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ch.c revision 1.52
      1 /*	$NetBSD: ch.c,v 1.52 2002/09/30 23:12:51 thorpej Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 1996, 1997, 1998, 1999 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9  * NASA Ames Research Center.
     10  *
     11  * Redistribution and use in source and binary forms, with or without
     12  * modification, are permitted provided that the following conditions
     13  * are met:
     14  * 1. Redistributions of source code must retain the above copyright
     15  *    notice, this list of conditions and the following disclaimer.
     16  * 2. Redistributions in binary form must reproduce the above copyright
     17  *    notice, this list of conditions and the following disclaimer in the
     18  *    documentation and/or other materials provided with the distribution.
     19  * 3. All advertising materials mentioning features or use of this software
     20  *    must display the following acknowledgement:
     21  *	This product includes software developed by the NetBSD
     22  *	Foundation, Inc. and its contributors.
     23  * 4. Neither the name of The NetBSD Foundation nor the names of its
     24  *    contributors may be used to endorse or promote products derived
     25  *    from this software without specific prior written permission.
     26  *
     27  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     28  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     29  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     30  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     31  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     32  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     33  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     34  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     35  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     36  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     37  * POSSIBILITY OF SUCH DAMAGE.
     38  */
     39 
     40 #include <sys/cdefs.h>
     41 __KERNEL_RCSID(0, "$NetBSD: ch.c,v 1.52 2002/09/30 23:12:51 thorpej Exp $");
     42 
     43 #include <sys/param.h>
     44 #include <sys/systm.h>
     45 #include <sys/kernel.h>
     46 #include <sys/errno.h>
     47 #include <sys/ioctl.h>
     48 #include <sys/buf.h>
     49 #include <sys/proc.h>
     50 #include <sys/user.h>
     51 #include <sys/chio.h>
     52 #include <sys/device.h>
     53 #include <sys/malloc.h>
     54 #include <sys/conf.h>
     55 #include <sys/fcntl.h>
     56 #include <sys/vnode.h>
     57 #include <sys/time.h>
     58 #include <sys/select.h>
     59 #include <sys/poll.h>
     60 
     61 #include <dev/scsipi/scsipi_all.h>
     62 #include <dev/scsipi/scsi_all.h>
     63 #include <dev/scsipi/scsi_changer.h>
     64 #include <dev/scsipi/scsiconf.h>
     65 
     66 #define CHRETRIES	2
     67 #define CHUNIT(x)	(minor((x)))
     68 
     69 struct ch_softc {
     70 	struct device	sc_dev;		/* generic device info */
     71 	struct scsipi_periph *sc_periph;/* our periph data */
     72 
     73 	u_int		sc_events;	/* event bitmask */
     74 	struct selinfo	sc_selq;	/* select/poll queue for events */
     75 
     76 	int		sc_flags;	/* misc. info */
     77 
     78 	int		sc_picker;	/* current picker */
     79 
     80 	/*
     81 	 * The following information is obtained from the
     82 	 * element address assignment page.
     83 	 */
     84 	int		sc_firsts[4];	/* firsts, indexed by CHET_* */
     85 	int		sc_counts[4];	/* counts, indexed by CHET_* */
     86 
     87 	/*
     88 	 * The following mask defines the legal combinations
     89 	 * of elements for the MOVE MEDIUM command.
     90 	 */
     91 	u_int8_t	sc_movemask[4];
     92 
     93 	/*
     94 	 * As above, but for EXCHANGE MEDIUM.
     95 	 */
     96 	u_int8_t	sc_exchangemask[4];
     97 
     98 	/*
     99 	 * Quirks; see below.
    100 	 */
    101 	int		sc_settledelay;	/* delay for settle */
    102 
    103 };
    104 
    105 /* sc_flags */
    106 #define CHF_ROTATE		0x01	/* picker can rotate */
    107 
    108 /* Autoconfiguration glue */
    109 int	chmatch __P((struct device *, struct cfdata *, void *));
    110 void	chattach __P((struct device *, struct device *, void *));
    111 
    112 CFATTACH_DECL(ch, sizeof(struct ch_softc),
    113     chmatch, chattach, NULL, NULL)
    114 
    115 extern struct cfdriver ch_cd;
    116 
    117 struct scsipi_inquiry_pattern ch_patterns[] = {
    118 	{T_CHANGER, T_REMOV,
    119 	 "",		"",		""},
    120 };
    121 
    122 dev_type_open(chopen);
    123 dev_type_close(chclose);
    124 dev_type_read(chread);
    125 dev_type_ioctl(chioctl);
    126 dev_type_poll(chpoll);
    127 
    128 const struct cdevsw ch_cdevsw = {
    129 	chopen, chclose, chread, nowrite, chioctl,
    130 	nostop, notty, chpoll, nommap,
    131 };
    132 
    133 /* SCSI glue */
    134 int	ch_interpret_sense __P((struct scsipi_xfer *));
    135 
    136 const struct scsipi_periphsw ch_switch = {
    137 	ch_interpret_sense,	/* check our error handler first */
    138 	NULL,			/* no queue; our commands are synchronous */
    139 	NULL,			/* have no async handler */
    140 	NULL,			/* nothing to be done when xfer is done */
    141 };
    142 
    143 int	ch_move __P((struct ch_softc *, struct changer_move_request *));
    144 int	ch_exchange __P((struct ch_softc *, struct changer_exchange_request *));
    145 int	ch_position __P((struct ch_softc *, struct changer_position_request *));
    146 int	ch_ielem __P((struct ch_softc *));
    147 int	ch_ousergetelemstatus __P((struct ch_softc *, int, u_int8_t *));
    148 int	ch_usergetelemstatus __P((struct ch_softc *,
    149 	    struct changer_element_status_request *));
    150 int	ch_getelemstatus __P((struct ch_softc *, int, int, void *,
    151 	    size_t, int, int));
    152 int	ch_setvoltag __P((struct ch_softc *,
    153 	    struct changer_set_voltag_request *));
    154 int	ch_get_params __P((struct ch_softc *, int));
    155 void	ch_get_quirks __P((struct ch_softc *,
    156 	    struct scsipi_inquiry_pattern *));
    157 void	ch_event __P((struct ch_softc *, u_int));
    158 int	ch_map_element __P((struct ch_softc *, u_int16_t, int *, int *));
    159 
    160 void	ch_voltag_convert_in __P((const struct changer_volume_tag *,
    161 	    struct changer_voltag *));
    162 int	ch_voltag_convert_out __P((const struct changer_voltag *,
    163 	    struct changer_volume_tag *));
    164 
    165 /*
    166  * SCSI changer quirks.
    167  */
    168 struct chquirk {
    169 	struct	scsipi_inquiry_pattern cq_match; /* device id pattern */
    170 	int	cq_settledelay;	/* settle delay, in seconds */
    171 };
    172 
    173 struct chquirk chquirks[] = {
    174 	{{T_CHANGER, T_REMOV,
    175 	  "SPECTRA",	"9000",		"0200"},
    176 	 75},
    177 };
    178 
    179 int
    180 chmatch(parent, match, aux)
    181 	struct device *parent;
    182 	struct cfdata *match;
    183 	void *aux;
    184 {
    185 	struct scsipibus_attach_args *sa = aux;
    186 	int priority;
    187 
    188 	(void)scsipi_inqmatch(&sa->sa_inqbuf,
    189 	    (caddr_t)ch_patterns, sizeof(ch_patterns) / sizeof(ch_patterns[0]),
    190 	    sizeof(ch_patterns[0]), &priority);
    191 
    192 	return (priority);
    193 }
    194 
    195 void
    196 chattach(parent, self, aux)
    197 	struct device *parent, *self;
    198 	void *aux;
    199 {
    200 	struct ch_softc *sc = (struct ch_softc *)self;
    201 	struct scsipibus_attach_args *sa = aux;
    202 	struct scsipi_periph *periph = sa->sa_periph;
    203 
    204 	/* Glue into the SCSI bus */
    205 	sc->sc_periph = periph;
    206 	periph->periph_dev = &sc->sc_dev;
    207 	periph->periph_switch = &ch_switch;
    208 
    209 	printf("\n");
    210 
    211 	/*
    212 	 * Find out our device's quirks.
    213 	 */
    214 	ch_get_quirks(sc, &sa->sa_inqbuf);
    215 
    216 	/*
    217 	 * Some changers require a long time to settle out, to do
    218 	 * tape inventory, for instance.
    219 	 */
    220 	if (sc->sc_settledelay) {
    221 		printf("%s: waiting %d seconds for changer to settle...\n",
    222 		    sc->sc_dev.dv_xname, sc->sc_settledelay);
    223 		delay(1000000 * sc->sc_settledelay);
    224 	}
    225 
    226 	/*
    227 	 * Get information about the device.  Note we can't use
    228 	 * interrupts yet.
    229 	 */
    230 	if (ch_get_params(sc, XS_CTL_DISCOVERY|XS_CTL_IGNORE_MEDIA_CHANGE))
    231 		printf("%s: offline\n", sc->sc_dev.dv_xname);
    232 	else {
    233 #define PLURAL(c)	(c) == 1 ? "" : "s"
    234 		printf("%s: %d slot%s, %d drive%s, %d picker%s, %d portal%s\n",
    235 		    sc->sc_dev.dv_xname,
    236 		    sc->sc_counts[CHET_ST], PLURAL(sc->sc_counts[CHET_ST]),
    237 		    sc->sc_counts[CHET_DT], PLURAL(sc->sc_counts[CHET_DT]),
    238 		    sc->sc_counts[CHET_MT], PLURAL(sc->sc_counts[CHET_MT]),
    239 		    sc->sc_counts[CHET_IE], PLURAL(sc->sc_counts[CHET_IE]));
    240 #undef PLURAL
    241 #ifdef CHANGER_DEBUG
    242 		printf("%s: move mask: 0x%x 0x%x 0x%x 0x%x\n",
    243 		    sc->sc_dev.dv_xname,
    244 		    sc->sc_movemask[CHET_MT], sc->sc_movemask[CHET_ST],
    245 		    sc->sc_movemask[CHET_IE], sc->sc_movemask[CHET_DT]);
    246 		printf("%s: exchange mask: 0x%x 0x%x 0x%x 0x%x\n",
    247 		    sc->sc_dev.dv_xname,
    248 		    sc->sc_exchangemask[CHET_MT], sc->sc_exchangemask[CHET_ST],
    249 		    sc->sc_exchangemask[CHET_IE], sc->sc_exchangemask[CHET_DT]);
    250 #endif /* CHANGER_DEBUG */
    251 	}
    252 
    253 	/* Default the current picker. */
    254 	sc->sc_picker = sc->sc_firsts[CHET_MT];
    255 }
    256 
    257 int
    258 chopen(dev, flags, fmt, p)
    259 	dev_t dev;
    260 	int flags, fmt;
    261 	struct proc *p;
    262 {
    263 	struct ch_softc *sc;
    264 	struct scsipi_periph *periph;
    265 	struct scsipi_adapter *adapt;
    266 	int unit, error;
    267 
    268 	unit = CHUNIT(dev);
    269 	if ((unit >= ch_cd.cd_ndevs) ||
    270 	    ((sc = ch_cd.cd_devs[unit]) == NULL))
    271 		return (ENXIO);
    272 
    273 	periph = sc->sc_periph;
    274 	adapt = periph->periph_channel->chan_adapter;
    275 
    276 	/*
    277 	 * Only allow one open at a time.
    278 	 */
    279 	if (periph->periph_flags & PERIPH_OPEN)
    280 		return (EBUSY);
    281 
    282 	if ((error = scsipi_adapter_addref(adapt)) != 0)
    283 		return (error);
    284 
    285 	/*
    286 	 * Make sure the unit is on-line.  If a UNIT ATTENTION
    287 	 * occurs, we will mark that an Init-Element-Status is
    288 	 * needed in ch_get_params().
    289 	 *
    290 	 * We ignore NOT READY in case e.g a magazine isn't actually
    291 	 * loaded into the changer or a tape isn't in the drive.
    292 	 */
    293 	error = scsipi_test_unit_ready(periph, XS_CTL_IGNORE_NOT_READY);
    294 	if (error)
    295 		goto bad;
    296 
    297 	periph->periph_flags |= PERIPH_OPEN;
    298 
    299 	/*
    300 	 * Make sure our parameters are up to date.
    301 	 */
    302 	if ((error = ch_get_params(sc, 0)) != 0)
    303 		goto bad;
    304 
    305 	return (0);
    306 
    307  bad:
    308 	scsipi_adapter_delref(adapt);
    309 	periph->periph_flags &= ~PERIPH_OPEN;
    310 	return (error);
    311 }
    312 
    313 int
    314 chclose(dev, flags, fmt, p)
    315 	dev_t dev;
    316 	int flags, fmt;
    317 	struct proc *p;
    318 {
    319 	struct ch_softc *sc = ch_cd.cd_devs[CHUNIT(dev)];
    320 	struct scsipi_periph *periph = sc->sc_periph;
    321 	struct scsipi_adapter *adapt = periph->periph_channel->chan_adapter;
    322 
    323 	scsipi_wait_drain(periph);
    324 
    325 	scsipi_adapter_delref(adapt);
    326 
    327 	sc->sc_events = 0;
    328 
    329 	periph->periph_flags &= ~PERIPH_OPEN;
    330 	return (0);
    331 }
    332 
    333 int
    334 chread(dev, uio, flags)
    335 	dev_t dev;
    336 	struct uio *uio;
    337 	int flags;
    338 {
    339 	struct ch_softc *sc = ch_cd.cd_devs[CHUNIT(dev)];
    340 	int error;
    341 
    342 	if (uio->uio_resid != CHANGER_EVENT_SIZE)
    343 		return (EINVAL);
    344 
    345 	/*
    346 	 * Read never blocks; if there are no events pending, we just
    347 	 * return an all-clear bitmask.
    348 	 */
    349 	error = uiomove(&sc->sc_events, CHANGER_EVENT_SIZE, uio);
    350 	if (error == 0)
    351 		sc->sc_events = 0;
    352 	return (error);
    353 }
    354 
    355 int
    356 chioctl(dev, cmd, data, flags, p)
    357 	dev_t dev;
    358 	u_long cmd;
    359 	caddr_t data;
    360 	int flags;
    361 	struct proc *p;
    362 {
    363 	struct ch_softc *sc = ch_cd.cd_devs[CHUNIT(dev)];
    364 	int error = 0;
    365 
    366 	/*
    367 	 * If this command can change the device's state, we must
    368 	 * have the device open for writing.
    369 	 */
    370 	switch (cmd) {
    371 	case CHIOGPICKER:
    372 	case CHIOGPARAMS:
    373 	case OCHIOGSTATUS:
    374 		break;
    375 
    376 	default:
    377 		if ((flags & FWRITE) == 0)
    378 			return (EBADF);
    379 	}
    380 
    381 	switch (cmd) {
    382 	case CHIOMOVE:
    383 		error = ch_move(sc, (struct changer_move_request *)data);
    384 		break;
    385 
    386 	case CHIOEXCHANGE:
    387 		error = ch_exchange(sc,
    388 		    (struct changer_exchange_request *)data);
    389 		break;
    390 
    391 	case CHIOPOSITION:
    392 		error = ch_position(sc,
    393 		    (struct changer_position_request *)data);
    394 		break;
    395 
    396 	case CHIOGPICKER:
    397 		*(int *)data = sc->sc_picker - sc->sc_firsts[CHET_MT];
    398 		break;
    399 
    400 	case CHIOSPICKER:
    401 	    {
    402 		int new_picker = *(int *)data;
    403 
    404 		if (new_picker > (sc->sc_counts[CHET_MT] - 1))
    405 			return (EINVAL);
    406 		sc->sc_picker = sc->sc_firsts[CHET_MT] + new_picker;
    407 		break;
    408 	    }
    409 
    410 	case CHIOGPARAMS:
    411 	    {
    412 		struct changer_params *cp = (struct changer_params *)data;
    413 
    414 		cp->cp_curpicker = sc->sc_picker - sc->sc_firsts[CHET_MT];
    415 		cp->cp_npickers = sc->sc_counts[CHET_MT];
    416 		cp->cp_nslots = sc->sc_counts[CHET_ST];
    417 		cp->cp_nportals = sc->sc_counts[CHET_IE];
    418 		cp->cp_ndrives = sc->sc_counts[CHET_DT];
    419 		break;
    420 	    }
    421 
    422 	case CHIOIELEM:
    423 		error = ch_ielem(sc);
    424 		if (error == 0) {
    425 			sc->sc_periph->periph_flags |= PERIPH_MEDIA_LOADED;
    426 		}
    427 		break;
    428 
    429 	case OCHIOGSTATUS:
    430 	    {
    431 		struct ochanger_element_status_request *cesr =
    432 		    (struct ochanger_element_status_request *)data;
    433 
    434 		error = ch_ousergetelemstatus(sc, cesr->cesr_type,
    435 		    cesr->cesr_data);
    436 		break;
    437 	    }
    438 
    439 	case CHIOGSTATUS:
    440 		error = ch_usergetelemstatus(sc,
    441 		    (struct changer_element_status_request *)data);
    442 		break;
    443 
    444 	case CHIOSVOLTAG:
    445 		error = ch_setvoltag(sc,
    446 		    (struct changer_set_voltag_request *)data);
    447 		break;
    448 
    449 	/* Implement prevent/allow? */
    450 
    451 	default:
    452 		error = scsipi_do_ioctl(sc->sc_periph, dev, cmd, data,
    453 		    flags, p);
    454 		break;
    455 	}
    456 
    457 	return (error);
    458 }
    459 
    460 int
    461 chpoll(dev, events, p)
    462 	dev_t dev;
    463 	int events;
    464 	struct proc *p;
    465 {
    466 	struct ch_softc *sc = ch_cd.cd_devs[CHUNIT(dev)];
    467 	int revents;
    468 
    469 	revents = events & (POLLOUT | POLLWRNORM);
    470 
    471 	if ((events & (POLLIN | POLLRDNORM)) == 0)
    472 		return (revents);
    473 
    474 	if (sc->sc_events == 0)
    475 		revents |= events & (POLLIN | POLLRDNORM);
    476 	else
    477 		selrecord(p, &sc->sc_selq);
    478 
    479 	return (revents);
    480 }
    481 
    482 int
    483 ch_interpret_sense(xs)
    484 	struct scsipi_xfer *xs;
    485 {
    486 	struct scsipi_periph *periph = xs->xs_periph;
    487 	struct scsipi_sense_data *sense = &xs->sense.scsi_sense;
    488 	struct ch_softc *sc = (void *)periph->periph_dev;
    489 	u_int16_t asc_ascq;
    490 
    491 	/*
    492 	 * If the periph is already recovering, just do the
    493 	 * normal error recovering.
    494 	 */
    495 	if (periph->periph_flags & PERIPH_RECOVERING)
    496 		return (EJUSTRETURN);
    497 
    498 	/*
    499 	 * If it isn't an extended or extended/deferred error, let
    500 	 * the generic code handle it.
    501 	 */
    502 	if ((sense->error_code & SSD_ERRCODE) != 0x70 &&
    503 	    (sense->error_code & SSD_ERRCODE) != 0x71)
    504 		return (EJUSTRETURN);
    505 
    506 	/*
    507 	 * We're only interested in condtions that
    508 	 * indicate potential inventory violation.
    509 	 *
    510 	 * We use ASC/ASCQ codes for this.
    511 	 */
    512 
    513 	asc_ascq = (((u_int16_t) sense->add_sense_code) << 8) |
    514 	    sense->add_sense_code_qual;
    515 
    516 	switch (asc_ascq) {
    517 	case 0x2800:
    518 		/* "Not Ready To Ready Transition (Medium May Have Changed)" */
    519 	case 0x2900:
    520 		/* "Power On, Reset, or Bus Device Reset Occurred" */
    521 		sc->sc_periph->periph_flags &= ~PERIPH_MEDIA_LOADED;
    522 		/*
    523 		 * Enqueue an Element-Status-Changed event, and wake up
    524 		 * any processes waiting for them.
    525 		 */
    526 		if ((xs->xs_control & XS_CTL_IGNORE_MEDIA_CHANGE) == 0)
    527 			ch_event(sc, CHEV_ELEMENT_STATUS_CHANGED);
    528 		if ((periph->periph_flags & PERIPH_OPEN) == 0) {
    529 			/*
    530 			 * if the device is not yet open, we can ignore this
    531 			 * information.
    532 			 */
    533 			return (0);
    534 		}
    535 		break;
    536 	default:
    537 		break;
    538 	}
    539 
    540 	return (EJUSTRETURN);
    541 }
    542 
    543 void
    544 ch_event(sc, event)
    545 	struct ch_softc *sc;
    546 	u_int event;
    547 {
    548 
    549 	sc->sc_events |= event;
    550 	selwakeup(&sc->sc_selq);
    551 }
    552 
    553 int
    554 ch_move(sc, cm)
    555 	struct ch_softc *sc;
    556 	struct changer_move_request *cm;
    557 {
    558 	struct scsi_move_medium cmd;
    559 	u_int16_t fromelem, toelem;
    560 
    561 	/*
    562 	 * Check arguments.
    563 	 */
    564 	if ((cm->cm_fromtype > CHET_DT) || (cm->cm_totype > CHET_DT))
    565 		return (EINVAL);
    566 	if ((cm->cm_fromunit > (sc->sc_counts[cm->cm_fromtype] - 1)) ||
    567 	    (cm->cm_tounit > (sc->sc_counts[cm->cm_totype] - 1)))
    568 		return (ENODEV);
    569 
    570 	/*
    571 	 * Check the request against the changer's capabilities.
    572 	 */
    573 	if ((sc->sc_movemask[cm->cm_fromtype] & (1 << cm->cm_totype)) == 0)
    574 		return (ENODEV);
    575 
    576 	/*
    577 	 * Calculate the source and destination elements.
    578 	 */
    579 	fromelem = sc->sc_firsts[cm->cm_fromtype] + cm->cm_fromunit;
    580 	toelem = sc->sc_firsts[cm->cm_totype] + cm->cm_tounit;
    581 
    582 	/*
    583 	 * Build the SCSI command.
    584 	 */
    585 	memset(&cmd, 0, sizeof(cmd));
    586 	cmd.opcode = MOVE_MEDIUM;
    587 	_lto2b(sc->sc_picker, cmd.tea);
    588 	_lto2b(fromelem, cmd.src);
    589 	_lto2b(toelem, cmd.dst);
    590 	if (cm->cm_flags & CM_INVERT)
    591 		cmd.flags |= MOVE_MEDIUM_INVERT;
    592 
    593 	/*
    594 	 * Send command to changer.
    595 	 */
    596 	return (scsipi_command(sc->sc_periph,
    597 	    (struct scsipi_generic *)&cmd, sizeof(cmd), NULL, 0, CHRETRIES,
    598 	    100000, NULL, 0));
    599 }
    600 
    601 int
    602 ch_exchange(sc, ce)
    603 	struct ch_softc *sc;
    604 	struct changer_exchange_request *ce;
    605 {
    606 	struct scsi_exchange_medium cmd;
    607 	u_int16_t src, dst1, dst2;
    608 
    609 	/*
    610 	 * Check arguments.
    611 	 */
    612 	if ((ce->ce_srctype > CHET_DT) || (ce->ce_fdsttype > CHET_DT) ||
    613 	    (ce->ce_sdsttype > CHET_DT))
    614 		return (EINVAL);
    615 	if ((ce->ce_srcunit > (sc->sc_counts[ce->ce_srctype] - 1)) ||
    616 	    (ce->ce_fdstunit > (sc->sc_counts[ce->ce_fdsttype] - 1)) ||
    617 	    (ce->ce_sdstunit > (sc->sc_counts[ce->ce_sdsttype] - 1)))
    618 		return (ENODEV);
    619 
    620 	/*
    621 	 * Check the request against the changer's capabilities.
    622 	 */
    623 	if (((sc->sc_exchangemask[ce->ce_srctype] &
    624 	     (1 << ce->ce_fdsttype)) == 0) ||
    625 	    ((sc->sc_exchangemask[ce->ce_fdsttype] &
    626 	     (1 << ce->ce_sdsttype)) == 0))
    627 		return (ENODEV);
    628 
    629 	/*
    630 	 * Calculate the source and destination elements.
    631 	 */
    632 	src = sc->sc_firsts[ce->ce_srctype] + ce->ce_srcunit;
    633 	dst1 = sc->sc_firsts[ce->ce_fdsttype] + ce->ce_fdstunit;
    634 	dst2 = sc->sc_firsts[ce->ce_sdsttype] + ce->ce_sdstunit;
    635 
    636 	/*
    637 	 * Build the SCSI command.
    638 	 */
    639 	memset(&cmd, 0, sizeof(cmd));
    640 	cmd.opcode = EXCHANGE_MEDIUM;
    641 	_lto2b(sc->sc_picker, cmd.tea);
    642 	_lto2b(src, cmd.src);
    643 	_lto2b(dst1, cmd.fdst);
    644 	_lto2b(dst2, cmd.sdst);
    645 	if (ce->ce_flags & CE_INVERT1)
    646 		cmd.flags |= EXCHANGE_MEDIUM_INV1;
    647 	if (ce->ce_flags & CE_INVERT2)
    648 		cmd.flags |= EXCHANGE_MEDIUM_INV2;
    649 
    650 	/*
    651 	 * Send command to changer.
    652 	 */
    653 	return (scsipi_command(sc->sc_periph,
    654 	    (struct scsipi_generic *)&cmd, sizeof(cmd), NULL, 0, CHRETRIES,
    655 	    100000, NULL, 0));
    656 }
    657 
    658 int
    659 ch_position(sc, cp)
    660 	struct ch_softc *sc;
    661 	struct changer_position_request *cp;
    662 {
    663 	struct scsi_position_to_element cmd;
    664 	u_int16_t dst;
    665 
    666 	/*
    667 	 * Check arguments.
    668 	 */
    669 	if (cp->cp_type > CHET_DT)
    670 		return (EINVAL);
    671 	if (cp->cp_unit > (sc->sc_counts[cp->cp_type] - 1))
    672 		return (ENODEV);
    673 
    674 	/*
    675 	 * Calculate the destination element.
    676 	 */
    677 	dst = sc->sc_firsts[cp->cp_type] + cp->cp_unit;
    678 
    679 	/*
    680 	 * Build the SCSI command.
    681 	 */
    682 	memset(&cmd, 0, sizeof(cmd));
    683 	cmd.opcode = POSITION_TO_ELEMENT;
    684 	_lto2b(sc->sc_picker, cmd.tea);
    685 	_lto2b(dst, cmd.dst);
    686 	if (cp->cp_flags & CP_INVERT)
    687 		cmd.flags |= POSITION_TO_ELEMENT_INVERT;
    688 
    689 	/*
    690 	 * Send command to changer.
    691 	 */
    692 	return (scsipi_command(sc->sc_periph,
    693 	    (struct scsipi_generic *)&cmd, sizeof(cmd), NULL, 0, CHRETRIES,
    694 	    100000, NULL, 0));
    695 }
    696 
    697 /*
    698  * Perform a READ ELEMENT STATUS on behalf of the user, and return to
    699  * the user only the data the user is interested in.  This returns the
    700  * old data format.
    701  */
    702 int
    703 ch_ousergetelemstatus(sc, chet, uptr)
    704 	struct ch_softc *sc;
    705 	int chet;
    706 	u_int8_t *uptr;
    707 {
    708 	struct read_element_status_header *st_hdrp, st_hdr;
    709 	struct read_element_status_page_header *pg_hdrp;
    710 	struct read_element_status_descriptor *desc;
    711 	size_t size, desclen;
    712 	caddr_t data;
    713 	int avail, i, error = 0;
    714 	u_int8_t user_data;
    715 
    716 	/*
    717 	 * If there are no elements of the requested type in the changer,
    718 	 * the request is invalid.
    719 	 */
    720 	if (sc->sc_counts[chet] == 0)
    721 		return (EINVAL);
    722 
    723 	/*
    724 	 * Do the request the user wants, but only read the status header.
    725 	 * This will tell us the amount of storage we must allocate in
    726 	 * order to read all data.
    727 	 */
    728 	error = ch_getelemstatus(sc, sc->sc_firsts[chet],
    729 	    sc->sc_counts[chet], &st_hdr, sizeof(st_hdr),
    730 	    XS_CTL_DATA_ONSTACK, 0);
    731 	if (error)
    732 		return (error);
    733 
    734 	size = sizeof(struct read_element_status_header) +
    735 	    _3btol(st_hdr.nbytes);
    736 
    737 	/*
    738 	 * We must have at least room for the status header and
    739 	 * one page header (since we only ask for one element type
    740 	 * at a time).
    741 	 */
    742 	if (size < (sizeof(struct read_element_status_header) +
    743 	    sizeof(struct read_element_status_page_header)))
    744 		return (EIO);
    745 
    746 	/*
    747 	 * Allocate the storage and do the request again.
    748 	 */
    749 	data = malloc(size, M_DEVBUF, M_WAITOK);
    750 	error = ch_getelemstatus(sc, sc->sc_firsts[chet],
    751 	    sc->sc_counts[chet], data, size, 0, 0);
    752 	if (error)
    753 		goto done;
    754 
    755 	st_hdrp = (struct read_element_status_header *)data;
    756 	pg_hdrp = (struct read_element_status_page_header *)((u_long)st_hdrp +
    757 	    sizeof(struct read_element_status_header));
    758 	desclen = _2btol(pg_hdrp->edl);
    759 
    760 	/*
    761 	 * Fill in the user status array.
    762 	 */
    763 	avail = _2btol(st_hdrp->count);
    764 
    765 	if (avail != sc->sc_counts[chet])
    766 		printf("%s: warning, READ ELEMENT STATUS avail != count\n",
    767 		    sc->sc_dev.dv_xname);
    768 
    769 	desc = (struct read_element_status_descriptor *)((u_long)data +
    770 	    sizeof(struct read_element_status_header) +
    771 	    sizeof(struct read_element_status_page_header));
    772 	for (i = 0; i < avail; ++i) {
    773 		user_data = desc->flags1;
    774 		error = copyout(&user_data, &uptr[i], avail);
    775 		if (error)
    776 			break;
    777 		desc = (struct read_element_status_descriptor *)((u_long)desc
    778 		    + desclen);
    779 	}
    780 
    781  done:
    782 	if (data != NULL)
    783 		free(data, M_DEVBUF);
    784 	return (error);
    785 }
    786 
    787 /*
    788  * Perform a READ ELEMENT STATUS on behalf of the user.  This returns
    789  * the new (more complete) data format.
    790  */
    791 int
    792 ch_usergetelemstatus(sc, cesr)
    793 	struct ch_softc *sc;
    794 	struct changer_element_status_request *cesr;
    795 {
    796 	struct scsipi_channel *chan = sc->sc_periph->periph_channel;
    797 	struct scsipi_periph *dtperiph;
    798 	struct read_element_status_header *st_hdrp, st_hdr;
    799 	struct read_element_status_page_header *pg_hdrp;
    800 	struct read_element_status_descriptor *desc;
    801 	struct changer_volume_tag *avol, *pvol;
    802 	size_t size, desclen, stddesclen, offset;
    803 	int first, avail, i, error = 0;
    804 	caddr_t data;
    805 	void *uvendptr;
    806 	struct changer_element_status ces;
    807 
    808 	/*
    809 	 * Check arguments.
    810 	 */
    811 	if (cesr->cesr_type > CHET_DT)
    812 		return (EINVAL);
    813 	if (sc->sc_counts[cesr->cesr_type] == 0)
    814 		return (ENODEV);
    815 	if (cesr->cesr_unit > (sc->sc_counts[cesr->cesr_type] - 1))
    816 		return (ENODEV);
    817 	if (cesr->cesr_count >
    818 	    (sc->sc_counts[cesr->cesr_type] + cesr->cesr_unit))
    819 		return (EINVAL);
    820 
    821 	/*
    822 	 * Do the request the user wants, but only read the status header.
    823 	 * This will tell us the amount of storage we must allocate
    824 	 * in order to read all the data.
    825 	 */
    826 	error = ch_getelemstatus(sc, sc->sc_firsts[cesr->cesr_type] +
    827 	    cesr->cesr_unit, cesr->cesr_count, &st_hdr, sizeof(st_hdr), 0,
    828 	    cesr->cesr_flags);
    829 	if (error)
    830 		return (error);
    831 
    832 	size = sizeof(struct read_element_status_header) +
    833 	    _3btol(st_hdr.nbytes);
    834 
    835 	/*
    836 	 * We must have at least room for the status header and
    837 	 * one page header (since we only ask for oen element type
    838 	 * at a time).
    839 	 */
    840 	if (size < (sizeof(struct read_element_status_header) +
    841 	    sizeof(struct read_element_status_page_header)))
    842 		return (EIO);
    843 
    844 	/*
    845 	 * Allocate the storage and do the request again.
    846 	 */
    847 	data = malloc(size, M_DEVBUF, M_WAITOK);
    848 	error = ch_getelemstatus(sc, sc->sc_firsts[cesr->cesr_type] +
    849 	    cesr->cesr_unit, cesr->cesr_count, data, size, 0,
    850 	    cesr->cesr_flags);
    851 	if (error)
    852 		goto done;
    853 
    854 	st_hdrp = (struct read_element_status_header *)data;
    855 	pg_hdrp = (struct read_element_status_page_header *)((u_long)st_hdrp +
    856 	    sizeof(struct read_element_status_header));
    857 	desclen = _2btol(pg_hdrp->edl);
    858 
    859 	/*
    860 	 * Fill in the user status array.
    861 	 */
    862 	first = _2btol(st_hdrp->fear);
    863 	if (first <  (sc->sc_firsts[cesr->cesr_type] + cesr->cesr_unit) ||
    864 	    first >= (sc->sc_firsts[cesr->cesr_type] + cesr->cesr_unit +
    865 		      cesr->cesr_count)) {
    866 		error = EIO;
    867 		goto done;
    868 	}
    869 	first -= sc->sc_firsts[cesr->cesr_type] + cesr->cesr_unit;
    870 
    871 	avail = _2btol(st_hdrp->count);
    872 	if (avail <= 0 || avail > cesr->cesr_count) {
    873 		error = EIO;
    874 		goto done;
    875 	}
    876 
    877 	offset = sizeof(struct read_element_status_header) +
    878 		 sizeof(struct read_element_status_page_header);
    879 
    880 	for (i = 0; i < cesr->cesr_count; i++) {
    881 		memset(&ces, 0, sizeof(ces));
    882 		if (i < first || i >= (first + avail)) {
    883 			error = copyout(&ces, &cesr->cesr_data[i],
    884 			    sizeof(ces));
    885 			if (error)
    886 				goto done;
    887 		}
    888 
    889 		desc = (struct read_element_status_descriptor *)
    890 		    (data + offset);
    891 		stddesclen = sizeof(struct read_element_status_descriptor);
    892 		offset += desclen;
    893 
    894 		ces.ces_flags = CESTATUS_STATUS_VALID;
    895 
    896 		/*
    897 		 * The SCSI flags conveniently map directly to the
    898 		 * chio API flags.
    899 		 */
    900 		ces.ces_flags |= (desc->flags1 & 0x3f);
    901 
    902 		ces.ces_asc = desc->sense_code;
    903 		ces.ces_ascq = desc->sense_qual;
    904 
    905 		/*
    906 		 * For Data Transport elemenets, get the SCSI ID and LUN,
    907 		 * and attempt to map them to a device name if they're
    908 		 * on the same SCSI bus.
    909 		 */
    910 		if (desc->dt_scsi_flags & READ_ELEMENT_STATUS_DT_IDVALID) {
    911 			ces.ces_target = desc->dt_scsi_addr;
    912 			ces.ces_flags |= CESTATUS_TARGET_VALID;
    913 		}
    914 		if (desc->dt_scsi_flags & READ_ELEMENT_STATUS_DT_LUVALID) {
    915 			ces.ces_lun = desc->dt_scsi_flags &
    916 			    READ_ELEMENT_STATUS_DT_LUNMASK;
    917 			ces.ces_flags |= CESTATUS_LUN_VALID;
    918 		}
    919 		if (desc->dt_scsi_flags & READ_ELEMENT_STATUS_DT_NOTBUS)
    920 			ces.ces_flags |= CESTATUS_NOTBUS;
    921 		else if ((ces.ces_flags &
    922 			  (CESTATUS_TARGET_VALID|CESTATUS_LUN_VALID)) ==
    923 			 (CESTATUS_TARGET_VALID|CESTATUS_LUN_VALID)) {
    924 			if (ces.ces_target < chan->chan_ntargets &&
    925 			    ces.ces_lun < chan->chan_nluns &&
    926 			    (dtperiph = scsipi_lookup_periph(chan,
    927 			     ces.ces_target, ces.ces_lun)) != NULL &&
    928 			    dtperiph->periph_dev != NULL) {
    929 				strcpy(ces.ces_xname,
    930 				    dtperiph->periph_dev->dv_xname);
    931 				ces.ces_flags |= CESTATUS_XNAME_VALID;
    932 			}
    933 		}
    934 
    935 		if (desc->flags2 & READ_ELEMENT_STATUS_INVERT)
    936 			ces.ces_flags |= CESTATUS_INVERTED;
    937 
    938 		if (desc->flags2 & READ_ELEMENT_STATUS_SVALID) {
    939 			if (ch_map_element(sc, _2btol(desc->ssea),
    940 			    &ces.ces_from_type, &ces.ces_from_unit))
    941 				ces.ces_flags |= CESTATUS_FROM_VALID;
    942 		}
    943 
    944 		/*
    945 		 * Extract volume tag information.
    946 		 */
    947 		switch (pg_hdrp->flags &
    948 		    (READ_ELEMENT_STATUS_PVOLTAG|READ_ELEMENT_STATUS_AVOLTAG)) {
    949 		case (READ_ELEMENT_STATUS_PVOLTAG|READ_ELEMENT_STATUS_AVOLTAG):
    950 			pvol = (struct changer_volume_tag *)(desc + 1);
    951 			avol = pvol + 1;
    952 			break;
    953 
    954 		case READ_ELEMENT_STATUS_PVOLTAG:
    955 			pvol = (struct changer_volume_tag *)(desc + 1);
    956 			avol = NULL;
    957 			break;
    958 
    959 		case READ_ELEMENT_STATUS_AVOLTAG:
    960 			pvol = NULL;
    961 			avol = (struct changer_volume_tag *)(desc + 1);
    962 			break;
    963 
    964 		default:
    965 			avol = pvol = NULL;
    966 			break;
    967 		}
    968 
    969 		if (pvol != NULL) {
    970 			ch_voltag_convert_in(pvol, &ces.ces_pvoltag);
    971 			ces.ces_flags |= CESTATUS_PVOL_VALID;
    972 			stddesclen += sizeof(struct changer_volume_tag);
    973 		}
    974 		if (avol != NULL) {
    975 			ch_voltag_convert_in(avol, &ces.ces_avoltag);
    976 			ces.ces_flags |= CESTATUS_AVOL_VALID;
    977 			stddesclen += sizeof(struct changer_volume_tag);
    978 		}
    979 
    980 		/*
    981 		 * Compute vendor-specific length.  Note the 4 reserved
    982 		 * bytes between the volume tags and the vendor-specific
    983 		 * data.  Copy it out of the user wants it.
    984 		 */
    985 		stddesclen += 4;
    986 		if (desclen > stddesclen)
    987 			ces.ces_vendor_len = desclen - stddesclen;
    988 
    989 		if (ces.ces_vendor_len != 0 && cesr->cesr_vendor_data != NULL) {
    990 			error = copyin(&cesr->cesr_vendor_data[i], &uvendptr,
    991 			    sizeof(uvendptr));
    992 			if (error)
    993 				goto done;
    994 			error = copyout((void *)((u_long)desc + stddesclen),
    995 			    uvendptr, ces.ces_vendor_len);
    996 			if (error)
    997 				goto done;
    998 		}
    999 
   1000 		/*
   1001 		 * Now copy out the status descriptor we've constructed.
   1002 		 */
   1003 		error = copyout(&ces, &cesr->cesr_data[i], sizeof(ces));
   1004 		if (error)
   1005 			goto done;
   1006 	}
   1007 
   1008  done:
   1009 	if (data != NULL)
   1010 		free(data, M_DEVBUF);
   1011 	return (error);
   1012 }
   1013 
   1014 int
   1015 ch_getelemstatus(sc, first, count, data, datalen, scsiflags, flags)
   1016 	struct ch_softc *sc;
   1017 	int first, count;
   1018 	void *data;
   1019 	size_t datalen;
   1020 	int scsiflags;
   1021 	int flags;
   1022 {
   1023 	struct scsi_read_element_status cmd;
   1024 
   1025 	/*
   1026 	 * Build SCSI command.
   1027 	 */
   1028 	memset(&cmd, 0, sizeof(cmd));
   1029 	cmd.opcode = READ_ELEMENT_STATUS;
   1030 	cmd.byte2 = ELEMENT_TYPE_ALL;
   1031 	if (flags & CESR_VOLTAGS)
   1032 		cmd.byte2 |= READ_ELEMENT_STATUS_VOLTAG;
   1033 	_lto2b(first, cmd.sea);
   1034 	_lto2b(count, cmd.count);
   1035 	_lto3b(datalen, cmd.len);
   1036 
   1037 	/*
   1038 	 * Send command to changer.
   1039 	 */
   1040 	return (scsipi_command(sc->sc_periph,
   1041 	    (struct scsipi_generic *)&cmd, sizeof(cmd),
   1042 	    (u_char *)data, datalen, CHRETRIES, 100000, NULL,
   1043 	    scsiflags | XS_CTL_DATA_IN));
   1044 }
   1045 
   1046 int
   1047 ch_setvoltag(sc, csvr)
   1048 	struct ch_softc *sc;
   1049 	struct changer_set_voltag_request *csvr;
   1050 {
   1051 	struct scsi_send_volume_tag cmd;
   1052 	struct changer_volume_tag voltag;
   1053 	void *data = NULL;
   1054 	size_t datalen = 0;
   1055 	int error;
   1056 	u_int16_t dst;
   1057 
   1058 	/*
   1059 	 * Check arguments.
   1060 	 */
   1061 	if (csvr->csvr_type > CHET_DT)
   1062 		return (EINVAL);
   1063 	if (csvr->csvr_unit > (sc->sc_counts[csvr->csvr_type] - 1))
   1064 		return (ENODEV);
   1065 
   1066 	dst = sc->sc_firsts[csvr->csvr_type] + csvr->csvr_unit;
   1067 
   1068 	/*
   1069 	 * Build the SCSI command.
   1070 	 */
   1071 	memset(&cmd, 0, sizeof(cmd));
   1072 	cmd.opcode = SEND_VOLUME_TAG;
   1073 	_lto2b(dst, cmd.eaddr);
   1074 
   1075 #define	ALTERNATE	(csvr->csvr_flags & CSVR_ALTERNATE)
   1076 
   1077 	switch (csvr->csvr_flags & CSVR_MODE_MASK) {
   1078 	case CSVR_MODE_SET:
   1079 		cmd.sac = ALTERNATE ? SAC_ASSERT_ALT : SAC_ASSERT_PRIMARY;
   1080 		break;
   1081 
   1082 	case CSVR_MODE_REPLACE:
   1083 		cmd.sac = ALTERNATE ? SAC_REPLACE_ALT : SAC_REPLACE_PRIMARY;
   1084 		break;
   1085 
   1086 	case CSVR_MODE_CLEAR:
   1087 		cmd.sac = ALTERNATE ? SAC_UNDEFINED_ALT : SAC_UNDEFINED_PRIMARY;
   1088 		break;
   1089 
   1090 	default:
   1091 		return (EINVAL);
   1092 	}
   1093 
   1094 #undef ALTERNATE
   1095 
   1096 	if (cmd.sac < SAC_UNDEFINED_PRIMARY) {
   1097 		error = ch_voltag_convert_out(&csvr->csvr_voltag, &voltag);
   1098 		if (error)
   1099 			return (error);
   1100 		data = &voltag;
   1101 		datalen = sizeof(voltag);
   1102 		_lto2b(datalen, cmd.length);
   1103 	}
   1104 
   1105 	/*
   1106 	 * Send command to changer.
   1107 	 */
   1108 	return (scsipi_command(sc->sc_periph,
   1109 	    (struct scsipi_generic *)&cmd, sizeof(cmd),
   1110 	    (u_char *)data, datalen, CHRETRIES, 100000, NULL,
   1111 	    datalen ? XS_CTL_DATA_OUT | XS_CTL_DATA_ONSTACK : 0));
   1112 }
   1113 
   1114 int
   1115 ch_ielem(sc)
   1116 	struct ch_softc *sc;
   1117 {
   1118 	int tmo;
   1119 	struct scsi_initialize_element_status cmd;
   1120 
   1121 	/*
   1122 	 * Build SCSI command.
   1123 	 */
   1124 	memset(&cmd, 0, sizeof(cmd));
   1125 	cmd.opcode = INITIALIZE_ELEMENT_STATUS;
   1126 
   1127 	/*
   1128 	 * Send command to changer.
   1129 	 *
   1130 	 * The problem is, how long to allow for the command?
   1131 	 * It can take a *really* long time, and also depends
   1132 	 * on unknowable factors such as whether there are
   1133 	 * *almost* readable labels on tapes that a barcode
   1134 	 * reader is trying to decipher.
   1135 	 *
   1136 	 * I'm going to make this long enough to allow 5 minutes
   1137 	 * per element plus an initial 10 minute wait.
   1138 	 */
   1139 	tmo =	sc->sc_counts[CHET_MT] +
   1140 		sc->sc_counts[CHET_ST] +
   1141 		sc->sc_counts[CHET_IE] +
   1142 		sc->sc_counts[CHET_DT];
   1143 	tmo *= 5 * 60 * 1000;
   1144 	tmo += (10 * 60 * 1000);
   1145 
   1146 	return (scsipi_command(sc->sc_periph,
   1147 	    (struct scsipi_generic *)&cmd, sizeof(cmd),
   1148 	    NULL, 0, CHRETRIES, tmo, NULL, XS_CTL_IGNORE_ILLEGAL_REQUEST));
   1149 }
   1150 
   1151 /*
   1152  * Ask the device about itself and fill in the parameters in our
   1153  * softc.
   1154  */
   1155 int
   1156 ch_get_params(sc, scsiflags)
   1157 	struct ch_softc *sc;
   1158 	int scsiflags;
   1159 {
   1160 	struct scsi_mode_sense_data {
   1161 		struct scsipi_mode_header header;
   1162 		union {
   1163 			struct page_element_address_assignment ea;
   1164 			struct page_transport_geometry_parameters tg;
   1165 			struct page_device_capabilities cap;
   1166 		} pages;
   1167 	} sense_data;
   1168 	int error, from;
   1169 	u_int8_t *moves, *exchanges;
   1170 
   1171 	/*
   1172 	 * Grab info from the element address assignment page.
   1173 	 */
   1174 	memset(&sense_data, 0, sizeof(sense_data));
   1175 	error = scsipi_mode_sense(sc->sc_periph, SMS_DBD, 0x1d,
   1176 	    &sense_data.header, sizeof(sense_data),
   1177 	    scsiflags | XS_CTL_DATA_ONSTACK, CHRETRIES, 6000);
   1178 	if (error) {
   1179 		printf("%s: could not sense element address page\n",
   1180 		    sc->sc_dev.dv_xname);
   1181 		return (error);
   1182 	}
   1183 
   1184 	sc->sc_firsts[CHET_MT] = _2btol(sense_data.pages.ea.mtea);
   1185 	sc->sc_counts[CHET_MT] = _2btol(sense_data.pages.ea.nmte);
   1186 	sc->sc_firsts[CHET_ST] = _2btol(sense_data.pages.ea.fsea);
   1187 	sc->sc_counts[CHET_ST] = _2btol(sense_data.pages.ea.nse);
   1188 	sc->sc_firsts[CHET_IE] = _2btol(sense_data.pages.ea.fieea);
   1189 	sc->sc_counts[CHET_IE] = _2btol(sense_data.pages.ea.niee);
   1190 	sc->sc_firsts[CHET_DT] = _2btol(sense_data.pages.ea.fdtea);
   1191 	sc->sc_counts[CHET_DT] = _2btol(sense_data.pages.ea.ndte);
   1192 
   1193 	/* XXX ask for transport geometry page XXX */
   1194 
   1195 	/*
   1196 	 * Grab info from the capabilities page.
   1197 	 */
   1198 	memset(&sense_data, 0, sizeof(sense_data));
   1199 	/*
   1200 	 * XXX: Note: not all changers can deal with disabled block descriptors
   1201 	 */
   1202 	error = scsipi_mode_sense(sc->sc_periph, SMS_DBD, 0x1f,
   1203 	    &sense_data.header, sizeof(sense_data),
   1204 	    scsiflags | XS_CTL_DATA_ONSTACK, CHRETRIES, 6000);
   1205 	if (error) {
   1206 		printf("%s: could not sense capabilities page\n",
   1207 		    sc->sc_dev.dv_xname);
   1208 		return (error);
   1209 	}
   1210 
   1211 	memset(sc->sc_movemask, 0, sizeof(sc->sc_movemask));
   1212 	memset(sc->sc_exchangemask, 0, sizeof(sc->sc_exchangemask));
   1213 	moves = &sense_data.pages.cap.move_from_mt;
   1214 	exchanges = &sense_data.pages.cap.exchange_with_mt;
   1215 	for (from = CHET_MT; from <= CHET_DT; ++from) {
   1216 		sc->sc_movemask[from] = moves[from];
   1217 		sc->sc_exchangemask[from] = exchanges[from];
   1218 	}
   1219 
   1220 #ifdef CH_AUTOMATIC_IELEM_POLICY
   1221 	/*
   1222 	 * If we need to do an Init-Element-Status,
   1223 	 * do that now that we know what's in the changer.
   1224 	 */
   1225 	if ((scsiflags & XS_CTL_IGNORE_MEDIA_CHANGE) == 0) {
   1226 		if ((sc->sc_periph->periph_flags & PERIPH_MEDIA_LOADED) == 0)
   1227 			error = ch_ielem(sc);
   1228 		if (error == 0)
   1229 			sc->sc_periph->periph_flags |= PERIPH_MEDIA_LOADED;
   1230 		else
   1231 			sc->sc_periph->periph_flags &= ~PERIPH_MEDIA_LOADED;
   1232 	}
   1233 #endif
   1234 	return (error);
   1235 }
   1236 
   1237 void
   1238 ch_get_quirks(sc, inqbuf)
   1239 	struct ch_softc *sc;
   1240 	struct scsipi_inquiry_pattern *inqbuf;
   1241 {
   1242 	struct chquirk *match;
   1243 	int priority;
   1244 
   1245 	sc->sc_settledelay = 0;
   1246 
   1247 	match = (struct chquirk *)scsipi_inqmatch(inqbuf,
   1248 	    (caddr_t)chquirks,
   1249 	    sizeof(chquirks) / sizeof(chquirks[0]),
   1250 	    sizeof(chquirks[0]), &priority);
   1251 	if (priority != 0)
   1252 		sc->sc_settledelay = match->cq_settledelay;
   1253 }
   1254 
   1255 int
   1256 ch_map_element(sc, elem, typep, unitp)
   1257 	struct ch_softc *sc;
   1258 	u_int16_t elem;
   1259 	int *typep, *unitp;
   1260 {
   1261 	int chet;
   1262 
   1263 	for (chet = CHET_MT; chet <= CHET_DT; chet++) {
   1264 		if (elem >= sc->sc_firsts[chet] &&
   1265 		    elem < (sc->sc_firsts[chet] + sc->sc_counts[chet])) {
   1266 			*typep = chet;
   1267 			*unitp = elem - sc->sc_firsts[chet];
   1268 			return (1);
   1269 		}
   1270 	}
   1271 	return (0);
   1272 }
   1273 
   1274 void
   1275 ch_voltag_convert_in(sv, cv)
   1276 	const struct changer_volume_tag *sv;
   1277 	struct changer_voltag *cv;
   1278 {
   1279 	int i;
   1280 
   1281 	memset(cv, 0, sizeof(struct changer_voltag));
   1282 
   1283 	/*
   1284 	 * Copy the volume tag string from the SCSI representation.
   1285 	 * Per the SCSI-2 spec, we stop at the first blank character.
   1286 	 */
   1287 	for (i = 0; i < sizeof(sv->volid); i++) {
   1288 		if (sv->volid[i] == ' ')
   1289 			break;
   1290 		cv->cv_tag[i] = sv->volid[i];
   1291 	}
   1292 	cv->cv_tag[i] = '\0';
   1293 
   1294 	cv->cv_serial = _2btol(sv->volseq);
   1295 }
   1296 
   1297 int
   1298 ch_voltag_convert_out(cv, sv)
   1299 	const struct changer_voltag *cv;
   1300 	struct changer_volume_tag *sv;
   1301 {
   1302 	int i;
   1303 
   1304 	memset(sv, ' ', sizeof(struct changer_volume_tag));
   1305 
   1306 	for (i = 0; i < sizeof(sv->volid); i++) {
   1307 		if (cv->cv_tag[i] == '\0')
   1308 			break;
   1309 		/*
   1310 		 * Limit the character set to what is suggested in
   1311 		 * the SCSI-2 spec.
   1312 		 */
   1313 		if ((cv->cv_tag[i] < '0' || cv->cv_tag[i] > '9') &&
   1314 		    (cv->cv_tag[i] < 'A' || cv->cv_tag[i] > 'Z') &&
   1315 		    (cv->cv_tag[i] != '_'))
   1316 			return (EINVAL);
   1317 		sv->volid[i] = cv->cv_tag[i];
   1318 	}
   1319 
   1320 	_lto2b(cv->cv_serial, sv->volseq);
   1321 
   1322 	return (0);
   1323 }
   1324