sd.c revision 1.11 1 /*
2 * Written by Julian Elischer (julian (at) tfs.com)
3 * for TRW Financial Systems for use under the MACH(2.5) operating system.
4 * Hacked by Theo de Raadt <deraadt (at) fsa.ca>
5 *
6 * TRW Financial Systems, in accordance with their agreement with Carnegie
7 * Mellon University, makes this software available to CMU to distribute
8 * or use in any manner that they see fit as long as this message is kept with
9 * the software. For this reason TFS also grants any other persons or
10 * organisations permission to use or modify this software.
11 *
12 * TFS supplies this software to be publicly redistributed
13 * on the understanding that TFS is not responsible for the correct
14 * functioning of this software in any circumstances.
15 *
16 * $Id: sd.c,v 1.11 1993/05/21 12:20:30 davidb Exp $
17 */
18
19 #include "sd.h"
20
21 #include "sys/types.h"
22 #include "sys/param.h"
23 #include "sys/dkbad.h"
24 #include "sys/systm.h"
25 #include "sys/conf.h"
26 #include "sys/proc.h"
27 #include "sys/file.h"
28 #include "sys/stat.h"
29 #include "sys/ioctl.h"
30 #include "sys/buf.h"
31 #include "sys/uio.h"
32 #include "sys/malloc.h"
33 #include "sys/errno.h"
34 #include "sys/disklabel.h"
35 #include "scsi/scsi_all.h"
36 #include "scsi/scsi_disk.h"
37 #include "scsi/scsiconf.h"
38 #include "scsi/sddefs.h"
39
40 long int sdstrats, sdqueues;
41
42 #define SPLSD splbio
43 #define ESUCCESS 0
44
45 #define SECSIZE 512
46 #define PDLOCATION 29
47 #define BOOTRECORDSIGNATURE (0x55aa & 0x00ff)
48 #define SDOUTSTANDING 2
49 #define SDQSIZE 4
50 #define SD_RETRIES 4
51
52 #define MAKESDDEV(maj, unit, part) (makedev(maj, ((unit<<3)+part)))
53 #define UNITSHIFT 3
54 #define PARTITION(z) (minor(z) & 0x07)
55 #define RAW_PART 3
56 #define UNIT(z) ( (minor(z) >> UNITSHIFT) )
57
58 #define WHOLE_DISK(unit) ( (unit << UNITSHIFT) + RAW_PART )
59
60 struct sd_data *sd_data[NSD];
61 int sd_debug = 0;
62
63 /*
64 * The routine called by the low level scsi routine when it discovers
65 * A device suitable for this driver
66 */
67 int
68 sdattach(int masunit, struct scsi_switch *sw, int physid, int *unit)
69 {
70 struct scsi_xfer *sd_scsi_xfer;
71 struct disk_parms *dp;
72 struct sd_data *sd;
73 unsigned char *tbl;
74 long int ad_info;
75 int targ, lun, i;
76
77 targ = physid >> 3;
78 lun = physid & 7;
79
80 /*printf("sdattach: sd%d at %s%d target %d lun %d\n",
81 *unit, sw->name, masunit, targ, lun);*/
82
83 if(*unit == -1) {
84 for(i=0; i<NSD && *unit==-1; i++)
85 if(sd_data[*unit]==NULL)
86 *unit = i;
87 }
88 if(*unit > NSD || *unit==-1)
89 return 0;
90 if(sd_data[*unit])
91 return 0;
92
93 sd = sd_data[*unit] = (struct sd_data *)malloc(sizeof *sd,
94 M_TEMP, M_NOWAIT);
95 if(!sd)
96 return 0;
97 bzero(sd, sizeof *sd);
98
99 /* store information needed to contact our base driver */
100 sd->sc_sw = sw;
101 sd->ctlr = masunit;
102 sd->targ = targ;
103 sd->lu = lun;
104
105 dp = &(sd->params);
106 if(scsi_debug & PRINTROUTINES)
107 printf("sdattach: ");
108
109 if(sd->sc_sw->adapter_info) {
110 sd->ad_info = ( (*(sd->sc_sw->adapter_info))(masunit));
111 sd->cmdscount = sd->ad_info & AD_INF_MAX_CMDS;
112 if(sd->cmdscount > SDOUTSTANDING)
113 sd->cmdscount = SDOUTSTANDING;
114 } else {
115 sd->ad_info = 1;
116 sd->cmdscount = 1;
117 }
118
119 i = sd->cmdscount;
120 sd_scsi_xfer = (struct scsi_xfer *)malloc(sizeof(struct scsi_xfer) * i,
121 M_TEMP, M_NOWAIT);
122 while(i--) {
123 sd_scsi_xfer->next = sd->freexfer;
124 sd->freexfer = sd_scsi_xfer;
125 sd_scsi_xfer++;
126 }
127
128 /*
129 * Use the subdriver to request information regarding
130 * the drive. We cannot use interrupts yet, so the
131 * request must specify this.
132 */
133 sd_get_parms(*unit, SCSI_NOSLEEP | SCSI_NOMASK);
134 printf("sd%d at %s%d targ %d lun %d: %dMB %d cyl, %d head, %d sec, %d byte/sec\n",
135 *unit, sw->name, masunit, targ, lun,
136 (dp->cyls*dp->heads*dp->sectors*dp->secsiz)/ (1024*1024),
137 dp->cyls, dp->heads, dp->sectors, dp->secsiz);
138
139 sd->flags |= SDINIT;
140 return 1;
141 }
142
143
144 /*
145 * open the device. Make sure the partition info
146 * is a up-to-date as can be.
147 */
148 int
149 sdopen(int dev)
150 {
151 struct disk_parms disk_parms;
152 struct sd_data *sd;
153 int errcode = 0;
154 int unit, part;
155
156 unit = UNIT(dev);
157 part = PARTITION(dev);
158 if(scsi_debug & (PRINTROUTINES | TRACEOPENS))
159 printf("sdopen: dev=0x%x (unit %d (of %d),partition %d)\n",
160 dev, unit, NSD, part);
161
162 if(unit > NSD)
163 return ENXIO;
164 if( !sd_data[unit]) {
165 if(scsi_debug & PRINTROUTINES)
166 printf("nonexistant!\n");
167 return ENXIO;
168 }
169
170 sd = sd_data[unit];
171 if(!sd)
172 return ENXIO;
173 if( !(sd->flags & SDVALID) )
174 return ENXIO;
175
176 /*
177 * Make sure the disk has been initialised.
178 * XXX get the scsi driver to look for a new device if
179 * we are not initted, like SunOS
180 */
181 if( !(sd->flags & SDINIT))
182 return ENXIO;
183
184 /*
185 * If it's been invalidated, and not everybody has
186 * closed it then forbid re-entry.
187 */
188 if( !(sd->flags & SDVALID) && sd->openparts)
189 return ENXIO;
190
191 /*
192 * Check that it is still responding and ok.
193 * "unit attention errors should occur here if the drive
194 * has been restarted or the pack changed
195 */
196 if(scsi_debug & TRACEOPENS)
197 printf("device is ");
198
199 /*
200 * In case it is a funny one, tell it to start
201 * not needed for most hard drives (ignore failure)
202 *
203 * This needs to be done BEFORE the test_unit_ready - davidb/simonb
204 */
205 sd_start_unit(unit, SCSI_ERR_OK|SCSI_SILENT);
206 if(scsi_debug & TRACEOPENS)
207 printf("started ");
208
209 if (sd_test_unit_ready(unit, 0)) {
210 if(scsi_debug & TRACEOPENS)
211 printf("not responding\n");
212 return ENXIO;
213 }
214 if(scsi_debug & TRACEOPENS)
215 printf("ok\n");
216
217 /*
218 * Load the physical device parameters
219 */
220 sd_get_parms(unit, 0); /* sets SDVALID */
221 if( sd->params.secsiz != SECSIZE) {
222 printf("sd%d: Can't deal with %d bytes logical blocks\n",
223 unit, sd->params.secsiz);
224 return ENXIO;
225 }
226 if(scsi_debug & TRACEOPENS)
227 printf("Params loaded ");
228
229 /*
230 * Load the partition info if not already loaded
231 */
232 sd_prevent(unit, PR_PREVENT, SCSI_ERR_OK|SCSI_SILENT);
233 if( (errcode=sdgetdisklabel(unit)) && (part != RAW_PART)) {
234 sd_prevent(unit, PR_ALLOW, SCSI_ERR_OK|SCSI_SILENT);
235 return errcode;
236 }
237 if(scsi_debug & TRACEOPENS)
238 printf("Disklabel loaded ");
239
240 /*
241 * Check the partition is legal
242 */
243 if ( part >= MAXPARTITIONS ) {
244 sd_prevent(unit, PR_ALLOW, SCSI_ERR_OK|SCSI_SILENT);
245 return ENXIO;
246 }
247 if(scsi_debug & TRACEOPENS)
248 printf("ok");
249
250 /*
251 * Check that the partition exists
252 */
253 if( sd->disklabel.d_partitions[part].p_size==0 && part!=RAW_PART) {
254 sd_prevent(unit, PR_ALLOW, SCSI_ERR_OK|SCSI_SILENT);
255 return ENXIO;
256 }
257
258 sd->partflags[part] |= SDOPEN;
259 sd->openparts |= (1 << part);
260 if(scsi_debug & TRACEOPENS)
261 printf("open %d %d\n", sdstrats, sdqueues);
262 return 0;
263 }
264
265 /*
266 * Get ownership of a scsi_xfer
267 * If need be, sleep on it, until it comes free
268 */
269 struct scsi_xfer *
270 sd_get_xs(int unit, int flags)
271 {
272 struct sd_data *sd = sd_data[unit];
273 struct scsi_xfer *xs;
274 int s;
275
276 if(flags & (SCSI_NOSLEEP | SCSI_NOMASK)) {
277 if (xs = sd->freexfer) {
278 sd->freexfer = xs->next;
279 xs->flags = 0;
280 }
281 } else {
282 s = SPLSD();
283 while (!(xs = sd->freexfer)) {
284 sd->blockwait++; /* someone waiting! */
285 sleep((caddr_t)&sd->freexfer, PRIBIO+1);
286 sd->blockwait--;
287 }
288 sd->freexfer = xs->next;
289 splx(s);
290 xs->flags = 0;
291 }
292 return xs;
293 }
294
295 /*
296 * Free a scsi_xfer, wake processes waiting for it
297 */
298 void
299 sd_free_xs(int unit, struct scsi_xfer *xs, int flags)
300 {
301 struct sd_data *sd = sd_data[unit];
302 int s;
303
304 if(flags & SCSI_NOMASK) {
305 if (sd->blockwait) {
306 printf("doing a wakeup from NOMASK mode\n");
307 wakeup((caddr_t)&sd->freexfer);
308 }
309 xs->next = sd->freexfer;
310 sd->freexfer = xs;
311 } else {
312 s = SPLSD();
313 if (sd->blockwait)
314 wakeup((caddr_t)&sd->freexfer);
315 xs->next = sd->freexfer;
316 sd->freexfer = xs;
317 splx(s);
318 }
319 }
320
321 /*
322 * trim the size of the transfer if needed, called by physio
323 * basically the smaller of our max and the scsi driver's
324 * minphys (note we have no max)
325 */
326 void
327 sdminphys(struct buf *bp)
328 {
329 (*(sd_data[UNIT(bp->b_dev)]->sc_sw->scsi_minphys))(bp);
330 }
331
332 /*
333 * Actually translate the requested transfer into
334 * one the physical driver can understand
335 * The transfer is described by a buf and will include
336 * only one physical transfer.
337 */
338 int
339 sdstrategy(struct buf *bp)
340 {
341 struct sd_data *sd;
342 unsigned int opri;
343 struct buf *dp;
344 int unit;
345
346 sdstrats++;
347 unit = UNIT((bp->b_dev));
348
349 if(unit > NSD) {
350 printf("sdstrategy bailout: %d %d\n", unit, NSD);
351 bp->b_error = EIO;
352 goto bad;
353 }
354 if( !sd_data[unit]) {
355 printf("sdstrategy bailout\n");
356 bp->b_error = EIO;
357 goto bad;
358 }
359
360 sd = sd_data[unit];
361 if(scsi_debug & PRINTROUTINES)
362 printf("\nsdstrategy ");
363 if(scsi_debug & SHOWREQUESTS)
364 printf("sd%d: %d bytes @ blk%d\n",
365 unit, bp->b_bcount, bp->b_blkno);
366
367 sdminphys(bp);
368
369 /* If the device has been made invalid, error out */
370 if(!(sd->flags & SDVALID)) {
371 bp->b_error = EIO;
372 goto bad;
373 }
374
375 /* "soft" write protect check */
376 if ((sd->flags & SDWRITEPROT) && (bp->b_flags & B_READ) == 0) {
377 bp->b_error = EROFS;
378 goto bad;
379 }
380
381 /* If it's a null transfer, return immediately */
382 if (bp->b_bcount == 0)
383 goto done;
384
385 /*
386 * Decide which unit and partition we are talking about
387 * only raw is ok if no label
388 */
389 if(PARTITION(bp->b_dev) != RAW_PART) {
390 if (!(sd->flags & SDHAVELABEL)) {
391 bp->b_error = EIO;
392 goto bad;
393 }
394
395 /*
396 * do bounds checking, adjust transfer. if error, process.
397 * if end of partition, just return
398 */
399 if (bounds_check_with_label(bp, &sd->disklabel, sd->wlabel) <= 0)
400 goto done;
401 /* otherwise, process transfer request */
402 }
403
404 opri = SPLSD();
405 dp = &(sd_data[unit]->sdbuf);
406
407 /* Place it in the queue of disk activities for this disk */
408 disksort(dp, bp);
409
410 /*
411 * Tell the device to get going on the transfer if it's
412 * not doing anything, otherwise just wait for completion
413 */
414 sdstart(unit);
415
416 splx(opri);
417 return;
418 bad:
419 bp->b_flags |= B_ERROR;
420 done:
421 /* Correctly set the buf to indicate a completed xfer */
422 bp->b_resid = bp->b_bcount;
423 biodone(bp);
424 return;
425 }
426
427 /*
428 * sdstart looks to see if there is a buf waiting for the device
429 * and that the device is not already busy. If both are true,
430 * It deques the buf and creates a scsi command to perform the
431 * transfer in the buf. The transfer request will call sd_done
432 * on completion, which will in turn call this routine again
433 * so that the next queued transfer is performed.
434 * The bufs are queued by the strategy routine (sdstrategy)
435 * This routine is also called after other non-queued requests
436 * have been made of the scsi driver, to ensure that the queue
437 * continues to be drained.
438 * must be called at the correct (highish) spl level
439 * sdstart() is called at SPLSD from sdstrategy and sd_done
440 */
441 void
442 sdstart(int unit)
443 {
444 register struct buf *bp = 0, *dp;
445 struct sd_data *sd = sd_data[unit];
446 struct scsi_rw_big cmd;
447 struct scsi_xfer *xs;
448 struct partition *p;
449 int drivecount, blkno, nblk;
450
451 if(scsi_debug & PRINTROUTINES)
452 printf("sdstart%d ", unit);
453
454 sd = sd_data[unit];
455 if(!sd)
456 return;
457
458 /*
459 * See if there is a buf to do and we are not already
460 * doing one
461 */
462 if(!sd->freexfer)
463 return; /* none for us, unit already underway */
464
465 if(sd->blockwait) /* there is one, but a special waits */
466 return; /* give the special that's waiting a chance to run */
467
468
469 dp = &(sd_data[unit]->sdbuf);
470 if ((bp = dp->b_actf) != NULL) /* yes, an assign */
471 dp->b_actf = bp->av_forw;
472 else
473 return;
474
475 xs=sd_get_xs(unit, 0); /* ok we can grab it */
476 xs->flags = INUSE; /* Now ours */
477
478 /*
479 * If the device has become invalid, abort all the reads
480 * and writes until all files have been closed and re-openned
481 */
482 if( !(sd->flags & SDVALID) ) {
483 xs->error = XS_DRIVER_STUFFUP;
484 sd_done(unit,xs); /* clean up (calls sdstart) */
485 return ;
486 }
487
488 /*
489 * We have a buf, now we should move the data into
490 * a scsi_xfer definition and try start it
491 * First, translate the block to absolute
492 */
493 p = sd->disklabel.d_partitions + PARTITION(bp->b_dev);
494 blkno = bp->b_blkno + p->p_offset;
495 nblk = (bp->b_bcount + 511) >> 9;
496
497 /* Fill out the scsi command */
498 bzero(&cmd, sizeof(cmd));
499 cmd.op_code = (bp->b_flags & B_READ) ? READ_BIG : WRITE_BIG;
500 cmd.addr_3 = (blkno & 0xff000000) >> 24;
501 cmd.addr_2 = (blkno & 0xff0000) >> 16;
502 cmd.addr_1 = (blkno & 0xff00) >> 8;
503 cmd.addr_0 = blkno & 0xff;
504 cmd.length2 = (nblk & 0xff00) >> 8;
505 cmd.length1 = (nblk & 0xff);
506
507 /*
508 * Fill out the scsi_xfer structure
509 * Note: we cannot sleep as we may be an interrupt
510 */
511 xs->flags |= SCSI_NOSLEEP;
512 xs->adapter = sd->ctlr;
513 xs->targ = sd->targ;
514 xs->lu = sd->lu;
515 xs->retries = SD_RETRIES;
516 xs->timeout = 10000; /* 10000 millisecs for a disk !*/
517 xs->cmd = (struct scsi_generic *)&cmd;
518 xs->cmdlen = sizeof(cmd);
519 xs->resid = bp->b_bcount;
520 xs->when_done = sd_done;
521 xs->done_arg = unit;
522 xs->done_arg2 = (int)xs;
523 xs->error = XS_NOERROR;
524 xs->bp = bp;
525 xs->data = (u_char *)bp->b_un.b_addr;
526 xs->datalen = bp->b_bcount;
527
528 /* Pass all this info to the scsi driver */
529 if ( (*(sd->sc_sw->scsi_cmd))(xs) != SUCCESSFULLY_QUEUED) {
530 printf("sd%d: oops not queued",unit);
531 xs->error = XS_DRIVER_STUFFUP;
532 sd_done(unit, xs); /* clean up (calls sdstart) */
533 }
534 sdqueues++;
535 }
536
537 /*
538 * This routine is called by the scsi interrupt when
539 * the transfer is complete.
540 */
541 int
542 sd_done(int unit, struct scsi_xfer *xs)
543 {
544 struct buf *bp;
545 int retval, retries = 0;
546
547 if(scsi_debug & PRINTROUTINES)
548 printf("sd_done%d ",unit);
549 if( !(xs->flags & INUSE))
550 panic("scsi_xfer not in use!");
551 if(bp = xs->bp) {
552 switch(xs->error) {
553 case XS_NOERROR:
554 bp->b_error = 0;
555 bp->b_resid = 0;
556 break;
557 case XS_SENSE:
558 retval = (sd_interpret_sense(unit,xs));
559 if(retval) {
560 bp->b_flags |= B_ERROR;
561 bp->b_error = retval;
562 }
563 break;
564 case XS_TIMEOUT:
565 printf("sd%d timeout\n",unit);
566 case XS_BUSY: /* should retry -- how? */
567 /*
568 * SHOULD put buf back at head of queue
569 * and decrement retry count in (*xs)
570 * HOWEVER, this should work as a kludge
571 */
572 if(xs->retries--) {
573 xs->error = XS_NOERROR;
574 xs->flags &= ~ITSDONE;
575 if( (*(sd_data[unit]->sc_sw->scsi_cmd))(xs)
576 == SUCCESSFULLY_QUEUED) {
577 /* don't wake the job, ok? */
578 return;
579 }
580 xs->flags |= ITSDONE;
581 } /* fall through */
582
583 case XS_DRIVER_STUFFUP:
584 bp->b_flags |= B_ERROR;
585 bp->b_error = EIO;
586 break;
587 default:
588 printf("sd%d: unknown error category from scsi driver\n", unit);
589 }
590 biodone(bp);
591 sd_free_xs(unit, xs, 0);
592 sdstart(unit); /* If there's anything waiting.. do it */
593 } else
594 wakeup(xs);
595 }
596
597 /*
598 * Perform special action on behalf of the user
599 * Knows about the internals of this device
600 */
601 int
602 sdioctl(dev_t dev, int cmd, caddr_t addr, int flag)
603 {
604 /* struct sd_cmd_buf *args;*/
605 struct scsi_format_parms *fparms;
606 struct cpu_disklabel osdep;
607 extern struct proc *curproc;
608 register struct sd_data *sd;
609 unsigned char unit, part;
610 unsigned int opri;
611 int error = 0, x;
612
613 /* Find the device that the user is talking about */
614 unit = UNIT(dev);
615 part = PARTITION(dev);
616 if(scsi_debug & PRINTROUTINES)
617 printf("sdioctl%d ",unit);
618
619 /* If the device is not valid.. abandon ship */
620 if(unit > NSD)
621 return EIO;
622 sd = sd_data[unit];
623 if(sd==NULL)
624 return EIO;
625
626 if(!(sd->flags & SDVALID))
627 return EIO;
628
629 switch(cmd) {
630 case DIOCWFORMAT:
631 if( suser(curproc->p_ucred, &curproc->p_acflag))
632 return EPERM;
633
634 x = splbio();
635 if(sd->formatting)
636 return EBUSY;
637 sd->formatting = 1;
638 (void)splx(x);
639
640 fparms = (struct scsi_format_parms *)malloc(sizeof *fparms,
641 M_TEMP, M_NOWAIT);
642 if(!fparms) {
643 error = EAGAIN;
644 goto unlock;
645 }
646
647 if(copyin(&addr, fparms, sizeof fparms)!=0) {
648 free(fparms, M_TEMP);
649 error = EFAULT;
650 goto unlock;
651 }
652 error = sd_format(unit, fparms, 0, 0);
653 if(!error && copyout(&addr, fparms, sizeof fparms) )
654 error = EFAULT;
655 free(fparms, M_TEMP);
656 unlock:
657 x = splbio();
658 sd->formatting = 0;
659 (void)splx(x);
660
661 break;
662 case DIOCRFORMAT:
663 error = EINVAL;
664 break;
665 case DIOCSBAD:
666 error = EINVAL;
667 break;
668 case DIOCGDINFO:
669 *(struct disklabel *)addr = sd->disklabel;
670 break;
671 case DIOCGPART:
672 ((struct partinfo *)addr)->disklab = &sd->disklabel;
673 ((struct partinfo *)addr)->part =
674 &sd->disklabel.d_partitions[PARTITION(dev)];
675 break;
676 case DIOCSDINFO:
677 if ((flag & FWRITE) == 0)
678 error = EBADF;
679 else {
680 error = setdisklabel(&sd->disklabel, (struct disklabel *)addr,
681 /*(sd->flags & DKFL_BSDLABEL) ? sd->openparts : */0,
682 &sd->cpudisklabel);
683 }
684 if (error == 0)
685 sd->flags |= SDHAVELABEL;
686 break;
687 case DIOCWLABEL:
688 sd->flags &= ~SDWRITEPROT;
689 if ((flag & FWRITE) == 0)
690 error = EBADF;
691 else
692 sd->wlabel = *(int *)addr;
693 break;
694 case DIOCWDINFO:
695 sd->flags &= ~SDWRITEPROT;
696 if ((flag & FWRITE) == 0)
697 error = EBADF;
698 else {
699 if ((error = setdisklabel(&sd->disklabel,
700 (struct disklabel *)addr,
701 /*(sd->flags & SDHAVELABEL) ? sd->openparts :*/0,
702 &sd->cpudisklabel)) == 0) {
703 int wlab;
704
705 sd->flags |= SDHAVELABEL; /* ok write will succeed */
706
707 /* simulate opening partition 0 so write succeeds */
708 sd->openparts |= (1 << 0); /* XXX */
709 wlab = sd->wlabel;
710 sd->wlabel = 1;
711 error = writedisklabel(dev, sdstrategy,
712 &sd->disklabel, &sd->cpudisklabel);
713 sd->wlabel = wlab;
714 }
715 }
716 break;
717 default:
718 error = ENOTTY;
719 break;
720 }
721 return error;
722 }
723
724
725 /*
726 * Load the label information on the named device
727 */
728 int
729 sdgetdisklabel(u_char unit)
730 {
731 struct sd_data *sd = sd_data[unit];
732 /*unsigned int n, m;*/
733 char *errstring;
734 struct cpu_disklabel osdep;
735
736 /* If the inflo is already loaded, use it */
737 if(sd->flags & SDHAVELABEL)
738 return ESUCCESS;
739
740 bzero(&sd->disklabel, sizeof(struct disklabel));
741 /*
742 * make partition 3 the whole disk in case of failure
743 * then get pdinfo
744 */
745 sd->disklabel.d_partitions[0].p_offset = 0;
746 sd->disklabel.d_partitions[0].p_size = sd->params.disksize;
747 sd->disklabel.d_partitions[RAW_PART].p_offset = 0;
748 sd->disklabel.d_partitions[RAW_PART].p_size = sd->params.disksize;
749 sd->disklabel.d_npartitions = MAXPARTITIONS;
750 sd->disklabel.d_secsize = 512; /* as long as it's not 0 */
751 sd->disklabel.d_ntracks = sd->params.heads;
752 sd->disklabel.d_nsectors = sd->params.sectors;
753 sd->disklabel.d_ncylinders = sd->params.cyls;
754 sd->disklabel.d_secpercyl = sd->params.heads * sd->params.sectors;
755 if (sd->disklabel.d_secpercyl == 0) {
756 /* as long as it's not 0 because readdisklabel() divides by it */
757 sd->disklabel.d_secpercyl = 100;
758 }
759
760 /* all the generic disklabel extraction routine */
761 if(errstring = readdisklabel(makedev(0 ,(unit<<UNITSHIFT )+3),
762 sdstrategy, &sd->disklabel, &sd->cpudisklabel)) {
763 printf("sd%d: %s\n",unit, errstring);
764 return ENXIO;
765 }
766
767 /* leave partition 2 "open" for raw I/O */
768
769 sd->flags |= SDHAVELABEL; /* WE HAVE IT ALL NOW */
770 return ESUCCESS;
771 }
772
773 /*
774 * Find out from the device what it's capacity is
775 */
776 int
777 sd_size(int unit, int flags)
778 {
779 struct scsi_read_cap_data rdcap;
780 struct scsi_read_capacity scsi_cmd;
781 int size;
782
783 /*
784 * make up a scsi command and ask the scsi driver to do
785 * it for you.
786 */
787 bzero(&scsi_cmd, sizeof(scsi_cmd));
788 scsi_cmd.op_code = READ_CAPACITY;
789
790 /*
791 * If the command works, interpret the result as a 4 byte
792 * number of blocks
793 */
794 if (sd_scsi_cmd(unit, (struct scsi_generic *)&scsi_cmd,
795 sizeof(scsi_cmd), (u_char *)&rdcap, sizeof(rdcap), 2000, flags) != 0) {
796 printf("could not get size of unit %d\n", unit);
797 return 0;
798 } else {
799 size = rdcap.addr_0 + 1 ;
800 size += rdcap.addr_1 << 8;
801 size += rdcap.addr_2 << 16;
802 size += rdcap.addr_3 << 24;
803 }
804 return size;
805 }
806
807 /*
808 * Get scsi driver to send a "are you ready?" command
809 */
810 int
811 sd_test_unit_ready(int unit, int flags)
812 {
813 struct scsi_test_unit_ready scsi_cmd;
814
815 bzero(&scsi_cmd, sizeof(scsi_cmd));
816 scsi_cmd.op_code = TEST_UNIT_READY;
817
818 return sd_scsi_cmd(unit, (struct scsi_generic *)&scsi_cmd,
819 sizeof(scsi_cmd), 0, 0, 100000, flags);
820 }
821
822 /*
823 * format disk
824 */
825 int
826 sd_format(int unit, struct scsi_format_parms *f, int flags, int type)
827 {
828 struct scsi_prevent scsi_cmd;
829
830 bzero(&scsi_cmd, sizeof(scsi_cmd));
831 scsi_cmd.op_code = FORMAT_DISK;
832 scsi_cmd.prevent= type;
833 return sd_scsi_cmd(unit, (struct scsi_generic *)&scsi_cmd,
834 sizeof(scsi_cmd), (u_char *)f, sizeof *f, 500000000, flags);
835 }
836
837 /*
838 * Prevent or allow the user to remove the tape
839 */
840 int
841 sd_prevent(int unit, int type, int flags)
842 {
843 struct scsi_prevent scsi_cmd;
844
845 bzero(&scsi_cmd, sizeof(scsi_cmd));
846 scsi_cmd.op_code = PREVENT_ALLOW;
847 scsi_cmd.prevent=type;
848 return sd_scsi_cmd(unit, (struct scsi_generic *)&scsi_cmd,
849 sizeof(scsi_cmd), 0, 0, 5000, flags);
850 }
851
852 /*
853 * Get scsi driver to send a "start up" command
854 */
855 int
856 sd_start_unit(int unit, int flags)
857 {
858 struct scsi_start_stop scsi_cmd;
859
860 bzero(&scsi_cmd, sizeof(scsi_cmd));
861 scsi_cmd.op_code = START_STOP;
862 scsi_cmd.start = 1;
863
864 return sd_scsi_cmd(unit, (struct scsi_generic *)&scsi_cmd,
865 sizeof(scsi_cmd), 0, 0, 2000, flags);
866 }
867
868 /*
869 * Tell the device to map out a defective block
870 */
871 int
872 sd_reassign_blocks(int unit, int block)
873 {
874 struct scsi_reassign_blocks_data rbdata;
875 struct scsi_reassign_blocks scsi_cmd;
876
877 bzero(&scsi_cmd, sizeof(scsi_cmd));
878 bzero(&rbdata, sizeof(rbdata));
879 scsi_cmd.op_code = REASSIGN_BLOCKS;
880
881 rbdata.length_msb = 0;
882 rbdata.length_lsb = sizeof(rbdata.defect_descriptor[0]);
883 rbdata.defect_descriptor[0].dlbaddr_3 = ((block >> 24) & 0xff);
884 rbdata.defect_descriptor[0].dlbaddr_2 = ((block >> 16) & 0xff);
885 rbdata.defect_descriptor[0].dlbaddr_1 = ((block >> 8) & 0xff);
886 rbdata.defect_descriptor[0].dlbaddr_0 = ((block ) & 0xff);
887
888 return sd_scsi_cmd(unit, (struct scsi_generic *)&scsi_cmd,
889 sizeof(scsi_cmd), (u_char *)&rbdata, sizeof(rbdata), 5000, 0);
890 }
891
892 #define b2tol(a) (((unsigned)(a##_1) << 8) + (unsigned)a##_0 )
893
894 /*
895 * Get the scsi driver to send a full inquiry to the
896 * device and use the results to fill out the disk
897 * parameter structure.
898 */
899 int
900 sd_get_parms(int unit, int flags)
901 {
902 struct sd_data *sd = sd_data[unit];
903 struct disk_parms *disk_parms = &sd->params;
904 struct scsi_mode_sense scsi_cmd;
905 struct scsi_mode_sense_data {
906 struct scsi_mode_header header;
907 struct blk_desc blk_desc;
908 union disk_pages pages;
909 } scsi_sense;
910 int sectors;
911
912 /* First check if we have it all loaded */
913 if(!sd)
914 return 0;
915 if(sd->flags & SDVALID)
916 return 0;
917
918 /* First do a mode sense page 3 */
919 if (sd_debug) {
920 bzero(&scsi_cmd, sizeof(scsi_cmd));
921 scsi_cmd.op_code = MODE_SENSE;
922 scsi_cmd.page_code = 3;
923 scsi_cmd.length = 0x24;
924
925 /*
926 * do the command, but we don't need the results
927 * just print them for our interest's sake
928 */
929 if (sd_scsi_cmd(unit, (struct scsi_generic *)&scsi_cmd,
930 sizeof(scsi_cmd), (u_char *)&scsi_sense, sizeof(scsi_sense),
931 2000, flags) != 0) {
932 printf("could not mode sense (3) for unit %d\n", unit);
933 return ENXIO;
934 }
935 printf("unit %d: %d trk/zn, %d altsec/zn, %d alttrk/zn, %d alttrk/lun\n",
936 unit, b2tol(scsi_sense.pages.disk_format.trk_z),
937 b2tol(scsi_sense.pages.disk_format.alt_sec),
938 b2tol(scsi_sense.pages.disk_format.alt_trk_z),
939 b2tol(scsi_sense.pages.disk_format.alt_trk_v));
940 printf(" %d sec/trk, %d byte/sec, %d interleave, %d %d bytes/log_blk\n",
941 b2tol(scsi_sense.pages.disk_format.ph_sec_t),
942 b2tol(scsi_sense.pages.disk_format.bytes_s),
943 b2tol(scsi_sense.pages.disk_format.interleave),
944 sd_size(unit, flags),
945 _3btol((u_char *)scsi_sense.blk_desc.blklen));
946 }
947
948
949 /* do a "mode sense page 4" */
950 bzero(&scsi_cmd, sizeof(scsi_cmd));
951 scsi_cmd.op_code = MODE_SENSE;
952 scsi_cmd.page_code = 4;
953 scsi_cmd.length = 0x20;
954
955 /*
956 * If the command worked, use the results to fill out
957 * the parameter structure
958 */
959 if (sd_scsi_cmd(unit, (struct scsi_generic *)&scsi_cmd,
960 sizeof(scsi_cmd), (u_char *)&scsi_sense, sizeof(scsi_sense),
961 2000, flags) != 0) {
962 printf("could not mode sense (4) for unit %d\n", unit);
963 printf(" using ficticious geometry\n");
964 sectors = sd_size(unit, flags);
965 disk_parms->heads = 64;
966 disk_parms->sectors = 32;
967 disk_parms->cyls = sectors/(64 * 32);
968 disk_parms->secsiz = SECSIZE;
969 } else {
970 if (sd_debug) {
971 printf(" %d cyl, %d head, %d precomp, %d redwrite, %d land\n",
972 _3btol((u_char *)&scsi_sense.pages.rigid_geometry.ncyl_2),
973 scsi_sense.pages.rigid_geometry.nheads,
974 b2tol(scsi_sense.pages.rigid_geometry.st_cyl_wp),
975 b2tol(scsi_sense.pages.rigid_geometry.st_cyl_rwc),
976 b2tol(scsi_sense.pages.rigid_geometry.land_zone));
977 }
978
979 /*
980 * KLUDGE!!(for zone recorded disks)
981 * give a number of sectors so that sec * trks * cyls
982 * is <= disk_size
983 */
984 disk_parms->heads = scsi_sense.pages.rigid_geometry.nheads;
985 disk_parms->cyls =
986 _3btol((u_char *)&scsi_sense.pages.rigid_geometry.ncyl_2);
987 disk_parms->secsiz = _3btol((u_char *)&scsi_sense.blk_desc.blklen);
988
989 sectors = sd_size(unit, flags);
990 sectors /= disk_parms->cyls;
991 sectors /= disk_parms->heads;
992 disk_parms->sectors = sectors; /* dubious on SCSI*/
993 }
994
995 disk_parms->disksize = disk_parms->sectors * disk_parms->heads *
996 disk_parms->cyls;
997 sd->flags |= SDVALID;
998 return 0;
999 }
1000
1001 /*
1002 * close the device.. only called if we are the LAST
1003 * occurence of an open device
1004 */
1005 int
1006 sdclose(dev_t dev)
1007 {
1008 struct sd_data *sd;
1009 unsigned char unit, part;
1010 unsigned int old_priority;
1011
1012 unit = UNIT(dev);
1013 part = PARTITION(dev);
1014 sd = sd_data[unit];
1015 sd->partflags[part] &= ~SDOPEN;
1016 sd->openparts &= ~(1 << part);
1017 if(sd->openparts == 0)
1018 sd_prevent(unit, PR_ALLOW, SCSI_SILENT|SCSI_ERR_OK);
1019 return 0;
1020 }
1021
1022 /*
1023 * ask the scsi driver to perform a command for us.
1024 * Call it through the switch table, and tell it which
1025 * sub-unit we want, and what target and lu we wish to
1026 * talk to. Also tell it where to find the command
1027 * how long int is.
1028 * Also tell it where to read/write the data, and how
1029 * long the data is supposed to be
1030 */
1031 int
1032 sd_scsi_cmd(int unit, struct scsi_generic *scsi_cmd, int cmdlen,
1033 u_char *data_addr, int datalen, int timeout, int flags)
1034 {
1035 struct sd_data *sd = sd_data[unit];
1036 struct scsi_xfer *xs;
1037 int retval, s;
1038
1039 if(scsi_debug & PRINTROUTINES)
1040 printf("\nsd_scsi_cmd%d ",unit);
1041 if(!sd->sc_sw) {
1042 printf("sd%d: not set up\n",unit);
1043 return EINVAL;
1044 }
1045
1046 xs = sd_get_xs(unit,flags); /* should wait unless booting */
1047 if(!xs) {
1048 printf("sd_scsi_cmd%d: controller busy"
1049 " (this should never happen)\n",unit);
1050 return EBUSY;
1051 }
1052
1053 xs->flags |= INUSE;
1054 xs->flags |= flags;
1055 xs->adapter = sd->ctlr;
1056 xs->targ = sd->targ;
1057 xs->lu = sd->lu;
1058 xs->retries = SD_RETRIES;
1059 xs->timeout = timeout;
1060 xs->cmd = scsi_cmd;
1061 xs->cmdlen = cmdlen;
1062 xs->data = data_addr;
1063 xs->datalen = datalen;
1064 xs->resid = datalen;
1065 xs->when_done = (flags & SCSI_NOMASK) ?(int (*)())0 : sd_done;
1066 xs->done_arg = unit;
1067 xs->done_arg2 = (int)xs;
1068
1069 retry:
1070 xs->error = XS_NOERROR;
1071 xs->bp = 0;
1072 retval = (*(sd->sc_sw->scsi_cmd))(xs);
1073 switch(retval) {
1074 case SUCCESSFULLY_QUEUED:
1075 s = splbio();
1076 while(!(xs->flags & ITSDONE))
1077 sleep(xs,PRIBIO+1);
1078 splx(s);
1079 case HAD_ERROR:
1080 /*printf("err = %d ", xs->error);*/
1081 switch(xs->error) {
1082 case XS_NOERROR:
1083 retval = ESUCCESS;
1084 break;
1085 case XS_SENSE:
1086 retval = sd_interpret_sense(unit, xs);
1087 break;
1088 case XS_DRIVER_STUFFUP:
1089 retval = EIO;
1090 break;
1091 case XS_TIMEOUT:
1092 case XS_BUSY:
1093 if(xs->retries-- ) {
1094 xs->flags &= ~ITSDONE;
1095 goto retry;
1096 }
1097 retval = EIO;
1098 break;
1099 default:
1100 retval = EIO;
1101 printf("sd%d: unknown error category from scsi driver\n", unit);
1102 }
1103 break;
1104 case COMPLETE:
1105 retval = ESUCCESS;
1106 break;
1107 case TRY_AGAIN_LATER:
1108 if(xs->retries-- ) {
1109 xs->flags &= ~ITSDONE;
1110 goto retry;
1111 }
1112 retval = EIO;
1113 break;
1114 default:
1115 retval = EIO;
1116 }
1117
1118 sd_free_xs(unit, xs, flags);
1119 sdstart(unit); /* check if anything is waiting fr the xs */
1120 return retval;
1121 }
1122
1123 /*
1124 * Look at the returned sense and act on the error and detirmine
1125 * The unix error number to pass back... (0 = report no error)
1126 */
1127 int
1128 sd_interpret_sense(int unit, struct scsi_xfer *xs)
1129 {
1130 struct sd_data *sd = sd_data[unit];
1131 struct scsi_sense_data *sense;
1132 int key, silent;
1133
1134 /* If the flags say errs are ok, then always return ok. */
1135 if (xs->flags & SCSI_ERR_OK)
1136 return ESUCCESS;
1137 silent = (xs->flags & SCSI_SILENT);
1138
1139 sense = &(xs->sense);
1140 switch(sense->error_class) {
1141 case 7:
1142 key = sense->ext.extended.sense_key;
1143 switch(key) {
1144 case 0x0:
1145 return ESUCCESS;
1146 case 0x1:
1147 if(!silent) {
1148 printf("sd%d: soft error(corrected) ", unit);
1149 if(sense->valid) {
1150 printf("block no. %d (decimal)",
1151 (sense->ext.extended.info[0] <<24),
1152 (sense->ext.extended.info[1] <<16),
1153 (sense->ext.extended.info[2] <<8),
1154 (sense->ext.extended.info[3] ));
1155 }
1156 printf("\n");
1157 }
1158 return ESUCCESS;
1159 case 0x2:
1160 if(!silent)
1161 printf("sd%d: not ready\n ", unit);
1162 return ENODEV;
1163 case 0x3:
1164 if(!silent) {
1165 printf("sd%d: medium error ", unit);
1166 if(sense->valid) {
1167 printf("block no. %d (decimal)",
1168 (sense->ext.extended.info[0] <<24),
1169 (sense->ext.extended.info[1] <<16),
1170 (sense->ext.extended.info[2] <<8),
1171 (sense->ext.extended.info[3] ));
1172 }
1173 printf("\n");
1174 }
1175 return EIO;
1176 case 0x4:
1177 if(!silent)
1178 printf("sd%d: non-media hardware failure\n ", unit);
1179 return EIO;
1180 case 0x5:
1181 if(!silent)
1182 printf("sd%d: illegal request\n ", unit);
1183 return EINVAL;
1184 case 0x6:
1185 /*
1186 * If we are not open, then this is not an error
1187 * as we don't have state yet. Either way, make
1188 * sure that we don't have any residual state
1189 */
1190 if(!silent)
1191 printf("sd%d: reset\n", unit);
1192 sd->flags &= ~(SDVALID | SDHAVELABEL);
1193 if (sd->openparts)
1194 return EIO;
1195 return ESUCCESS; /* not an error if nothing's open */
1196 case 0x7:
1197 if(!silent) {
1198 printf("sd%d: attempted protection violation ", unit);
1199 if(sense->valid) {
1200 printf("block no. %d (decimal)\n",
1201 (sense->ext.extended.info[0] <<24),
1202 (sense->ext.extended.info[1] <<16),
1203 (sense->ext.extended.info[2] <<8),
1204 (sense->ext.extended.info[3] ));
1205 }
1206 printf("\n");
1207 }
1208 return EACCES;
1209 case 0x8:
1210 if(!silent) {
1211 printf("sd%d: block wrong state (worm)\n ", unit);
1212 if(sense->valid) {
1213 printf("block no. %d (decimal)\n",
1214 (sense->ext.extended.info[0] <<24),
1215 (sense->ext.extended.info[1] <<16),
1216 (sense->ext.extended.info[2] <<8),
1217 (sense->ext.extended.info[3] ));
1218 }
1219 printf("\n");
1220 }
1221 return EIO;
1222 case 0x9:
1223 if(!silent)
1224 printf("sd%d: vendor unique\n", unit);
1225 return EIO;
1226 case 0xa:
1227 if(!silent)
1228 printf("sd%d: copy aborted\n ", unit);
1229 return EIO;
1230 case 0xb:
1231 if(!silent)
1232 printf("sd%d: command aborted\n ", unit);
1233 return EIO;
1234 case 0xc:
1235 if(!silent) {
1236 printf("sd%d: search returned\n ", unit);
1237 if(sense->valid) {
1238 printf("block no. %d (decimal)\n",
1239 (sense->ext.extended.info[0] <<24),
1240 (sense->ext.extended.info[1] <<16),
1241 (sense->ext.extended.info[2] <<8),
1242 (sense->ext.extended.info[3] ));
1243 }
1244 printf("\n");
1245 }
1246 return ESUCCESS;
1247 case 0xd:
1248 if(!silent)
1249 printf("sd%d: volume overflow\n ", unit);
1250 return ENOSPC;
1251 case 0xe:
1252 if(!silent) {
1253 printf("sd%d: verify miscompare\n ", unit);
1254 if(sense->valid) {
1255 printf("block no. %d (decimal)\n",
1256 (sense->ext.extended.info[0] <<24),
1257 (sense->ext.extended.info[1] <<16),
1258 (sense->ext.extended.info[2] <<8),
1259 (sense->ext.extended.info[3] ));
1260 }
1261 printf("\n");
1262 }
1263 return EIO;
1264 case 0xf:
1265 if(!silent)
1266 printf("sd%d: unknown error key\n ", unit);
1267 return EIO;
1268 }
1269 break;
1270 case 0:
1271 case 1:
1272 case 2:
1273 case 3:
1274 case 4:
1275 case 5:
1276 case 6:
1277 if(!silent)printf("sd%d: error class %d code %d\n", unit,
1278 sense->error_class, sense->error_code);
1279 if(sense->valid)
1280 if(!silent)
1281 printf("block no. %d (decimal)\n",
1282 (sense->ext.unextended.blockhi <<16),
1283 + (sense->ext.unextended.blockmed <<8),
1284 + (sense->ext.unextended.blocklow ));
1285 return EIO;
1286 }
1287 return 0; /* XXX? */
1288 }
1289
1290 int
1291 sdsize(dev_t dev)
1292 {
1293 int unit = UNIT(dev), part = PARTITION(dev), val;
1294 struct sd_data *sd;
1295
1296 if (unit >= NSD)
1297 return -1;
1298 if(!sd_data[unit])
1299 return -1;
1300
1301 sd = sd_data[unit];
1302 if((sd->flags & SDINIT) == 0)
1303 return -1;
1304
1305 if( sd==0 || (sd->flags & SDHAVELABEL)==0 )
1306 val = sdopen(MAKESDDEV(major(dev), unit, RAW_PART));
1307 if ( val!=0 || sd->flags & SDWRITEPROT)
1308 return -1;
1309
1310 return (int)sd->disklabel.d_partitions[part].p_size;
1311 }
1312
1313 sddump()
1314 {
1315 printf("sddump() -- not implemented\n");
1316 return -1;
1317 }
1318