2807 cmd[0] = WRITE_FILEMARKS;
2808 if (cmd_in == MTWSM)
2810 if (cmd_in == MTWEOFI ||
2811 (cmd_in == MTWEOF && STp->immediate_filemark))
2813 cmd[2] = (arg >> 16);
2814 cmd[3] = (arg >> 8);
2816 timeout = STp->device->request_queue->rq_timeout;
2818 if (cmd_in != MTWSM)
2819 st_printk(ST_DEB_MSG, STp,
2820 "Writing %d filemarks.\n",
2825 st_printk(ST_DEB_MSG, STp,
2826 "Writing %d setmarks.\n",
2834 at_sm = (cmd_in == MTWSM);
2837 cmd[0] = REZERO_UNIT;
2838 if (STp->immediate) {
2839 cmd[1] = 1; /* Don't wait for completion */
2840 timeout = STp->device->request_queue->rq_timeout;
2842 DEBC_printk(STp, "Rewinding tape.\n");
2843 fileno = blkno = at_sm = 0;
2846 DEBC_printk(STp, "No op on tape.\n");
2847 return 0; /* Should do something ? */
2849 cmd[0] = START_STOP;
2850 if (STp->immediate) {
2851 cmd[1] = 1; /* Don't wait for completion */
2852 timeout = STp->device->request_queue->rq_timeout;
2855 DEBC_printk(STp, "Retensioning tape.\n");
2856 fileno = blkno = at_sm = 0;
2859 if (!STp->fast_mteom) {
2860 /* space to the end of tape */
2861 ioctl_result = st_int_ioctl(STp, MTFSF, 0x7fffff);
2862 fileno = STps->drv_file;
2863 if (STps->eof >= ST_EOD_1)
2865 /* The next lines would hide the number of spaced FileMarks
2866 That's why I inserted the previous lines. I had no luck
2867 with detecting EOM with FSF, so we go now to EOM.
2873 DEBC_printk(STp, "Spacing to end of recorded medium.\n");
2878 if (STp->write_prot)
2881 cmd[1] = (arg ? 1 : 0); /* Long erase with non-zero argument */
2882 if (STp->immediate) {
2883 cmd[1] |= 2; /* Don't wait for completion */
2884 timeout = STp->device->request_queue->rq_timeout;
2887 timeout = STp->long_timeout * 8;
2889 DEBC_printk(STp, "Erasing tape.\n");
2890 fileno = blkno = at_sm = 0;
2892 case MTSETBLK: /* Set block length */
2893 case MTSETDENSITY: /* Set tape density */
2894 case MTSETDRVBUFFER: /* Set drive buffering */
2895 case SET_DENS_AND_BLK: /* Set density and block size */
2897 if (STp->dirty || (STp->buffer)->buffer_bytes != 0)
2898 return (-EIO); /* Not allowed if data in buffer */
2899 if ((cmd_in == MTSETBLK || cmd_in == SET_DENS_AND_BLK) &&
2900 (arg & MT_ST_BLKSIZE_MASK) != 0 &&
2901 STp->max_block > 0 &&
2902 ((arg & MT_ST_BLKSIZE_MASK) < STp->min_block ||
2903 (arg & MT_ST_BLKSIZE_MASK) > STp->max_block)) {
2904 st_printk(KERN_WARNING, STp, "Illegal block size.\n");
2907 cmd[0] = MODE_SELECT;
2908 if ((STp->use_pf & USE_PF))
2909 cmd[1] = MODE_SELECT_PAGE_FORMAT;
2910 cmd[4] = datalen = 12;
2911 direction = DMA_TO_DEVICE;
2913 memset((STp->buffer)->b_data, 0, 12);
2914 if (cmd_in == MTSETDRVBUFFER)
2915 (STp->buffer)->b_data[2] = (arg & 7) << 4;
2917 (STp->buffer)->b_data[2] =
2918 STp->drv_buffer << 4;
2919 (STp->buffer)->b_data[3] = 8; /* block descriptor length */
2920 if (cmd_in == MTSETDENSITY) {
2921 (STp->buffer)->b_data[4] = arg;
2922 STp->density_changed = 1; /* At least we tried ;-) */
2923 } else if (cmd_in == SET_DENS_AND_BLK)
2924 (STp->buffer)->b_data[4] = arg >> 24;
2926 (STp->buffer)->b_data[4] = STp->density;
2927 if (cmd_in == MTSETBLK || cmd_in == SET_DENS_AND_BLK) {
2928 ltmp = arg & MT_ST_BLKSIZE_MASK;
2929 if (cmd_in == MTSETBLK)
2930 STp->blksize_changed = 1; /* At least we tried ;-) */
2932 ltmp = STp->block_size;
2933 (STp->buffer)->b_data[9] = (ltmp >> 16);
2934 (STp->buffer)->b_data[10] = (ltmp >> 8);
2935 (STp->buffer)->b_data[11] = ltmp;
2936 timeout = STp->device->request_queue->rq_timeout;
2938 if (cmd_in == MTSETBLK || cmd_in == SET_DENS_AND_BLK)
2939 st_printk(ST_DEB_MSG, STp,
2940 "Setting block size to %d bytes.\n",
2941 (STp->buffer)->b_data[9] * 65536 +
2942 (STp->buffer)->b_data[10] * 256 +
2943 (STp->buffer)->b_data[11]);
2944 if (cmd_in == MTSETDENSITY || cmd_in == SET_DENS_AND_BLK)
2945 st_printk(ST_DEB_MSG, STp,
2946 "Setting density code to %x.\n",
2947 (STp->buffer)->b_data[4]);
2948 if (cmd_in == MTSETDRVBUFFER)
2949 st_printk(ST_DEB_MSG, STp,
2950 "Setting drive buffer code to %d.\n",
2951 ((STp->buffer)->b_data[2] >> 4) & 7);
2958 SRpnt = st_do_scsi(NULL, STp, cmd, datalen, direction,
2959 timeout, MAX_RETRIES, 1);
2961 return (STp->buffer)->syscall_result;
2963 ioctl_result = (STp->buffer)->syscall_result;
2965 if (!ioctl_result) { /* SCSI command successful */
2966 st_release_request(SRpnt);
2968 STps->drv_block = blkno;
2969 STps->drv_file = fileno;
2970 STps->at_sm = at_sm;
2972 if (cmd_in == MTBSFM)
2973 ioctl_result = st_int_ioctl(STp, MTFSF, 1);
2974 else if (cmd_in == MTFSFM)
2975 ioctl_result = st_int_ioctl(STp, MTBSF, 1);
2977 if (cmd_in == MTSETBLK || cmd_in == SET_DENS_AND_BLK) {
2978 STp->block_size = arg & MT_ST_BLKSIZE_MASK;
2979 if (STp->block_size != 0) {
2980 (STp->buffer)->buffer_blocks =
2981 (STp->buffer)->buffer_size / STp->block_size;
2983 (STp->buffer)->buffer_bytes = (STp->buffer)->read_pointer = 0;
2984 if (cmd_in == SET_DENS_AND_BLK)
2985 STp->density = arg >> MT_ST_DENSITY_SHIFT;
2986 } else if (cmd_in == MTSETDRVBUFFER)
2987 STp->drv_buffer = (arg & 7);
2988 else if (cmd_in == MTSETDENSITY)
2991 if (cmd_in == MTEOM)
2993 else if (cmd_in == MTFSF)
2996 STps->eof = ST_NOEOF;
2998 if (cmd_in == MTWEOF || cmd_in == MTWEOFI)
2999 STps->rw = ST_IDLE; /* prevent automatic WEOF at close */
3000 } else { /* SCSI command was not completely successful. Don't return
3001 from this block without releasing the SCSI command block! */
3002 struct st_cmdstatus *cmdstatp = &STp->buffer->cmdstat;
3004 if (cmdstatp->flags & SENSE_EOM) {
3005 if (cmd_in != MTBSF && cmd_in != MTBSFM &&
3006 cmd_in != MTBSR && cmd_in != MTBSS)
3007 STps->eof = ST_EOM_OK;
3008 STps->drv_block = 0;
3011 if (cmdstatp->remainder_valid)
3012 undone = (int)cmdstatp->uremainder64;
3016 if ((cmd_in == MTWEOF || cmd_in == MTWEOFI) &&
3017 cmdstatp->have_sense &&
3018 (cmdstatp->flags & SENSE_EOM)) {
3019 if (cmdstatp->sense_hdr.sense_key == NO_SENSE ||
3020 cmdstatp->sense_hdr.sense_key == RECOVERED_ERROR) {
3021 ioctl_result = 0; /* EOF(s) written successfully at EOM */
3022 STps->eof = ST_NOEOF;
3023 } else { /* Writing EOF(s) failed */
3027 STps->eof = ST_NOEOF;
3029 STps->drv_file = fileno;
3030 } else if ((cmd_in == MTFSF) || (cmd_in == MTFSFM)) {
3032 STps->drv_file = fileno - undone;
3034 STps->drv_file = fileno;
3035 STps->drv_block = -1;
3036 STps->eof = ST_NOEOF;
3037 } else if ((cmd_in == MTBSF) || (cmd_in == MTBSFM)) {
3038 if (arg > 0 && undone < 0) /* Some drives get this wrong */
3040 if (STps->drv_file >= 0)
3041 STps->drv_file = fileno + undone;
3042 STps->drv_block = 0;
3043 STps->eof = ST_NOEOF;
3044 } else if (cmd_in == MTFSR) {
3045 if (cmdstatp->flags & SENSE_FMK) { /* Hit filemark */
3046 if (STps->drv_file >= 0)
3048 STps->drv_block = 0;
3051 if (blkno >= undone)
3052 STps->drv_block = blkno - undone;
3054 STps->drv_block = (-1);
3055 STps->eof = ST_NOEOF;
3057 } else if (cmd_in == MTBSR) {
3058 if (cmdstatp->flags & SENSE_FMK) { /* Hit filemark */
3060 STps->drv_block = (-1);
3062 if (arg > 0 && undone < 0) /* Some drives get this wrong */
3064 if (STps->drv_block >= 0)
3065 STps->drv_block = blkno + undone;
3067 STps->eof = ST_NOEOF;
3068 } else if (cmd_in == MTEOM) {
3069 STps->drv_file = (-1);
3070 STps->drv_block = (-1);
3072 } else if (cmd_in == MTSETBLK ||
3073 cmd_in == MTSETDENSITY ||
3074 cmd_in == MTSETDRVBUFFER ||
3075 cmd_in == SET_DENS_AND_BLK) {
3076 if (cmdstatp->sense_hdr.sense_key == ILLEGAL_REQUEST &&
3077 !(STp->use_pf & PF_TESTED)) {
3078 /* Try the other possible state of Page Format if not
3080 STp->use_pf = (STp->use_pf ^ USE_PF) | PF_TESTED;
3081 st_release_request(SRpnt);
3083 return st_int_ioctl(STp, cmd_in, arg);
3086 STps->eof = ST_NOEOF;
3088 if (cmdstatp->sense_hdr.sense_key == BLANK_CHECK)
3091 st_release_request(SRpnt);
3095 return ioctl_result;
3099 /* Get the tape position. If bt == 2, arg points into a kernel space mt_loc
3102 static int get_location(struct scsi_tape *STp, unsigned int *block, int *partition,
3106 unsigned char scmd[MAX_COMMAND_SIZE];
3107 struct st_request *SRpnt;
3109 if (STp->ready != ST_READY)
3112 memset(scmd, 0, MAX_COMMAND_SIZE);
3113 if ((STp->device)->scsi_level < SCSI_2) {
3114 scmd[0] = QFA_REQUEST_BLOCK;
3117 scmd[0] = READ_POSITION;
3118 if (!logical && !STp->scsi2_logical)
3121 SRpnt = st_do_scsi(NULL, STp, scmd, 20, DMA_FROM_DEVICE,
3122 STp->device->request_queue->rq_timeout,
3123 MAX_READY_RETRIES, 1);
3125 return (STp->buffer)->syscall_result;
3127 if ((STp->buffer)->syscall_result != 0 ||
3128 (STp->device->scsi_level >= SCSI_2 &&
3129 ((STp->buffer)->b_data[0] & 4) != 0)) {
3130 *block = *partition = 0;
3131 DEBC_printk(STp, " Can't read tape position.\n");
3135 if ((STp->device)->scsi_level < SCSI_2) {
3136 *block = ((STp->buffer)->b_data[0] << 16)
3137 + ((STp->buffer)->b_data[1] << 8)
3138 + (STp->buffer)->b_data[2];
3141 *block = ((STp->buffer)->b_data[4] << 24)
3142 + ((STp->buffer)->b_data[5] << 16)
3143 + ((STp->buffer)->b_data[6] << 8)
3144 + (STp->buffer)->b_data[7];
3145 *partition = (STp->buffer)->b_data[1];
3146 if (((STp->buffer)->b_data[0] & 0x80) &&
3147 (STp->buffer)->b_data[1] == 0) /* BOP of partition 0 */
3148 STp->ps[0].drv_block = STp->ps[0].drv_file = 0;
3150 DEBC_printk(STp, "Got tape pos. blk %d part %d.\n",
3151 *block, *partition);
3153 st_release_request(SRpnt);
3160 /* Set the tape block and partition. Negative partition means that only the
3161 block should be set in vendor specific way. */
3162 static int set_location(struct scsi_tape *STp, unsigned int block, int partition,
3165 struct st_partstat *STps;
3169 unsigned char scmd[MAX_COMMAND_SIZE];
3170 struct st_request *SRpnt;
3172 if (STp->ready != ST_READY)
3174 timeout = STp->long_timeout;
3175 STps = &(STp->ps[STp->partition]);
3177 DEBC_printk(STp, "Setting block to %d and partition to %d.\n",
3179 DEB(if (partition < 0)
3182 /* Update the location at the partition we are leaving */
3183 if ((!STp->can_partitions && partition != 0) ||
3184 partition >= ST_NBR_PARTITIONS)
3186 if (partition != STp->partition) {
3187 if (get_location(STp, &blk, &p, 1))
3188 STps->last_block_valid = 0;
3190 STps->last_block_valid = 1;
3191 STps->last_block_visited = blk;
3192 DEBC_printk(STp, "Visited block %d for "
3193 "partition %d saved.\n",
3194 blk, STp->partition);
3198 memset(scmd, 0, MAX_COMMAND_SIZE);
3199 if ((STp->device)->scsi_level < SCSI_2) {
3200 scmd[0] = QFA_SEEK_BLOCK;
3201 scmd[2] = (block >> 16);
3202 scmd[3] = (block >> 8);
3207 scmd[3] = (block >> 24);
3208 scmd[4] = (block >> 16);
3209 scmd[5] = (block >> 8);
3211 if (!logical && !STp->scsi2_logical)
3213 if (STp->partition != partition) {
3215 scmd[8] = partition;
3216 DEBC_printk(STp, "Trying to change partition "
3217 "from %d to %d\n", STp->partition,
3221 if (STp->immediate) {
3222 scmd[1] |= 1; /* Don't wait for completion */
3223 timeout = STp->device->request_queue->rq_timeout;
3226 SRpnt = st_do_scsi(NULL, STp, scmd, 0, DMA_NONE,
3227 timeout, MAX_READY_RETRIES, 1);
3229 return (STp->buffer)->syscall_result;
3231 STps->drv_block = STps->drv_file = (-1);
3232 STps->eof = ST_NOEOF;
3233 if ((STp->buffer)->syscall_result != 0) {
3235 if (STp->can_partitions &&
3236 (STp->device)->scsi_level >= SCSI_2 &&
3237 (p = find_partition(STp)) >= 0)
3240 if (STp->can_partitions) {
3241 STp->partition = partition;
3242 STps = &(STp->ps[partition]);
3243 if (!STps->last_block_valid ||
3244 STps->last_block_visited != block) {
3251 STps->drv_block = STps->drv_file = 0;
3255 st_release_request(SRpnt);
3262 /* Find the current partition number for the drive status. Called from open and
3263 returns either partition number of negative error code. */
3264 static int find_partition(struct scsi_tape *STp)
3269 if ((i = get_location(STp, &block, &partition, 1)) < 0)
3271 if (partition >= ST_NBR_PARTITIONS)
3277 /* Change the partition if necessary */
3278 static int switch_partition(struct scsi_tape *STp)
3280 struct st_partstat *STps;
3282 if (STp->partition == STp->new_partition)
3284 STps = &(STp->ps[STp->new_partition]);
3285 if (!STps->last_block_valid)
3286 STps->last_block_visited = 0;
3287 return set_location(STp, STps->last_block_visited, STp->new_partition, 1);
3290 /* Functions for reading and writing the medium partition mode page. */
3292 #define PART_PAGE 0x11
3293 #define PART_PAGE_FIXED_LENGTH 8
3295 #define PP_OFF_MAX_ADD_PARTS 2
3296 #define PP_OFF_NBR_ADD_PARTS 3
3297 #define PP_OFF_FLAGS 4
3298 #define PP_OFF_PART_UNITS 6
3299 #define PP_OFF_RESERVED 7
3301 #define PP_BIT_IDP 0x20
3302 #define PP_BIT_FDP 0x80
3303 #define PP_MSK_PSUM_MB 0x10
3304 #define PP_MSK_PSUM_UNITS 0x18
3305 #define PP_MSK_POFM 0x04
3307 /* Get the number of partitions on the tape. As a side effect reads the
3308 mode page into the tape buffer. */
3309 static int nbr_partitions(struct scsi_tape *STp)
3313 if (STp->ready != ST_READY)
3316 result = read_mode_page(STp, PART_PAGE, 1);
3319 DEBC_printk(STp, "Can't read medium partition page.\n");
3322 result = (STp->buffer)->b_data[MODE_HEADER_LENGTH +
3323 PP_OFF_NBR_ADD_PARTS] + 1;
3324 DEBC_printk(STp, "Number of partitions %d.\n", result);
3331 static int format_medium(struct scsi_tape *STp, int format)
3334 int timeout = STp->long_timeout;
3335 unsigned char scmd[MAX_COMMAND_SIZE];
3336 struct st_request *SRpnt;
3338 memset(scmd, 0, MAX_COMMAND_SIZE);
3339 scmd[0] = FORMAT_UNIT;
3341 if (STp->immediate) {
3342 scmd[1] |= 1; /* Don't wait for completion */
3343 timeout = STp->device->request_queue->rq_timeout;
3345 DEBC_printk(STp, "Sending FORMAT MEDIUM\n");
3346 SRpnt = st_do_scsi(NULL, STp, scmd, 0, DMA_NONE,
3347 timeout, MAX_RETRIES, 1);
3349 result = STp->buffer->syscall_result;
3354 /* Partition the tape into two partitions if size > 0 or one partition if
3357 The block descriptors are read and written because Sony SDT-7000 does not
3358 work without this (suggestion from Michael Schaefer <Michael.Schaefer@dlr.de>).
3360 My HP C1533A drive returns only one partition size field. This is used to
3361 set the size of partition 1. There is no size field for the default partition.
3362 Michael Schaefer's Sony SDT-7000 returns two descriptors and the second is
3363 used to set the size of partition 1 (this is what the SCSI-3 standard specifies).
3364 The following algorithm is used to accommodate both drives: if the number of
3365 partition size fields is greater than the maximum number of additional partitions
3366 in the mode page, the second field is used. Otherwise the first field is used.
3368 For Seagate DDS drives the page length must be 8 when no partitions is defined
3369 and 10 when 1 partition is defined (information from Eric Lee Green). This is
3370 is acceptable also to some other old drives and enforced if the first partition
3371 size field is used for the first additional partition size.
3373 For drives that advertize SCSI-3 or newer, use the SSC-3 methods.
3375 static int partition_tape(struct scsi_tape *STp, int size)
3378 int target_partition;
3379 bool scsi3 = STp->device->scsi_level >= SCSI_3, needs_format = false;
3380 int pgo, psd_cnt, psdo;
3381 int psum = PP_MSK_PSUM_MB, units = 0;
3384 result = read_mode_page(STp, PART_PAGE, 0);
3386 DEBC_printk(STp, "Can't read partition mode page.\n");
3389 target_partition = 1;
3391 target_partition = 0;
3395 /* The mode page is in the buffer. Let's modify it and write it. */
3396 bp = (STp->buffer)->b_data;
3397 pgo = MODE_HEADER_LENGTH + bp[MH_OFF_BDESCS_LENGTH];
3398 DEBC_printk(STp, "Partition page length is %d bytes.\n",
3399 bp[pgo + MP_OFF_PAGE_LENGTH] + 2);
3401 psd_cnt = (bp[pgo + MP_OFF_PAGE_LENGTH] + 2 - PART_PAGE_FIXED_LENGTH) / 2;
3404 needs_format = (bp[pgo + PP_OFF_FLAGS] & PP_MSK_POFM) != 0;
3405 if (needs_format && size == 0) {
3406 /* No need to write the mode page when clearing
3409 DEBC_printk(STp, "Formatting tape with one partition.\n");
3410 result = format_medium(STp, 0);
3413 if (needs_format) /* Leave the old value for HP DATs claiming SCSI_3 */
3415 if ((bp[pgo + PP_OFF_FLAGS] & PP_MSK_PSUM_UNITS) == PP_MSK_PSUM_UNITS) {
3416 /* Use units scaling for large partitions if the device
3417 * suggests it and no precision lost. Required for IBM
3418 * TS1140/50 drives that don't support MB units.
3420 if (size >= 1000 && (size % 1000) == 0) {
3422 psum = PP_MSK_PSUM_UNITS;
3426 /* Try it anyway if too large to specify in MB */
3427 if (psum == PP_MSK_PSUM_MB && size >= 65534) {
3429 psum = PP_MSK_PSUM_UNITS;
3434 if (size >= 65535 || /* Does not fit into two bytes */
3435 (target_partition == 0 && psd_cnt < 2)) {
3440 psdo = pgo + PART_PAGE_FIXED_LENGTH;
3441 /* The second condition is for HP DDS which use only one partition size
3444 if (target_partition > 0 &&
3445 (psd_cnt > bp[pgo + PP_OFF_MAX_ADD_PARTS] ||
3446 bp[pgo + PP_OFF_MAX_ADD_PARTS] != 1)) {
3447 bp[psdo] = bp[psdo + 1] = 0xff; /* Rest to partition 0 */
3450 memset(bp + psdo, 0, bp[pgo + PP_OFF_NBR_ADD_PARTS] * 2);
3452 DEBC_printk(STp, "psd_cnt %d, max.parts %d, nbr_parts %d\n",
3453 psd_cnt, bp[pgo + PP_OFF_MAX_ADD_PARTS],
3454 bp[pgo + PP_OFF_NBR_ADD_PARTS]);
3457 bp[pgo + PP_OFF_NBR_ADD_PARTS] = 0;
3458 if (psd_cnt <= bp[pgo + PP_OFF_MAX_ADD_PARTS])
3459 bp[pgo + MP_OFF_PAGE_LENGTH] = 6;
3460 DEBC_printk(STp, "Formatting tape with one partition.\n");
3462 bp[psdo] = (size >> 8) & 0xff;
3463 bp[psdo + 1] = size & 0xff;
3464 if (target_partition == 0)
3465 bp[psdo + 2] = bp[psdo + 3] = 0xff;
3467 if (bp[pgo + MP_OFF_PAGE_LENGTH] < 8)
3468 bp[pgo + MP_OFF_PAGE_LENGTH] = 8;
3470 "Formatting tape with two partitions (%i = %d MB).\n",
3471 target_partition, units > 0 ? size * 1000 : size);
3473 bp[pgo + PP_OFF_PART_UNITS] = 0;
3474 bp[pgo + PP_OFF_RESERVED] = 0;
3475 if (size != 1 || units != 0) {
3476 bp[pgo + PP_OFF_FLAGS] = PP_BIT_IDP | psum |
3477 (bp[pgo + PP_OFF_FLAGS] & 0x07);
3478 bp[pgo + PP_OFF_PART_UNITS] = units;
3480 bp[pgo + PP_OFF_FLAGS] = PP_BIT_FDP |
3481 (bp[pgo + PP_OFF_FLAGS] & 0x1f);
3482 bp[pgo + MP_OFF_PAGE_LENGTH] = 6 + psd_cnt * 2;
3484 result = write_mode_page(STp, PART_PAGE, 1);
3486 if (!result && needs_format)
3487 result = format_medium(STp, 1);
3490 st_printk(KERN_INFO, STp, "Partitioning of tape failed.\n");
3500 /* The ioctl command */
3501 static long st_ioctl(struct file *file, unsigned int cmd_in, unsigned long arg)
3503 void __user *p = (void __user *)arg;
3504 int i, cmd_nr, cmd_type, bt;
3507 struct scsi_tape *STp = file->private_data;
3508 struct st_modedef *STm;
3509 struct st_partstat *STps;
3511 if (mutex_lock_interruptible(&STp->lock))
3512 return -ERESTARTSYS;
3515 if (debugging && !STp->in_use) {
3516 st_printk(ST_DEB_MSG, STp, "Incorrect device.\n");
3521 STm = &(STp->modes[STp->current_mode]);
3522 STps = &(STp->ps[STp->partition]);
3525 * If we are in the middle of error recovery, don't let anyone
3526 * else try and use this device. Also, if error recovery fails, it
3527 * may try and take the device offline, in which case all further
3528 * access to the device is prohibited.
3530 retval = scsi_ioctl_block_when_processing_errors(STp->device, cmd_in,
3531 file->f_flags & O_NDELAY);
3535 cmd_type = _IOC_TYPE(cmd_in);
3536 cmd_nr = _IOC_NR(cmd_in);
3538 if (cmd_type == _IOC_TYPE(MTIOCTOP) && cmd_nr == _IOC_NR(MTIOCTOP)) {
3541 if (_IOC_SIZE(cmd_in) != sizeof(mtc)) {
3546 i = copy_from_user(&mtc, p, sizeof(struct mtop));
3552 if (mtc.mt_op == MTSETDRVBUFFER && !capable(CAP_SYS_ADMIN)) {
3553 st_printk(KERN_WARNING, STp,
3554 "MTSETDRVBUFFER only allowed for root.\n");
3558 if (!STm->defined &&
3559 (mtc.mt_op != MTSETDRVBUFFER &&
3560 (mtc.mt_count & MT_ST_OPTIONS) == 0)) {
3565 if (!STp->pos_unknown) {
3567 if (STps->eof == ST_FM_HIT) {
3568 if (mtc.mt_op == MTFSF || mtc.mt_op == MTFSFM ||
3569 mtc.mt_op == MTEOM) {
3571 if (STps->drv_file >= 0)
3572 STps->drv_file += 1;
3573 } else if (mtc.mt_op == MTBSF || mtc.mt_op == MTBSFM) {
3575 if (STps->drv_file >= 0)
3576 STps->drv_file += 1;
3580 if (mtc.mt_op == MTSEEK) {
3581 /* Old position must be restored if partition will be
3583 i = !STp->can_partitions ||
3584 (STp->new_partition != STp->partition);
3586 i = mtc.mt_op == MTREW || mtc.mt_op == MTOFFL ||
3587 mtc.mt_op == MTRETEN || mtc.mt_op == MTEOM ||
3588 mtc.mt_op == MTLOCK || mtc.mt_op == MTLOAD ||
3589 mtc.mt_op == MTFSF || mtc.mt_op == MTFSFM ||
3590 mtc.mt_op == MTBSF || mtc.mt_op == MTBSFM ||
3591 mtc.mt_op == MTCOMPRESSION;
3593 i = flush_buffer(STp, i);
3598 if (STps->rw == ST_WRITING &&
3599 (mtc.mt_op == MTREW || mtc.mt_op == MTOFFL ||
3600 mtc.mt_op == MTSEEK ||
3601 mtc.mt_op == MTBSF || mtc.mt_op == MTBSFM)) {
3602 i = st_int_ioctl(STp, MTWEOF, 1);
3607 if (mtc.mt_op == MTBSF || mtc.mt_op == MTBSFM)
3614 * If there was a bus reset, block further access
3615 * to this device. If the user wants to rewind the tape,
3616 * then reset the flag and allow access again.
3618 if (mtc.mt_op != MTREW &&
3619 mtc.mt_op != MTOFFL &&
3620 mtc.mt_op != MTRETEN &&
3621 mtc.mt_op != MTERASE &&
3622 mtc.mt_op != MTSEEK &&
3623 mtc.mt_op != MTEOM) {
3628 /* remove this when the midlevel properly clears was_reset */
3629 STp->device->was_reset = 0;
3632 if (mtc.mt_op != MTNOP && mtc.mt_op != MTSETBLK &&
3633 mtc.mt_op != MTSETDENSITY && mtc.mt_op != MTWSM &&
3634 mtc.mt_op != MTSETDRVBUFFER && mtc.mt_op != MTSETPART)
3635 STps->rw = ST_IDLE; /* Prevent automatic WEOF and fsf */
3637 if (mtc.mt_op == MTOFFL && STp->door_locked != ST_UNLOCKED)
3638 do_door_lock(STp, 0); /* Ignore result! */
3640 if (mtc.mt_op == MTSETDRVBUFFER &&
3641 (mtc.mt_count & MT_ST_OPTIONS) != 0) {
3642 retval = st_set_options(STp, mtc.mt_count);
3646 if (mtc.mt_op == MTSETPART) {
3647 if (!STp->can_partitions ||
3648 mtc.mt_count < 0 || mtc.mt_count >= ST_NBR_PARTITIONS) {
3652 if (mtc.mt_count >= STp->nbr_partitions &&
3653 (STp->nbr_partitions = nbr_partitions(STp)) < 0) {
3657 if (mtc.mt_count >= STp->nbr_partitions) {
3661 STp->new_partition = mtc.mt_count;
3666 if (mtc.mt_op == MTMKPART) {
3667 if (!STp->can_partitions) {
3671 i = do_load_unload(STp, file, 1);
3676 i = partition_tape(STp, mtc.mt_count);
3681 for (i = 0; i < ST_NBR_PARTITIONS; i++) {
3682 STp->ps[i].rw = ST_IDLE;
3683 STp->ps[i].at_sm = 0;
3684 STp->ps[i].last_block_valid = 0;
3686 STp->partition = STp->new_partition = 0;
3687 STp->nbr_partitions = mtc.mt_count != 0 ? 2 : 1;
3688 STps->drv_block = STps->drv_file = 0;
3693 if (mtc.mt_op == MTSEEK) {
3694 i = set_location(STp, mtc.mt_count, STp->new_partition, 0);
3695 if (!STp->can_partitions)
3696 STp->ps[0].rw = ST_IDLE;
3701 if (mtc.mt_op == MTUNLOAD || mtc.mt_op == MTOFFL) {
3702 retval = do_load_unload(STp, file, 0);
3706 if (mtc.mt_op == MTLOAD) {
3707 retval = do_load_unload(STp, file, max(1, mtc.mt_count));
3711 if (mtc.mt_op == MTLOCK || mtc.mt_op == MTUNLOCK) {
3712 retval = do_door_lock(STp, (mtc.mt_op == MTLOCK));
3716 if (STp->can_partitions && STp->ready == ST_READY &&
3717 (i = switch_partition(STp)) < 0) {
3722 if (mtc.mt_op == MTCOMPRESSION)
3723 retval = st_compression(STp, (mtc.mt_count & 1));
3725 retval = st_int_ioctl(STp, mtc.mt_op, mtc.mt_count);
3728 if (!STm->defined) {
3733 if ((i = flush_buffer(STp, 0)) < 0) {
3737 if (STp->can_partitions &&
3738 (i = switch_partition(STp)) < 0) {
3743 if (cmd_type == _IOC_TYPE(MTIOCGET) && cmd_nr == _IOC_NR(MTIOCGET)) {
3744 struct mtget mt_status;
3746 if (_IOC_SIZE(cmd_in) != sizeof(struct mtget)) {
3751 mt_status.mt_type = STp->tape_type;
3752 mt_status.mt_dsreg =
3753 ((STp->block_size << MT_ST_BLKSIZE_SHIFT) & MT_ST_BLKSIZE_MASK) |
3754 ((STp->density << MT_ST_DENSITY_SHIFT) & MT_ST_DENSITY_MASK);
3755 mt_status.mt_blkno = STps->drv_block;
3756 mt_status.mt_fileno = STps->drv_file;
3757 if (STp->block_size != 0) {
3758 if (STps->rw == ST_WRITING)
3759 mt_status.mt_blkno +=
3760 (STp->buffer)->buffer_bytes / STp->block_size;
3761 else if (STps->rw == ST_READING)
3762 mt_status.mt_blkno -=
3763 ((STp->buffer)->buffer_bytes +
3764 STp->block_size - 1) / STp->block_size;
3767 mt_status.mt_gstat = 0;
3768 if (STp->drv_write_prot)
3769 mt_status.mt_gstat |= GMT_WR_PROT(0xffffffff);
3770 if (mt_status.mt_blkno == 0) {
3771 if (mt_status.mt_fileno == 0)
3772 mt_status.mt_gstat |= GMT_BOT(0xffffffff);
3774 mt_status.mt_gstat |= GMT_EOF(0xffffffff);
3776 mt_status.mt_erreg = (STp->recover_reg << MT_ST_SOFTERR_SHIFT);
3777 mt_status.mt_resid = STp->partition;
3778 if (STps->eof == ST_EOM_OK || STps->eof == ST_EOM_ERROR)
3779 mt_status.mt_gstat |= GMT_EOT(0xffffffff);
3780 else if (STps->eof >= ST_EOM_OK)
3781 mt_status.mt_gstat |= GMT_EOD(0xffffffff);
3782 if (STp->density == 1)
3783 mt_status.mt_gstat |= GMT_D_800(0xffffffff);
3784 else if (STp->density == 2)
3785 mt_status.mt_gstat |= GMT_D_1600(0xffffffff);
3786 else if (STp->density == 3)
3787 mt_status.mt_gstat |= GMT_D_6250(0xffffffff);
3788 if (STp->ready == ST_READY)
3789 mt_status.mt_gstat |= GMT_ONLINE(0xffffffff);
3790 if (STp->ready == ST_NO_TAPE)
3791 mt_status.mt_gstat |= GMT_DR_OPEN(0xffffffff);
3793 mt_status.mt_gstat |= GMT_SM(0xffffffff);
3794 if (STm->do_async_writes ||
3795 (STm->do_buffer_writes && STp->block_size != 0) ||
3796 STp->drv_buffer != 0)
3797 mt_status.mt_gstat |= GMT_IM_REP_EN(0xffffffff);
3798 if (STp->cleaning_req)
3799 mt_status.mt_gstat |= GMT_CLN(0xffffffff);
3801 retval = put_user_mtget(p, &mt_status);
3805 STp->recover_reg = 0; /* Clear after read */
3807 } /* End of MTIOCGET */
3808 if (cmd_type == _IOC_TYPE(MTIOCPOS) && cmd_nr == _IOC_NR(MTIOCPOS)) {
3809 struct mtpos mt_pos;
3810 if (_IOC_SIZE(cmd_in) != sizeof(struct mtpos)) {
3814 if ((i = get_location(STp, &blk, &bt, 0)) < 0) {
3818 mt_pos.mt_blkno = blk;
3819 retval = put_user_mtpos(p, &mt_pos);
3822 mutex_unlock(&STp->lock);
3826 case SCSI_IOCTL_SEND_COMMAND:
3827 case CDROM_SEND_PACKET:
3828 if (!capable(CAP_SYS_RAWIO))
3835 retval = scsi_ioctl(STp->device, file->f_mode, cmd_in, p);
3836 if (!retval && cmd_in == SCSI_IOCTL_STOP_UNIT) {
3838 STp->rew_at_close = 0;
3839 STp->ready = ST_NO_TAPE;
3844 mutex_unlock(&STp->lock);
3848 #ifdef CONFIG_COMPAT
3849 static long st_compat_ioctl(struct file *file, unsigned int cmd_in, unsigned long arg)
3851 /* argument conversion is handled using put_user_mtpos/put_user_mtget */
3861 return st_ioctl(file, cmd_in, arg);
3867 /* Try to allocate a new tape buffer. Calling function must not hold
3869 static struct st_buffer *new_tape_buffer(int max_sg)
3871 struct st_buffer *tb;
3873 tb = kzalloc(sizeof(struct st_buffer), GFP_KERNEL);
3875 printk(KERN_NOTICE "st: Can't allocate new tape buffer.\n");
3879 tb->use_sg = max_sg;
3880 tb->buffer_size = 0;
3882 tb->reserved_pages = kcalloc(max_sg, sizeof(struct page *),
3884 if (!tb->reserved_pages) {
3893 /* Try to allocate enough space in the tape buffer */
3894 #define ST_MAX_ORDER 6
3896 static int enlarge_buffer(struct st_buffer * STbuffer, int new_size)
3898 int segs, max_segs, b_size, order, got;
3901 if (new_size <= STbuffer->buffer_size)
3904 if (STbuffer->buffer_size <= PAGE_SIZE)
3905 normalize_buffer(STbuffer); /* Avoid extra segment */
3907 max_segs = STbuffer->use_sg;
3909 priority = GFP_KERNEL | __GFP_NOWARN;
3911 if (STbuffer->cleared)
3912 priority |= __GFP_ZERO;
3914 if (STbuffer->frp_segs) {
3915 order = STbuffer->reserved_page_order;
3916 b_size = PAGE_SIZE << order;
3918 for (b_size = PAGE_SIZE, order = 0;
3919 order < ST_MAX_ORDER &&
3920 max_segs * (PAGE_SIZE << order) < new_size;
3921 order++, b_size *= 2)
3923 STbuffer->reserved_page_order = order;
3925 if (max_segs * (PAGE_SIZE << order) < new_size) {
3926 if (order == ST_MAX_ORDER)
3928 normalize_buffer(STbuffer);
3929 return enlarge_buffer(STbuffer, new_size);
3932 for (segs = STbuffer->frp_segs, got = STbuffer->buffer_size;
3933 segs < max_segs && got < new_size;) {
3936 page = alloc_pages(priority, order);
3938 DEB(STbuffer->buffer_size = got);
3939 normalize_buffer(STbuffer);
3943 STbuffer->frp_segs += 1;
3945 STbuffer->buffer_size = got;
3946 STbuffer->reserved_pages[segs] = page;
3949 STbuffer->b_data = page_address(STbuffer->reserved_pages[0]);
3955 /* Make sure that no data from previous user is in the internal buffer */
3956 static void clear_buffer(struct st_buffer * st_bp)
3960 for (i=0; i < st_bp->frp_segs; i++)
3961 memset(page_address(st_bp->reserved_pages[i]), 0,
3962 PAGE_SIZE << st_bp->reserved_page_order);
3967 /* Release the extra buffer */
3968 static void normalize_buffer(struct st_buffer * STbuffer)
3970 int i, order = STbuffer->reserved_page_order;
3972 for (i = 0; i < STbuffer->frp_segs; i++) {
3973 __free_pages(STbuffer->reserved_pages[i], order);
3974 STbuffer->buffer_size -= (PAGE_SIZE << order);
3976 STbuffer->frp_segs = 0;
3977 STbuffer->sg_segs = 0;
3978 STbuffer->reserved_page_order = 0;
3979 STbuffer->map_data.offset = 0;
3983 /* Move data from the user buffer to the tape buffer. Returns zero (success) or
3984 negative error code. */
3985 static int append_to_buffer(const char __user *ubp, struct st_buffer * st_bp, int do_count)
3987 int i, cnt, res, offset;
3988 int length = PAGE_SIZE << st_bp->reserved_page_order;
3990 for (i = 0, offset = st_bp->buffer_bytes;
3991 i < st_bp->frp_segs && offset >= length; i++)
3993 if (i == st_bp->frp_segs) { /* Should never happen */
3994 printk(KERN_WARNING "st: append_to_buffer offset overflow.\n");
3997 for (; i < st_bp->frp_segs && do_count > 0; i++) {
3998 struct page *page = st_bp->reserved_pages[i];
3999 cnt = length - offset < do_count ? length - offset : do_count;
4000 res = copy_from_user(page_address(page) + offset, ubp, cnt);
4004 st_bp->buffer_bytes += cnt;
4008 if (do_count) /* Should never happen */
4015 /* Move data from the tape buffer to the user buffer. Returns zero (success) or
4016 negative error code. */
4017 static int from_buffer(struct st_buffer * st_bp, char __user *ubp, int do_count)
4019 int i, cnt, res, offset;
4020 int length = PAGE_SIZE << st_bp->reserved_page_order;
4022 for (i = 0, offset = st_bp->read_pointer;
4023 i < st_bp->frp_segs && offset >= length; i++)
4025 if (i == st_bp->frp_segs) { /* Should never happen */
4026 printk(KERN_WARNING "st: from_buffer offset overflow.\n");
4029 for (; i < st_bp->frp_segs && do_count > 0; i++) {
4030 struct page *page = st_bp->reserved_pages[i];
4031 cnt = length - offset < do_count ? length - offset : do_count;
4032 res = copy_to_user(ubp, page_address(page) + offset, cnt);
4036 st_bp->buffer_bytes -= cnt;
4037 st_bp->read_pointer += cnt;
4041 if (do_count) /* Should never happen */
4048 /* Move data towards start of buffer */
4049 static void move_buffer_data(struct st_buffer * st_bp, int offset)
4051 int src_seg, dst_seg, src_offset = 0, dst_offset;
4053 int length = PAGE_SIZE << st_bp->reserved_page_order;
4058 total=st_bp->buffer_bytes - offset;
4059 for (src_seg=0; src_seg < st_bp->frp_segs; src_seg++) {
4060 src_offset = offset;
4061 if (src_offset < length)
4066 st_bp->buffer_bytes = st_bp->read_pointer = total;
4067 for (dst_seg=dst_offset=0; total > 0; ) {
4068 struct page *dpage = st_bp->reserved_pages[dst_seg];
4069 struct page *spage = st_bp->reserved_pages[src_seg];
4071 count = min(length - dst_offset, length - src_offset);
4072 memmove(page_address(dpage) + dst_offset,
4073 page_address(spage) + src_offset, count);
4074 src_offset += count;
4075 if (src_offset >= length) {
4079 dst_offset += count;
4080 if (dst_offset >= length) {
4088 /* Validate the options from command line or module parameters */
4089 static void validate_options(void)
4092 st_fixed_buffer_size = buffer_kbs * ST_KILOBYTE;
4093 if (max_sg_segs >= ST_FIRST_SG)
4094 st_max_sg_segs = max_sg_segs;
4098 /* Set the boot options. Syntax is defined in Documenation/scsi/st.txt.
4100 static int __init st_setup(char *str)
4102 int i, len, ints[5];
4105 stp = get_options(str, ARRAY_SIZE(ints), ints);
4108 for (i = 0; i < ints[0] && i < ARRAY_SIZE(parms); i++)
4110 *parms[i].val = ints[i + 1];
4112 while (stp != NULL) {
4113 for (i = 0; i < ARRAY_SIZE(parms); i++) {
4114 len = strlen(parms[i].name);
4115 if (!strncmp(stp, parms[i].name, len) &&
4116 (*(stp + len) == ':' || *(stp + len) == '=')) {
4119 simple_strtoul(stp + len + 1, NULL, 0);
4121 printk(KERN_WARNING "st: Obsolete parameter %s\n",
4126 if (i >= ARRAY_SIZE(parms))
4127 printk(KERN_WARNING "st: invalid parameter in '%s'\n",
4129 stp = strchr(stp, ',');
4140 __setup("st=", st_setup);
4144 static const struct file_operations st_fops =
4146 .owner = THIS_MODULE,
4149 .unlocked_ioctl = st_ioctl,
4150 #ifdef CONFIG_COMPAT
4151 .compat_ioctl = st_compat_ioctl,
4155 .release = st_release,
4156 .llseek = noop_llseek,
4159 static int create_one_cdev(struct scsi_tape *tape, int mode, int rew)
4165 struct st_modedef *STm = &(tape->modes[mode]);
4167 int dev_num = tape->index;
4169 cdev_devno = MKDEV(SCSI_TAPE_MAJOR, TAPE_MINOR(dev_num, mode, rew));
4171 cdev = cdev_alloc();
4173 pr_err("st%d: out of memory. Device not attached.\n", dev_num);
4177 cdev->owner = THIS_MODULE;
4178 cdev->ops = &st_fops;
4179 STm->cdevs[rew] = cdev;
4181 error = cdev_add(cdev, cdev_devno, 1);
4183 pr_err("st%d: Can't add %s-rewind mode %d\n", dev_num,
4184 rew ? "non" : "auto", mode);
4185 pr_err("st%d: Device not attached.\n", dev_num);
4189 i = mode << (4 - ST_NBR_MODE_BITS);
4190 snprintf(name, 10, "%s%s%s", rew ? "n" : "",
4191 tape->name, st_formats[i]);
4193 dev = device_create(&st_sysfs_class, &tape->device->sdev_gendev,
4194 cdev_devno, &tape->modes[mode], "%s", name);
4196 pr_err("st%d: device_create failed\n", dev_num);
4197 error = PTR_ERR(dev);
4201 STm->devs[rew] = dev;
4205 cdev_del(STm->cdevs[rew]);
4207 STm->cdevs[rew] = NULL;
4208 STm->devs[rew] = NULL;
4212 static int create_cdevs(struct scsi_tape *tape)
4215 for (mode = 0; mode < ST_NBR_MODES; ++mode) {
4216 error = create_one_cdev(tape, mode, 0);
4219 error = create_one_cdev(tape, mode, 1);
4224 return sysfs_create_link(&tape->device->sdev_gendev.kobj,
4225 &tape->modes[0].devs[0]->kobj, "tape");
4228 static void remove_cdevs(struct scsi_tape *tape)
4231 sysfs_remove_link(&tape->device->sdev_gendev.kobj, "tape");
4232 for (mode = 0; mode < ST_NBR_MODES; mode++) {
4233 struct st_modedef *STm = &(tape->modes[mode]);
4234 for (rew = 0; rew < 2; rew++) {
4235 if (STm->cdevs[rew])
4236 cdev_del(STm->cdevs[rew]);
4238 device_unregister(STm->devs[rew]);
4243 static int st_probe(struct device *dev)
4245 struct scsi_device *SDp = to_scsi_device(dev);
4246 struct scsi_tape *tpnt = NULL;
4247 struct st_modedef *STm;
4248 struct st_partstat *STps;
4249 struct st_buffer *buffer;
4252 if (SDp->type != TYPE_TAPE)
4254 if (st_incompatible(SDp)) {
4255 sdev_printk(KERN_INFO, SDp,
4256 "OnStream tapes are no longer supported;\n");
4257 sdev_printk(KERN_INFO, SDp,
4258 "please mail to linux-scsi@vger.kernel.org.\n");
4262 scsi_autopm_get_device(SDp);
4263 i = queue_max_segments(SDp->request_queue);
4264 if (st_max_sg_segs < i)
4266 buffer = new_tape_buffer(i);
4267 if (buffer == NULL) {
4268 sdev_printk(KERN_ERR, SDp,
4269 "st: Can't allocate new tape buffer. "
4270 "Device not attached.\n");
4274 tpnt = kzalloc(sizeof(struct scsi_tape), GFP_KERNEL);
4276 sdev_printk(KERN_ERR, SDp,
4277 "st: Can't allocate device descriptor.\n");
4278 goto out_buffer_free;
4280 kref_init(&tpnt->kref);
4283 if (SDp->scsi_level <= 2)
4284 tpnt->tape_type = MT_ISSCSI1;
4286 tpnt->tape_type = MT_ISSCSI2;
4288 tpnt->buffer = buffer;
4289 tpnt->buffer->last_SRpnt = NULL;
4294 tpnt->drv_buffer = 1; /* Try buffering if no mode sense */
4295 tpnt->use_pf = (SDp->scsi_level >= SCSI_2);
4297 tpnt->do_auto_lock = ST_AUTO_LOCK;
4298 tpnt->can_bsr = (SDp->scsi_level > 2 ? 1 : ST_IN_FILE_POS); /* BSR mandatory in SCSI3 */
4299 tpnt->can_partitions = 0;
4300 tpnt->two_fm = ST_TWO_FM;
4301 tpnt->fast_mteom = ST_FAST_MTEOM;
4302 tpnt->scsi2_logical = ST_SCSI2LOGICAL;
4303 tpnt->sili = ST_SILI;
4304 tpnt->immediate = ST_NOWAIT;
4305 tpnt->immediate_filemark = 0;
4306 tpnt->default_drvbuffer = 0xff; /* No forced buffering */
4307 tpnt->partition = 0;
4308 tpnt->new_partition = 0;
4309 tpnt->nbr_partitions = 0;
4310 blk_queue_rq_timeout(tpnt->device->request_queue, ST_TIMEOUT);
4311 tpnt->long_timeout = ST_LONG_TIMEOUT;
4312 tpnt->try_dio = try_direct_io;
4314 for (i = 0; i < ST_NBR_MODES; i++) {
4315 STm = &(tpnt->modes[i]);
4317 STm->sysv = ST_SYSV;
4318 STm->defaults_for_writes = 0;
4319 STm->do_async_writes = ST_ASYNC_WRITES;
4320 STm->do_buffer_writes = ST_BUFFER_WRITES;
4321 STm->do_read_ahead = ST_READ_AHEAD;
4322 STm->default_compression = ST_DONT_TOUCH;
4323 STm->default_blksize = (-1); /* No forced size */
4324 STm->default_density = (-1); /* No forced density */
4328 for (i = 0; i < ST_NBR_PARTITIONS; i++) {
4329 STps = &(tpnt->ps[i]);
4331 STps->eof = ST_NOEOF;
4333 STps->last_block_valid = 0;
4334 STps->drv_block = (-1);
4335 STps->drv_file = (-1);
4338 tpnt->current_mode = 0;
4339 tpnt->modes[0].defined = 1;
4341 tpnt->density_changed = tpnt->compression_changed =
4342 tpnt->blksize_changed = 0;
4343 mutex_init(&tpnt->lock);
4345 idr_preload(GFP_KERNEL);
4346 spin_lock(&st_index_lock);
4347 error = idr_alloc(&st_index_idr, tpnt, 0, ST_MAX_TAPES + 1, GFP_NOWAIT);
4348 spin_unlock(&st_index_lock);
4351 pr_warn("st: idr allocation failed: %d\n", error);
4354 tpnt->index = error;
4355 sprintf(tpnt->name, "st%d", tpnt->index);
4356 tpnt->stats = kzalloc(sizeof(struct scsi_tape_stats), GFP_KERNEL);
4357 if (tpnt->stats == NULL) {
4358 sdev_printk(KERN_ERR, SDp,
4359 "st: Can't allocate statistics.\n");
4360 goto out_idr_remove;
4363 dev_set_drvdata(dev, tpnt);
4366 error = create_cdevs(tpnt);
4368 goto out_remove_devs;
4369 scsi_autopm_put_device(SDp);
4371 sdev_printk(KERN_NOTICE, SDp,
4372 "Attached scsi tape %s\n", tpnt->name);
4373 sdev_printk(KERN_INFO, SDp, "%s: try direct i/o: %s (alignment %d B)\n",
4374 tpnt->name, tpnt->try_dio ? "yes" : "no",
4375 queue_dma_alignment(SDp->request_queue) + 1);
4383 spin_lock(&st_index_lock);
4384 idr_remove(&st_index_idr, tpnt->index);
4385 spin_unlock(&st_index_lock);
4391 scsi_autopm_put_device(SDp);
4396 static int st_remove(struct device *dev)
4398 struct scsi_tape *tpnt = dev_get_drvdata(dev);
4399 int index = tpnt->index;
4401 scsi_autopm_get_device(to_scsi_device(dev));
4404 mutex_lock(&st_ref_mutex);
4405 kref_put(&tpnt->kref, scsi_tape_release);
4406 mutex_unlock(&st_ref_mutex);
4407 spin_lock(&st_index_lock);
4408 idr_remove(&st_index_idr, index);
4409 spin_unlock(&st_index_lock);
4414 * scsi_tape_release - Called to free the Scsi_Tape structure
4415 * @kref: pointer to embedded kref
4417 * st_ref_mutex must be held entering this routine. Because it is
4418 * called on last put, you should always use the scsi_tape_get()
4419 * scsi_tape_put() helpers which manipulate the semaphore directly
4420 * and never do a direct kref_put().
4422 static void scsi_tape_release(struct kref *kref)
4424 struct scsi_tape *tpnt = to_scsi_tape(kref);
4426 tpnt->device = NULL;
4429 normalize_buffer(tpnt->buffer);
4430 kfree(tpnt->buffer->reserved_pages);
4431 kfree(tpnt->buffer);
4439 static struct class st_sysfs_class = {
4440 .name = "scsi_tape",
4441 .dev_groups = st_dev_groups,
4444 static int __init init_st(void)
4450 printk(KERN_INFO "st: Version %s, fixed bufsize %d, s/g segs %d\n",
4451 verstr, st_fixed_buffer_size, st_max_sg_segs);
4453 debugging = (debug_flag > 0) ? debug_flag : NO_DEBUG;
4455 printk(KERN_INFO "st: Debugging enabled debug_flag = %d\n",
4459 err = class_register(&st_sysfs_class);
4461 pr_err("Unable register sysfs class for SCSI tapes\n");
4465 err = register_chrdev_region(MKDEV(SCSI_TAPE_MAJOR, 0),
4466 ST_MAX_TAPE_ENTRIES, "st");
4468 printk(KERN_ERR "Unable to get major %d for SCSI tapes\n",
4473 err = scsi_register_driver(&st_template.gendrv);
4480 unregister_chrdev_region(MKDEV(SCSI_TAPE_MAJOR, 0),
4481 ST_MAX_TAPE_ENTRIES);
4483 class_unregister(&st_sysfs_class);
4487 static void __exit exit_st(void)
4489 scsi_unregister_driver(&st_template.gendrv);
4490 unregister_chrdev_region(MKDEV(SCSI_TAPE_MAJOR, 0),
4491 ST_MAX_TAPE_ENTRIES);
4492 class_unregister(&st_sysfs_class);
4493 idr_destroy(&st_index_idr);
4494 printk(KERN_INFO "st: Unloaded.\n");
4497 module_init(init_st);
4498 module_exit(exit_st);
4501 /* The sysfs driver interface. Read-only at the moment */
4502 static ssize_t try_direct_io_show(struct device_driver *ddp, char *buf)
4504 return scnprintf(buf, PAGE_SIZE, "%d\n", try_direct_io);
4506 static DRIVER_ATTR_RO(try_direct_io);
4508 static ssize_t fixed_buffer_size_show(struct device_driver *ddp, char *buf)
4510 return scnprintf(buf, PAGE_SIZE, "%d\n", st_fixed_buffer_size);
4512 static DRIVER_ATTR_RO(fixed_buffer_size);
4514 static ssize_t max_sg_segs_show(struct device_driver *ddp, char *buf)
4516 return scnprintf(buf, PAGE_SIZE, "%d\n", st_max_sg_segs);
4518 static DRIVER_ATTR_RO(max_sg_segs);
4520 static ssize_t version_show(struct device_driver *ddd, char *buf)
4522 return scnprintf(buf, PAGE_SIZE, "[%s]\n", verstr);
4524 static DRIVER_ATTR_RO(version);
4527 static ssize_t debug_flag_store(struct device_driver *ddp,
4528 const char *buf, size_t count)
4530 /* We only care what the first byte of the data is the rest is unused.
4531 * if it's a '1' we turn on debug and if it's a '0' we disable it. All
4532 * other values have -EINVAL returned if they are passed in.
4535 if (buf[0] == '0') {
4536 debugging = NO_DEBUG;
4538 } else if (buf[0] == '1') {
4546 static ssize_t debug_flag_show(struct device_driver *ddp, char *buf)
4548 return scnprintf(buf, PAGE_SIZE, "%d\n", debugging);
4550 static DRIVER_ATTR_RW(debug_flag);
4553 static struct attribute *st_drv_attrs[] = {
4554 &driver_attr_try_direct_io.attr,
4555 &driver_attr_fixed_buffer_size.attr,
4556 &driver_attr_max_sg_segs.attr,
4557 &driver_attr_version.attr,
4559 &driver_attr_debug_flag.attr,
4563 ATTRIBUTE_GROUPS(st_drv);
4565 /* The sysfs simple class interface */
4567 defined_show(struct device *dev, struct device_attribute *attr, char *buf)
4569 struct st_modedef *STm = dev_get_drvdata(dev);
4572 l = snprintf(buf, PAGE_SIZE, "%d\n", STm->defined);
4575 static DEVICE_ATTR_RO(defined);
4578 default_blksize_show(struct device *dev, struct device_attribute *attr,
4581 struct st_modedef *STm = dev_get_drvdata(dev);
4584 l = snprintf(buf, PAGE_SIZE, "%d\n", STm->default_blksize);
4587 static DEVICE_ATTR_RO(default_blksize);
4590 default_density_show(struct device *dev, struct device_attribute *attr,
4593 struct st_modedef *STm = dev_get_drvdata(dev);
4597 fmt = STm->default_density >= 0 ? "0x%02x\n" : "%d\n";
4598 l = snprintf(buf, PAGE_SIZE, fmt, STm->default_density);
4601 static DEVICE_ATTR_RO(default_density);
4604 default_compression_show(struct device *dev, struct device_attribute *attr,
4607 struct st_modedef *STm = dev_get_drvdata(dev);
4610 l = snprintf(buf, PAGE_SIZE, "%d\n", STm->default_compression - 1);
4613 static DEVICE_ATTR_RO(default_compression);
4616 options_show(struct device *dev, struct device_attribute *attr, char *buf)
4618 struct st_modedef *STm = dev_get_drvdata(dev);
4619 struct scsi_tape *STp = STm->tape;
4623 options = STm->do_buffer_writes ? MT_ST_BUFFER_WRITES : 0;
4624 options |= STm->do_async_writes ? MT_ST_ASYNC_WRITES : 0;
4625 options |= STm->do_read_ahead ? MT_ST_READ_AHEAD : 0;
4626 DEB( options |= debugging ? MT_ST_DEBUGGING : 0 );
4627 options |= STp->two_fm ? MT_ST_TWO_FM : 0;
4628 options |= STp->fast_mteom ? MT_ST_FAST_MTEOM : 0;
4629 options |= STm->defaults_for_writes ? MT_ST_DEF_WRITES : 0;
4630 options |= STp->can_bsr ? MT_ST_CAN_BSR : 0;
4631 options |= STp->omit_blklims ? MT_ST_NO_BLKLIMS : 0;
4632 options |= STp->can_partitions ? MT_ST_CAN_PARTITIONS : 0;
4633 options |= STp->scsi2_logical ? MT_ST_SCSI2LOGICAL : 0;
4634 options |= STm->sysv ? MT_ST_SYSV : 0;
4635 options |= STp->immediate ? MT_ST_NOWAIT : 0;
4636 options |= STp->immediate_filemark ? MT_ST_NOWAIT_EOF : 0;
4637 options |= STp->sili ? MT_ST_SILI : 0;
4639 l = snprintf(buf, PAGE_SIZE, "0x%08x\n", options);
4642 static DEVICE_ATTR_RO(options);
4644 /* Support for tape stats */
4647 * read_cnt_show - return read count - count of reads made from tape drive
4648 * @dev: struct device
4649 * @attr: attribute structure
4650 * @buf: buffer to return formatted data in
4652 static ssize_t read_cnt_show(struct device *dev,
4653 struct device_attribute *attr, char *buf)
4655 struct st_modedef *STm = dev_get_drvdata(dev);
4657 return sprintf(buf, "%lld",
4658 (long long)atomic64_read(&STm->tape->stats->read_cnt));
4660 static DEVICE_ATTR_RO(read_cnt);
4663 * read_byte_cnt_show - return read byte count - tape drives
4664 * may use blocks less than 512 bytes this gives the raw byte count of
4665 * of data read from the tape drive.
4666 * @dev: struct device
4667 * @attr: attribute structure
4668 * @buf: buffer to return formatted data in
4670 static ssize_t read_byte_cnt_show(struct device *dev,
4671 struct device_attribute *attr, char *buf)
4673 struct st_modedef *STm = dev_get_drvdata(dev);
4675 return sprintf(buf, "%lld",
4676 (long long)atomic64_read(&STm->tape->stats->read_byte_cnt));
4678 static DEVICE_ATTR_RO(read_byte_cnt);
4681 * read_ns_show - return read ns - overall time spent waiting on reads in ns.
4682 * @dev: struct device
4683 * @attr: attribute structure
4684 * @buf: buffer to return formatted data in
4686 static ssize_t read_ns_show(struct device *dev,
4687 struct device_attribute *attr, char *buf)
4689 struct st_modedef *STm = dev_get_drvdata(dev);
4691 return sprintf(buf, "%lld",
4692 (long long)atomic64_read(&STm->tape->stats->tot_read_time));
4694 static DEVICE_ATTR_RO(read_ns);
4697 * write_cnt_show - write count - number of user calls
4698 * to write(2) that have written data to tape.
4699 * @dev: struct device
4700 * @attr: attribute structure
4701 * @buf: buffer to return formatted data in
4703 static ssize_t write_cnt_show(struct device *dev,
4704 struct device_attribute *attr, char *buf)
4706 struct st_modedef *STm = dev_get_drvdata(dev);
4708 return sprintf(buf, "%lld",
4709 (long long)atomic64_read(&STm->tape->stats->write_cnt));
4711 static DEVICE_ATTR_RO(write_cnt);
4714 * write_byte_cnt_show - write byte count - raw count of
4715 * bytes written to tape.
4716 * @dev: struct device
4717 * @attr: attribute structure
4718 * @buf: buffer to return formatted data in
4720 static ssize_t write_byte_cnt_show(struct device *dev,
4721 struct device_attribute *attr, char *buf)
4723 struct st_modedef *STm = dev_get_drvdata(dev);
4725 return sprintf(buf, "%lld",
4726 (long long)atomic64_read(&STm->tape->stats->write_byte_cnt));
4728 static DEVICE_ATTR_RO(write_byte_cnt);
4731 * write_ns_show - write ns - number of nanoseconds waiting on write
4732 * requests to complete.
4733 * @dev: struct device
4734 * @attr: attribute structure
4735 * @buf: buffer to return formatted data in
4737 static ssize_t write_ns_show(struct device *dev,
4738 struct device_attribute *attr, char *buf)
4740 struct st_modedef *STm = dev_get_drvdata(dev);
4742 return sprintf(buf, "%lld",
4743 (long long)atomic64_read(&STm->tape->stats->tot_write_time));
4745 static DEVICE_ATTR_RO(write_ns);
4748 * in_flight_show - number of I/Os currently in flight -
4749 * in most cases this will be either 0 or 1. It may be higher if someone
4750 * has also issued other SCSI commands such as via an ioctl.
4751 * @dev: struct device
4752 * @attr: attribute structure
4753 * @buf: buffer to return formatted data in
4755 static ssize_t in_flight_show(struct device *dev,
4756 struct device_attribute *attr, char *buf)
4758 struct st_modedef *STm = dev_get_drvdata(dev);
4760 return sprintf(buf, "%lld",
4761 (long long)atomic64_read(&STm->tape->stats->in_flight));
4763 static DEVICE_ATTR_RO(in_flight);
4766 * io_ns_show - io wait ns - this is the number of ns spent
4767 * waiting on all I/O to complete. This includes tape movement commands
4768 * such as rewinding, seeking to end of file or tape, it also includes
4769 * read and write. To determine the time spent on tape movement
4770 * subtract the read and write ns from this value.
4771 * @dev: struct device
4772 * @attr: attribute structure
4773 * @buf: buffer to return formatted data in
4775 static ssize_t io_ns_show(struct device *dev,
4776 struct device_attribute *attr, char *buf)
4778 struct st_modedef *STm = dev_get_drvdata(dev);
4780 return sprintf(buf, "%lld",
4781 (long long)atomic64_read(&STm->tape->stats->tot_io_time));
4783 static DEVICE_ATTR_RO(io_ns);
4786 * other_cnt_show - other io count - this is the number of
4787 * I/O requests other than read and write requests.
4788 * Typically these are tape movement requests but will include driver
4789 * tape movement. This includes only requests issued by the st driver.
4790 * @dev: struct device
4791 * @attr: attribute structure
4792 * @buf: buffer to return formatted data in
4794 static ssize_t other_cnt_show(struct device *dev,
4795 struct device_attribute *attr, char *buf)
4797 struct st_modedef *STm = dev_get_drvdata(dev);
4799 return sprintf(buf, "%lld",
4800 (long long)atomic64_read(&STm->tape->stats->other_cnt));
4802 static DEVICE_ATTR_RO(other_cnt);
4805 * resid_cnt_show - A count of the number of times we get a residual
4806 * count - this should indicate someone issuing reads larger than the
4807 * block size on tape.
4808 * @dev: struct device
4809 * @attr: attribute structure
4810 * @buf: buffer to return formatted data in
4812 static ssize_t resid_cnt_show(struct device *dev,
4813 struct device_attribute *attr, char *buf)
4815 struct st_modedef *STm = dev_get_drvdata(dev);
4817 return sprintf(buf, "%lld",
4818 (long long)atomic64_read(&STm->tape->stats->resid_cnt));
4820 static DEVICE_ATTR_RO(resid_cnt);
4822 static struct attribute *st_dev_attrs[] = {
4823 &dev_attr_defined.attr,
4824 &dev_attr_default_blksize.attr,
4825 &dev_attr_default_density.attr,
4826 &dev_attr_default_compression.attr,
4827 &dev_attr_options.attr,
4831 static struct attribute *st_stats_attrs[] = {
4832 &dev_attr_read_cnt.attr,
4833 &dev_attr_read_byte_cnt.attr,
4834 &dev_attr_read_ns.attr,
4835 &dev_attr_write_cnt.attr,
4836 &dev_attr_write_byte_cnt.attr,
4837 &dev_attr_write_ns.attr,
4838 &dev_attr_in_flight.attr,
4839 &dev_attr_io_ns.attr,
4840 &dev_attr_other_cnt.attr,
4841 &dev_attr_resid_cnt.attr,
4845 static struct attribute_group stats_group = {
4847 .attrs = st_stats_attrs,
4850 static struct attribute_group st_group = {
4851 .attrs = st_dev_attrs,
4854 static const struct attribute_group *st_dev_groups[] = {
4860 /* The following functions may be useful for a larger audience. */
4861 static int sgl_map_user_pages(struct st_buffer *STbp,
4862 const unsigned int max_pages, unsigned long uaddr,
4863 size_t count, int rw)
4865 unsigned long end = (uaddr + count + PAGE_SIZE - 1) >> PAGE_SHIFT;
4866 unsigned long start = uaddr >> PAGE_SHIFT;
4867 const int nr_pages = end - start;
4869 struct page **pages;
4870 struct rq_map_data *mdata = &STbp->map_data;
4872 /* User attempted Overflow! */
4873 if ((uaddr + count) < uaddr)
4877 if (nr_pages > max_pages)
4884 pages = kmalloc_array(max_pages, sizeof(*pages), GFP_KERNEL);
4888 /* Try to fault in all of the necessary pages */
4889 /* rw==READ means read from drive, write into memory area */
4890 res = pin_user_pages_fast(uaddr, nr_pages, rw == READ ? FOLL_WRITE : 0,
4893 /* Errors and no page mapped should return here */
4897 for (i=0; i < nr_pages; i++) {
4898 /* FIXME: flush superflous for rw==READ,
4899 * probably wrong function for rw==WRITE
4901 flush_dcache_page(pages[i]);
4904 mdata->offset = uaddr & ~PAGE_MASK;
4905 STbp->mapped_pages = pages;
4910 unpin_user_pages(pages, res);
4918 /* And unmap them... */
4919 static int sgl_unmap_user_pages(struct st_buffer *STbp,
4920 const unsigned int nr_pages, int dirtied)
4922 /* FIXME: cache flush missing for rw==READ */
4923 unpin_user_pages_dirty_lock(STbp->mapped_pages, nr_pages, dirtied);
4925 kfree(STbp->mapped_pages);
4926 STbp->mapped_pages = NULL;