sd.c revision 1.169.2.11 1 /* $NetBSD: sd.c,v 1.169.2.11 2002/10/18 02:44:19 nathanw Exp $ */
2
3 /*-
4 * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Charles M. Hannum.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 * 3. All advertising materials mentioning features or use of this software
19 * must display the following acknowledgement:
20 * This product includes software developed by the NetBSD
21 * Foundation, Inc. and its contributors.
22 * 4. Neither the name of The NetBSD Foundation nor the names of its
23 * contributors may be used to endorse or promote products derived
24 * from this software without specific prior written permission.
25 *
26 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 * POSSIBILITY OF SUCH DAMAGE.
37 */
38
39 /*
40 * Originally written by Julian Elischer (julian (at) dialix.oz.au)
41 * for TRW Financial Systems for use under the MACH(2.5) operating system.
42 *
43 * TRW Financial Systems, in accordance with their agreement with Carnegie
44 * Mellon University, makes this software available to CMU to distribute
45 * or use in any manner that they see fit as long as this message is kept with
46 * the software. For this reason TFS also grants any other persons or
47 * organisations permission to use or modify this software.
48 *
49 * TFS supplies this software to be publicly redistributed
50 * on the understanding that TFS is not responsible for the correct
51 * functioning of this software in any circumstances.
52 *
53 * Ported to run under 386BSD by Julian Elischer (julian (at) dialix.oz.au) Sept 1992
54 */
55
56 #include <sys/cdefs.h>
57 __KERNEL_RCSID(0, "$NetBSD: sd.c,v 1.169.2.11 2002/10/18 02:44:19 nathanw Exp $");
58
59 #include "opt_scsi.h"
60 #include "rnd.h"
61
62 #include <sys/param.h>
63 #include <sys/systm.h>
64 #include <sys/kernel.h>
65 #include <sys/file.h>
66 #include <sys/stat.h>
67 #include <sys/ioctl.h>
68 #include <sys/scsiio.h>
69 #include <sys/buf.h>
70 #include <sys/uio.h>
71 #include <sys/malloc.h>
72 #include <sys/errno.h>
73 #include <sys/device.h>
74 #include <sys/disklabel.h>
75 #include <sys/disk.h>
76 #include <sys/proc.h>
77 #include <sys/conf.h>
78 #include <sys/vnode.h>
79 #if NRND > 0
80 #include <sys/rnd.h>
81 #endif
82
83 #include <dev/scsipi/scsipi_all.h>
84 #include <dev/scsipi/scsi_all.h>
85 #include <dev/scsipi/scsipi_disk.h>
86 #include <dev/scsipi/scsi_disk.h>
87 #include <dev/scsipi/scsiconf.h>
88 #include <dev/scsipi/sdvar.h>
89
90 #include "sd.h" /* NSD_SCSIBUS and NSD_ATAPIBUS come from here */
91
92 #define SDUNIT(dev) DISKUNIT(dev)
93 #define SDPART(dev) DISKPART(dev)
94 #define SDMINOR(unit, part) DISKMINOR(unit, part)
95 #define MAKESDDEV(maj, unit, part) MAKEDISKDEV(maj, unit, part)
96
97 #define SDLABELDEV(dev) (MAKESDDEV(major(dev), SDUNIT(dev), RAW_PART))
98
99 int sdlock __P((struct sd_softc *));
100 void sdunlock __P((struct sd_softc *));
101 void sdminphys __P((struct buf *));
102 void sdgetdefaultlabel __P((struct sd_softc *, struct disklabel *));
103 void sdgetdisklabel __P((struct sd_softc *));
104 void sdstart __P((struct scsipi_periph *));
105 void sddone __P((struct scsipi_xfer *));
106 void sd_shutdown __P((void *));
107 int sd_reassign_blocks __P((struct sd_softc *, u_long));
108 int sd_interpret_sense __P((struct scsipi_xfer *));
109
110 extern struct cfdriver sd_cd;
111
112 dev_type_open(sdopen);
113 dev_type_close(sdclose);
114 dev_type_read(sdread);
115 dev_type_write(sdwrite);
116 dev_type_ioctl(sdioctl);
117 dev_type_strategy(sdstrategy);
118 dev_type_dump(sddump);
119 dev_type_size(sdsize);
120
121 const struct bdevsw sd_bdevsw = {
122 sdopen, sdclose, sdstrategy, sdioctl, sddump, sdsize, D_DISK
123 };
124
125 const struct cdevsw sd_cdevsw = {
126 sdopen, sdclose, sdread, sdwrite, sdioctl,
127 nostop, notty, nopoll, nommap, D_DISK
128 };
129
130 struct dkdriver sddkdriver = { sdstrategy };
131
132 const struct scsipi_periphsw sd_switch = {
133 sd_interpret_sense, /* check our error handler first */
134 sdstart, /* have a queue, served by this */
135 NULL, /* have no async handler */
136 sddone, /* deal with stats at interrupt time */
137 };
138
139 /*
140 * Attach routine common to atapi & scsi.
141 */
142 void
143 sdattach(parent, sd, periph, ops)
144 struct device *parent;
145 struct sd_softc *sd;
146 struct scsipi_periph *periph;
147 const struct sd_ops *ops;
148 {
149 int error, result;
150 struct disk_parms *dp = &sd->params;
151 char pbuf[9];
152
153 SC_DEBUG(periph, SCSIPI_DB2, ("sdattach: "));
154
155 bufq_alloc(&sd->buf_queue, BUFQ_DISKSORT|BUFQ_SORT_RAWBLOCK);
156
157 /*
158 * Store information needed to contact our base driver
159 */
160 sd->sc_periph = periph;
161 sd->sc_ops = ops;
162
163 periph->periph_dev = &sd->sc_dev;
164 periph->periph_switch = &sd_switch;
165
166 /*
167 * Increase our openings to the maximum-per-periph
168 * supported by the adapter. This will either be
169 * clamped down or grown by the adapter if necessary.
170 */
171 periph->periph_openings =
172 SCSIPI_CHAN_MAX_PERIPH(periph->periph_channel);
173 periph->periph_flags |= PERIPH_GROW_OPENINGS;
174
175 /*
176 * Initialize and attach the disk structure.
177 */
178 sd->sc_dk.dk_driver = &sddkdriver;
179 sd->sc_dk.dk_name = sd->sc_dev.dv_xname;
180 disk_attach(&sd->sc_dk);
181
182 /*
183 * Use the subdriver to request information regarding the drive.
184 */
185 printf("\n");
186
187 error = scsipi_start(periph, SSS_START,
188 XS_CTL_DISCOVERY | XS_CTL_IGNORE_ILLEGAL_REQUEST |
189 XS_CTL_IGNORE_MEDIA_CHANGE | XS_CTL_SILENT);
190
191 if (error)
192 result = SDGP_RESULT_OFFLINE;
193 else
194 result = (*sd->sc_ops->sdo_get_parms)(sd, &sd->params,
195 XS_CTL_DISCOVERY);
196 printf("%s: ", sd->sc_dev.dv_xname);
197 switch (result) {
198 case SDGP_RESULT_OK:
199 format_bytes(pbuf, sizeof(pbuf),
200 (u_int64_t)dp->disksize * dp->blksize);
201 printf(
202 "%s, %ld cyl, %ld head, %ld sec, %ld bytes/sect x %lu sectors",
203 pbuf, dp->cyls, dp->heads, dp->sectors, dp->blksize,
204 dp->disksize);
205 break;
206
207 case SDGP_RESULT_OFFLINE:
208 printf("drive offline");
209 break;
210
211 case SDGP_RESULT_UNFORMATTED:
212 printf("unformatted media");
213 break;
214
215 #ifdef DIAGNOSTIC
216 default:
217 panic("sdattach: unknown result from get_parms");
218 break;
219 #endif
220 }
221 printf("\n");
222
223 /*
224 * Establish a shutdown hook so that we can ensure that
225 * our data has actually made it onto the platter at
226 * shutdown time. Note that this relies on the fact
227 * that the shutdown hook code puts us at the head of
228 * the list (thus guaranteeing that our hook runs before
229 * our ancestors').
230 */
231 if ((sd->sc_sdhook =
232 shutdownhook_establish(sd_shutdown, sd)) == NULL)
233 printf("%s: WARNING: unable to establish shutdown hook\n",
234 sd->sc_dev.dv_xname);
235
236 #if NRND > 0
237 /*
238 * attach the device into the random source list
239 */
240 rnd_attach_source(&sd->rnd_source, sd->sc_dev.dv_xname,
241 RND_TYPE_DISK, 0);
242 #endif
243 }
244
245 int
246 sdactivate(self, act)
247 struct device *self;
248 enum devact act;
249 {
250 int rv = 0;
251
252 switch (act) {
253 case DVACT_ACTIVATE:
254 rv = EOPNOTSUPP;
255 break;
256
257 case DVACT_DEACTIVATE:
258 /*
259 * Nothing to do; we key off the device's DVF_ACTIVE.
260 */
261 break;
262 }
263 return (rv);
264 }
265
266 int
267 sddetach(self, flags)
268 struct device *self;
269 int flags;
270 {
271 struct sd_softc *sd = (struct sd_softc *) self;
272 struct buf *bp;
273 int s, bmaj, cmaj, i, mn;
274
275 /* locate the major number */
276 bmaj = bdevsw_lookup_major(&sd_bdevsw);
277 cmaj = cdevsw_lookup_major(&sd_cdevsw);
278
279 s = splbio();
280
281 /* Kill off any queued buffers. */
282 while ((bp = BUFQ_GET(&sd->buf_queue)) != NULL) {
283 bp->b_error = EIO;
284 bp->b_flags |= B_ERROR;
285 bp->b_resid = bp->b_bcount;
286 biodone(bp);
287 }
288
289 bufq_free(&sd->buf_queue);
290
291 /* Kill off any pending commands. */
292 scsipi_kill_pending(sd->sc_periph);
293
294 splx(s);
295
296 /* Nuke the vnodes for any open instances */
297 for (i = 0; i < MAXPARTITIONS; i++) {
298 mn = SDMINOR(self->dv_unit, i);
299 vdevgone(bmaj, mn, mn, VBLK);
300 vdevgone(cmaj, mn, mn, VCHR);
301 }
302
303 /* Detach from the disk list. */
304 disk_detach(&sd->sc_dk);
305
306 /* Get rid of the shutdown hook. */
307 shutdownhook_disestablish(sd->sc_sdhook);
308
309 #if NRND > 0
310 /* Unhook the entropy source. */
311 rnd_detach_source(&sd->rnd_source);
312 #endif
313
314 return (0);
315 }
316
317 /*
318 * Wait interruptibly for an exclusive lock.
319 *
320 * XXX
321 * Several drivers do this; it should be abstracted and made MP-safe.
322 */
323 int
324 sdlock(sd)
325 struct sd_softc *sd;
326 {
327 int error;
328
329 while ((sd->flags & SDF_LOCKED) != 0) {
330 sd->flags |= SDF_WANTED;
331 if ((error = tsleep(sd, PRIBIO | PCATCH, "sdlck", 0)) != 0)
332 return (error);
333 }
334 sd->flags |= SDF_LOCKED;
335 return (0);
336 }
337
338 /*
339 * Unlock and wake up any waiters.
340 */
341 void
342 sdunlock(sd)
343 struct sd_softc *sd;
344 {
345
346 sd->flags &= ~SDF_LOCKED;
347 if ((sd->flags & SDF_WANTED) != 0) {
348 sd->flags &= ~SDF_WANTED;
349 wakeup(sd);
350 }
351 }
352
353 /*
354 * open the device. Make sure the partition info is a up-to-date as can be.
355 */
356 int
357 sdopen(dev, flag, fmt, p)
358 dev_t dev;
359 int flag, fmt;
360 struct proc *p;
361 {
362 struct sd_softc *sd;
363 struct scsipi_periph *periph;
364 struct scsipi_adapter *adapt;
365 int unit, part;
366 int error;
367
368 unit = SDUNIT(dev);
369 if (unit >= sd_cd.cd_ndevs)
370 return (ENXIO);
371 sd = sd_cd.cd_devs[unit];
372 if (sd == NULL)
373 return (ENXIO);
374
375 if ((sd->sc_dev.dv_flags & DVF_ACTIVE) == 0)
376 return (ENODEV);
377
378 periph = sd->sc_periph;
379 adapt = periph->periph_channel->chan_adapter;
380 part = SDPART(dev);
381
382 SC_DEBUG(periph, SCSIPI_DB1,
383 ("sdopen: dev=0x%x (unit %d (of %d), partition %d)\n", dev, unit,
384 sd_cd.cd_ndevs, part));
385
386 /*
387 * If this is the first open of this device, add a reference
388 * to the adapter.
389 */
390 if (sd->sc_dk.dk_openmask == 0 &&
391 (error = scsipi_adapter_addref(adapt)) != 0)
392 return (error);
393
394 if ((error = sdlock(sd)) != 0)
395 goto bad4;
396
397 if ((periph->periph_flags & PERIPH_OPEN) != 0) {
398 /*
399 * If any partition is open, but the disk has been invalidated,
400 * disallow further opens of non-raw partition
401 */
402 if ((periph->periph_flags & PERIPH_MEDIA_LOADED) == 0 &&
403 (part != RAW_PART || fmt != S_IFCHR)) {
404 error = EIO;
405 goto bad3;
406 }
407 } else {
408 /* Check that it is still responding and ok. */
409 error = scsipi_test_unit_ready(periph,
410 XS_CTL_IGNORE_ILLEGAL_REQUEST | XS_CTL_IGNORE_MEDIA_CHANGE |
411 XS_CTL_IGNORE_NOT_READY);
412 if (error)
413 goto bad3;
414
415 /*
416 * Start the pack spinning if necessary. Always allow the
417 * raw parition to be opened, for raw IOCTLs. Data transfers
418 * will check for SDEV_MEDIA_LOADED.
419 */
420 error = scsipi_start(periph, SSS_START,
421 XS_CTL_IGNORE_ILLEGAL_REQUEST |
422 XS_CTL_IGNORE_MEDIA_CHANGE | XS_CTL_SILENT);
423 if (error) {
424 if (part != RAW_PART || fmt != S_IFCHR)
425 goto bad3;
426 else
427 goto out;
428 }
429
430 periph->periph_flags |= PERIPH_OPEN;
431
432 if (periph->periph_flags & PERIPH_REMOVABLE) {
433 /* Lock the pack in. */
434 error = scsipi_prevent(periph, PR_PREVENT,
435 XS_CTL_IGNORE_ILLEGAL_REQUEST |
436 XS_CTL_IGNORE_MEDIA_CHANGE);
437 if (error)
438 goto bad;
439 }
440
441 if ((periph->periph_flags & PERIPH_MEDIA_LOADED) == 0) {
442 periph->periph_flags |= PERIPH_MEDIA_LOADED;
443
444 /*
445 * Load the physical device parameters.
446 *
447 * Note that if media is present but unformatted,
448 * we allow the open (so that it can be formatted!).
449 * The drive should refuse real I/O, if the media is
450 * unformatted.
451 */
452 if ((*sd->sc_ops->sdo_get_parms)(sd, &sd->params,
453 0) == SDGP_RESULT_OFFLINE) {
454 error = ENXIO;
455 goto bad2;
456 }
457 SC_DEBUG(periph, SCSIPI_DB3, ("Params loaded "));
458
459 /* Load the partition info if not already loaded. */
460 sdgetdisklabel(sd);
461 SC_DEBUG(periph, SCSIPI_DB3, ("Disklabel loaded "));
462 }
463 }
464
465 /* Check that the partition exists. */
466 if (part != RAW_PART &&
467 (part >= sd->sc_dk.dk_label->d_npartitions ||
468 sd->sc_dk.dk_label->d_partitions[part].p_fstype == FS_UNUSED)) {
469 error = ENXIO;
470 goto bad;
471 }
472
473 out: /* Insure only one open at a time. */
474 switch (fmt) {
475 case S_IFCHR:
476 sd->sc_dk.dk_copenmask |= (1 << part);
477 break;
478 case S_IFBLK:
479 sd->sc_dk.dk_bopenmask |= (1 << part);
480 break;
481 }
482 sd->sc_dk.dk_openmask =
483 sd->sc_dk.dk_copenmask | sd->sc_dk.dk_bopenmask;
484
485 SC_DEBUG(periph, SCSIPI_DB3, ("open complete\n"));
486 sdunlock(sd);
487 return (0);
488
489 bad2:
490 periph->periph_flags &= ~PERIPH_MEDIA_LOADED;
491
492 bad:
493 if (sd->sc_dk.dk_openmask == 0) {
494 scsipi_prevent(periph, PR_ALLOW,
495 XS_CTL_IGNORE_ILLEGAL_REQUEST | XS_CTL_IGNORE_MEDIA_CHANGE);
496 periph->periph_flags &= ~PERIPH_OPEN;
497 }
498
499 bad3:
500 sdunlock(sd);
501 bad4:
502 if (sd->sc_dk.dk_openmask == 0)
503 scsipi_adapter_delref(adapt);
504 return (error);
505 }
506
507 /*
508 * close the device.. only called if we are the LAST occurence of an open
509 * device. Convenient now but usually a pain.
510 */
511 int
512 sdclose(dev, flag, fmt, p)
513 dev_t dev;
514 int flag, fmt;
515 struct proc *p;
516 {
517 struct sd_softc *sd = sd_cd.cd_devs[SDUNIT(dev)];
518 struct scsipi_periph *periph = sd->sc_periph;
519 struct scsipi_adapter *adapt = periph->periph_channel->chan_adapter;
520 int part = SDPART(dev);
521 int error;
522
523 if ((error = sdlock(sd)) != 0)
524 return (error);
525
526 switch (fmt) {
527 case S_IFCHR:
528 sd->sc_dk.dk_copenmask &= ~(1 << part);
529 break;
530 case S_IFBLK:
531 sd->sc_dk.dk_bopenmask &= ~(1 << part);
532 break;
533 }
534 sd->sc_dk.dk_openmask =
535 sd->sc_dk.dk_copenmask | sd->sc_dk.dk_bopenmask;
536
537 if (sd->sc_dk.dk_openmask == 0) {
538 /*
539 * If the disk cache needs flushing, and the disk supports
540 * it, do it now.
541 */
542 if ((sd->flags & SDF_DIRTY) != 0 &&
543 sd->sc_ops->sdo_flush != NULL) {
544 if ((*sd->sc_ops->sdo_flush)(sd, 0)) {
545 printf("%s: cache synchronization failed\n",
546 sd->sc_dev.dv_xname);
547 sd->flags &= ~SDF_FLUSHING;
548 } else
549 sd->flags &= ~(SDF_FLUSHING|SDF_DIRTY);
550 }
551
552 if (! (periph->periph_flags & PERIPH_KEEP_LABEL))
553 periph->periph_flags &= ~PERIPH_MEDIA_LOADED;
554
555 scsipi_wait_drain(periph);
556
557 if (periph->periph_flags & PERIPH_REMOVABLE) {
558 scsipi_prevent(periph, PR_ALLOW,
559 XS_CTL_IGNORE_ILLEGAL_REQUEST |
560 XS_CTL_IGNORE_NOT_READY);
561 }
562 periph->periph_flags &= ~PERIPH_OPEN;
563
564 scsipi_wait_drain(periph);
565
566 scsipi_adapter_delref(adapt);
567 }
568
569 sdunlock(sd);
570 return (0);
571 }
572
573 /*
574 * Actually translate the requested transfer into one the physical driver
575 * can understand. The transfer is described by a buf and will include
576 * only one physical transfer.
577 */
578 void
579 sdstrategy(bp)
580 struct buf *bp;
581 {
582 struct sd_softc *sd = sd_cd.cd_devs[SDUNIT(bp->b_dev)];
583 struct scsipi_periph *periph = sd->sc_periph;
584 struct disklabel *lp;
585 daddr_t blkno;
586 int s;
587 boolean_t sector_aligned;
588
589 SC_DEBUG(sd->sc_periph, SCSIPI_DB2, ("sdstrategy "));
590 SC_DEBUG(sd->sc_periph, SCSIPI_DB1,
591 ("%ld bytes @ blk %d\n", bp->b_bcount, bp->b_blkno));
592 /*
593 * If the device has been made invalid, error out
594 */
595 if ((periph->periph_flags & PERIPH_MEDIA_LOADED) == 0 ||
596 (sd->sc_dev.dv_flags & DVF_ACTIVE) == 0) {
597 if (periph->periph_flags & PERIPH_OPEN)
598 bp->b_error = EIO;
599 else
600 bp->b_error = ENODEV;
601 goto bad;
602 }
603
604 lp = sd->sc_dk.dk_label;
605
606 /*
607 * The transfer must be a whole number of blocks, offset must not be
608 * negative.
609 */
610 if (lp->d_secsize == DEV_BSIZE) {
611 sector_aligned = (bp->b_bcount & (DEV_BSIZE - 1)) == 0;
612 } else {
613 sector_aligned = (bp->b_bcount % lp->d_secsize) == 0;
614 }
615 if (!sector_aligned || bp->b_blkno < 0) {
616 bp->b_error = EINVAL;
617 goto bad;
618 }
619 /*
620 * If it's a null transfer, return immediatly
621 */
622 if (bp->b_bcount == 0)
623 goto done;
624
625 /*
626 * Do bounds checking, adjust transfer. if error, process.
627 * If end of partition, just return.
628 */
629 if (SDPART(bp->b_dev) != RAW_PART &&
630 bounds_check_with_label(bp, lp,
631 (sd->flags & (SDF_WLABEL|SDF_LABELLING)) != 0) <= 0)
632 goto done;
633
634 /*
635 * Now convert the block number to absolute and put it in
636 * terms of the device's logical block size.
637 */
638 if (lp->d_secsize == DEV_BSIZE)
639 blkno = bp->b_blkno;
640 else if (lp->d_secsize > DEV_BSIZE)
641 blkno = bp->b_blkno / (lp->d_secsize / DEV_BSIZE);
642 else
643 blkno = bp->b_blkno * (DEV_BSIZE / lp->d_secsize);
644
645 if (SDPART(bp->b_dev) != RAW_PART)
646 blkno += lp->d_partitions[SDPART(bp->b_dev)].p_offset;
647
648 bp->b_rawblkno = blkno;
649
650 s = splbio();
651
652 /*
653 * Place it in the queue of disk activities for this disk.
654 *
655 * XXX Only do disksort() if the current operating mode does not
656 * XXX include tagged queueing.
657 */
658 BUFQ_PUT(&sd->buf_queue, bp);
659
660 /*
661 * Tell the device to get going on the transfer if it's
662 * not doing anything, otherwise just wait for completion
663 */
664 sdstart(sd->sc_periph);
665
666 splx(s);
667 return;
668
669 bad:
670 bp->b_flags |= B_ERROR;
671 done:
672 /*
673 * Correctly set the buf to indicate a completed xfer
674 */
675 bp->b_resid = bp->b_bcount;
676 biodone(bp);
677 }
678
679 /*
680 * sdstart looks to see if there is a buf waiting for the device
681 * and that the device is not already busy. If both are true,
682 * It dequeues the buf and creates a scsi command to perform the
683 * transfer in the buf. The transfer request will call scsipi_done
684 * on completion, which will in turn call this routine again
685 * so that the next queued transfer is performed.
686 * The bufs are queued by the strategy routine (sdstrategy)
687 *
688 * This routine is also called after other non-queued requests
689 * have been made of the scsi driver, to ensure that the queue
690 * continues to be drained.
691 *
692 * must be called at the correct (highish) spl level
693 * sdstart() is called at splbio from sdstrategy and scsipi_done
694 */
695 void
696 sdstart(periph)
697 struct scsipi_periph *periph;
698 {
699 struct sd_softc *sd = (void *)periph->periph_dev;
700 struct disklabel *lp = sd->sc_dk.dk_label;
701 struct buf *bp = 0;
702 struct scsipi_rw_big cmd_big;
703 #if NSD_SCSIBUS > 0
704 struct scsi_rw cmd_small;
705 #endif
706 struct scsipi_generic *cmdp;
707 int nblks, cmdlen, error, flags;
708
709 SC_DEBUG(periph, SCSIPI_DB2, ("sdstart "));
710 /*
711 * Check if the device has room for another command
712 */
713 while (periph->periph_active < periph->periph_openings) {
714 /*
715 * there is excess capacity, but a special waits
716 * It'll need the adapter as soon as we clear out of the
717 * way and let it run (user level wait).
718 */
719 if (periph->periph_flags & PERIPH_WAITING) {
720 periph->periph_flags &= ~PERIPH_WAITING;
721 wakeup((caddr_t)periph);
722 return;
723 }
724
725 /*
726 * See if there is a buf with work for us to do..
727 */
728 if ((bp = BUFQ_GET(&sd->buf_queue)) == NULL)
729 return;
730
731 /*
732 * If the device has become invalid, abort all the
733 * reads and writes until all files have been closed and
734 * re-opened
735 */
736 if ((periph->periph_flags & PERIPH_MEDIA_LOADED) == 0) {
737 bp->b_error = EIO;
738 bp->b_flags |= B_ERROR;
739 bp->b_resid = bp->b_bcount;
740 biodone(bp);
741 continue;
742 }
743
744 /*
745 * We have a buf, now we should make a command.
746 */
747
748 if (lp->d_secsize == DEV_BSIZE)
749 nblks = bp->b_bcount >> DEV_BSHIFT;
750 else
751 nblks = howmany(bp->b_bcount, lp->d_secsize);
752
753 #if NSD_SCSIBUS > 0
754 /*
755 * Fill out the scsi command. If the transfer will
756 * fit in a "small" cdb, use it.
757 */
758 if (((bp->b_rawblkno & 0x1fffff) == bp->b_rawblkno) &&
759 ((nblks & 0xff) == nblks) &&
760 !(periph->periph_quirks & PQUIRK_ONLYBIG) &&
761 scsipi_periph_bustype(periph) == SCSIPI_BUSTYPE_SCSI) {
762 /*
763 * We can fit in a small cdb.
764 */
765 memset(&cmd_small, 0, sizeof(cmd_small));
766 cmd_small.opcode = (bp->b_flags & B_READ) ?
767 SCSI_READ_COMMAND : SCSI_WRITE_COMMAND;
768 _lto3b(bp->b_rawblkno, cmd_small.addr);
769 cmd_small.length = nblks & 0xff;
770 cmdlen = sizeof(cmd_small);
771 cmdp = (struct scsipi_generic *)&cmd_small;
772 } else
773 #endif /* NSD_SCSIBUS > 0 */
774 {
775 /*
776 * Need a large cdb.
777 */
778 memset(&cmd_big, 0, sizeof(cmd_big));
779 cmd_big.opcode = (bp->b_flags & B_READ) ?
780 READ_BIG : WRITE_BIG;
781 _lto4b(bp->b_rawblkno, cmd_big.addr);
782 _lto2b(nblks, cmd_big.length);
783 cmdlen = sizeof(cmd_big);
784 cmdp = (struct scsipi_generic *)&cmd_big;
785 }
786
787 /* Instrumentation. */
788 disk_busy(&sd->sc_dk);
789
790 /*
791 * Mark the disk dirty so that the cache will be
792 * flushed on close.
793 */
794 if ((bp->b_flags & B_READ) == 0)
795 sd->flags |= SDF_DIRTY;
796
797 /*
798 * Figure out what flags to use.
799 */
800 flags = XS_CTL_NOSLEEP|XS_CTL_ASYNC|XS_CTL_SIMPLE_TAG;
801 if (bp->b_flags & B_READ)
802 flags |= XS_CTL_DATA_IN;
803 else
804 flags |= XS_CTL_DATA_OUT;
805
806 /*
807 * Call the routine that chats with the adapter.
808 * Note: we cannot sleep as we may be an interrupt
809 */
810 error = scsipi_command(periph, cmdp, cmdlen,
811 (u_char *)bp->b_data, bp->b_bcount,
812 SDRETRIES, SD_IO_TIMEOUT, bp, flags);
813 if (error) {
814 disk_unbusy(&sd->sc_dk, 0);
815 printf("%s: not queued, error %d\n",
816 sd->sc_dev.dv_xname, error);
817 }
818 }
819 }
820
821 void
822 sddone(xs)
823 struct scsipi_xfer *xs;
824 {
825 struct sd_softc *sd = (void *)xs->xs_periph->periph_dev;
826
827 if (sd->flags & SDF_FLUSHING) {
828 /* Flush completed, no longer dirty. */
829 sd->flags &= ~(SDF_FLUSHING|SDF_DIRTY);
830 }
831
832 if (xs->bp != NULL) {
833 disk_unbusy(&sd->sc_dk, xs->bp->b_bcount - xs->bp->b_resid);
834 #if NRND > 0
835 rnd_add_uint32(&sd->rnd_source, xs->bp->b_rawblkno);
836 #endif
837 }
838 }
839
840 void
841 sdminphys(bp)
842 struct buf *bp;
843 {
844 struct sd_softc *sd = sd_cd.cd_devs[SDUNIT(bp->b_dev)];
845 long max;
846
847 /*
848 * If the device is ancient, we want to make sure that
849 * the transfer fits into a 6-byte cdb.
850 *
851 * XXX Note that the SCSI-I spec says that 256-block transfers
852 * are allowed in a 6-byte read/write, and are specified
853 * by settng the "length" to 0. However, we're conservative
854 * here, allowing only 255-block transfers in case an
855 * ancient device gets confused by length == 0. A length of 0
856 * in a 10-byte read/write actually means 0 blocks.
857 */
858 if ((sd->flags & SDF_ANCIENT) &&
859 ((sd->sc_periph->periph_flags &
860 (PERIPH_REMOVABLE | PERIPH_MEDIA_LOADED)) != PERIPH_REMOVABLE)) {
861 max = sd->sc_dk.dk_label->d_secsize * 0xff;
862
863 if (bp->b_bcount > max)
864 bp->b_bcount = max;
865 }
866
867 (*sd->sc_periph->periph_channel->chan_adapter->adapt_minphys)(bp);
868 }
869
870 int
871 sdread(dev, uio, ioflag)
872 dev_t dev;
873 struct uio *uio;
874 int ioflag;
875 {
876
877 return (physio(sdstrategy, NULL, dev, B_READ, sdminphys, uio));
878 }
879
880 int
881 sdwrite(dev, uio, ioflag)
882 dev_t dev;
883 struct uio *uio;
884 int ioflag;
885 {
886
887 return (physio(sdstrategy, NULL, dev, B_WRITE, sdminphys, uio));
888 }
889
890 /*
891 * Perform special action on behalf of the user
892 * Knows about the internals of this device
893 */
894 int
895 sdioctl(dev, cmd, addr, flag, p)
896 dev_t dev;
897 u_long cmd;
898 caddr_t addr;
899 int flag;
900 struct proc *p;
901 {
902 struct sd_softc *sd = sd_cd.cd_devs[SDUNIT(dev)];
903 struct scsipi_periph *periph = sd->sc_periph;
904 int part = SDPART(dev);
905 int error;
906 #ifdef __HAVE_OLD_DISKLABEL
907 struct disklabel newlabel;
908 #endif
909
910 SC_DEBUG(sd->sc_periph, SCSIPI_DB2, ("sdioctl 0x%lx ", cmd));
911
912 /*
913 * If the device is not valid, some IOCTLs can still be
914 * handled on the raw partition. Check this here.
915 */
916 if ((periph->periph_flags & PERIPH_MEDIA_LOADED) == 0) {
917 switch (cmd) {
918 case DIOCKLABEL:
919 case DIOCWLABEL:
920 case DIOCLOCK:
921 case DIOCEJECT:
922 case ODIOCEJECT:
923 case DIOCGCACHE:
924 case DIOCSCACHE:
925 case SCIOCIDENTIFY:
926 case OSCIOCIDENTIFY:
927 case SCIOCCOMMAND:
928 case SCIOCDEBUG:
929 if (part == RAW_PART)
930 break;
931 /* FALLTHROUGH */
932 default:
933 if ((periph->periph_flags & PERIPH_OPEN) == 0)
934 return (ENODEV);
935 else
936 return (EIO);
937 }
938 }
939
940 switch (cmd) {
941 case DIOCGDINFO:
942 *(struct disklabel *)addr = *(sd->sc_dk.dk_label);
943 return (0);
944
945 #ifdef __HAVE_OLD_DISKLABEL
946 case ODIOCGDINFO:
947 newlabel = *(sd->sc_dk.dk_label);
948 if (newlabel.d_npartitions > OLDMAXPARTITIONS)
949 return ENOTTY;
950 memcpy(addr, &newlabel, sizeof (struct olddisklabel));
951 return (0);
952 #endif
953
954 case DIOCGPART:
955 ((struct partinfo *)addr)->disklab = sd->sc_dk.dk_label;
956 ((struct partinfo *)addr)->part =
957 &sd->sc_dk.dk_label->d_partitions[part];
958 return (0);
959
960 case DIOCWDINFO:
961 case DIOCSDINFO:
962 #ifdef __HAVE_OLD_DISKLABEL
963 case ODIOCWDINFO:
964 case ODIOCSDINFO:
965 #endif
966 {
967 struct disklabel *lp;
968
969 #ifdef __HAVE_OLD_DISKLABEL
970 if (cmd == ODIOCSDINFO || cmd == ODIOCWDINFO) {
971 memset(&newlabel, 0, sizeof newlabel);
972 memcpy(&newlabel, addr, sizeof (struct olddisklabel));
973 lp = &newlabel;
974 } else
975 #endif
976 lp = (struct disklabel *)addr;
977
978 if ((flag & FWRITE) == 0)
979 return (EBADF);
980
981 if ((error = sdlock(sd)) != 0)
982 return (error);
983 sd->flags |= SDF_LABELLING;
984
985 error = setdisklabel(sd->sc_dk.dk_label,
986 lp, /*sd->sc_dk.dk_openmask : */0,
987 sd->sc_dk.dk_cpulabel);
988 if (error == 0) {
989 if (cmd == DIOCWDINFO
990 #ifdef __HAVE_OLD_DISKLABEL
991 || cmd == ODIOCWDINFO
992 #endif
993 )
994 error = writedisklabel(SDLABELDEV(dev),
995 sdstrategy, sd->sc_dk.dk_label,
996 sd->sc_dk.dk_cpulabel);
997 }
998
999 sd->flags &= ~SDF_LABELLING;
1000 sdunlock(sd);
1001 return (error);
1002 }
1003
1004 case DIOCKLABEL:
1005 if (*(int *)addr)
1006 periph->periph_flags |= PERIPH_KEEP_LABEL;
1007 else
1008 periph->periph_flags &= ~PERIPH_KEEP_LABEL;
1009 return (0);
1010
1011 case DIOCWLABEL:
1012 if ((flag & FWRITE) == 0)
1013 return (EBADF);
1014 if (*(int *)addr)
1015 sd->flags |= SDF_WLABEL;
1016 else
1017 sd->flags &= ~SDF_WLABEL;
1018 return (0);
1019
1020 case DIOCLOCK:
1021 return (scsipi_prevent(periph,
1022 (*(int *)addr) ? PR_PREVENT : PR_ALLOW, 0));
1023
1024 case DIOCEJECT:
1025 if ((periph->periph_flags & PERIPH_REMOVABLE) == 0)
1026 return (ENOTTY);
1027 if (*(int *)addr == 0) {
1028 /*
1029 * Don't force eject: check that we are the only
1030 * partition open. If so, unlock it.
1031 */
1032 if ((sd->sc_dk.dk_openmask & ~(1 << part)) == 0 &&
1033 sd->sc_dk.dk_bopenmask + sd->sc_dk.dk_copenmask ==
1034 sd->sc_dk.dk_openmask) {
1035 error = scsipi_prevent(periph, PR_ALLOW,
1036 XS_CTL_IGNORE_NOT_READY);
1037 if (error)
1038 return (error);
1039 } else {
1040 return (EBUSY);
1041 }
1042 }
1043 /* FALLTHROUGH */
1044 case ODIOCEJECT:
1045 return ((periph->periph_flags & PERIPH_REMOVABLE) == 0 ?
1046 ENOTTY : scsipi_start(periph, SSS_STOP|SSS_LOEJ, 0));
1047
1048 case DIOCGDEFLABEL:
1049 sdgetdefaultlabel(sd, (struct disklabel *)addr);
1050 return (0);
1051
1052 #ifdef __HAVE_OLD_DISKLABEL
1053 case ODIOCGDEFLABEL:
1054 sdgetdefaultlabel(sd, &newlabel);
1055 if (newlabel.d_npartitions > OLDMAXPARTITIONS)
1056 return ENOTTY;
1057 memcpy(addr, &newlabel, sizeof (struct olddisklabel));
1058 return (0);
1059 #endif
1060
1061 case DIOCGCACHE:
1062 if (sd->sc_ops->sdo_getcache != NULL)
1063 return ((*sd->sc_ops->sdo_getcache)(sd, (int *) addr));
1064
1065 /* Not supported on this device. */
1066 *(int *) addr = 0;
1067 return (0);
1068
1069 case DIOCSCACHE:
1070 if ((flag & FWRITE) == 0)
1071 return (EBADF);
1072 if (sd->sc_ops->sdo_setcache != NULL)
1073 return ((*sd->sc_ops->sdo_setcache)(sd, *(int *) addr));
1074
1075 /* Not supported on this device. */
1076 return (EOPNOTSUPP);
1077
1078 case DIOCCACHESYNC:
1079 /*
1080 * XXX Do we really need to care about having a writeable
1081 * file descriptor here?
1082 */
1083 if ((flag & FWRITE) == 0)
1084 return (EBADF);
1085 if (((sd->flags & SDF_DIRTY) != 0 || *(int *)addr != 0) &&
1086 sd->sc_ops->sdo_flush != NULL) {
1087 error = (*sd->sc_ops->sdo_flush)(sd, 0);
1088 if (error)
1089 sd->flags &= ~SDF_FLUSHING;
1090 else
1091 sd->flags &= ~(SDF_FLUSHING|SDF_DIRTY);
1092 } else
1093 error = 0;
1094 return (error);
1095
1096 default:
1097 if (part != RAW_PART)
1098 return (ENOTTY);
1099 return (scsipi_do_ioctl(periph, dev, cmd, addr, flag, p));
1100 }
1101
1102 #ifdef DIAGNOSTIC
1103 panic("sdioctl: impossible");
1104 #endif
1105 }
1106
1107 void
1108 sdgetdefaultlabel(sd, lp)
1109 struct sd_softc *sd;
1110 struct disklabel *lp;
1111 {
1112
1113 memset(lp, 0, sizeof(struct disklabel));
1114
1115 lp->d_secsize = sd->params.blksize;
1116 lp->d_ntracks = sd->params.heads;
1117 lp->d_nsectors = sd->params.sectors;
1118 lp->d_ncylinders = sd->params.cyls;
1119 lp->d_secpercyl = lp->d_ntracks * lp->d_nsectors;
1120
1121 switch (scsipi_periph_bustype(sd->sc_periph)) {
1122 #if NSD_SCSIBUS > 0
1123 case SCSIPI_BUSTYPE_SCSI:
1124 lp->d_type = DTYPE_SCSI;
1125 break;
1126 #endif
1127 #if NSD_ATAPIBUS > 0
1128 case SCSIPI_BUSTYPE_ATAPI:
1129 lp->d_type = DTYPE_ATAPI;
1130 break;
1131 #endif
1132 }
1133 strncpy(lp->d_typename, sd->name, 16);
1134 strncpy(lp->d_packname, "fictitious", 16);
1135 lp->d_secperunit = sd->params.disksize;
1136 lp->d_rpm = sd->params.rot_rate;
1137 lp->d_interleave = 1;
1138 lp->d_flags = 0;
1139
1140 lp->d_partitions[RAW_PART].p_offset = 0;
1141 lp->d_partitions[RAW_PART].p_size =
1142 lp->d_secperunit * (lp->d_secsize / DEV_BSIZE);
1143 lp->d_partitions[RAW_PART].p_fstype = FS_UNUSED;
1144 lp->d_npartitions = RAW_PART + 1;
1145
1146 lp->d_magic = DISKMAGIC;
1147 lp->d_magic2 = DISKMAGIC;
1148 lp->d_checksum = dkcksum(lp);
1149 }
1150
1151
1152 /*
1153 * Load the label information on the named device
1154 */
1155 void
1156 sdgetdisklabel(sd)
1157 struct sd_softc *sd;
1158 {
1159 struct disklabel *lp = sd->sc_dk.dk_label;
1160 char *errstring;
1161
1162 memset(sd->sc_dk.dk_cpulabel, 0, sizeof(struct cpu_disklabel));
1163
1164 sdgetdefaultlabel(sd, lp);
1165
1166 if (lp->d_secpercyl == 0) {
1167 lp->d_secpercyl = 100;
1168 /* as long as it's not 0 - readdisklabel divides by it (?) */
1169 }
1170
1171 /*
1172 * Call the generic disklabel extraction routine
1173 */
1174 errstring = readdisklabel(MAKESDDEV(0, sd->sc_dev.dv_unit, RAW_PART),
1175 sdstrategy, lp, sd->sc_dk.dk_cpulabel);
1176 if (errstring) {
1177 printf("%s: %s\n", sd->sc_dev.dv_xname, errstring);
1178 return;
1179 }
1180 }
1181
1182 void
1183 sd_shutdown(arg)
1184 void *arg;
1185 {
1186 struct sd_softc *sd = arg;
1187
1188 /*
1189 * If the disk cache needs to be flushed, and the disk supports
1190 * it, flush it. We're cold at this point, so we poll for
1191 * completion.
1192 */
1193 if ((sd->flags & SDF_DIRTY) != 0 && sd->sc_ops->sdo_flush != NULL) {
1194 if ((*sd->sc_ops->sdo_flush)(sd, XS_CTL_NOSLEEP|XS_CTL_POLL)) {
1195 printf("%s: cache synchronization failed\n",
1196 sd->sc_dev.dv_xname);
1197 sd->flags &= ~SDF_FLUSHING;
1198 } else
1199 sd->flags &= ~(SDF_FLUSHING|SDF_DIRTY);
1200 }
1201 }
1202
1203 /*
1204 * Tell the device to map out a defective block
1205 */
1206 int
1207 sd_reassign_blocks(sd, blkno)
1208 struct sd_softc *sd;
1209 u_long blkno;
1210 {
1211 struct scsi_reassign_blocks scsipi_cmd;
1212 struct scsi_reassign_blocks_data rbdata;
1213
1214 memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
1215 memset(&rbdata, 0, sizeof(rbdata));
1216 scsipi_cmd.opcode = SCSI_REASSIGN_BLOCKS;
1217
1218 _lto2b(sizeof(rbdata.defect_descriptor[0]), rbdata.length);
1219 _lto4b(blkno, rbdata.defect_descriptor[0].dlbaddr);
1220
1221 return (scsipi_command(sd->sc_periph,
1222 (struct scsipi_generic *)&scsipi_cmd, sizeof(scsipi_cmd),
1223 (u_char *)&rbdata, sizeof(rbdata), SDRETRIES, 5000, NULL,
1224 XS_CTL_DATA_OUT | XS_CTL_DATA_ONSTACK));
1225 }
1226
1227 /*
1228 * Check Errors
1229 */
1230 int
1231 sd_interpret_sense(xs)
1232 struct scsipi_xfer *xs;
1233 {
1234 struct scsipi_periph *periph = xs->xs_periph;
1235 struct scsipi_sense_data *sense = &xs->sense.scsi_sense;
1236 struct sd_softc *sd = (void *)periph->periph_dev;
1237 int s, error, retval = EJUSTRETURN;
1238
1239 /*
1240 * If the periph is already recovering, just do the normal
1241 * error processing.
1242 */
1243 if (periph->periph_flags & PERIPH_RECOVERING)
1244 return (retval);
1245
1246 /*
1247 * If the device is not open yet, let the generic code handle it.
1248 */
1249 if ((periph->periph_flags & PERIPH_MEDIA_LOADED) == 0)
1250 return (retval);
1251
1252 /*
1253 * If it isn't a extended or extended/deferred error, let
1254 * the generic code handle it.
1255 */
1256 if ((sense->error_code & SSD_ERRCODE) != 0x70 &&
1257 (sense->error_code & SSD_ERRCODE) != 0x71)
1258 return (retval);
1259
1260 if ((sense->flags & SSD_KEY) == SKEY_NOT_READY &&
1261 sense->add_sense_code == 0x4) {
1262 if (sense->add_sense_code_qual == 0x01) {
1263 /*
1264 * Unit In The Process Of Becoming Ready.
1265 */
1266 printf("%s: waiting for pack to spin up...\n",
1267 sd->sc_dev.dv_xname);
1268 if (!callout_active(&periph->periph_callout))
1269 scsipi_periph_freeze(periph, 1);
1270 callout_reset(&periph->periph_callout,
1271 5 * hz, scsipi_periph_timed_thaw, periph);
1272 retval = ERESTART;
1273 } else if ((sense->add_sense_code_qual == 0x2) &&
1274 (periph->periph_quirks & PQUIRK_NOSTARTUNIT) == 0) {
1275 printf("%s: pack is stopped, restarting...\n",
1276 sd->sc_dev.dv_xname);
1277 s = splbio();
1278 periph->periph_flags |= PERIPH_RECOVERING;
1279 splx(s);
1280 error = scsipi_start(periph, SSS_START,
1281 XS_CTL_URGENT|XS_CTL_HEAD_TAG|
1282 XS_CTL_THAW_PERIPH|XS_CTL_FREEZE_PERIPH);
1283 if (error) {
1284 printf("%s: unable to restart pack\n",
1285 sd->sc_dev.dv_xname);
1286 retval = error;
1287 } else
1288 retval = ERESTART;
1289 s = splbio();
1290 periph->periph_flags &= ~PERIPH_RECOVERING;
1291 splx(s);
1292 }
1293 }
1294 return (retval);
1295 }
1296
1297
1298 int
1299 sdsize(dev)
1300 dev_t dev;
1301 {
1302 struct sd_softc *sd;
1303 int part, unit, omask;
1304 int size;
1305
1306 unit = SDUNIT(dev);
1307 if (unit >= sd_cd.cd_ndevs)
1308 return (-1);
1309 sd = sd_cd.cd_devs[unit];
1310 if (sd == NULL)
1311 return (-1);
1312
1313 if ((sd->sc_dev.dv_flags & DVF_ACTIVE) == 0)
1314 return (-1);
1315
1316 part = SDPART(dev);
1317 omask = sd->sc_dk.dk_openmask & (1 << part);
1318
1319 if (omask == 0 && sdopen(dev, 0, S_IFBLK, NULL) != 0)
1320 return (-1);
1321 if ((sd->sc_periph->periph_flags & PERIPH_MEDIA_LOADED) == 0)
1322 size = -1;
1323 else if (sd->sc_dk.dk_label->d_partitions[part].p_fstype != FS_SWAP)
1324 size = -1;
1325 else
1326 size = sd->sc_dk.dk_label->d_partitions[part].p_size *
1327 (sd->sc_dk.dk_label->d_secsize / DEV_BSIZE);
1328 if (omask == 0 && sdclose(dev, 0, S_IFBLK, NULL) != 0)
1329 return (-1);
1330 return (size);
1331 }
1332
1333 /* #define SD_DUMP_NOT_TRUSTED if you just want to watch */
1334 static struct scsipi_xfer sx;
1335 static int sddoingadump;
1336
1337 /*
1338 * dump all of physical memory into the partition specified, starting
1339 * at offset 'dumplo' into the partition.
1340 */
1341 int
1342 sddump(dev, blkno, va, size)
1343 dev_t dev;
1344 daddr_t blkno;
1345 caddr_t va;
1346 size_t size;
1347 {
1348 struct sd_softc *sd; /* disk unit to do the I/O */
1349 struct disklabel *lp; /* disk's disklabel */
1350 int unit, part;
1351 int sectorsize; /* size of a disk sector */
1352 int nsects; /* number of sectors in partition */
1353 int sectoff; /* sector offset of partition */
1354 int totwrt; /* total number of sectors left to write */
1355 int nwrt; /* current number of sectors to write */
1356 struct scsipi_rw_big cmd; /* write command */
1357 struct scsipi_xfer *xs; /* ... convenience */
1358 struct scsipi_periph *periph;
1359 struct scsipi_channel *chan;
1360
1361 /* Check if recursive dump; if so, punt. */
1362 if (sddoingadump)
1363 return (EFAULT);
1364
1365 /* Mark as active early. */
1366 sddoingadump = 1;
1367
1368 unit = SDUNIT(dev); /* Decompose unit & partition. */
1369 part = SDPART(dev);
1370
1371 /* Check for acceptable drive number. */
1372 if (unit >= sd_cd.cd_ndevs || (sd = sd_cd.cd_devs[unit]) == NULL)
1373 return (ENXIO);
1374
1375 if ((sd->sc_dev.dv_flags & DVF_ACTIVE) == 0)
1376 return (ENODEV);
1377
1378 periph = sd->sc_periph;
1379 chan = periph->periph_channel;
1380
1381 /* Make sure it was initialized. */
1382 if ((periph->periph_flags & PERIPH_MEDIA_LOADED) == 0)
1383 return (ENXIO);
1384
1385 /* Convert to disk sectors. Request must be a multiple of size. */
1386 lp = sd->sc_dk.dk_label;
1387 sectorsize = lp->d_secsize;
1388 if ((size % sectorsize) != 0)
1389 return (EFAULT);
1390 totwrt = size / sectorsize;
1391 blkno = dbtob(blkno) / sectorsize; /* blkno in DEV_BSIZE units */
1392
1393 nsects = lp->d_partitions[part].p_size;
1394 sectoff = lp->d_partitions[part].p_offset;
1395
1396 /* Check transfer bounds against partition size. */
1397 if ((blkno < 0) || ((blkno + totwrt) > nsects))
1398 return (EINVAL);
1399
1400 /* Offset block number to start of partition. */
1401 blkno += sectoff;
1402
1403 xs = &sx;
1404
1405 while (totwrt > 0) {
1406 nwrt = totwrt; /* XXX */
1407 #ifndef SD_DUMP_NOT_TRUSTED
1408 /*
1409 * Fill out the scsi command
1410 */
1411 memset(&cmd, 0, sizeof(cmd));
1412 cmd.opcode = WRITE_BIG;
1413 _lto4b(blkno, cmd.addr);
1414 _lto2b(nwrt, cmd.length);
1415 /*
1416 * Fill out the scsipi_xfer structure
1417 * Note: we cannot sleep as we may be an interrupt
1418 * don't use scsipi_command() as it may want to wait
1419 * for an xs.
1420 */
1421 memset(xs, 0, sizeof(sx));
1422 xs->xs_control |= XS_CTL_NOSLEEP | XS_CTL_POLL |
1423 XS_CTL_DATA_OUT;
1424 xs->xs_status = 0;
1425 xs->xs_periph = periph;
1426 xs->xs_retries = SDRETRIES;
1427 xs->timeout = 10000; /* 10000 millisecs for a disk ! */
1428 xs->cmd = (struct scsipi_generic *)&cmd;
1429 xs->cmdlen = sizeof(cmd);
1430 xs->resid = nwrt * sectorsize;
1431 xs->error = XS_NOERROR;
1432 xs->bp = 0;
1433 xs->data = va;
1434 xs->datalen = nwrt * sectorsize;
1435
1436 /*
1437 * Pass all this info to the scsi driver.
1438 */
1439 scsipi_adapter_request(chan, ADAPTER_REQ_RUN_XFER, xs);
1440 if ((xs->xs_status & XS_STS_DONE) == 0 ||
1441 xs->error != XS_NOERROR)
1442 return (EIO);
1443 #else /* SD_DUMP_NOT_TRUSTED */
1444 /* Let's just talk about this first... */
1445 printf("sd%d: dump addr 0x%x, blk %d\n", unit, va, blkno);
1446 delay(500 * 1000); /* half a second */
1447 #endif /* SD_DUMP_NOT_TRUSTED */
1448
1449 /* update block count */
1450 totwrt -= nwrt;
1451 blkno += nwrt;
1452 va += sectorsize * nwrt;
1453 }
1454 sddoingadump = 0;
1455 return (0);
1456 }
1457