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mt.c revision 1.31.4.3
      1  1.31.4.2    martin /*	$NetBSD: mt.c,v 1.31.4.3 2020/04/13 08:04:20 martin Exp $ */
      2       1.1  gmcgarry 
      3       1.1  gmcgarry /*-
      4       1.1  gmcgarry  * Copyright (c) 1996-2003 The NetBSD Foundation, Inc.
      5       1.1  gmcgarry  * All rights reserved.
      6       1.1  gmcgarry  *
      7       1.1  gmcgarry  * This code is derived from software contributed to The NetBSD Foundation
      8       1.1  gmcgarry  * by Jason R. Thorpe.
      9       1.1  gmcgarry  *
     10       1.1  gmcgarry  * Redistribution and use in source and binary forms, with or without
     11       1.1  gmcgarry  * modification, are permitted provided that the following conditions
     12       1.1  gmcgarry  * are met:
     13       1.1  gmcgarry  * 1. Redistributions of source code must retain the above copyright
     14       1.1  gmcgarry  *    notice, this list of conditions and the following disclaimer.
     15       1.1  gmcgarry  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1  gmcgarry  *    notice, this list of conditions and the following disclaimer in the
     17       1.1  gmcgarry  *    documentation and/or other materials provided with the distribution.
     18       1.1  gmcgarry  *
     19       1.1  gmcgarry  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1  gmcgarry  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1  gmcgarry  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1  gmcgarry  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1  gmcgarry  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1  gmcgarry  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1  gmcgarry  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1  gmcgarry  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1  gmcgarry  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1  gmcgarry  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1  gmcgarry  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1  gmcgarry  */
     31       1.1  gmcgarry 
     32       1.1  gmcgarry /*
     33      1.24     rmind  * Copyright (c) 1988 University of Utah.
     34       1.1  gmcgarry  * Copyright (c) 1982, 1990, 1993
     35       1.1  gmcgarry  *	The Regents of the University of California.  All rights reserved.
     36       1.1  gmcgarry  *
     37       1.1  gmcgarry  * This code is derived from software contributed to Berkeley by
     38       1.1  gmcgarry  * the Systems Programming Group of the University of Utah Computer
     39       1.1  gmcgarry  * Science Department.
     40       1.1  gmcgarry  *
     41       1.1  gmcgarry  * Redistribution and use in source and binary forms, with or without
     42       1.1  gmcgarry  * modification, are permitted provided that the following conditions
     43       1.1  gmcgarry  * are met:
     44       1.1  gmcgarry  * 1. Redistributions of source code must retain the above copyright
     45       1.1  gmcgarry  *    notice, this list of conditions and the following disclaimer.
     46       1.1  gmcgarry  * 2. Redistributions in binary form must reproduce the above copyright
     47       1.1  gmcgarry  *    notice, this list of conditions and the following disclaimer in the
     48       1.1  gmcgarry  *    documentation and/or other materials provided with the distribution.
     49       1.2       agc  * 3. Neither the name of the University nor the names of its contributors
     50       1.2       agc  *    may be used to endorse or promote products derived from this software
     51       1.2       agc  *    without specific prior written permission.
     52       1.2       agc  *
     53       1.2       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     54       1.2       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     55       1.2       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     56       1.2       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     57       1.2       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     58       1.2       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     59       1.2       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     60       1.2       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     61       1.2       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     62       1.2       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     63       1.2       agc  * SUCH DAMAGE.
     64       1.2       agc  *
     65       1.2       agc  * from: Utah $Hdr: rd.c 1.44 92/12/26$
     66       1.2       agc  *
     67       1.2       agc  *	@(#)rd.c	8.2 (Berkeley) 5/19/94
     68       1.2       agc  */
     69       1.2       agc 
     70       1.2       agc /*
     71       1.1  gmcgarry  * Magnetic tape driver (HP7974a, HP7978a/b, HP7979a, HP7980a, HP7980xc)
     72       1.1  gmcgarry  * Original version contributed by Mt. Xinu.
     73       1.1  gmcgarry  * Modified for 4.4BSD by Mark Davies and Andrew Vignaux, Department of
     74       1.1  gmcgarry  * Computer Science, Victoria University of Wellington
     75       1.1  gmcgarry  */
     76       1.1  gmcgarry 
     77       1.1  gmcgarry #include <sys/cdefs.h>
     78  1.31.4.2    martin __KERNEL_RCSID(0, "$NetBSD: mt.c,v 1.31.4.3 2020/04/13 08:04:20 martin Exp $");
     79       1.1  gmcgarry 
     80       1.1  gmcgarry #include <sys/param.h>
     81       1.1  gmcgarry #include <sys/systm.h>
     82       1.1  gmcgarry #include <sys/callout.h>
     83       1.1  gmcgarry #include <sys/buf.h>
     84       1.3      yamt #include <sys/bufq.h>
     85       1.1  gmcgarry #include <sys/ioctl.h>
     86       1.1  gmcgarry #include <sys/mtio.h>
     87       1.1  gmcgarry #include <sys/file.h>
     88       1.1  gmcgarry #include <sys/proc.h>
     89       1.1  gmcgarry #include <sys/tty.h>
     90       1.1  gmcgarry #include <sys/kernel.h>
     91       1.1  gmcgarry #include <sys/tprintf.h>
     92       1.1  gmcgarry #include <sys/device.h>
     93       1.1  gmcgarry #include <sys/conf.h>
     94       1.1  gmcgarry 
     95       1.1  gmcgarry #include <dev/gpib/gpibvar.h>
     96       1.1  gmcgarry #include <dev/gpib/cs80busvar.h>
     97       1.1  gmcgarry 
     98       1.1  gmcgarry #include <dev/gpib/mtreg.h>
     99       1.1  gmcgarry 
    100      1.31  riastrad #include "ioconf.h"
    101      1.31  riastrad 
    102       1.1  gmcgarry #ifdef DEBUG
    103       1.1  gmcgarry int	mtdebug = 0;
    104       1.1  gmcgarry #define MDB_ANY		0xff
    105       1.1  gmcgarry #define MDB_FOLLOW	0x01
    106       1.1  gmcgarry #define	DPRINTF(mask, str)	if (mtdebug & (mask)) printf str
    107       1.1  gmcgarry #else
    108       1.1  gmcgarry #define	DPRINTF(mask, str)	/* nothing */
    109       1.1  gmcgarry #endif
    110       1.1  gmcgarry 
    111       1.1  gmcgarry struct	mt_softc {
    112      1.25       chs 	device_t sc_dev;
    113       1.1  gmcgarry 
    114       1.1  gmcgarry 	gpib_chipset_tag_t sc_ic;
    115       1.1  gmcgarry 	gpib_handle_t sc_hdl;
    116       1.1  gmcgarry 
    117       1.1  gmcgarry 	int	sc_slave;	/* GPIB slave address (0-6) */
    118       1.1  gmcgarry 	short	sc_flags;	/* see below */
    119       1.1  gmcgarry 	u_char	sc_lastdsj;	/* place for DSJ in mtreaddsj() */
    120       1.1  gmcgarry 	u_char	sc_lastecmd;	/* place for End Command in mtreaddsj() */
    121       1.1  gmcgarry 	short	sc_recvtimeo;	/* count of gpibsend timeouts to prevent hang */
    122       1.1  gmcgarry 	short	sc_statindex;	/* index for next sc_stat when MTF_STATTIMEO */
    123       1.1  gmcgarry 	struct	mt_stat sc_stat;/* status bytes last read from device */
    124       1.1  gmcgarry 	short	sc_density;	/* current density of tape (mtio.h format) */
    125       1.1  gmcgarry 	short	sc_type;	/* tape drive model (hardware IDs) */
    126       1.1  gmcgarry 	tpr_t	sc_ttyp;
    127       1.4      yamt 	struct bufq_state *sc_tab;/* buf queue */
    128       1.1  gmcgarry 	int	sc_active;
    129       1.1  gmcgarry 	struct buf sc_bufstore;	/* XXX buffer storage */
    130       1.1  gmcgarry 
    131       1.1  gmcgarry 	struct	callout sc_start_ch;
    132       1.1  gmcgarry 	struct	callout sc_intr_ch;
    133       1.1  gmcgarry };
    134       1.1  gmcgarry 
    135       1.1  gmcgarry #define	MTUNIT(x)	(minor(x) & 0x03)
    136       1.1  gmcgarry 
    137       1.8   reinoud #define B_CMD		B_DEVPRIVATE	/* command buf instead of data */
    138       1.1  gmcgarry #define	b_cmd		b_blkno		/* blkno holds cmd when B_CMD */
    139       1.1  gmcgarry 
    140      1.20    cegger int	mtmatch(device_t, cfdata_t, void *);
    141      1.20    cegger void	mtattach(device_t, device_t, void *);
    142       1.1  gmcgarry 
    143      1.25       chs CFATTACH_DECL_NEW(mt, sizeof(struct mt_softc),
    144       1.1  gmcgarry 	mtmatch, mtattach, NULL, NULL);
    145       1.1  gmcgarry 
    146       1.1  gmcgarry int	mtlookup(int, int, int);
    147       1.1  gmcgarry void	mtustart(struct mt_softc *);
    148       1.1  gmcgarry int	mtreaddsj(struct mt_softc *, int);
    149       1.1  gmcgarry int	mtcommand(dev_t, int, int);
    150       1.1  gmcgarry 
    151       1.1  gmcgarry void	mtintr_callout(void *);
    152       1.1  gmcgarry void	mtstart_callout(void *);
    153       1.1  gmcgarry 
    154       1.1  gmcgarry void	mtcallback(void *, int);
    155       1.1  gmcgarry void	mtstart(struct mt_softc *);
    156       1.1  gmcgarry void	mtintr(struct mt_softc  *);
    157       1.1  gmcgarry 
    158       1.1  gmcgarry dev_type_open(mtopen);
    159       1.1  gmcgarry dev_type_close(mtclose);
    160       1.1  gmcgarry dev_type_read(mtread);
    161       1.1  gmcgarry dev_type_write(mtwrite);
    162       1.1  gmcgarry dev_type_ioctl(mtioctl);
    163       1.1  gmcgarry dev_type_strategy(mtstrategy);
    164       1.1  gmcgarry 
    165       1.1  gmcgarry const struct bdevsw mt_bdevsw = {
    166      1.26  dholland 	.d_open = mtopen,
    167      1.26  dholland 	.d_close = mtclose,
    168      1.26  dholland 	.d_strategy = mtstrategy,
    169      1.26  dholland 	.d_ioctl = mtioctl,
    170      1.26  dholland 	.d_dump = nodump,
    171      1.26  dholland 	.d_psize = nosize,
    172      1.28  dholland 	.d_discard = nodiscard,
    173      1.26  dholland 	.d_flag = D_TAPE
    174       1.1  gmcgarry };
    175       1.1  gmcgarry 
    176       1.1  gmcgarry const struct cdevsw mt_cdevsw = {
    177      1.26  dholland 	.d_open = mtopen,
    178      1.26  dholland 	.d_close = mtclose,
    179      1.26  dholland 	.d_read = mtread,
    180      1.26  dholland 	.d_write = mtwrite,
    181      1.26  dholland 	.d_ioctl = mtioctl,
    182      1.26  dholland 	.d_stop = nostop,
    183      1.26  dholland 	.d_tty = notty,
    184      1.26  dholland 	.d_poll = nopoll,
    185      1.26  dholland 	.d_mmap = nommap,
    186      1.26  dholland 	.d_kqfilter = nokqfilter,
    187      1.29  dholland 	.d_discard = nodiscard,
    188      1.26  dholland 	.d_flag = D_TAPE
    189       1.1  gmcgarry };
    190       1.1  gmcgarry 
    191       1.1  gmcgarry 
    192       1.1  gmcgarry struct	mtinfo {
    193       1.1  gmcgarry 	u_short	hwid;
    194       1.7      cube 	const char	*desc;
    195       1.1  gmcgarry } mtinfo[] = {
    196       1.1  gmcgarry 	{ MT7978ID,	"7978"	},
    197       1.1  gmcgarry 	{ MT7979AID,	"7979A"	},
    198       1.1  gmcgarry 	{ MT7980ID,	"7980"	},
    199       1.1  gmcgarry 	{ MT7974AID,	"7974A"	},
    200       1.1  gmcgarry };
    201       1.1  gmcgarry int	nmtinfo = sizeof(mtinfo) / sizeof(mtinfo[0]);
    202       1.1  gmcgarry 
    203       1.1  gmcgarry 
    204       1.1  gmcgarry int
    205      1.17       dsl mtlookup(int id, int slave, int punit)
    206       1.1  gmcgarry {
    207       1.1  gmcgarry 	int i;
    208       1.1  gmcgarry 
    209       1.1  gmcgarry 	for (i = 0; i < nmtinfo; i++)
    210       1.1  gmcgarry 		if (mtinfo[i].hwid == id)
    211       1.1  gmcgarry 			break;
    212       1.1  gmcgarry 	if (i == nmtinfo)
    213       1.1  gmcgarry 		return (-1);
    214       1.1  gmcgarry 	return (0);
    215       1.1  gmcgarry }
    216       1.1  gmcgarry 
    217       1.1  gmcgarry int
    218      1.20    cegger mtmatch(device_t parent, cfdata_t match, void *aux)
    219       1.1  gmcgarry {
    220       1.1  gmcgarry 	struct cs80bus_attach_args *ca = aux;
    221       1.1  gmcgarry 
    222       1.1  gmcgarry 	ca->ca_punit = 0;
    223       1.1  gmcgarry 	return (mtlookup(ca->ca_id, ca->ca_slave, ca->ca_punit) == 0);
    224       1.1  gmcgarry }
    225       1.1  gmcgarry 
    226       1.1  gmcgarry void
    227      1.20    cegger mtattach(device_t parent, device_t self, void *aux)
    228       1.1  gmcgarry {
    229       1.6   thorpej 	struct mt_softc *sc = device_private(self);
    230       1.1  gmcgarry 	struct cs80bus_attach_args *ca = aux;
    231       1.1  gmcgarry 	int type;
    232       1.1  gmcgarry 
    233  1.31.4.3    martin 	sc->sc_dev = self;
    234       1.1  gmcgarry 	sc->sc_ic = ca->ca_ic;
    235       1.1  gmcgarry 	sc->sc_slave = ca->ca_slave;
    236       1.1  gmcgarry 
    237       1.1  gmcgarry 	if ((type = mtlookup(ca->ca_id, ca->ca_slave, ca->ca_punit)) < 0)
    238       1.1  gmcgarry 		return;
    239       1.1  gmcgarry 
    240      1.30   msaitoh 	aprint_naive("\n");
    241      1.30   msaitoh 	aprint_normal(": %s tape\n", mtinfo[type].desc);
    242       1.1  gmcgarry 
    243       1.1  gmcgarry 	sc->sc_type = type;
    244       1.1  gmcgarry 	sc->sc_flags = MTF_EXISTS;
    245       1.1  gmcgarry 
    246       1.4      yamt 	bufq_alloc(&sc->sc_tab, "fcfs", 0);
    247      1.10        ad 	callout_init(&sc->sc_start_ch, 0);
    248      1.10        ad 	callout_init(&sc->sc_intr_ch, 0);
    249       1.1  gmcgarry 
    250       1.1  gmcgarry 	if (gpibregister(sc->sc_ic, sc->sc_slave, mtcallback, sc,
    251       1.1  gmcgarry 	    &sc->sc_hdl)) {
    252      1.25       chs 		aprint_error_dev(sc->sc_dev, "can't register callback\n");
    253       1.1  gmcgarry 		return;
    254       1.1  gmcgarry 	}
    255       1.1  gmcgarry }
    256       1.1  gmcgarry 
    257       1.1  gmcgarry /*
    258       1.1  gmcgarry  * Perform a read of "Device Status Jump" register and update the
    259       1.1  gmcgarry  * status if necessary.  If status is read, the given "ecmd" is also
    260       1.1  gmcgarry  * performed, unless "ecmd" is zero.  Returns DSJ value, -1 on failure
    261       1.1  gmcgarry  * and -2 on "temporary" failure.
    262       1.1  gmcgarry  */
    263       1.1  gmcgarry int
    264      1.17       dsl mtreaddsj(struct mt_softc *sc, int ecmd)
    265       1.1  gmcgarry {
    266       1.1  gmcgarry 	int retval;
    267       1.1  gmcgarry 
    268       1.1  gmcgarry 	if (sc->sc_flags & MTF_STATTIMEO)
    269       1.1  gmcgarry 		goto getstats;
    270       1.1  gmcgarry 	retval = gpibrecv(sc->sc_ic,
    271       1.1  gmcgarry 	    (sc->sc_flags & MTF_DSJTIMEO) ? -1 : sc->sc_slave,
    272       1.1  gmcgarry 	    MTT_DSJ, &(sc->sc_lastdsj), 1);
    273       1.1  gmcgarry 	sc->sc_flags &= ~MTF_DSJTIMEO;
    274       1.1  gmcgarry 	if (retval != 1) {
    275       1.1  gmcgarry 		DPRINTF(MDB_ANY, ("%s can't gpibrecv DSJ",
    276      1.25       chs 		    device_xname(sc->sc_dev)));
    277       1.1  gmcgarry 		if (sc->sc_recvtimeo == 0)
    278       1.1  gmcgarry 			sc->sc_recvtimeo = hz;
    279       1.1  gmcgarry 		if (--sc->sc_recvtimeo == 0)
    280       1.1  gmcgarry 			return (-1);
    281       1.1  gmcgarry 		if (retval == 0)
    282       1.1  gmcgarry 			sc->sc_flags |= MTF_DSJTIMEO;
    283       1.1  gmcgarry 		return (-2);
    284       1.1  gmcgarry 	}
    285       1.1  gmcgarry 	sc->sc_recvtimeo = 0;
    286       1.1  gmcgarry 	sc->sc_statindex = 0;
    287      1.25       chs 	DPRINTF(MDB_ANY, ("%s readdsj: 0x%x", device_xname(sc->sc_dev),
    288       1.1  gmcgarry 	    sc->sc_lastdsj));
    289       1.1  gmcgarry 	sc->sc_lastecmd = ecmd;
    290       1.1  gmcgarry 	switch (sc->sc_lastdsj) {
    291       1.1  gmcgarry 	    case 0:
    292       1.1  gmcgarry 		if (ecmd & MTE_DSJ_FORCE)
    293       1.1  gmcgarry 			break;
    294       1.1  gmcgarry 		return (0);
    295       1.1  gmcgarry 
    296       1.1  gmcgarry 	    case 2:
    297       1.1  gmcgarry 		sc->sc_lastecmd = MTE_COMPLETE;
    298       1.1  gmcgarry 	    case 1:
    299       1.1  gmcgarry 		break;
    300       1.1  gmcgarry 
    301       1.1  gmcgarry 	    default:
    302      1.25       chs 		printf("%s readdsj: DSJ 0x%x\n", device_xname(sc->sc_dev),
    303       1.1  gmcgarry 		    sc->sc_lastdsj);
    304       1.1  gmcgarry 		return (-1);
    305       1.1  gmcgarry 	}
    306       1.1  gmcgarry 
    307       1.1  gmcgarry getstats:
    308       1.1  gmcgarry 	retval = gpibrecv(sc->sc_ic,
    309       1.1  gmcgarry 	    (sc->sc_flags & MTF_STATCONT) ? -1 : sc->sc_slave, MTT_STAT,
    310       1.1  gmcgarry 	     ((char *)&(sc->sc_stat)) + sc->sc_statindex,
    311       1.1  gmcgarry 	    sizeof(sc->sc_stat) - sc->sc_statindex);
    312       1.1  gmcgarry 	sc->sc_flags &= ~(MTF_STATTIMEO | MTF_STATCONT);
    313       1.1  gmcgarry 	if (retval != sizeof(sc->sc_stat) - sc->sc_statindex) {
    314       1.1  gmcgarry 		if (sc->sc_recvtimeo == 0)
    315       1.1  gmcgarry 			sc->sc_recvtimeo = hz;
    316       1.1  gmcgarry 		if (--sc->sc_recvtimeo != 0) {
    317       1.1  gmcgarry 			if (retval >= 0) {
    318       1.1  gmcgarry 				sc->sc_statindex += retval;
    319       1.1  gmcgarry 				sc->sc_flags |= MTF_STATCONT;
    320       1.1  gmcgarry 			}
    321       1.1  gmcgarry 			sc->sc_flags |= MTF_STATTIMEO;
    322       1.1  gmcgarry 			return (-2);
    323       1.1  gmcgarry 		}
    324      1.30   msaitoh 		printf("%s readdsj: can't read status",
    325      1.30   msaitoh 		    device_xname(sc->sc_dev));
    326       1.1  gmcgarry 		return (-1);
    327       1.1  gmcgarry 	}
    328       1.1  gmcgarry 	sc->sc_recvtimeo = 0;
    329       1.1  gmcgarry 	sc->sc_statindex = 0;
    330       1.1  gmcgarry 	DPRINTF(MDB_ANY, ("%s readdsj: status is %x %x %x %x %x %x",
    331      1.25       chs 	    device_xname(sc->sc_dev),
    332       1.1  gmcgarry 	    sc->sc_stat1, sc->sc_stat2, sc->sc_stat3,
    333       1.1  gmcgarry 	    sc->sc_stat4, sc->sc_stat5, sc->sc_stat6));
    334       1.1  gmcgarry 	if (sc->sc_lastecmd)
    335       1.1  gmcgarry 		(void) gpibsend(sc->sc_ic, sc->sc_slave,
    336       1.1  gmcgarry 		    MTL_ECMD, &(sc->sc_lastecmd), 1);
    337       1.1  gmcgarry 	return ((int) sc->sc_lastdsj);
    338       1.1  gmcgarry }
    339       1.1  gmcgarry 
    340       1.1  gmcgarry int
    341      1.15    cegger mtopen(dev_t dev, int flag, int mode, struct lwp *l)
    342       1.1  gmcgarry {
    343       1.1  gmcgarry 	struct mt_softc *sc;
    344       1.1  gmcgarry 	int req_den;
    345       1.1  gmcgarry 	int error;
    346       1.1  gmcgarry 
    347      1.15    cegger 	sc = device_lookup_private(&mt_cd, MTUNIT(dev));
    348       1.1  gmcgarry 	if (sc == NULL || (sc->sc_flags & MTF_EXISTS) == 0)
    349       1.1  gmcgarry 		return (ENXIO);
    350       1.1  gmcgarry 
    351       1.1  gmcgarry 	if (sc->sc_flags & MTF_OPEN)
    352       1.1  gmcgarry 		return (EBUSY);
    353       1.1  gmcgarry 
    354      1.25       chs 	DPRINTF(MDB_ANY, ("%s open: flags 0x%x", device_xname(sc->sc_dev),
    355       1.1  gmcgarry 	    sc->sc_flags));
    356       1.1  gmcgarry 
    357       1.1  gmcgarry 	sc->sc_flags |= MTF_OPEN;
    358       1.7      cube 	sc->sc_ttyp = tprintf_open(l->l_proc);
    359       1.1  gmcgarry 	if ((sc->sc_flags & MTF_ALIVE) == 0) {
    360       1.1  gmcgarry 		error = mtcommand(dev, MTRESET, 0);
    361       1.1  gmcgarry 		if (error != 0 || (sc->sc_flags & MTF_ALIVE) == 0)
    362       1.1  gmcgarry 			goto errout;
    363       1.1  gmcgarry 		if ((sc->sc_stat1 & (SR1_BOT | SR1_ONLINE)) == SR1_ONLINE)
    364       1.1  gmcgarry 			(void) mtcommand(dev, MTREW, 0);
    365       1.1  gmcgarry 	}
    366       1.1  gmcgarry 	for (;;) {
    367       1.1  gmcgarry 		if ((error = mtcommand(dev, MTNOP, 0)) != 0)
    368       1.1  gmcgarry 			goto errout;
    369       1.1  gmcgarry 		if (!(sc->sc_flags & MTF_REW))
    370       1.1  gmcgarry 			break;
    371      1.23     pooka 		error = kpause("mt", true, hz, NULL);
    372      1.23     pooka 		if (error != 0 && error != EWOULDBLOCK) {
    373       1.1  gmcgarry 			error = EINTR;
    374       1.1  gmcgarry 			goto errout;
    375       1.1  gmcgarry 		}
    376       1.1  gmcgarry 	}
    377       1.1  gmcgarry 	if ((flag & FWRITE) && (sc->sc_stat1 & SR1_RO)) {
    378       1.1  gmcgarry 		error = EROFS;
    379       1.1  gmcgarry 		goto errout;
    380       1.1  gmcgarry 	}
    381       1.1  gmcgarry 	if (!(sc->sc_stat1 & SR1_ONLINE)) {
    382      1.25       chs 		uprintf("%s: not online\n", device_xname(sc->sc_dev));
    383       1.1  gmcgarry 		error = EIO;
    384       1.1  gmcgarry 		goto errout;
    385       1.1  gmcgarry 	}
    386       1.1  gmcgarry 	/*
    387       1.1  gmcgarry 	 * Select density:
    388       1.1  gmcgarry 	 *  - find out what density the drive is set to
    389       1.1  gmcgarry 	 *	(i.e. the density of the current tape)
    390       1.1  gmcgarry 	 *  - if we are going to write
    391       1.1  gmcgarry 	 *    - if we're not at the beginning of the tape
    392       1.1  gmcgarry 	 *      - complain if we want to change densities
    393       1.1  gmcgarry 	 *    - otherwise, select the mtcommand to set the density
    394       1.1  gmcgarry 	 *
    395       1.1  gmcgarry 	 * If the drive doesn't support it then don't change the recorded
    396       1.1  gmcgarry 	 * density.
    397       1.1  gmcgarry 	 *
    398       1.1  gmcgarry 	 * The original MOREbsd code had these additional conditions
    399       1.1  gmcgarry 	 * for the mid-tape change
    400       1.1  gmcgarry 	 *
    401       1.1  gmcgarry 	 *	req_den != T_BADBPI &&
    402       1.1  gmcgarry 	 *	sc->sc_density != T_6250BPI
    403       1.1  gmcgarry 	 *
    404       1.1  gmcgarry 	 * which suggests that it would be possible to write multiple
    405       1.1  gmcgarry 	 * densities if req_den == T_BAD_BPI or the current tape
    406       1.1  gmcgarry 	 * density was 6250.  Testing of our 7980 suggests that the
    407       1.1  gmcgarry 	 * device cannot change densities mid-tape.
    408       1.1  gmcgarry 	 *
    409       1.1  gmcgarry 	 * ajv (at) comp.vuw.ac.nz
    410       1.1  gmcgarry 	 */
    411       1.1  gmcgarry 	sc->sc_density = (sc->sc_stat2 & SR2_6250) ? T_6250BPI : (
    412       1.1  gmcgarry 			 (sc->sc_stat3 & SR3_1600) ? T_1600BPI : (
    413       1.1  gmcgarry 			 (sc->sc_stat3 & SR3_800) ? T_800BPI : -1));
    414       1.1  gmcgarry 	req_den = (dev & T_DENSEL);
    415       1.1  gmcgarry 
    416       1.1  gmcgarry 	if (flag & FWRITE) {
    417       1.1  gmcgarry 		if (!(sc->sc_stat1 & SR1_BOT)) {
    418       1.1  gmcgarry 			if (sc->sc_density != req_den) {
    419       1.1  gmcgarry 				uprintf("%s: can't change density mid-tape\n",
    420      1.25       chs 				    device_xname(sc->sc_dev));
    421       1.1  gmcgarry 				error = EIO;
    422       1.1  gmcgarry 				goto errout;
    423       1.1  gmcgarry 			}
    424       1.1  gmcgarry 		}
    425       1.1  gmcgarry 		else {
    426       1.1  gmcgarry 			int mtset_density =
    427       1.1  gmcgarry 			    (req_den == T_800BPI  ? MTSET800BPI : (
    428       1.1  gmcgarry 			     req_den == T_1600BPI ? MTSET1600BPI : (
    429       1.1  gmcgarry 			     req_den == T_6250BPI ? MTSET6250BPI : (
    430       1.1  gmcgarry 			     sc->sc_type == MT7980ID
    431       1.1  gmcgarry 						  ? MTSET6250DC
    432       1.1  gmcgarry 						  : MTSET6250BPI))));
    433       1.1  gmcgarry 			if (mtcommand(dev, mtset_density, 0) == 0)
    434       1.1  gmcgarry 				sc->sc_density = req_den;
    435       1.1  gmcgarry 		}
    436       1.1  gmcgarry 	}
    437       1.1  gmcgarry 	return (0);
    438       1.1  gmcgarry errout:
    439       1.1  gmcgarry 	sc->sc_flags &= ~MTF_OPEN;
    440       1.1  gmcgarry 	return (error);
    441       1.1  gmcgarry }
    442       1.1  gmcgarry 
    443       1.1  gmcgarry int
    444      1.15    cegger mtclose(dev_t dev, int flag, int fmt, struct lwp *l)
    445       1.1  gmcgarry {
    446       1.1  gmcgarry 	struct mt_softc *sc;
    447       1.1  gmcgarry 
    448      1.15    cegger 	sc = device_lookup_private(&mt_cd, MTUNIT(dev));
    449       1.1  gmcgarry 	if (sc == NULL)
    450       1.1  gmcgarry 		return (ENXIO);
    451       1.1  gmcgarry 
    452       1.1  gmcgarry 	if (sc->sc_flags & MTF_WRT) {
    453       1.1  gmcgarry 		(void) mtcommand(dev, MTWEOF, 2);
    454       1.1  gmcgarry 		(void) mtcommand(dev, MTBSF, 0);
    455       1.1  gmcgarry 	}
    456       1.1  gmcgarry 	if ((minor(dev) & T_NOREWIND) == 0)
    457       1.1  gmcgarry 		(void) mtcommand(dev, MTREW, 0);
    458       1.1  gmcgarry 	sc->sc_flags &= ~MTF_OPEN;
    459       1.1  gmcgarry 	tprintf_close(sc->sc_ttyp);
    460       1.1  gmcgarry 	return (0);
    461       1.1  gmcgarry }
    462       1.1  gmcgarry 
    463       1.1  gmcgarry int
    464      1.15    cegger mtcommand(dev_t dev, int cmd, int cnt)
    465       1.1  gmcgarry {
    466       1.1  gmcgarry 	struct mt_softc *sc;
    467       1.1  gmcgarry 	struct buf *bp;
    468       1.1  gmcgarry 	int error = 0;
    469       1.1  gmcgarry 
    470      1.15    cegger 	sc = device_lookup_private(&mt_cd, MTUNIT(dev));
    471       1.1  gmcgarry 	bp = &sc->sc_bufstore;
    472       1.1  gmcgarry 
    473      1.12        ad 	if (bp->b_cflags & BC_BUSY)
    474       1.1  gmcgarry 		return (EBUSY);
    475       1.1  gmcgarry 
    476       1.1  gmcgarry 	bp->b_cmd = cmd;
    477       1.1  gmcgarry 	bp->b_dev = dev;
    478      1.12        ad 	bp->b_objlock = &buffer_lock;
    479       1.1  gmcgarry 	do {
    480      1.12        ad 		bp->b_cflags = BC_BUSY;
    481      1.12        ad 		bp->b_flags = B_CMD;
    482      1.12        ad 		bp->b_oflags = 0;
    483       1.1  gmcgarry 		mtstrategy(bp);
    484       1.1  gmcgarry 		biowait(bp);
    485      1.11        ad 		if (bp->b_error != 0) {
    486       1.1  gmcgarry 			error = (int) (unsigned) bp->b_error;
    487       1.1  gmcgarry 			break;
    488       1.1  gmcgarry 		}
    489       1.1  gmcgarry 	} while (--cnt > 0);
    490       1.1  gmcgarry #if 0
    491      1.12        ad 	bp->b_cflags = 0 /*&= ~BC_BUSY*/;
    492       1.1  gmcgarry #else
    493      1.12        ad 	bp->b_cflags &= ~BC_BUSY;
    494       1.1  gmcgarry #endif
    495       1.1  gmcgarry 	return (error);
    496       1.1  gmcgarry }
    497       1.1  gmcgarry 
    498       1.1  gmcgarry /*
    499       1.1  gmcgarry  * Only thing to check here is for legal record lengths (writes only).
    500       1.1  gmcgarry  */
    501       1.1  gmcgarry void
    502      1.15    cegger mtstrategy(struct buf *bp)
    503       1.1  gmcgarry {
    504       1.1  gmcgarry 	struct mt_softc *sc;
    505       1.1  gmcgarry 	int s;
    506       1.1  gmcgarry 
    507      1.15    cegger 	sc = device_lookup_private(&mt_cd, MTUNIT(bp->b_dev));
    508       1.1  gmcgarry 
    509      1.25       chs 	DPRINTF(MDB_ANY, ("%s strategy", device_xname(sc->sc_dev)));
    510       1.1  gmcgarry 
    511       1.1  gmcgarry 	if ((bp->b_flags & (B_CMD | B_READ)) == 0) {
    512       1.1  gmcgarry #define WRITE_BITS_IGNORED	8
    513       1.1  gmcgarry #if 0
    514       1.1  gmcgarry 		if (bp->b_bcount & ((1 << WRITE_BITS_IGNORED) - 1)) {
    515       1.1  gmcgarry 			tprintf(sc->sc_ttyp,
    516      1.30   msaitoh 			    "%s: write record must be multiple of %d\n",
    517      1.30   msaitoh 			    device_xname(sc->sc_dev), 1 << WRITE_BITS_IGNORED);
    518       1.1  gmcgarry 			goto error;
    519       1.1  gmcgarry 		}
    520       1.1  gmcgarry #endif
    521       1.1  gmcgarry 		s = 16 * 1024;
    522       1.1  gmcgarry 		if (sc->sc_stat2 & SR2_LONGREC) {
    523       1.1  gmcgarry 			switch (sc->sc_density) {
    524       1.1  gmcgarry 			    case T_1600BPI:
    525       1.1  gmcgarry 				s = 32 * 1024;
    526       1.1  gmcgarry 				break;
    527       1.1  gmcgarry 
    528       1.1  gmcgarry 			    case T_6250BPI:
    529       1.1  gmcgarry 			    case T_BADBPI:
    530       1.1  gmcgarry 				s = 60 * 1024;
    531       1.1  gmcgarry 				break;
    532       1.1  gmcgarry 			}
    533       1.1  gmcgarry 		}
    534       1.1  gmcgarry 		if (bp->b_bcount > s) {
    535       1.1  gmcgarry 			tprintf(sc->sc_ttyp,
    536       1.7      cube 				"%s: write record (%d) too big: limit (%d)\n",
    537      1.25       chs 				device_xname(sc->sc_dev), bp->b_bcount, s);
    538       1.1  gmcgarry #if 0 /* XXX see above */
    539       1.1  gmcgarry 	    error:
    540       1.1  gmcgarry #endif
    541       1.1  gmcgarry 			bp->b_error = EIO;
    542       1.1  gmcgarry 			biodone(bp);
    543       1.1  gmcgarry 			return;
    544       1.1  gmcgarry 		}
    545       1.1  gmcgarry 	}
    546       1.1  gmcgarry 	s = splbio();
    547      1.16      yamt 	bufq_put(sc->sc_tab, bp);
    548       1.1  gmcgarry 	if (sc->sc_active == 0) {
    549       1.1  gmcgarry 		sc->sc_active = 1;
    550       1.1  gmcgarry 		mtustart(sc);
    551       1.1  gmcgarry 	}
    552       1.1  gmcgarry 	splx(s);
    553       1.1  gmcgarry }
    554       1.1  gmcgarry 
    555       1.1  gmcgarry void
    556      1.17       dsl mtustart(struct mt_softc *sc)
    557       1.1  gmcgarry {
    558       1.1  gmcgarry 
    559      1.25       chs 	DPRINTF(MDB_ANY, ("%s ustart", device_xname(sc->sc_dev)));
    560       1.1  gmcgarry 	if (gpibrequest(sc->sc_ic, sc->sc_hdl))
    561       1.1  gmcgarry 		mtstart(sc);
    562       1.1  gmcgarry }
    563       1.1  gmcgarry 
    564       1.1  gmcgarry void
    565      1.17       dsl mtcallback(void *v, int action)
    566       1.1  gmcgarry {
    567       1.1  gmcgarry 	struct mt_softc *sc = v;
    568       1.1  gmcgarry 
    569       1.1  gmcgarry 	DPRINTF(MDB_FOLLOW, ("mtcallback: v=%p, action=%d\n", v, action));
    570       1.1  gmcgarry 
    571       1.1  gmcgarry 	switch (action) {
    572       1.1  gmcgarry 	case GPIBCBF_START:
    573       1.1  gmcgarry 		mtstart(sc);
    574       1.1  gmcgarry 		break;
    575       1.1  gmcgarry 	case GPIBCBF_INTR:
    576       1.1  gmcgarry 		mtintr(sc);
    577       1.1  gmcgarry 		break;
    578       1.1  gmcgarry #ifdef DEBUG
    579       1.1  gmcgarry 	default:
    580       1.1  gmcgarry 		printf("mtcallback: unknown action %d\n", action);
    581       1.1  gmcgarry 		break;
    582       1.1  gmcgarry #endif
    583       1.1  gmcgarry 	}
    584       1.1  gmcgarry }
    585       1.1  gmcgarry 
    586       1.1  gmcgarry void
    587      1.17       dsl mtintr_callout(void *arg)
    588       1.1  gmcgarry {
    589       1.1  gmcgarry 	struct mt_softc *sc = arg;
    590       1.1  gmcgarry 	int s = splbio();
    591       1.1  gmcgarry 
    592       1.1  gmcgarry 	gpibppclear(sc->sc_ic);
    593       1.1  gmcgarry 	mtintr(sc);
    594       1.1  gmcgarry 	splx(s);
    595       1.1  gmcgarry }
    596       1.1  gmcgarry 
    597       1.1  gmcgarry void
    598      1.17       dsl mtstart_callout(void *arg)
    599       1.1  gmcgarry {
    600       1.1  gmcgarry 	int s = splbio();
    601       1.1  gmcgarry 
    602       1.1  gmcgarry 	mtstart((struct mt_softc *)arg);
    603       1.1  gmcgarry 	splx(s);
    604       1.1  gmcgarry }
    605       1.1  gmcgarry 
    606       1.1  gmcgarry void
    607      1.17       dsl mtstart(struct mt_softc *sc)
    608       1.1  gmcgarry {
    609       1.1  gmcgarry 	struct buf *bp;
    610       1.1  gmcgarry 	short	cmdcount = 1;
    611       1.1  gmcgarry 	u_char	cmdbuf[2];
    612       1.1  gmcgarry 
    613      1.25       chs 	DPRINTF(MDB_ANY, ("%s start", device_xname(sc->sc_dev)));
    614       1.1  gmcgarry 	sc->sc_flags &= ~MTF_WRT;
    615      1.16      yamt 	bp = bufq_peek(sc->sc_tab);
    616       1.1  gmcgarry 	if ((sc->sc_flags & MTF_ALIVE) == 0 &&
    617       1.1  gmcgarry 	    ((bp->b_flags & B_CMD) == 0 || bp->b_cmd != MTRESET))
    618       1.1  gmcgarry 		goto fatalerror;
    619       1.1  gmcgarry 
    620       1.1  gmcgarry 	if (sc->sc_flags & MTF_REW) {
    621       1.1  gmcgarry 		if (!gpibpptest(sc->sc_ic, sc->sc_slave))
    622       1.1  gmcgarry 			goto stillrew;
    623       1.1  gmcgarry 		switch (mtreaddsj(sc, MTE_DSJ_FORCE|MTE_COMPLETE|MTE_IDLE)) {
    624       1.1  gmcgarry 		    case 0:
    625       1.1  gmcgarry 		    case 1:
    626       1.1  gmcgarry 		stillrew:
    627       1.1  gmcgarry 			if ((sc->sc_stat1 & SR1_BOT) ||
    628       1.1  gmcgarry 			    !(sc->sc_stat1 & SR1_ONLINE)) {
    629       1.1  gmcgarry 				sc->sc_flags &= ~MTF_REW;
    630       1.1  gmcgarry 				break;
    631       1.1  gmcgarry 			}
    632  1.31.4.1  christos 			/* FALLTHROUGH */
    633       1.1  gmcgarry 		    case -2:
    634       1.1  gmcgarry 			/*
    635       1.1  gmcgarry 			 * -2 means "timeout" reading DSJ, which is probably
    636       1.1  gmcgarry 			 * temporary.  This is considered OK when doing a NOP,
    637       1.1  gmcgarry 			 * but not otherwise.
    638       1.1  gmcgarry 			 */
    639       1.1  gmcgarry 			if (sc->sc_flags & (MTF_DSJTIMEO | MTF_STATTIMEO)) {
    640       1.1  gmcgarry 				callout_reset(&sc->sc_start_ch, hz >> 5,
    641       1.1  gmcgarry 				    mtstart_callout, sc);
    642       1.1  gmcgarry 				return;
    643       1.1  gmcgarry 			}
    644  1.31.4.1  christos 			/* FALLTHROUGH */
    645       1.1  gmcgarry 		    case 2:
    646       1.1  gmcgarry 			if (bp->b_cmd != MTNOP || !(bp->b_flags & B_CMD)) {
    647       1.1  gmcgarry 				bp->b_error = EBUSY;
    648      1.11        ad 				goto done;
    649       1.1  gmcgarry 			}
    650       1.1  gmcgarry 			goto done;
    651       1.1  gmcgarry 
    652       1.1  gmcgarry 		    default:
    653       1.1  gmcgarry 			goto fatalerror;
    654       1.1  gmcgarry 		}
    655       1.1  gmcgarry 	}
    656       1.1  gmcgarry 	if (bp->b_flags & B_CMD) {
    657       1.1  gmcgarry 		if (sc->sc_flags & MTF_PASTEOT) {
    658       1.1  gmcgarry 			switch(bp->b_cmd) {
    659       1.1  gmcgarry 			    case MTFSF:
    660       1.1  gmcgarry 			    case MTWEOF:
    661       1.1  gmcgarry 			    case MTFSR:
    662       1.1  gmcgarry 				bp->b_error = ENOSPC;
    663      1.11        ad 				goto done;
    664       1.1  gmcgarry 
    665       1.1  gmcgarry 			    case MTBSF:
    666       1.1  gmcgarry 			    case MTOFFL:
    667       1.1  gmcgarry 			    case MTBSR:
    668       1.1  gmcgarry 			    case MTREW:
    669       1.1  gmcgarry 				sc->sc_flags &= ~(MTF_PASTEOT | MTF_ATEOT);
    670       1.1  gmcgarry 				break;
    671       1.1  gmcgarry 			}
    672       1.1  gmcgarry 		}
    673       1.1  gmcgarry 		switch(bp->b_cmd) {
    674       1.1  gmcgarry 		    case MTFSF:
    675       1.1  gmcgarry 			if (sc->sc_flags & MTF_HITEOF)
    676       1.1  gmcgarry 				goto done;
    677       1.1  gmcgarry 			cmdbuf[0] = MTTC_FSF;
    678       1.1  gmcgarry 			break;
    679       1.1  gmcgarry 
    680       1.1  gmcgarry 		    case MTBSF:
    681       1.1  gmcgarry 			if (sc->sc_flags & MTF_HITBOF)
    682       1.1  gmcgarry 				goto done;
    683       1.1  gmcgarry 			cmdbuf[0] = MTTC_BSF;
    684       1.1  gmcgarry 			break;
    685       1.1  gmcgarry 
    686       1.1  gmcgarry 		    case MTOFFL:
    687       1.1  gmcgarry 			sc->sc_flags |= MTF_REW;
    688       1.1  gmcgarry 			cmdbuf[0] = MTTC_REWOFF;
    689       1.1  gmcgarry 			break;
    690       1.1  gmcgarry 
    691       1.1  gmcgarry 		    case MTWEOF:
    692       1.1  gmcgarry 			cmdbuf[0] = MTTC_WFM;
    693       1.1  gmcgarry 			break;
    694       1.1  gmcgarry 
    695       1.1  gmcgarry 		    case MTBSR:
    696       1.1  gmcgarry 			cmdbuf[0] = MTTC_BSR;
    697       1.1  gmcgarry 			break;
    698       1.1  gmcgarry 
    699       1.1  gmcgarry 		    case MTFSR:
    700       1.1  gmcgarry 			cmdbuf[0] = MTTC_FSR;
    701       1.1  gmcgarry 			break;
    702       1.1  gmcgarry 
    703       1.1  gmcgarry 		    case MTREW:
    704       1.1  gmcgarry 			sc->sc_flags |= MTF_REW;
    705       1.1  gmcgarry 			cmdbuf[0] = MTTC_REW;
    706       1.1  gmcgarry 			break;
    707       1.1  gmcgarry 
    708       1.1  gmcgarry 		    case MTNOP:
    709       1.1  gmcgarry 			/*
    710       1.1  gmcgarry 			 * NOP is supposed to set status bits.
    711       1.1  gmcgarry 			 * Force readdsj to do it.
    712       1.1  gmcgarry 			 */
    713       1.1  gmcgarry 			switch (mtreaddsj(sc,
    714       1.1  gmcgarry 			  MTE_DSJ_FORCE | MTE_COMPLETE | MTE_IDLE)) {
    715       1.1  gmcgarry 			    default:
    716       1.1  gmcgarry 				goto done;
    717       1.1  gmcgarry 
    718       1.1  gmcgarry 			    case -1:
    719       1.1  gmcgarry 				/*
    720       1.1  gmcgarry 				 * If this fails, perform a device clear
    721       1.1  gmcgarry 				 * to fix any protocol problems and (most
    722       1.1  gmcgarry 				 * likely) get the status.
    723       1.1  gmcgarry 				 */
    724       1.1  gmcgarry 				bp->b_cmd = MTRESET;
    725       1.1  gmcgarry 				break;
    726       1.1  gmcgarry 
    727       1.1  gmcgarry 			    case -2:
    728       1.1  gmcgarry 				callout_reset(&sc->sc_start_ch, hz >> 5,
    729       1.1  gmcgarry 				    mtstart_callout, sc);
    730       1.1  gmcgarry 				return;
    731       1.1  gmcgarry 			}
    732  1.31.4.2    martin 			__unreachable();
    733       1.1  gmcgarry 
    734       1.1  gmcgarry 		    case MTRESET:
    735       1.1  gmcgarry 			/*
    736       1.1  gmcgarry 			 * 1) selected device clear (send with "-2" secondary)
    737       1.1  gmcgarry 			 * 2) set timeout, then wait for "service request"
    738       1.1  gmcgarry 			 * 3) interrupt will read DSJ (and END COMPLETE-IDLE)
    739       1.1  gmcgarry 			 */
    740       1.1  gmcgarry 			if (gpibsend(sc->sc_ic, sc->sc_slave, -2, NULL, 0)){
    741      1.25       chs 				aprint_error_dev(sc->sc_dev, "can't reset");
    742       1.1  gmcgarry 				goto fatalerror;
    743       1.1  gmcgarry 			}
    744       1.1  gmcgarry 			callout_reset(&sc->sc_intr_ch, 4*hz, mtintr_callout,
    745       1.1  gmcgarry 			    sc);
    746       1.1  gmcgarry 			gpibawait(sc->sc_ic);
    747       1.1  gmcgarry 			return;
    748       1.1  gmcgarry 
    749       1.1  gmcgarry 		    case MTSET800BPI:
    750       1.1  gmcgarry 			cmdbuf[0] = MTTC_800;
    751       1.1  gmcgarry 			break;
    752       1.1  gmcgarry 
    753       1.1  gmcgarry 		    case MTSET1600BPI:
    754       1.1  gmcgarry 			cmdbuf[0] = MTTC_1600;
    755       1.1  gmcgarry 			break;
    756       1.1  gmcgarry 
    757       1.1  gmcgarry 		    case MTSET6250BPI:
    758       1.1  gmcgarry 			cmdbuf[0] = MTTC_6250;
    759       1.1  gmcgarry 			break;
    760       1.1  gmcgarry 
    761       1.1  gmcgarry 		    case MTSET6250DC:
    762       1.1  gmcgarry 			cmdbuf[0] = MTTC_DC6250;
    763       1.1  gmcgarry 			break;
    764       1.1  gmcgarry 		}
    765       1.1  gmcgarry 	} else {
    766       1.1  gmcgarry 		if (sc->sc_flags & MTF_PASTEOT) {
    767       1.1  gmcgarry 			bp->b_error = ENOSPC;
    768      1.11        ad 			goto done;
    769       1.1  gmcgarry 		}
    770       1.1  gmcgarry 		if (bp->b_flags & B_READ) {
    771       1.1  gmcgarry 			sc->sc_flags |= MTF_IO;
    772       1.1  gmcgarry 			cmdbuf[0] = MTTC_READ;
    773       1.1  gmcgarry 		} else {
    774       1.1  gmcgarry 			sc->sc_flags |= MTF_WRT | MTF_IO;
    775       1.1  gmcgarry 			cmdbuf[0] = MTTC_WRITE;
    776       1.1  gmcgarry 			cmdbuf[1] = (bp->b_bcount +((1 << WRITE_BITS_IGNORED) - 1)) >> WRITE_BITS_IGNORED;
    777       1.1  gmcgarry 			cmdcount = 2;
    778       1.1  gmcgarry 		}
    779       1.1  gmcgarry 	}
    780       1.1  gmcgarry 	if (gpibsend(sc->sc_ic, sc->sc_slave, MTL_TCMD, cmdbuf, cmdcount)
    781       1.1  gmcgarry 	    == cmdcount) {
    782       1.1  gmcgarry 		if (sc->sc_flags & MTF_REW)
    783       1.1  gmcgarry 			goto done;
    784       1.1  gmcgarry 		gpibawait(sc->sc_ic);
    785       1.1  gmcgarry 		return;
    786       1.1  gmcgarry 	}
    787       1.1  gmcgarry fatalerror:
    788       1.1  gmcgarry 	/*
    789       1.1  gmcgarry 	 * If anything fails, the drive is probably hosed, so mark it not
    790       1.1  gmcgarry 	 * "ALIVE" (but it EXISTS and is OPEN or we wouldn't be here, and
    791       1.1  gmcgarry 	 * if, last we heard, it was REWinding, remember that).
    792       1.1  gmcgarry 	 */
    793       1.1  gmcgarry 	sc->sc_flags &= MTF_EXISTS | MTF_OPEN | MTF_REW;
    794       1.1  gmcgarry 	bp->b_error = EIO;
    795       1.1  gmcgarry done:
    796       1.1  gmcgarry 	sc->sc_flags &= ~(MTF_HITEOF | MTF_HITBOF);
    797      1.16      yamt 	(void)bufq_get(sc->sc_tab);
    798       1.1  gmcgarry 	biodone(bp);
    799       1.1  gmcgarry 	gpibrelease(sc->sc_ic, sc->sc_hdl);
    800      1.16      yamt 	if ((bp = bufq_peek(sc->sc_tab)) == NULL)
    801       1.1  gmcgarry 		sc->sc_active = 0;
    802       1.1  gmcgarry 	else
    803       1.1  gmcgarry 		mtustart(sc);
    804       1.1  gmcgarry }
    805       1.1  gmcgarry 
    806       1.1  gmcgarry void
    807      1.17       dsl mtintr(struct mt_softc *sc)
    808       1.1  gmcgarry {
    809       1.1  gmcgarry 	struct buf *bp;
    810       1.1  gmcgarry 	int slave, dir, i;
    811       1.1  gmcgarry 	u_char cmdbuf[4];
    812       1.1  gmcgarry 
    813       1.1  gmcgarry 	slave = sc->sc_slave;
    814       1.1  gmcgarry 
    815      1.16      yamt 	bp = bufq_peek(sc->sc_tab);
    816       1.1  gmcgarry 	if (bp == NULL) {
    817      1.25       chs 		printf("%s intr: bp == NULL", device_xname(sc->sc_dev));
    818       1.1  gmcgarry 		return;
    819       1.1  gmcgarry 	}
    820       1.1  gmcgarry 
    821      1.25       chs 	DPRINTF(MDB_ANY, ("%s intr", device_xname(sc->sc_dev)));
    822       1.1  gmcgarry 
    823       1.1  gmcgarry 	/*
    824       1.1  gmcgarry 	 * Some operation completed.  Read status bytes and report errors.
    825       1.1  gmcgarry 	 * Clear EOF flags here `cause they're set once on specific conditions
    826       1.1  gmcgarry 	 * below when a command succeeds.
    827       1.1  gmcgarry 	 * A DSJ of 2 always means keep waiting.  If the command was READ
    828       1.1  gmcgarry 	 * (and we're in data DMA phase) stop data transfer first.
    829       1.1  gmcgarry 	 */
    830       1.1  gmcgarry 	sc->sc_flags &= ~(MTF_HITEOF | MTF_HITBOF);
    831       1.1  gmcgarry 	if ((bp->b_flags & (B_CMD|B_READ)) == B_READ &&
    832       1.1  gmcgarry 	    !(sc->sc_flags & (MTF_IO | MTF_STATTIMEO | MTF_DSJTIMEO))){
    833       1.1  gmcgarry 		cmdbuf[0] = MTE_STOP;
    834       1.1  gmcgarry 		(void) gpibsend(sc->sc_ic, slave, MTL_ECMD,cmdbuf,1);
    835       1.1  gmcgarry 	}
    836       1.1  gmcgarry 	switch (mtreaddsj(sc, 0)) {
    837       1.1  gmcgarry 	    case 0:
    838       1.1  gmcgarry 		break;
    839       1.1  gmcgarry 
    840       1.1  gmcgarry 	    case 1:
    841       1.1  gmcgarry 		/*
    842       1.1  gmcgarry 		 * If we're in the middle of a READ/WRITE and have yet to
    843       1.1  gmcgarry 		 * start the data transfer, a DSJ of one should terminate it.
    844       1.1  gmcgarry 		 */
    845       1.1  gmcgarry 		sc->sc_flags &= ~MTF_IO;
    846       1.1  gmcgarry 		break;
    847       1.1  gmcgarry 
    848       1.1  gmcgarry 	    case 2:
    849       1.1  gmcgarry 		(void) gpibawait(sc->sc_ic);
    850       1.1  gmcgarry 		return;
    851       1.1  gmcgarry 
    852       1.1  gmcgarry 	    case -2:
    853       1.1  gmcgarry 		/*
    854       1.1  gmcgarry 		 * -2 means that the drive failed to respond quickly enough
    855       1.1  gmcgarry 		 * to the request for DSJ.  It's probably just "busy" figuring
    856       1.1  gmcgarry 		 * it out and will know in a little bit...
    857       1.1  gmcgarry 		 */
    858       1.1  gmcgarry 		callout_reset(&sc->sc_intr_ch, hz >> 5, mtintr_callout, sc);
    859       1.1  gmcgarry 		return;
    860       1.1  gmcgarry 
    861       1.1  gmcgarry 	    default:
    862      1.30   msaitoh 		printf("%s intr: can't get drive stat",
    863      1.30   msaitoh 		    device_xname(sc->sc_dev));
    864       1.1  gmcgarry 		goto error;
    865       1.1  gmcgarry 	}
    866       1.1  gmcgarry 	if (sc->sc_stat1 & (SR1_ERR | SR1_REJECT)) {
    867       1.1  gmcgarry 		i = sc->sc_stat4 & SR4_ERCLMASK;
    868       1.1  gmcgarry 		printf("%s: %s error, retry %d, SR2/3 %x/%x, code %d",
    869      1.25       chs 			device_xname(sc->sc_dev), i == SR4_DEVICE ? "device" :
    870       1.1  gmcgarry 			(i == SR4_PROTOCOL ? "protocol" :
    871       1.1  gmcgarry 			(i == SR4_SELFTEST ? "selftest" : "unknown")),
    872       1.1  gmcgarry 			sc->sc_stat4 & SR4_RETRYMASK, sc->sc_stat2,
    873       1.1  gmcgarry 			sc->sc_stat3, sc->sc_stat5);
    874       1.1  gmcgarry 
    875       1.1  gmcgarry 		if ((bp->b_flags & B_CMD) && bp->b_cmd == MTRESET)
    876       1.1  gmcgarry 			callout_stop(&sc->sc_intr_ch);
    877       1.1  gmcgarry 		if (sc->sc_stat3 & SR3_POWERUP)
    878       1.1  gmcgarry 			sc->sc_flags &= MTF_OPEN | MTF_EXISTS;
    879       1.1  gmcgarry 		goto error;
    880       1.1  gmcgarry 	}
    881       1.1  gmcgarry 	/*
    882       1.1  gmcgarry 	 * Report and clear any soft errors.
    883       1.1  gmcgarry 	 */
    884       1.1  gmcgarry 	if (sc->sc_stat1 & SR1_SOFTERR) {
    885      1.25       chs 		printf("%s: soft error, retry %d\n", device_xname(sc->sc_dev),
    886       1.1  gmcgarry 		    sc->sc_stat4 & SR4_RETRYMASK);
    887       1.1  gmcgarry 		sc->sc_stat1 &= ~SR1_SOFTERR;
    888       1.1  gmcgarry 	}
    889       1.1  gmcgarry 	/*
    890       1.1  gmcgarry 	 * We've initiated a read or write, but haven't actually started to
    891       1.1  gmcgarry 	 * DMA the data yet.  At this point, the drive's ready.
    892       1.1  gmcgarry 	 */
    893       1.1  gmcgarry 	if (sc->sc_flags & MTF_IO) {
    894       1.1  gmcgarry 		sc->sc_flags &= ~MTF_IO;
    895       1.1  gmcgarry 		dir = (bp->b_flags & B_READ ? GPIB_READ : GPIB_WRITE);
    896       1.1  gmcgarry 		gpibxfer(sc->sc_ic, slave,
    897       1.1  gmcgarry 		    dir == GPIB_READ ? MTT_READ : MTL_WRITE,
    898       1.1  gmcgarry 		    bp->b_data, bp->b_bcount, dir, dir == GPIB_READ);
    899       1.1  gmcgarry 		return;
    900       1.1  gmcgarry 	}
    901       1.1  gmcgarry 	/*
    902       1.1  gmcgarry 	 * Check for End Of Tape - we're allowed to hit EOT and then write (or
    903       1.1  gmcgarry 	 * read) one more record.  If we get here and have not already hit EOT,
    904       1.1  gmcgarry 	 * return ENOSPC to inform the process that it's hit it.  If we get
    905       1.1  gmcgarry 	 * here and HAVE already hit EOT, don't allow any more operations that
    906       1.1  gmcgarry 	 * move the tape forward.
    907       1.1  gmcgarry 	 */
    908       1.1  gmcgarry 	if (sc->sc_stat1 & SR1_EOT) {
    909       1.1  gmcgarry 		if (sc->sc_flags & MTF_ATEOT)
    910       1.1  gmcgarry 			sc->sc_flags |= MTF_PASTEOT;
    911       1.1  gmcgarry 		else {
    912       1.1  gmcgarry 			bp->b_error = ENOSPC;
    913       1.1  gmcgarry 			sc->sc_flags |= MTF_ATEOT;
    914       1.1  gmcgarry 		}
    915       1.1  gmcgarry 	}
    916       1.1  gmcgarry 	/*
    917       1.1  gmcgarry 	 * If a motion command was being executed, check for Tape Marks.
    918       1.1  gmcgarry 	 * If we were doing data, make sure we got the right amount, and
    919       1.1  gmcgarry 	 * check for hitting tape marks on reads.
    920       1.1  gmcgarry 	 */
    921       1.1  gmcgarry 	if (bp->b_flags & B_CMD) {
    922       1.1  gmcgarry 		if (sc->sc_stat1 & SR1_EOF) {
    923       1.1  gmcgarry 			if (bp->b_cmd == MTFSR)
    924       1.1  gmcgarry 				sc->sc_flags |= MTF_HITEOF;
    925       1.1  gmcgarry 			if (bp->b_cmd == MTBSR)
    926       1.1  gmcgarry 				sc->sc_flags |= MTF_HITBOF;
    927       1.1  gmcgarry 		}
    928       1.1  gmcgarry 		if (bp->b_cmd == MTRESET) {
    929       1.1  gmcgarry 			callout_stop(&sc->sc_intr_ch);
    930       1.1  gmcgarry 			sc->sc_flags |= MTF_ALIVE;
    931       1.1  gmcgarry 		}
    932       1.1  gmcgarry 	} else {
    933       1.1  gmcgarry 		i = gpibrecv(sc->sc_ic, slave, MTT_BCNT, cmdbuf, 2);
    934       1.1  gmcgarry 		if (i != 2) {
    935      1.30   msaitoh 			aprint_error_dev(sc->sc_dev,
    936      1.30   msaitoh 			    "intr: can't get xfer length\n");
    937       1.1  gmcgarry 			goto error;
    938       1.1  gmcgarry 		}
    939       1.1  gmcgarry 		i = (int) *((u_short *) cmdbuf);
    940       1.1  gmcgarry 		if (i <= bp->b_bcount) {
    941       1.1  gmcgarry 			if (i == 0)
    942       1.1  gmcgarry 				sc->sc_flags |= MTF_HITEOF;
    943       1.1  gmcgarry 			bp->b_resid = bp->b_bcount - i;
    944      1.22   tsutsui 			DPRINTF(MDB_ANY, ("%s intr: bcount %d, resid %d",
    945      1.25       chs 			    device_xname(sc->sc_dev),
    946      1.22   tsutsui 			    bp->b_bcount, bp->b_resid));
    947       1.1  gmcgarry 		} else {
    948       1.1  gmcgarry 			tprintf(sc->sc_ttyp,
    949       1.7      cube 				"%s: record (%d) larger than wanted (%d)\n",
    950      1.25       chs 				device_xname(sc->sc_dev), i, bp->b_bcount);
    951       1.1  gmcgarry error:
    952       1.1  gmcgarry 			sc->sc_flags &= ~MTF_IO;
    953       1.1  gmcgarry 			bp->b_error = EIO;
    954       1.1  gmcgarry 		}
    955       1.1  gmcgarry 	}
    956       1.1  gmcgarry 	/*
    957       1.1  gmcgarry 	 * The operation is completely done.
    958       1.1  gmcgarry 	 * Let the drive know with an END command.
    959       1.1  gmcgarry 	 */
    960       1.1  gmcgarry 	cmdbuf[0] = MTE_COMPLETE | MTE_IDLE;
    961       1.1  gmcgarry 	(void) gpibsend(sc->sc_ic, slave, MTL_ECMD, cmdbuf, 1);
    962       1.1  gmcgarry 	bp->b_flags &= ~B_CMD;
    963      1.16      yamt 	(void)bufq_get(sc->sc_tab);
    964       1.1  gmcgarry 	biodone(bp);
    965       1.1  gmcgarry 	gpibrelease(sc->sc_ic, sc->sc_hdl);
    966      1.16      yamt 	if (bufq_peek(sc->sc_tab) == NULL)
    967       1.1  gmcgarry 		sc->sc_active = 0;
    968       1.1  gmcgarry 	else
    969       1.1  gmcgarry 		mtustart(sc);
    970       1.1  gmcgarry }
    971       1.1  gmcgarry 
    972       1.1  gmcgarry int
    973      1.15    cegger mtread(dev_t dev, struct uio *uio, int flags)
    974       1.1  gmcgarry {
    975      1.21        ad 	return (physio(mtstrategy, NULL, dev, B_READ, minphys, uio));
    976       1.1  gmcgarry }
    977       1.1  gmcgarry 
    978       1.1  gmcgarry int
    979      1.15    cegger mtwrite(dev_t dev, struct uio *uio, int flags)
    980       1.1  gmcgarry {
    981      1.21        ad 	return (physio(mtstrategy, NULL, dev, B_WRITE, minphys, uio));
    982       1.1  gmcgarry }
    983       1.1  gmcgarry 
    984       1.1  gmcgarry int
    985      1.17       dsl mtioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l)
    986       1.1  gmcgarry {
    987       1.1  gmcgarry 	struct mtop *op;
    988       1.1  gmcgarry 	int cnt;
    989       1.1  gmcgarry 
    990       1.1  gmcgarry 	switch (cmd) {
    991       1.1  gmcgarry 	    case MTIOCTOP:
    992       1.1  gmcgarry 		op = (struct mtop *)data;
    993       1.1  gmcgarry 		switch(op->mt_op) {
    994       1.1  gmcgarry 		    case MTWEOF:
    995       1.1  gmcgarry 		    case MTFSF:
    996       1.1  gmcgarry 		    case MTBSR:
    997       1.1  gmcgarry 		    case MTBSF:
    998       1.1  gmcgarry 		    case MTFSR:
    999       1.1  gmcgarry 			cnt = op->mt_count;
   1000       1.1  gmcgarry 			break;
   1001       1.1  gmcgarry 
   1002       1.1  gmcgarry 		    case MTOFFL:
   1003       1.1  gmcgarry 		    case MTREW:
   1004       1.1  gmcgarry 		    case MTNOP:
   1005       1.1  gmcgarry 			cnt = 0;
   1006       1.1  gmcgarry 			break;
   1007       1.1  gmcgarry 
   1008       1.1  gmcgarry 		    default:
   1009       1.1  gmcgarry 			return (EINVAL);
   1010       1.1  gmcgarry 		}
   1011       1.1  gmcgarry 		return (mtcommand(dev, op->mt_op, cnt));
   1012       1.1  gmcgarry 
   1013       1.1  gmcgarry 	    case MTIOCGET:
   1014       1.1  gmcgarry 		break;
   1015       1.1  gmcgarry 
   1016       1.1  gmcgarry 	    default:
   1017       1.1  gmcgarry 		return (EINVAL);
   1018       1.1  gmcgarry 	}
   1019       1.1  gmcgarry 	return (0);
   1020       1.1  gmcgarry }
   1021