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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